Gearbox shell machining process design
机械专业英语词汇(整理篇)

机械专业英语词汇陶瓷ceramics合成纤维synthetic fibre电化学腐蚀electrochemical corrosion 车架automotive chassis悬架suspension转向器redirector变速器speed changer板料冲压sheet metal parts孔加工spot facing machining车间workshop工程技术人员engineer气动夹紧pneuma lock数学模型mathematical model画法几何descriptive geometry机械制图Mechanical drawing投影projection视图view剖视图pro标准件standard component零件图part drawing装配图assembly drawing尺寸标注size marking技术要求technical requirements刚度rigidity内力internal force位移displacement截面section疲劳极限fatigue limit断裂fracture塑性变形plastic distortion脆性材料brittleness material刚度准则rigidity criterion垫圈washer垫片spacer直齿圆柱齿轮straight toothed spur gear斜齿圆柱齿轮helical-spur gear直齿锥齿轮straight bevel gear运动简图kinematic sketch齿轮齿条pinion and rack蜗杆蜗轮worm and worm gear虚约束passive constraint曲柄crank摇杆racker凸轮cams共轭曲线conjugate curve范成法generation method定义域definitional domain值域range导数\\微分differential coefficient求导derivation定积分definite integral不定积分indefinite integral曲率curvature偏微分partial differential毛坯rough游标卡尺slide caliper千分尺micrometer calipers攻丝tap二阶行列式second order determinant 逆矩阵inverse matrix线性方程组linear equations概率probability随机变量random variable排列组合permutation and combination气体状态方程equation of state of gas 动能kinetic energy势能potential energy机械能守恒conservation of mechanical energy动量momentum桁架truss轴线axes余子式cofactor逻辑电路logic circuit触发器flip-flop脉冲波形pulse shape数模digital analogy液压传动机构fluid drive mechanism 机械零件mechanical parts淬火冷却quench淬火hardening回火tempering调质hardening and tempering磨粒abrasive grain结合剂bonding agent砂轮grinding wheel后角clearance angle龙门刨削planing主轴spindle主轴箱headstock卡盘chuck加工中心machining center车刀lathe tool车床lathe钻削镗削bore车削turning磨床grinder基准benchmark钳工locksmith锻forge压模stamping焊weld拉床broaching machine拉孔broaching装配assembling铸造found流体动力学fluid dynamics流体力学fluid mechanics加工machining液压hydraulic pressure切线tangent机电一体化mechanotronics mechanical-electrical integration 气压air pressure pneumatic pressure 稳定性stability介质medium液压驱动泵fluid clutch液压泵hydraulic pump阀门valve失效invalidation强度intensity载荷load应力stress安全系数safty factor可靠性reliability螺纹thread螺旋helix键spline销pin滚动轴承rolling bearing滑动轴承sliding bearing弹簧spring制动器arrester brake十字结联轴节crosshead联轴器coupling链chain皮带strap精加工finish machining粗加工rough machining变速箱体gearbox casing腐蚀rust氧化oxidation磨损wear耐用度durability随机信号random signal离散信号discrete signal超声传感器ultrasonic sensor集成电路integrate circuit挡板orifice plate残余应力residual stress套筒sleeve扭力torsion冷加工cold machining电动机electromotor汽缸cylinder过盈配合interference fit热加工hotwork摄像头CCD camera倒角rounding chamfer优化设计optimal design工业造型设计industrial moulding design有限元finite element滚齿hobbing插齿gear shaping伺服电机actuating motor铣床milling machine钻床drill machine镗床boring machine步进电机stepper motor丝杠screw rod导轨lead rail组件subassembly可编程序逻辑控制器Programmable Logic Controller PLC电火花加工electric spark machining 电火花线切割加工electrical discharge wire - cutting相图phase diagram热处理heat treatment固态相变solid state phase changes有色金属nonferrous metal陶瓷ceramics合成纤维synthetic fibre电化学腐蚀electrochemical corrosion 车架automotive chassis悬架suspension转向器redirector变速器speed changer板料冲压sheet metal parts孔加工spot facing machining车间workshop工程技术人员engineer气动夹紧pneuma lock数学模型mathematical model画法几何descriptive geometry机械制图Mechanical drawing投影projection视图view剖视图pro标准件standard component零件图part drawing装配图assembly drawing尺寸标注size marking技术要求technical requirements刚度rigidity内力internal force位移displacement截面section疲劳极限fatigue limit断裂fracture塑性变形plastic distortion脆性材料brittleness material刚度准则rigidity criterion垫圈washer垫片spacer直齿圆柱齿轮straight toothed spur gear斜齿圆柱齿轮helical-spur gear直齿锥齿轮straight bevel gear运动简图kinematic sketch齿轮齿条pinion and rack蜗杆蜗轮worm and worm gear虚约束passive constraint曲柄crank摇杆racker凸轮cams共轭曲线conjugate curve范成法generation method定义域definitional domain值域range导数\\微分differential coefficient求导derivation定积分definite integral不定积分indefinite integral曲率curvature偏微分partial differential毛坯rough游标卡尺slide caliper千分尺micrometer calipers攻丝tap二阶行列式second order determinant 逆矩阵inverse matrix线性方程组linear equations概率probability随机变量random variable排列组合permutation and combination气体状态方程equation of state of gas 动能kinetic energy势能potential energy机械能守恒conservation of mechanical energy动量momentum桁架truss轴线axes余子式cofactor逻辑电路logic circuit触发器flip-flop脉冲波形pulse shape数模digital analogy液压传动机构fluid drive mechanism 机械零件mechanical parts淬火冷却quench淬火hardening回火tempering调质hardening and tempering磨粒abrasive grain结合剂bonding agent砂轮grinding wheelAssembly line 组装线Layout 布置图Conveyer 流水线物料板Rivet table 拉钉机Rivet gun 拉钉枪Screw driver 起子Pneumatic screw driver 气动起子worktable 工作桌OOBA 开箱检查fit together 组装在一起fasten 锁紧(螺丝)fixture 夹具(治具)pallet 栈板barcode 条码barcode scanner 条码扫描器fuse together 熔合fuse machine热熔机repair修理operator作业员QC品管supervisor 课长ME 制造工程师MT 制造生技cosmetic inspect 外观检查inner parts inspect 内部检查thumb screw 大头螺丝lbs. inch 镑、英寸EMI gasket 导电条front plate 前板rear plate 后板chassis 基座bezel panel 面板power button 电源按键reset button 重置键Hi-pot test of SPS 高源高压测试Voltage switch of SPS 电源电压接拉键sheet metal parts 冲件plastic parts 塑胶件SOP 制造作业程序material check list 物料检查表work cell 工作间trolley 台车carton 纸箱sub-line 支线left fork 叉车personnel resource department 人力资源部production department生产部门planning department企划部QC Section品管科stamping factory冲压厂painting factory烤漆厂molding factory成型厂common equipment常用设备uncoiler and straightener整平机punching machine 冲床robot机械手hydraulic machine油压机lathe车床planer |plein|刨床miller铣床grinder磨床linear cutting线切割electrical sparkle电火花welder电焊机staker=reviting machine铆合机position职务president董事长general manager总经理special assistant manager特助factory director厂长department director部长deputy manager | =vice manager副理section supervisor课长deputy section supervisor =vice section superisor副课长group leader/supervisor组长line supervisor线长assistant manager助理to move, to carry, to handle搬运be put in storage入库pack packing包装to apply oil擦油to 锉毛刺final inspection终检to connect material接料to reverse material 翻料wet station沾湿台Tiana天那水cleaning cloth抹布to load material上料to unload material卸料to return material/stock to退料scraped |\\'skr?pid|报废scrape ..v.刮;削deficient purchase来料不良manufacture procedure制程deficient manufacturing procedure制程不良oxidation |\\' ksi\\'dei?n|氧化scratch刮伤dents压痕defective upsiding down抽芽不良defective to staking铆合不良embedded lump镶块feeding is not in place送料不到位stamping-missing漏冲production capacity生产力education and training教育与训练proposal improvement提案改善spare parts=buffer备件forklift叉车trailer=long vehicle拖板车compound die合模die locker锁模器pressure plate=plate pinch压板bolt螺栓administration/general affairs dept总务部automatic screwdriver电动启子thickness gauge厚薄规gauge(or jig)治具power wire电源线buzzle蜂鸣器defective product label不良标签identifying sheet list标示单location地点present members出席人员subject主题conclusion结论decision items决议事项responsible department负责单位pre-fixed finishing date预定完成日approved by / checked by / prepared by核准/审核/承办PCE assembly production schedule sheet PCE组装厂生产排配表model机锺work order工令revision版次remark备注production control confirmation生产确认checked by初审approved by核准department部门stock age analysis sheet 库存货龄分析表on-hand inventory现有库存available material良品可使用obsolete material良品已呆滞to be inspected or reworked 待验或重工total合计cause description原因说明part number/ P/N 料号type形态item/group/class类别quality品质prepared by制表notes说明year-end physical inventory difference analysis sheet 年终盘点差异分析表physical inventory盘点数量physical count quantity帐面数量difference quantity差异量cause analysis原因分析raw materials原料materials物料finished product成品semi-finished product半成品packing materials包材good product/accepted goods/ accepted parts/good parts良品defective product/non-good parts不良品disposed goods处理品warehouse/hub仓库on way location在途仓oversea location海外仓spare parts physical inventory list备品盘点清单spare molds location模具备品仓skid/pallet栈板tox machine自铆机wire EDM线割EDM放电机coil stock卷料sheet stock片料tolerance工差score=groove压线cam block滑块pilot导正筒trim剪外边pierce剪内边drag form压锻差pocket for the punch head挂钩槽slug hole废料孔feature die公母模expansion dwg展开图radius半径shim(wedge)楔子torch-flame cut火焰切割set screw止付螺丝form block折刀stop pin定位销round pierce punch=die button圆冲子shape punch=die insert异形子stock locater block定位块under cut=scrap chopper清角active plate活动板baffle plate挡块cover plate盖板male die公模female die母模groove punch压线冲子air-cushion eject-rod气垫顶杆spring-box eject-plate弹簧箱顶板bushing block衬套insert 入块club car高尔夫球车capability能力parameter参数factor系数phosphate皮膜化成viscosity涂料粘度alkalidipping脱脂main manifold主集流脉bezel斜视规blanking穿落模dejecting顶固模demagnetization去磁;消磁high-speed transmission高速传递heat dissipation热传rack上料degrease脱脂rinse水洗alkaline etch龄咬desmut剥黑膜D.I. rinse纯水次Chromate铬酸处理Anodize阳性处理seal封孔revision版次part number/P/N料号good products良品scraped products报放心品defective products不良品finished products成品disposed products处理品barcode条码flow chart流程表单assembly组装stamping冲压molding成型spare parts=buffer备品coordinate座标dismantle the die折模auxiliary fuction辅助功能poly-line多义线heater band 加热片thermocouple热电偶sand blasting喷沙grit 砂砾derusting machine除锈机degate打浇口dryer烘干机induction感应induction light感应光response=reaction=interaction感应ram连杆edge finder巡边器concave凸convex凹short射料不足nick缺口speck瑕??shine亮班splay 银纹gas mark焦痕delamination起鳞cold slug冷块blush 导色gouge沟槽;凿槽satin texture段面咬花witness line证示线patent专利grit沙砾granule=peuet=grain细粒grit maker抽粒机cushion缓冲magnalium镁铝合金magnesium镁金metal plate钣金lathe车mill锉plane刨grind磨drill铝boring镗blinster气泡fillet镶;嵌边through-hole form通孔形式voller pin formality滚针形式cam driver铡楔shank摸柄crank shaft曲柄轴augular offset角度偏差velocity速度production tempo生产进度现状torque扭矩spline=the multiple keys花键quenching淬火tempering回火annealing退火carbonization碳化tungsten high speed steel钨高速的moly high speed steel钼高速的organic solvent有机溶剂bracket小磁导liaison联络单volatile挥发性resistance电阻ion离子titrator滴定仪beacon警示灯coolant冷却液crusher破碎机阿基米德蜗杆Archimedes worm安全系数safety factor; factor of safety安全载荷safe load凹面、凹度concavity扳手wrench板簧flat leaf spring半圆键woodruff key变形deformation摆杆oscillating bar摆动从动件oscillating follower摆动从动件凸轮机构cam with oscillating follower摆动导杆机构oscillating guide-bar mechanism摆线齿轮cycloidal gear摆线齿形cycloidal tooth profile摆线运动规律cycloidal motion摆线针轮cycloidal-pin wheel包角angle of contact保持架cage背对背安装back-to-back arrangement背锥back cone ;normal cone背锥角back angle背锥距back cone distance比例尺scale比热容specific heat capacity闭式链closed kinematic chain闭链机构closed chain mechanism臂部arm变频器frequency converters变频调速frequency control of motor speed变速speed change变速齿轮change gear change wheel变位齿轮modified gear变位系数modification coefficient标准齿轮standard gear标准直齿轮standard spur gear表面质量系数superficial mass factor表面传热系数surface coefficient of heat transfer表面粗糙度surface roughness并联式组合combination in parallel并联机构parallel mechanism并联组合机构parallel combined mechanism并行工程concurrent engineering并行设计concurred design, CD不平衡相位phase angle of unbalance不平衡imbalance (or unbalance)不平衡量amount of unbalance不完全齿轮机构intermittent gearing波发生器wave generator波数number of waves补偿compensation参数化设计parameterization design, PD 残余应力residual stress操纵及控制装置operation control device 槽轮Geneva wheel 槽轮机构Geneva mechanism ;Maltese cross槽数Geneva numerate槽凸轮groove cam侧隙backlash差动轮系differential gear train差动螺旋机构differential screw mechanism差速器differential常用机构conventional mechanism; mechanism in common use车床lathe承载量系数bearing capacity factor承载能力bearing capacity成对安装paired mounting尺寸系列dimension series齿槽tooth space齿槽宽spacewidth齿侧间隙backlash齿顶高addendum齿顶圆addendum circle齿根高dedendum齿根圆dedendum circle齿厚tooth thickness齿距circular pitch齿宽face width齿廓tooth profile齿廓曲线tooth curve齿轮gear齿轮变速箱speed-changing gear boxes齿轮齿条机构pinion and rack齿轮插刀pinion cutter; pinion-shaped shaper cutter齿轮滚刀hob ,hobbing cutter齿轮机构gear齿轮轮坯blank齿轮传动系pinion unit齿轮联轴器gear coupling齿条传动rack gear齿数tooth number齿数比gear ratio齿条rack齿条插刀rack cutter; rack-shaped shaper cutter齿形链、无声链silent chain齿形系数form factor齿式棘轮机构tooth ratchet mechanism插齿机gear shaper重合点coincident points重合度contact ratio冲床punch传动比transmission ratio, speed ratio传动装置gearing; transmission gear传动系统driven system传动角transmission angle传动轴transmission shaft串联式组合combination in series串联式组合机构series combined mechanism串级调速cascade speed control创新innovation creation创新设计creation design垂直载荷、法向载荷normal load唇形橡胶密封lip rubber seal磁流体轴承magnetic fluid bearing从动带轮driven pulley从动件driven link, follower从动件平底宽度width of flat-face从动件停歇follower dwell从动件运动规律follower motion从动轮driven gear粗线bold line粗牙螺纹coarse thread大齿轮gear wheel打包机packer打滑slipping带传动belt driving带轮belt pulley带式制动器band brake单列轴承single row bearing单向推力轴承single-direction thrust bearing单万向联轴节single universal joint单位矢量unit vector当量齿轮equivalent spur gear; virtual gear当量齿数equivalent teeth number; virtual number of teeth 当量摩擦系数equivalent coefficient of friction当量载荷equivalent load刀具cutter导数derivative倒角chamfer导热性conduction of heat导程lead导程角lead angle等加等减速运动规律parabolic motion; constant acceleration and deceleration motion等速运动规律uniform motion; constant velocity motion等径凸轮conjugate yoke radial cam等宽凸轮constant-breadth cam等效构件equivalent link等效力equivalent force等效力矩equivalent moment of force等效量equivalent等效质量equivalent mass等效转动惯量equivalent moment of inertia等效动力学模型dynamically equivalent model底座chassis低副lower pair点划线chain dotted line(疲劳)点蚀pitting垫圈gasket垫片密封gasket seal碟形弹簧belleville spring顶隙bottom clearance定轴轮系ordinary gear train; gear train with fixed axes动力学dynamics动密封kinematical seal动能dynamic energy动力粘度dynamic viscosity动力润滑dynamic lubrication动平衡dynamic balance动平衡机dynamic balancing machine动态特性dynamic characteristics动态分析设计dynamic analysis design动压力dynamic reaction动载荷dynamic load端面transverse plane端面参数transverse parameters端面齿距transverse circular pitch端面齿廓transverse tooth profile端面重合度transverse contact ratio端面模数transverse module端面压力角transverse pressure angle锻造forge对称循环应力symmetry circulating stress对心滚子从动件radial (or in-line ) roller follower对心直动从动件radial (or in-line ) translating follower对心移动从动件radial reciprocating follower对心曲柄滑块机构in-line slider-crank (or crank-slider) mechanism多列轴承multi-row bearing多楔带poly V-belt多项式运动规律polynomial motion多质量转子rotor with several masses惰轮idle gear额定寿命rating life额定载荷load ratingII 级杆组dyad发生线generating line发生面generating plane法面normal plane法面参数normal parameters法面齿距normal circular pitch法面模数normal module法面压力角normal pressure angle法向齿距normal pitch法向齿廓normal tooth profile法向直廓蜗杆straight sided normal worm 法向力normal force反馈式组合feedback combining反向运动学inverse ( or backward) kinematics反转法kinematic inversion反正切Arctan 范成法generating cutting仿形法form cutting方案设计、概念设计concept design, CD防振装置shockproof device飞轮flywheel飞轮矩moment of flywheel非标准齿轮nonstandard gear非接触式密封non-contact seal非周期性速度波动aperiodic speed fluctuation非圆齿轮non-circular gear粉末合金powder metallurgy分度线reference line; standard pitch line分度圆reference circle; standard (cutting) pitch circle分度圆柱导程角lead angle at reference cylinder分度圆柱螺旋角helix angle at reference cylinder分母denominator分子numerator分度圆锥reference cone; standard pitch cone分析法analytical method封闭差动轮系planetary differential复合铰链compound hinge复合式组合compound combining复合轮系compound (or combined) gear train复合平带compound flat belt复合应力combined stress复式螺旋机构Compound screw mechanism复杂机构complex mechanism杆组Assur group干涉interference刚度系数stiffness coefficient刚轮rigid circular spline钢丝软轴wire soft shaft刚体导引机构body guidance mechanism 刚性冲击rigid impulse (shock)刚性转子rigid rotor刚性轴承rigid bearing刚性联轴器rigid coupling高度系列height series高速带high speed belt高副higher pair格拉晓夫定理Grashoff`s law根切undercutting公称直径nominal diameter高度系列height series功work工况系数application factor工艺设计technological design工作循环图working cycle diagram工作机构operation mechanism工作载荷external loads工作空间working space工作应力working stress工作阻力effective resistance工作阻力矩effective resistance moment 公法线common normal line公共约束general constraint公制齿轮metric gears功率power功能分析设计function analyses design共轭齿廓conjugate profiles共轭凸轮conjugate cam构件link鼓风机blower固定构件fixed link; frame固体润滑剂solid lubricant关节型操作器jointed manipulator惯性力inertia force惯性力矩moment of inertia ,shaking moment惯性力平衡balance of shaking force惯性力完全平衡full balance of shaking force惯性力部分平衡partial balance of shaking force惯性主矩resultant moment of inertia惯性主失resultant vector of inertia冠轮crown gear广义机构generation mechanism广义坐标generalized coordinate轨迹生成path generation 轨迹发生器path generator滚刀hob滚道raceway滚动体rolling element滚动轴承rolling bearing滚动轴承代号rolling bearing identification code滚针needle roller滚针轴承needle roller bearing滚子roller滚子轴承roller bearing滚子半径radius of roller滚子从动件roller follower滚子链roller chain滚子链联轴器double roller chain coupling滚珠丝杆ball screw滚柱式单向超越离合器roller clutch过度切割undercutting函数发生器function generator函数生成function generation含油轴承oil bearing耗油量oil consumption耗油量系数oil consumption factor赫兹公式H. Hertz equation合成弯矩resultant bending moment合力resultant force合力矩resultant moment of force黑箱black box横坐标abscissa互换性齿轮interchangeable gears花键spline滑键、导键feather key滑动轴承sliding bearing滑动率sliding ratio滑块slider环面蜗杆toroid helicoids worm环形弹簧annular spring缓冲装置shocks; shock-absorber灰铸铁grey cast iron回程return回转体平衡balance of rotors混合轮系compound gear train积分integrate机电一体化系统设计mechanical-electrical integration system design机构mechanism机构分析analysis of mechanism机构平衡balance of mechanism机构学mechanism机构运动设计kinematic design of mechanism机构运动简图kinematic sketch of mechanism机构综合synthesis of mechanism机构组成constitution of mechanism机架frame, fixed link机架变换kinematic inversion机器machine机器人robot机器人操作器manipulator机器人学robotics技术过程technique process技术经济评价technical and economic evaluation技术系统technique system机械machinery机械创新设计mechanical creation design, MCD机械系统设计mechanical system design, MSD机械动力分析dynamic analysis of machinery机械动力设计dynamic design of machinery机械动力学dynamics of machinery机械的现代设计modern machine design机械系统mechanical system机械利益mechanical advantage机械平衡balance of machinery机械手manipulator机械设计machine design; mechanical design机械特性mechanical behavior机械调速mechanical speed governors机械效率mechanical efficiency机械原理theory of machines and mechanisms 机械运转不均匀系数coefficient of speed fluctuation机械无级变速mechanical stepless speed changes基础机构fundamental mechanism基本额定寿命basic rating life基于实例设计case-based design,CBD基圆base circle基圆半径radius of base circle基圆齿距base pitch基圆压力角pressure angle of base circle 基圆柱base cylinder基圆锥base cone急回机构quick-return mechanism急回特性quick-return characteristics急回系数advance-to return-time ratio急回运动quick-return motion棘轮ratchet棘轮机构ratchet mechanism棘爪pawl极限位置extreme (or limiting) position 极位夹角crank angle between extreme (or limiting) positions计算机辅助设计computer aided design, CAD计算机辅助制造computer aided manufacturing, CAM计算机集成制造系统computer integrated manufacturing system, CIMS计算力矩factored moment; calculation moment计算弯矩calculated bending moment加权系数weighting efficient加速度acceleration加速度分析acceleration analysis加速度曲线acceleration diagram尖点pointing; cusp尖底从动件knife-edge follower间隙backlash间歇运动机构intermittent motion mechanism减速比reduction ratio减速齿轮、减速装置reduction gear减速器speed reducer减摩性anti-friction quality渐开螺旋面involute helicoid渐开线involute渐开线齿廓involute profile渐开线齿轮involute gear渐开线发生线generating line of involute 渐开线方程involute equation渐开线函数involute function渐开线蜗杆involute worm渐开线压力角pressure angle of involute 渐开线花键involute spline简谐运动simple harmonic motion键key键槽keyway交变应力repeated stress交变载荷repeated fluctuating load交叉带传动cross-belt drive交错轴斜齿轮crossed helical gears胶合scoring角加速度angular acceleration角速度angular velocity角速比angular velocity ratio角接触球轴承angular contact ball bearing角接触推力轴承angular contact thrust bearing角接触向心轴承angular contact radial bearing角接触轴承angular contact bearing铰链、枢纽hinge校正平面correcting plane接触应力contact stress接触式密封contact seal阶梯轴multi-diameter shaft结构structure结构设计structural design截面section节点pitch point节距circular pitch; pitch of teeth节线pitch line节圆pitch circle节圆齿厚thickness on pitch circle节圆直径pitch diameter节圆锥pitch cone 节圆锥角pitch cone angle解析设计analytical design紧边tight-side紧固件fastener径节diametral pitch径向radial direction径向当量动载荷dynamic equivalent radial load径向当量静载荷static equivalent radial load径向基本额定动载荷basic dynamic radial load rating径向基本额定静载荷basic static radial load tating径向接触轴承radial contact bearing径向平面radial plane径向游隙radial internal clearance径向载荷radial load径向载荷系数radial load factor径向间隙clearance静力static force静平衡static balance静载荷static load静密封static seal局部自由度passive degree of freedom矩阵matrix矩形螺纹square threaded form锯齿形螺纹buttress thread form矩形牙嵌式离合器square-jaw positive-contact clutch绝对尺寸系数absolute dimensional factor绝对运动absolute motion绝对速度absolute velocity均衡装置load balancing mechanism抗压强度compression strength开口传动open-belt drive开式链open kinematic chain开链机构open chain mechanism可靠度degree of reliability可靠性reliability可靠性设计reliability design, RD空气弹簧air spring空间机构spatial mechanism空间连杆机构spatial linkage空间凸轮机构spatial cam空间运动副spatial kinematic pair空间运动链spatial kinematic chain空转idle宽度系列width series框图block diagram雷诺方程Reynolds‘s equation离心力centrifugal force离心应力centrifugal stress离合器clutch离心密封centrifugal seal理论廓线pitch curve理论啮合线theoretical line of action隶属度membership力force力多边形force polygon力封闭型凸轮机构force-drive (or force-closed) cam mechanism力矩moment力平衡equilibrium力偶couple力偶矩moment of couple连杆connecting rod, coupler连杆机构linkage连杆曲线coupler-curve连心线line of centers链chain链传动装置chain gearing链轮sprocket sprocket-wheel sprocket gear chain wheel联组V 带tight-up V belt联轴器coupling shaft coupling两维凸轮two-dimensional cam临界转速critical speed六杆机构six-bar linkage龙门刨床double Haas planer轮坯blank轮系gear train螺杆screw螺距thread pitch螺母screw nut螺旋锥齿轮helical bevel gear螺钉screws 螺栓bolts螺纹导程lead螺纹效率screw efficiency螺旋传动power screw螺旋密封spiral seal螺纹thread (of a screw)螺旋副helical pair螺旋机构screw mechanism螺旋角helix angle螺旋线helix ,helical line绿色设计green design design for environment马耳他机构Geneva wheel Geneva gear 马耳他十字Maltese cross脉动无级变速pulsating stepless speed changes脉动循环应力fluctuating circulating stress脉动载荷fluctuating load铆钉rivet迷宫密封labyrinth seal密封seal密封带seal belt密封胶seal gum密封元件potted component密封装置sealing arrangement面对面安装face-to-face arrangement面向产品生命周期设计design for product`s life cycle, DPLC名义应力、公称应力nominal stress模块化设计modular design, MD模块式传动系统modular system模幅箱morphology box模糊集fuzzy set模糊评价fuzzy evaluation模数module摩擦friction摩擦角friction angle摩擦力friction force摩擦学设计tribology design, TD摩擦阻力frictional resistance摩擦力矩friction moment摩擦系数coefficient of friction摩擦圆friction circle磨损abrasion wear; scratching末端执行器end-effector目标函数objective function耐腐蚀性corrosion resistance耐磨性wear resistance挠性机构mechanism with flexible elements挠性转子flexible rotor内齿轮internal gear内齿圈ring gear内力internal force内圈inner ring能量energy能量指示图viscosity逆时针counterclockwise (or anticlockwise)啮出engaging-out啮合engagement, mesh, gearing啮合点contact points啮合角working pressure angle啮合线line of action啮合线长度length of line of action啮入engaging-in牛头刨床shaper凝固点freezing point; solidifying point 扭转应力torsion stress扭矩moment of torque扭簧helical torsion spring诺模图NomogramO 形密封圈密封O ring seal盘形凸轮disk cam盘形转子disk-like rotor抛物线运动parabolic motion疲劳极限fatigue limit疲劳强度fatigue strength偏置式offset偏( 心) 距offset distance偏心率eccentricity ratio偏心质量eccentric mass偏距圆offset circle偏心盘eccentric偏置滚子从动件offset roller follower偏置尖底从动件offset knife-edge follower 偏置曲柄滑块机构offset slider-crank mechanism拼接matching评价与决策evaluation and decision频率frequency平带flat belt平带传动flat belt driving平底从动件flat-face follower平底宽度face width平分线bisector平均应力average stress平均中径mean screw diameter平均速度average velocity平衡balance平衡机balancing machine平衡品质balancing quality平衡平面correcting plane平衡质量balancing mass平衡重counterweight平衡转速balancing speed平面副planar pair, flat pair平面机构planar mechanism平面运动副planar kinematic pair平面连杆机构planar linkage平面凸轮planar cam平面凸轮机构planar cam mechanism平面轴斜齿轮parallel helical gears普通平键parallel key其他常用机构other mechanism in common use起动阶段starting period启动力矩starting torque气动机构pneumatic mechanism奇异位置singular position起始啮合点initial contact , beginning of contact气体轴承gas bearing千斤顶jack嵌入键sunk key强迫振动forced vibration切齿深度depth of cut曲柄crank曲柄存在条件Grashoff`s law曲柄导杆机构crank shaper (guide-bar)mechanism曲柄滑块机构slider-crank (or crank-slider) mechanism曲柄摇杆机构crank-rocker mechanism曲齿锥齿轮spiral bevel gear曲率curvature曲率半径radius of curvature曲面从动件curved-shoe follower曲线拼接curve matching曲线运动curvilinear motion曲轴crank shaft驱动力driving force驱动力矩driving moment (torque)全齿高whole depth权重集weight sets球ball球面滚子convex roller球轴承ball bearing球面副spheric pair球面渐开线spherical involute球面运动spherical motion球销副sphere-pin pair球坐标操作器polar coordinate manipulator燃点spontaneous ignition热平衡heat balance; thermal equilibrium人字齿轮herringbone gear冗余自由度redundant degree of freedom 柔轮flexspline柔性冲击flexible impulse; soft shock柔性制造系统flexible manufacturing system; FMS柔性自动化flexible automation润滑油膜lubricant film润滑装置lubrication device润滑lubrication润滑剂lubricant三角形花键serration spline三角形螺纹V thread screw三维凸轮three-dimensional cam三心定理Kennedy`s theorem砂轮越程槽grinding wheel groove砂漏hour-glass 少齿差行星传动planetary drive with small teeth difference设计方法学design methodology设计变量design variable设计约束design constraints深沟球轴承deep groove ball bearing生产阻力productive resistance升程rise升距lift实际廓线cam profile十字滑块联轴器double slider coupling; Oldham‘s coupling矢量vector输出功output work输出构件output link输出机构output mechanism输出力矩output torque输出轴output shaft输入构件input link数学模型mathematic model实际啮合线actual line of action双滑块机构double-slider mechanism, ellipsograph双曲柄机构double crank mechanism双曲面齿轮hyperboloid gear双头螺柱studs双万向联轴节constant-velocity (or double) universal joint双摇杆机构double rocker mechanism双转块机构Oldham coupling双列轴承double row bearing双向推力轴承double-direction thrust bearing松边slack-side顺时针clockwise瞬心instantaneous center死点dead point四杆机构four-bar linkage速度velocity速度不均匀( 波动) 系数coefficient of speed fluctuation速度波动speed fluctuation速度曲线velocity diagram速度瞬心instantaneous center of。
工厂常用英语翻译

工廠常用英語翻譯(機械、模具)总经理办公室General manager’s office 模具部Tooling department 项目部Project department品质部Quality department计划部 Plan department制造部Manufacture department产品部Keypad departmentIMD 产品部 IMD department五金部 Metal stamping department设计科 Design section冲压车间 Stamping workshop电镀车间 Plating workshop物控科 Production material control section 计划科 Plan section 仓务科 Warehouse section商务科 Business section品质规划科 quality plan sectionIQC科 IQC sectionIPQC科 IPQC sectionOQC科 OQC section检测中心 measurement center项目规划科 Project plan section项目XX科 Project section XX试模科 Mold test section成本科 Cost section设备科 Facility section采购科 Purchase section综合办 General affairs office 编程科 Programming section模具工程科 Tooling engineering section模具装配车间Mold assembly workshop文控中心 Document control center(DCC)注塑车间Injection workshop喷涂车间 Spray painting workshop装配车间Assembly workshop总经理General manager (GM)经理managerXX部门经理Manager of XX department原料库 Raw material warehouse半成品库 Semi-finished product warehouse成品库 Finished product warehouse科长 section chief 主任 chief 部门主管 department head主管, 线长supervisor组长Foreman, forelady秘书secretary文员clerk操作员operator助理assistant职员staff陶瓷ceramics合成纤维synthetic fibre电化学腐蚀electrochemical corrosion车架automotive chassis悬架suspension 转向器redirector 变速器speed changer 板料冲压sheet metal parts孔加工spot facing machining车间workshop工程技术人员engineer气动夹紧pneuma lock数学模型mathematical model画法几何descriptive geometry机械制图Mechanical drawing投影projection视图view 剖视图profile chart 标准件standard component零件图part drawing装配图assembly drawing尺寸标注size marking技术要求technical requirements刚度rigidity内力internal force位移displacement 截面section 疲劳极限fatigue limit 断裂fracture塑性变形plastic distortion 脆性材料brittleness material刚度准则rigidity criterion 垫圈washer垫片spacer直齿圆柱齿轮straight toothed spur gear斜齿圆柱齿轮helical-spur gear直齿锥齿轮straight bevel gear 运动简图kinematic sketch齿轮齿条pinion and rack蜗杆蜗轮worm and worm gear 虚约束passive constraint曲柄crank摇杆racker凸轮cams共轭曲线conjugate curve 范成法generation method 定义域definitional domain 值域range导数\\微分differential coefficient求导derivation 定积分definite integral不定积分indefinite integral曲率curvature偏微分partial differential毛坯rough游标卡尺slide caliper千分尺micrometer calipers 攻丝tap二阶行列式second order determinant逆矩阵inverse matrix线性方程组linear equations概率probability 随机变量random variable排列组合permutation and combination气体状态方程equation of state of gas 动能kinetic energy 势能potential energy机械能守恒conservation of mechanical energy 动量momentum 桁架truss轴线axes余子式cofactor逻辑电路logic circuit触发器flip-flop脉冲波形pulse shap数模digital analogy 液压传动机构fluid drive mechanism 机械零件mechanical parts淬火冷却quench淬火hardening 回火tempering调质hardening and tempering磨粒abrasive grain结合剂bonding agent砂轮grinding wheel。
普通车床尾座加工工艺与镗孔夹具设计说明书

摘要 (2)ABSTRACT (3)第一章前言 (4)第二章零件的工艺性分析 (5)2.1车床尾座零件概述 (5)2.2车床尾座零件的选材 (5)3.1零件的工艺分析 (6)3.2零件加工中的问题及其解决方案 (6)3.2.1车床尾座在加工过程中容易产生的问题 (6)3.2.2孔和平面的加工顺序 (6)3.2.3孔系加工方案选择 (7)3.3.车床尾座毛坯的确定 (7)3.3.1确定毛坯类型 (7)3.3.2毛坯余量和工序余量的确定 (8)3.4加工阶段的划分 (9)3.4.1何为加工阶段的划分 (9)3.4.2加工阶段划分的作用 (10)3.5车床尾座加工定位基准的选择 (11)3.6制定车床尾座加工方案即加工路线的确定 (11)3.7确定切削用量及基本工时(机动时间) (12)3.8时间定额计算 (21)第四章夹具设计 (25)4.1机床夹具叙述 (25)4.2定位方案确定 (25)4.3夹紧方案确定 (27)4.4定位误差计算 (30)4.4.1定位误差的概念 (30)4.4.2镗夹具定位误差计算 (30)4.5夹具原理及操作说明 (33)第五章结论 (34)参考文献 (35)致谢 (37)车床尾座类零件是普通车床中的重要零件,尾座的作用是用于轴类零件的定心,车加工中用到的顶尖、麻花钻头、铰刀等等刀具都是安装在车床尾座上的。
车床尾座的外形结构比较复杂,可以在车床上移动对工件进行加工;这次毕业设计课题可以分为两个部分,一个是车床尾座零件机械加工工艺规程设计,另一个为车床尾座加工专用机床夹具设计;本次设计分析了车床尾座的功用,根据平时学习的机械加工工艺方面的知识,确定解决了车床尾座零件在加工过程中的定位基准选择问题、定位夹紧问题以及安排加工工艺方面的问题,在制定加工工艺路线的过程中确定了工艺参数、毛坯加工余量、工序加工余量以及加工过程中需要的加工机床和刀具;本次毕业设计的设计路线主要如下:第一,首先绘制车床尾座的零件图;第二,初步拟定车床尾座的机械加工工艺路线;第三,根据零件图设计一套夹具,该夹具是数控加工侧面各孔专用夹具;第四,根据机械加工工艺路线编制机械加工工艺卡;第五,编制说明书一份。
变速箱的制造工艺流程

变速箱的制造工艺流程英文回答:Gearbox manufacturing process.The gearbox is a mechanical component that transmits power from the engine to the wheels. It is made up of a series of gears that mesh together to change the speed and direction of rotation. The gearbox is a critical component of the vehicle and must be manufactured to precise specifications.The gearbox manufacturing process typically involves the following steps:1. Design: The gearbox is designed using computer-aided design (CAD) software. The design must take into account the specific requirements of the vehicle, such as the engine power, torque, and speed.2. Casting: The gearbox housing is cast from aluminum or magnesium alloy. The casting process involves pouring molten metal into a mold and allowing it to solidify.3. Machining: The gearbox housing is machined to precise dimensions. The machining process involves using cutting tools to remove material from the casting.4. Heat treatment: The gearbox housing is heat treated to improve its strength and durability. The heat treatment process involves heating the casting to a high temperature and then cooling it slowly.5. Assembly: The gearbox is assembled by fitting the gears, bearings, and other components into the housing. The assembly process is carried out in a clean and controlled environment.6. Testing: The gearbox is tested to ensure that it meets the required specifications. The testing process involves running the gearbox at different speeds and loads.中文回答:变速器制造工艺流程。
发动机箱体的机械加工工艺及钻孔夹具设计

摘要本设计是汽车变速箱箱体零件的加工工艺规程及一些工序的专用夹具设计。
汽车变速箱箱体零件的主要加工表面是平面及孔系。
一般来说,保证平面的加工精度要比保证孔系的加工精度容易。
因此,本设计遵循先面后孔的原则。
并将孔与平面的加工明确划分成粗加工和精加工阶段以保证孔系加工精度。
基准选择以变速箱箱体的输入轴和输出轴的支承孔作为粗基准,以顶面与两个工艺孔作为精基准。
主要加工工序安排是先以支承孔系定位加工出顶平面,再以顶平面与支承孔系定位加工出工艺孔。
在后续工序中除个别工序外均用顶平面和工艺孔定位加工其他孔系与平面。
支承孔系的加工采用的是坐标法镗孔。
整个加工过程均选用组合机床。
夹具选用专用夹具,夹紧方式多选用气动夹紧,夹紧可靠,机构可以不必自锁。
因此生产效率较高。
适用于大批量、流水线上加工。
能够满足设计要求。
关键词:变速箱;加工工艺;专用夹具AbstractThe design is about the special-purpose clamping apparatus of the machining technology process and some working procedures of the car gearbox parts. The main machining surface of the car gearbox parts is the plane and a series of hole. Generally speaking, to guarantee the working accuracy of the plane is easier than to guarantee the hole’s. So the design follows the principle of plane first and hole second. And in order to guarantee the working accuracy of the series of hole, the machining of the hole and the plane is clearly divided into rough machining stage and finish machining stage. The supporting hole of the input bearing and output bearing is as the rough datum. And the top area and two technological holes are as the finish datum. The main process of machining technology is that first, the series of supporting hole fix and machine the top plane, and then the top plane and the series of supporting hole fix and machine technological hole. In the follow-up working procedure, all working procedures except several special ones fix and machine other series of hole and plane by using the top plane and technological hole. The machining way of the series of supporting hole is to bore hole by coordinate. The combination machine tool and special-purpose clamping apparatus are used in the whole machining process. The clampingway is to clamp by pneumatic and is very helpful. The instruction does not have to lock by itself. So the product efficiency is high. It is applicable for mass working and machining in assembly line. It can meet the design requirements.Key words: Gearbox; machining technology; special-purpose clamping apparatus目录摘要........................................................... I ABSTRACT ...................................................... I I 目录.......................................................... I V 第1章绪论 (1)1.1当前发展现状 (1)1.2 论文主要研究内容 (2)第2章发动机箱体工艺设计 (3)2.1箱体的分析 (3)2.1.1箱体的功用分析 (4)2.1.2箱体结构和功用的分析 (5)2.1.4箱体的技术分析 (6)2.1.5箱体的材料分析 (6)2.2发动机箱体毛坯的设计 (7)2.2.1确定毛坯种类及加工方法的选择 (7)2.2.2毛坯的工艺分析及要求 (8)2.2.3毛坯余量和公差的确定 (9)2.3工艺路线设计 (12)2.3.1加工方法的选择 (12)2.3.2箱体的材料及热处理 (12)2.3.3阶段的划分 (13)2.3.4工序的集中与分散 (13)2.3.5基准的选择 (14)2.3.6 拟定发动机箱体的工艺路线 (15)2.4 加工设备及工艺装备的选择 (17)2.5 加工工序设计 (19)第3章钻床专用夹具设计 (26)3.1夹具的设计内容 (26)3.1.1定位基准的选择 (26)3.1.2工件的夹紧及夹紧装置 (26)3.1.3夹具材料的选择 (30)3.1.4夹具精度分析 (28)3.2削边销 (26)3.3支承板 (26)3.4压板 (27)3.5夹具体中间支架 (28)3.6齿轮齿条偏心轮部分的设计 (26)3.7齿轮的设计 (27)3.8键的选择及校核............................. 错误!未定义书签。
汽车变速箱上盖的机械加工工艺规程及夹具设计

摘要汽车变速箱上盖是汽车变速箱的重要组成部分。
它与变速箱箱体装配,为变速箱内部的齿轮、轴等工作元件提供一个稳定安全的工作环境,防止内部零件在暴露环境下工作。
上盖上还设计了检查窗,是为了便于观查内部元件的工作情况。
本设计说明书是在毕业设计过程中撰写完成的,是对变速箱上盖加工工艺、工装设计的说明、分析和论证。
主要内容有:上盖的工艺规程制定、典型加工工序分析、专用夹具设计、专用刀具设计、专用量具设计。
通过这些我对变速箱上盖零件制造活动有一个总体的,全貌的了解与把握,能够掌握金属切削过程的基本规律,掌握机械加工的基本知识,能选择加工方法与机床,刀具,夹具及加工参数,具备制定工艺规程的能力和掌握机械加工精度和表面质量的基础,初步具备分析解决现场工艺问题的能力。
关键词:工艺;工装;夹具;刀具ABSTRACTMotor vehicle gearbox shelters is an important component of the gearbox. Box it and gearbox assembly, the internal gear for the transmission, axle components, and other work.It provide a stable and secure working environment to prevent exposure of internal components in the working environment. Also stamped on the design of the inspection windows, in order to facilitate the investigation of the internal components of the work.The design specification is in the process of writing graduate design completed, the gearbox cover processing technology, tooling design of the note, analysis and feasibility studies. Elements include: the superstructure of developing a point of order, the typical processing of special fixture design, special-purpose tool designed for measuring tool design.I passed these on the gearbox cover parts manufacturing activities have an overall, the understanding and grasp the full picture, metal-cutting process to be able to master the basic law, grasp the basic knowledge of mechanical processing, and processing methods can choose machine tools, cutting tools, fixtures and processing Parameters, with the development of protocols and the ability to master precision machining and surface quality of the foundation, a preliminary analysis of the scene to solve problems.Key words: Technology; Tooling; Fixture; Tool目录绪论 (1)1 机械加工工艺规程的制定 (2)1.1零件的工艺性分析 (2)1.1.1 零件的功用 (2)1.1.2 零件的结构特点与工艺性 (2)1.1.3 主要加工表面及其技术要求 (2)1.2确定生产类型 (2)1.3零件毛坯选择 (4)1.3.1 零件毛坯材料选择 (4)1.3.2 变速箱上盖的毛坯 (4)1.3.3 毛坯的制造方式 (4)1.4零件加工工艺规程的制定 (5)1.4.1 选择加工方法和加工方案 (5)1.4.2 定位基准的选择 (5)1.4.3 热处理及检验的选择与安排 (6)1.4.4 拟定工艺路线 (6)1.4.5 选择各工序加工机床设备及工艺装备 (8)1.4.6 确定各工序的工序尺寸、表面粗糙度及检验方法 (10)1.4.7 确定典型工序的切削用量及工序基本工时定额 (11)1.4.8 工艺过程的技术经济性分析 (15)2 夹具设计 (16)2.1铣床夹具的设计 (16)2.1.1 夹具功能简图和工作原理 (16)2.1.2 铣床夹具的定位方案设计 (17)2.1.3 铣床夹具的定位误差分析 (18)2.1.4 切削力与夹紧力的计算 (18)2.1.5 铣床夹具的夹紧装置与机构设计 (21)2.1.6 铣床夹具的动力装置设计 (23)2.2钻床夹具的设计 (24)2.2.1 钻床夹具的定位方案设计 (24)2.2.2 钻床夹具的定位误差分析 (25)2.2.3 钻削力与夹紧力的计算 (26)2.2.4 夹具的夹紧装置与机构设计 (30)2.2.5 钻床夹具的动力装置设计 (32)3 专用刀、量具设计 (33)3.1专用刀具设计. (33)3.1.1 钻铰复合刀具设计应考虑的问题 (33)3.1.2 钻铰复合刀具设计步骤及方法 (34)3.1.3 钻铰复合刀具结构尺寸图 (36)3.2专用量具设计 (37)3.2.1 量规工作尺寸的确定 (37)3.2.2 量规的技术要求 (39)3.2.3 量规的结构尺寸 (39)结论 (41)致谢 (42)参考文献 (43)附录A 英文文献 (44)附录B 中文翻译 (52)绪论制造业是国家发展与社会进步的基础,而汽车制造将是未来面对普通消费者的主要的机械制造产品,而随着国家的发展人民生活水平的提高,人们对汽车的需求和要求必定变的更多,所以我们有必要对汽车及汽车零件的设计与加工投入更多的精力。
机械专业外语_习题集(含答案)

《机械专业外语》课程习题集一、短文翻译(英译汉)1. The solution to most design problems does arise from a set of equations, instead it is a compromise to satisfy a number of design requirements and practical limitations such as available tooling and servicing ease. Designs are often revised to introduce new features, but as much as possible of the old design is retained for economic reasons. Producing a revised design is usually not as difficult as producing a new design because the history of the original is available for evaluation.2. When cutting screw threads, power is provided to the gearbox of the apron by the lead screw. In all other turning operations, it is feed rod that drives the carriage. The lead screw goes through a pair of half nuts, which are fixed to the rear of the apron. When actuating a certain lever, the half nuts are clamped together and engage with the rotating lead screw as a single nut, which is feed , together with the carriage along the bed.3.Generally, grinding is considered to be a finishing process that is usually used for obtaining high-dimensional accuracy and better surface finish. Grinding can be performed on flat, cylindrical, or even internal surfaces by employing specialized machine tools, which are referred to as grinding machines. Obviously, grinding machines differ in construction as well as capabilities, and the type to be employed is determined mainly by the geometrical shape and nature of the surface to be ground. -e.g. cylindrical surfaces are ground on cylindrical grinding machines.4. The dielectric serves to concentrate the discharge energy into a channel of very small crosssectional area. It also cools the two electrodes, and flushes away the products of machining from the gap. The electrical resistance of the dielectric influences the discharge spark energy and time of spark initiation .if the resistance is low , an early discharge spark occurs. If it is large the capacitor will attain a higher value charge before the discharge spark occurs.5. As we previously saw, CNC,DNC and computer-assisted part programming are different kinds of preplanned computerized control of machine tools. In all cases, the tool path has to be established beforehand through a program, the person who prepares the programs employs his or her experience in order to bring the processing time to minimum and not to cause any damage or distortion to the workpiece. This is, in many cases, a difficult problem that involves many factors, alternatives, and constraints. Obviously, this is exactly where an expert system is needed.6. Equipment productively is improved because of the better utilization of machines whenCIM is implemented. We can see that factors like program ability of equipment and computerized monitoring and control of the whole manufacturing facility would largely improve the efficiency of machine utilization. Higher labor and equipment productivity would certainly result in lower product cost.7. Where loads are due to contact, a pair of equal and opposite forces occur. One force acts as an external load on one contacting member. This action-reaction force pairing is one of the basic natural laws put to practical use by engineers. Tracing these power transmission forces through connected machine linkages is an extremely useful visualization aid for identifying machine component loads.8. Element design is concerned with the proper sizing of machine elements to perform a given function at some stated life criterion. Mechanical designers must also be familiar with properties of materials and machining processes to achieve optimal design. In addition, designers must always contend with the question of cost. The watchword should be simplicity, since a simple device is usually the least expensive.9. The tailstock assembly consists basically of three parts, its lower base, an intermediate part, and the quill. The lower base is a casting that can slide on the lathe bed along the guideways, and it has a clamping device to enable locking the entire tailstock at any desired location, depending upon the length of the workpiece. The intermediate part is a casting that can be moved transversely to enable alignment of the axis of the tailstock with that of the headstock.10. Internal grinding is employed for grinding relatively short holed. The workpiece is held in a chuck or a special fixture. Both the grinding wheel and the workpiece rotate during the operation and feed is applied in the longitudinal direction. Any desired depth of cut can be obtained by the cross feed of the grinding wheel. A variation from this type is planetary internal grinding, which is recommended for heavy workpieces that cannot be held in chucks. In the case, the grinding wheel not only spins around its own axis but also rotates around the centerline of the hole that is being ground.11. The intelligent robot has always been the dream of manufacturing engineers, in order to make the automated factory of the future attainable. It is artificial intelligence that will make that dream come true. By definition, an intelligent robot is one that is able to think, sense, and effect, so that it can cope with a changing environment and learn from experience. Since thinking is a brain function, it is obvious that it would fall within the domain of artificial intelligence if it is to be performed by a computer. An integration between sensing, reasoning, and effecting would unify artificial intelligence and robots, with the final outcome an intelligent robot.12. In recent years, there has been a dramatic increase in the range of media used to convey information. Initially, communication was limited to simple forms of media such as voice and paper. This century, however, has witnessed the introduction of a greater variety of media types such as the telephone and visual forms of media. In the latter part of the century,this trend has accelerated and there is now a wide range of media types available to convey information.13. It is well known that a hot plate of metal will cool faster when placed in front of a fan than when exposed to still air. We say that the heat is convected away and we call the process convection heat transfer. Convection is a much simpler physical process than conduction since it merely consists of the actual motion of a volume of hot fluid from one place to another.14.Around the turn of the twentieth century the steam turbine came into use. Steam turbines are very efficient. They can utilize almost 40 percent of the energy supplied to them. They are three times as efficient as reciprocating engines. Steam turbines power many of the world's ships and the majority of the world's electricity generating stations.15. Most small i.C.engines in common use has four cylinders, which fire in a definite and regular sequence. A flywheel is fitted to the crankshaft to keep it running smoothly. It is essential for the inlet and exhaust valves to open and close at exactly the appropriate moment in relation to the position of the piston. Therefore they are actuated by a cam-shaft running in phase with the crankshaft.16. The alternative to forming method is machining. In machining, a sharpened tool of suitable shape removes material in the form of chips until the desired shape is produced. The use of computer and punched-tape control of machine tools makes it possible forthe machining tool to follow any complex three-dimensional path.17. Perhaps because more high-strength, hard, tough, and exotic materials are used, there isa tendency to use chipless machining despite the progress just noted. There is a trend to reduce the amount of metal that needs to be removed. Often chipless machining is more expensive, but the reduced loss of material results in a saving. The increased use of metal forming, forging, rolling, die-casting and other processes illustrates this trend.18.For the semi-mechanized forging of small to medium-sized components, forging hammers powered by various means are employed. The feature common to all of them is that, like the hand forging hammer, they utilize the energy of a falling weight to develop the pressure needed for shaping the metal. Larger components are forged by means of forging presses operated by steam or compressed air or by hydraulic or electric power. Largely automatic forging machines are used for the quantity production of engineering parts.19. As we know, these are the main tasks of an engineer: to explore new ways, invent new solutions to problems, and design new devices. In the research stage of a project, the engineer usually has found a new way of doing a job and is analyzing it (using mathematics and computers) to see how feasible the idea is and how well it will work. The development stage then follows. Here the idea is carried out in the laboratory. The processes vary among different projects, but the basic point is the same: Turn the idea into a working reality.20.The fact that steel can possess a wide range of useful mechanical properties is of extreme economic importance. This is clearly illustrated in the railroad industry, forex-ample. To move a train from one place to another, we use a locomotive which has the ability to pull a given total load. This load is composed of the weight of the cars and the weight of the freight being transported. If a freight car is made of high strength steel, the structural members can be relatively small and the car will be lighter as well as stronger. This means that the amount of freight can be increased.21.The simplest method of welding two pieces of metal together is known as pressure welding. The ends of metal are heated to a white heat— for iron, the welding temperature should be about 13000C—in a flame, At this temperature the metal becomes plastic. The ends are then pressed or hammered together, and the joint is smoothed off. Care must be taken to ensure that the surfaces are thoroughly clean first, for dirt will weaken the weld. Moreover, the heating of iron or steel to a high temperature causes oxidation, and a film of oxide is formed on the heated surfaces.22. The design of a machine includes many factors other than those of determining the loads and stresses and selecting the proper materials. Before construction or manufacture can begin, it is necessary to have complete assembly and detail drawings to convey all necessary information to the shop men. The designer frequently is called upon to check the drawings before they are sent to the shop. Much experience and familiarity with manufacturing processes are needed before one can become conversant with all phases of production drawings.23. Flat pulleys and belts. This is the oldest and simplest type of pulley and belt. The pulley may be a single pulley, or it may have three or four different diameters. A one-piece pulley having three or four diameters is called a cone pulley. Actually the pulleys are not flat. They are tapered slightly so that the diameter of the pulley is a little larger at its center. We call this a crowned pulley. The pulley is made larger in diameter at the center because a flat belt will always climb to the highest part of a pulley. The crown ensures that the belt will run in the center of the pulley.24.Of course, materials have always been vital to human civilization. Three of humanity’s earliest eras are called the Stone Age, the Bronze Age, and the Iron Age, because the civilization of each was almost entirely dependent on the material after which the era was named. But now, in the twentieth century, materials-not just one, but many-have become a most important factor on which the advance of technology and industry depends. Our progress in space, in electronics, and in atomic energy is directly linked to the solution of crucial materials problems.25.The purpose of the design calculations is of course to attempt to predict the stress or deformation if the part in order that it may safely carry the loads which will be imposed upon it, and that it may last for the expected life of the machine. All calculations are, of course, dependent on the physical properties of the construction materials as determined by laboratory tests. A rational method of design attempts to take the results of relatively simple and fundamental tests and apply them to all the complicated and involved situations encountered in present-day machinery.二、按要求翻译下列句子(略)……答案1.对大多数设计问题的解决并不是来源于一组公式,而是受制于要满足很多设计要求和实际限制诸如可用的工具或使用的舒适性。
-变速箱体加工工艺及夹具毕业设计论文

高等教育自学考试本科毕业论文变速箱体加工工艺及夹具设计考生姓名:准考证号: 5专业层次:本科院(系)机械与动力工程指导教师:职称:讲师重庆科技学院二O一二年一月十五日高等教育自学考试本科毕业论文变速箱体加工工艺及夹具设计考生姓名:准考证号:专业层次:指导教师:院(系):机械与动力工程重庆科技学院二O一二年一月十五日摘要在生产过程中,使生产对象(原材料,毛坯,零件或总成等)的质和量的状态发生直接变化的过程叫工艺过程,如毛坯制造,机械加工,热处理,装配等都称之为工艺过程。
在制定工艺过程中,要确定各工序的安装工位和该工序需要的工步,加工该工序的机车及机床的进给量,切削深度,主轴转速和切削速度,该工序的夹具,刀具及量具,还有走刀次数和走刀长度,最后计算该工序的基本时间,辅助时间和工作地服务时间。
变速箱主要是加工表面和轴孔,此外轴孔加工不但要达到孔本身的尺寸精度要求,还要保证与其他轴孔的相互位置精度。
另外变速箱体里还装有轴承、齿轮、差速器等组件,这些零件盒组件的装配精度在很大程度上取决于箱体本身的精度。
箱体的加工质量还会影响到传动性。
夹具是机床的重要组成部件是根据机床的工艺和结构方案的具体要求而设计的。
它是用于实现被加工零件的准确定位,夹压,刀具的导向,以及装卸工件时限位等等作用的。
车床夹具一般都是在悬臂状态下工作的,为保证加工过程的稳定性;夹具结构应力求简单紧凑,轻便且安全,悬伸长度尽量小,使重心靠近主轴前支承。
为保证安全,夹具体应制成圆形,加具体上的各元件不允许伸出夹具体直径之外。
此外,夹具的结构还应便于工件的安装、测量和切屑的顺利排出或清理。
关键词:工序,工位,工步,加工余量,定位方案,夹紧力,稳定性,安装,排出,清理,轴孔,精度ABSTRACTEnable producing the target in process of production (raw materials, the blank , state of quality and quantity on part become always ) take place direct course of change ask craft course, if the blank is made, machining, heat treatment , assemble etc. and call it the craft course. In the course of making the craft , is it confirm every erector location and worker step that process need this of process to want, the locomotive of processing , this process , and the entering the giving amount of the lathe, cut depth , the rotational speed of the main shaft and speed of cutting, the jig of this process, the cutter and measuring tool, a one hundred sheets of number of times still leaves and a one hundred sheets of length leaves, calculate basic time of this process , auxiliary time and service time of place of working finally.The gearbox is the main processing surface and the shaft hole, in addition the shaft hole processing must not only reach the hole itself dimension precision requirement, guarantee and other shaft hole position accuracy. In addition the gearbox also provided with bearings, gear, gear and other components, these components box component assembly precision depends to a great extent on the accuracy of the housing itself. The processing quality of the tank will affect the transmission of.The fixture is an important part of the machine is based on the machine tool technology and structure of the programme 's specific requirements and design. It is used for the processing of parts of the accurate positioning, clamping, cutting guide, as well as the workpiece handling limit and so on the function of. Lathe fixture is generally in cantilever state work, in order to ensure the stability of machining process; fixture structure should be simple and compact structure, portability, safety, extended length as small as possible, so that the center of gravity is close to the spindle front bearing. To ensure safety, the jig body should be made into a circular, with specific on each element is not allowed to extend beyond the clamp diameter. In addition, the fixture structure should also facilitate workpiece installation, measurement and the chip is smoothly drained or cleaning.Keyword: Process, position, the step, the surplus of processing, positioning, clamping force, stability, installation, removal,cleaning,the shaft hole, precision目录中文摘要 (I)英文摘要 (II)1 绪论 (1)2 零件工艺的分析 (3)2.1零件的工艺分析 (3)2.2确定毛坯的制造形式 (3)2.3箱体零件的结构工艺性 (3)3 拟定箱体加工的工艺路线 (5)3.1定位基准的选择 (5)3.1.1精基准的选择 (5)3.1.2基准的选择 (5)3.2加工路线的拟定 (5)4 加工余量、工序尺寸及毛坯尺寸的确定 (9)4.1箱盖、箱体 (9)4.1.1 毛坯的外廓尺寸 (9)4.1.2 主要平面加工的工序尺寸及加工余量 (9)4.1.3 主要平面加工的工序尺寸及加工余量 (9)5 确定切削用量及基本工时 (10)5.1 箱盖 (10)5.1.1 粗铣顶面 (10)5.1.2粗粗铣结合面 (10)5.1.3磨分割面 (11)5.1.4 钻孔 (12)5.2 机座 (15)5.2.1 粗铣箱体下平面 (15)5.2.2 粗铣箱体分割面 (16)5.2.3 磨箱体分割面 (16)5.2.4 钻孔 (17)5.2.5 钻孔 (20)5.2.6 钻孔 (21)5.3 机体 (23)5.3.1 钻、铰2个孔 (23)5.3.2 半精铣前后端面 (24)5.3.3 半精铣左右端面 (25)5.3.4 精前后铣端面 (26)5.3.5 精前后铣端面 (27)5.3.6 粗镗 (28)5.3.7 粗镗 (28)5.3.8 半精镗 (29)5.3.9 半精镗 (30)5.3.10 精镗 (30)5.3.11 精镗 (31)5.3.12 钻螺纹孔 (32)5.3.13 钻孔 (33)5.3.14 锪孔 (34)6专用夹具的设计 (35)6.1 夹具设计 (35)6.2 粗铣前后端面夹具设计 (36)6.2.1 定位基准的选择 (37)6.2.3 定位误差分析 (38)6.2.4 铣削力与夹紧力计算 (38)6.2.5 夹紧装置及夹具体设计 (39)6.2.6 夹具设计及操作的简要说明 (40)7 结论 (41)致谢 (42)参考文献 (43)1 绪论箱体零件是机器或部件的基础零件,它把有关零件联结成一个整体,使这些零件保持正确的相对位置,彼此能协调地工作。
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本科毕业设计(论文)(外文翻译)题目75拖拉机变速箱壳体机械加工工艺规程设计学生姓名XXXXXX 专业班级机械设计制造及其自动化(本科二班)学号200933080 院(系)机械工程学院指导教师(职称) XXXXXX郑州科技学院机械工程系二○一三年五月十八日Gearbox shell machining process design《Manufacturing Engineering and Technology—Machining》Mechanical Industry Press In March 2004, version 1 p560—564(Serope kalpakjian)(Steven R.Schmid)AbstractGearbox shell is a more complex structure of spare parts box, its high precision, complex process, and the processing quality will affect the overall performance engine, so it has become the engine manufacturer's focus parts one.Machining process planning must guarantee the machining quality of parts, to meet the technical requirements stipulated in drawings, at the same time should also have high productivity and efficiency. Therefore, machining process planning design is an important work, requires designers must have a rich experience in production practice and wide range of mechanical manufacturing technology basic theory knowledge. In the specified procedure, should according to the production of parts and the existing equipment conditions, taking the processing quality into account, productivity and economy requirements, after repeated analysis and comparison, to determine the optimal or the best solution.1.Technical Characteristics of the gearbox shellThe gearbox shell process features are: the structure of complex shape; processing plane, more than holes; uneven wall thickness and stiffness is low; processing of high precision typical of box-type processing part. The main processing of the surface of cylinder block top surface, the main bearing side, cylinder bore, the main andcamshaft bearing bore holes and so on, they will directly affect the machiningaccuracy of the engine assembly precision and performance, mainly rely on precision equipment, industrial fixtures reliability and processing technology to ensure the reasonableness.2.The gearbox shell process design principles and the basis Design Technology program should be to ensure product quality at the same time, give full consideration to the production cycle, cost and environmental protection; based on the enterprises ability to actively adopt advanced process technology and equipment, and constantly enhance their level of technology. Gearbox shell machining process design should follow the following basic principles:2.1 The selection of processing equipmentThe principle of selection adopted the principle of selection adopted the principle of combining rigid-flexible, processing each horizontal machining center is located mainly small operations with vertical machining center, the key process a crank hole, cylinder hole, balancer shaft hole High-speed processing of high-precision horizontal machining center, an upper and lower non-critical processes before and after the four-dimensional high-efficiency rough milling and have a certain adjustment range of special machine processing;2.2 Concentration process principleFocus on a key process in principle process the body cylinder bore, crankshaft hole, Balance Shaft hole surface finishing and the combination of precision milling cylinder head, using a process focused on a setup program to complete all processing elements in order to ensure product accuracy The key quality processes to meet the cylinder capacity and the relevant technical requirements;3.The gearbox shell machining process design the main contentGearbox shell complex structure, high precision, arge size, is thin-walled parts, there are a number of high precision plane and holes. Engine block machining processcharacteristics; mainly flat and the hole processing, processing of flat generally use planing, milling methods such as processing, processing of hole used mainly boring, processing and multi-purpose drilling holes. As the cylinder complex structure. so how to ensure that the mutual position of the surface processing precision is an important issue.3.1 The selection of blankGearbox shell on the materials used are generally gray cast iron HT150,HT200,HT250,there is also cast aluminum or steel plate, this engine block using high-strength alloy cast iron. Cylinder in the processing prior to aging treatment in order to eliminate stress and improve the rough casting mechanical properties.Improve the rough accuracy, reduction of machining allowance, is to improve the automated production line system productivity and processing quality of the important measures. As the foreign box-type parts of rough quality and high precision, and its production-line system has been implemented directly on the blank line, not only eliminating the need for blank check device also saves the rough quality problems due to waste of machining time, increase overall efficiency. Therefore, the refinement of rough is to improve the productivity of the most promising way out. For the engine block production line, can be rough in parts on-line pre-milling six face, removing most of the margin, to facilitate direct on-line parts.3.2 Machining process selection and processing of the benchmarkChoose the right processing technology base is directly related to the processing quality can ensure the parts. Generally speaking, process benchmarking can be divided into coarse and fine reference base.3.2.1 Coarse reference baseThe baseline for the on-line thick rough ,which is particularly important the choice of benchmark crude, if crude benchmark choice unreasonable, will the uneven distribution of machining allowance, processing and surface offsets, resulting in waste.In the cylinder production line, we have adopted for the coarse side of the base;3.2.2 Fine reference baseRefined the base of this box for the engine block parts, the general use of "side two sales "for a full range of uniform benchmarks, For the longer automated production positioning. In the gearbox shell of the process, we have adopted to the side, bottom and the spindle hole positioning, in the processing center on the process.3.3 Machining Processing Stages and processes of the arrangementsOften a part of many apparent need for processing, of course, the surface machining accuracy are different. Processing of high precision surface, often after repeated processing; As for the processing of the surface of low precision, only need to go throughone or two on the list. Thus, when the development process in order to seize the "processing high precision surface, "this conflict, the reasonable arrangement processes and rational division stage of processing. Arrange the order of the principle of process is: after the first coarse refined, the first surface after the hole, the first benchmark other. In the engine block machining, the same should follow this principle.3.3.1 roughing stage engine block machining processThe arrangements for roughing process, to fully carry out rough rough, trim most of the margin in order to ensure production efficiency;3.3.2 semi-finishing phase of the engine block machiningIn order to ensure the accuracy of the middle of some important surface processing, and arrange some semi-finishing operations, will be required accuracy and surface roughness of the surface of the middle of some processing to complete, while demanding the surface of semi-finished, to prepare for future finishing;3.3.3 The finishing stageThe finishing stage of requiring high accuracy and surface roughness of the surface processing;3.3.4 secondary processingSecondary processing such as small surface screw holes, you can finish of the major surface after the one hand, when the workpiece deformation process little impact at the same time also reduced the rejection rate;In addition,if the main surface of a waste,these small the surface will not have to be processed,thus avoiding a waste of man-hours.However,if the processing is very easy for a small surface bumps the main surface,it should be placed on a small surface finish prior to the main surface finishing;3.3.5 make proper arrangements for secondary processesMake proper arrangements for secondary processes such as product inspection process,in part roughing stage,the key process before and after processing,spare parts all the processing has been completed,should be appropriate arrangements.Stage of processing division,has the following advantages:First,it can take measures to eliminate the rough workpiece after the stress,to ensure accuracy; second,finishing on the back,and will not damage during transport the surface of the workpiece has been processed;again,first roughing the surface defects can be detected early and promptlydeal with rough,do not waste working hours.But most small parts,do not sub very thin.3.4 The gearbox shell surface of the main processing and secondary processes3.4.1 Plane processingPlane processing at present, the milling of engine blocks is the primary means of planar processing,domestic milling feed rate is generally 300-400mm/min,and foreign 2000-4000mm/min milling feed rate compared to far cry,to be on increasing,therefore,improve the milling feed rate,reduce overhead time is to improve the productivity of the major means of finishing a number of plane engine block when the milling feed rate to reach 2399mm/min,greatly improved efficiency;Top surface of the cylinder milling is a key process in the process,the flatnessrequirements for 0.02/145mm,the surface roughness of Ra1.6um.Processing in the cylinder,the use of side and spindle bearing bore positioning,top,bottom and middle vagay only aperture while processing used in the processing line outside of the knife device can better meet the engine block machining accuracy;3.4.2 General holes MachiningGeneral holes Machining holes in general are still using the traditional processing of drilling,expansion,boring,reaming,tapping and other craft approach. Issues in the design process of specific programs,use of coated cutting tools,cutting tools and other advanced tools within the cooling,and using a large flow of cooling systems,greatly improving the cutting speed,improved productivity;3.4.3 Deep hole processingDeep hole processing of the traditional processing method is used to grade twist drill feed,low efficiency of their production,processing and quality is poor.The deep hole in the engine block processing,the use of gun drilling process;3.4.4 CleaningCleaning is divided into wet cleaning and dry cleaning.Machining cylinder automatic production line using a large flow of wet cleaning;3.4.5 DetectionDetect points outside the line detection and line detection of two kinds. Quality inspection in the engine block,according to the actual situation with lines outside the detection,the main use of coordinate measuring machine integrated measurements of the cylinder,each 200 samples 1-5 pieces,each class random one.变速箱壳体机械加工工艺设计摘自:《机械工程与技术(机加工)》(英文版)机械工业出版社2004年3月第1版p560—564美s. 卡卡尔帕基安s.r 施密德摘要变速箱壳体是变速器机零件中结构较为复杂的箱体零件,其精度要求高,加工工艺复杂,并且加工加工质量的好坏直接影响发动机整个机构的性能,因此,它成为各个发动机生产厂家所关注的重点零件之一。