输出轴(CA6140车床)加工工艺及夹具设计[外文翻译 文献综述 开题报告]
CA6140车床主轴工艺及夹具设计

摘要在机械领域中,车床是应用最为广泛、使用最为频繁的一种机床,特别是CA6140车床,它的应用非常的普遍。
所以它的加工精度就极其的重要,工件能否达到加工要求就取决于车床本身的精度,而决定CA6140车床加工质量的就是它的主轴。
CA6140车床主轴是把旋转运动及扭矩通过主轴端部的夹具传递给工件和刀具,要求有很高的强度及回转精度。
我在本设计中将主轴设计为空心阶梯轴,外圆表面设有花键、垫键等功能槽及螺纹。
本文设计详细计算了加工余量、切削用量、尺寸公差并阐述了CA6140主轴的加工工艺过程以及生产中所涉及的重要夹具设计方法。
经设计的CA6140主轴较其传统的车床主轴有更高的强度和回转精度。
关键词:车床;主轴;旋转运动;公差;夹具ABSTRACTIn machinery field, the lather is the most extensively and frequently used machine. Easpecially the CA6140 lather, its application is very widespread. So its processing accuracy is very important. Whether the work piece can reach the accuracy required is decided by the lather. While, the part deciding the processing quality of CA6140 lather is its mainshaft. The mainshaft of the CA6140 lather is to transmit the rovolve motion and the torque to the workpiece and cutting-tool through the fixture on the end of mainshaft, in which high strengh and rotating accuracy are required .In this design, my job contains the things as below. Mainshaft is a hollow stepped shaft. There are functional slots and thread, such as spline, pad key and so on. In the paper, allowance, cutting consumption and tolerance are calculated. Also elaborates the craft processes of the mainshaft of CA6140 lather, and the design of important fixture. After being designed, compared with traditional lather, the strength and rotating accuracy are enhanced.Key words: Lather; Mainshaft; Rotating Movement; Tolerance; Fixture目录摘要 (I)Abstract (II)第1章绪论 (1)1.1 概述 (1)1.2车床的发展史 (1)1.3本课题研究的内容和设计思想 (1)第2章零件的分析 (4)2.1零件的作用 (4)2.1.1支承轴颈 (4)2.1.2头部锥孔 (4)2.1.3头部短锥 (4)2.1.4装配轴颈 (4)2.1.5轴向锁紧 (5)2.2零件的工艺分析 (5)2.2.1加工阶段的划分 (5)2.1.3工序顺序安排 (5)2.1.4主轴锥孔的磨削 (6)2.3 本章小结 (5)第3章工艺规程的设计 (7)3.1主轴的材料、毛坯与热处理 (7)3.1.1主轴的毛坯 (7)3.1.2主轴的材料和热处理 (7)3.2主轴加工工艺过程 (8)3.2.1主轴加工的主要问题和工艺过程设计所应采取的相应措施 (8)3.2.2主轴加工定位基准的选择 (9)3.2.3主轴主要加工表面加工工序的安排 (9)3.2.4各工序工步的排序 (11)3.3 本章小结 (11)第4章机械加工余量、工序尺寸及毛坯尺寸的确定 (12)4.1各工序工步的加工余量的计算 (12)4.2各工序工步的切削用量的计算 (19)4.3本章小结 (49)第5章专用夹具的设计 (50)5.1 钻床夹具的设计 (50)5.2 磨床夹具的设计 (50)5.3 本章小结 (51)结论 (52)参考文献 (53)致谢 (54)第 1 章绪论1.1 概述精密机床的关键部件是进给系统和主轴系统,不同类型的机床主轴,对所选用轴承的精度要求既有相同点,也有不同之处。
CA6140车床套加工工艺及夹具设计

CA6140车床套加工工艺及夹具设计机械工艺课程设计说明书一、零件的分析(一)、零件的作用题目给出的零件是CA6140的杠杆。
它的主要的作用是用来支承、固定的。
要求零件的配合是符合要求。
(二)、零件的工艺分析杠杆的Φ25孔的轴线合两个端面有着垂直度的要求。
现分述如下:本夹具用于在立式铣床上加工杠杆的小平面和加工Φ12.7。
工件以Φ250+0.023 孔及端面和水平面底为定位基准,在长销、支承板和支承钉上实现完全定位。
加工表面。
包括粗精铣宽度为30mm的下平台、钻Ф12.7的锥孔,由于30mm的下平台的表面、孔表面粗糙度都为Ra6.3um。
其中主要的加工表面是孔Ф12.7,要用Ф12.7钢球检查。
二、工艺规程的设计(一)、确定毛坯的制造形式。
零件的材料HT200。
考虑到零件在工作中处于润滑状态,采用润滑效果较好的铸铁。
由于年产量为4000件,达到大批生产的水平,而且零件的轮廓尺寸不大,铸造表面质量的要求高,故可采用铸造质量稳定的,适合大批生产的金属模铸造。
又由于零件的对称特性,故采取两件铸造在一起的方法,便于铸造和加工工艺过程,而且还可以提高生产率。
(二)、基面的选择(1)粗基准的选择。
对于本零件而言,按照粗基准的选择原则,选择本零件的不加工表面是加强肋所在的肩台的表面作为加工的粗基准,可用装夹对肩台进行加紧,利用一组V形块支承Φ45轴的外轮廓作主要定位,以消除z、z、y、y四个自由度。
再以一面定位消除x、x 两个自由度,达到完全定位,就可加工Φ25的孔。
(2)精基准的选择。
主要考虑到基准重合的问题,和便于装夹,采用Φ25的孔作为精基准。
(三)、确定工艺路线1、工艺路线方案一:工序1 钻孔使尺寸到达Ф25mm工序2粗精铣宽度为30mm的下平台工序3钻Ф12.7的锥孔工序4钻Ф14孔,加工螺纹孔M8工序5钻Ф16孔,加工螺纹孔M6工序6粗精铣Φ16、M6上端面工序7 检查2、工艺路线方案二:工序1 钻孔使尺寸到达Ф25mm工序2粗精铣宽度为30mm的下平台工序3钻Ф12.7的锥孔工序4粗精铣Φ16、M6上端面工序5钻Ф16孔,加工螺纹孔M6工序6钻Ф14孔,加工螺纹孔M8工序7 检查3、工艺路线的比较与分析第二条工艺路线不同于第一条是将“工序4钻Ф14孔,再加工螺纹孔M8”变为“工序6 粗精铣Φ16、M6上端面”其它的先后顺序均没变化。
CA6140车床输出轴___机械制造工艺与夹具课程设计报告书

......机械制造技术基础课程设计说明书设计题目专业班级姓名学号指导老师刘呈呈成绩评定等级评阅签字评阅日期......湖北文理学院理工学院机械与汽车工程系年月目录序言一零件图分析1.1 零件的作用1.2 零件的材料及其力学性能1.3 零件的结构工艺分析二工艺规程设计2.1 确定毛胚的制造形式2.1.1 毛坯的选择2.1.2 毛坯图分析2.2 基准的选择2.2.1 定位基准的选择2.2.2 加工方法的确定......2.3 工序的安排2.4 拟定加工工艺路线2.5 加工设备的选择2.6 刀具的选择2.7 机械加工余量、工序尺寸及毛坯尺寸的确定基本时间其余工步切削用量及基本工时计算从略三专用夹具设计3.1 制定艺路线3.2 机床、夹具、刀具、量具的选择3.3 确定工序尺寸四、夹具设计4.1 定位方案4.2 分度设计4.3 切削力和夹紧力的计算序言......机械制造技术基础课程设计是我们完成本专业教学计划的一个极为重要的实践性教学环节,是使我们综合运用所学过的基本课程,基本知识与基本技能去解决专业范围内的工程技术问题而进行的一次基本训练。
我们在完成课程设计的同时,也培养了我们正确使用技术资料,国家标准,有关手册,图册等工具书,进行设计计算,数据处理,编写技术文件等方面的工作能力,也为我们以后的工作打下坚实的基础,所以我们要认真对待这次综合能力运用的机会!其主要目的是:1.培养学生综合分析和解决本专业的一般工程问题的独立能力,拓宽和深化所学的知识。
2.培养学生树立正确的设计思想,设计思维,掌握工程设计的一般程序,规范和方法。
3.培养学生正确的使用技术知识,国家标准,有关手册,图册等工具书,进行设计计算,数据处理,编写技术文件等方面的工作能力和技巧。
4.培养学生进行调整研究,面向实际,面向生产,向工人和工程技术人员学习的基本工作态度,工作作风和工作方法。
一零件图分析1.1 零件的作用题目所给定的零件为CA6140 车床输出轴,其主要作用,一是传递转矩,使车床主轴获得旋转的动力;二是工作过程中经常承受载荷;三是支撑传动零部件。
输出轴(CA6140车床)加工工艺及夹具设计[外文翻译+文献综述+开题报告]
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本科生毕业设计(论文)开题报告论文(设计)题目输出轴(CA6140车床)加工工艺及夹具设计作者所在系别机械系作者所在专业机械设计制造及其自动化作者所在班级作者姓名作者学号19指导教师姓名指导教师职称教授完成时间 2 年 3 月说明1.根据学校《毕业设计(论文)工作暂行规定》,学生必须撰写《毕业设计(论文)开题报告》。
开题报告作为毕业设计(论文)答辩委员会对学生答辩资格审查的依据材料之一。
2.开题报告应在指导教师指导下,由学生在毕业设计(论文)工作前期内完成,经指导教师签署意见及所在专业教研室论证审查后生效。
开题报告不合格者需重做。
3.毕业设计开题报告各项内容要实事求是,逐条认真填写。
其中的文字表达要明确、严谨,语言通顺,外来语要同时用原文和中文表达。
第一次出现缩写词,须注出全称。
4.开题报告中除最后一页外均由学生填写,填写各栏目时可根据内容另加附页。
5.阅读的主要参考文献应在10篇以上(土建类专业文献篇数可酌减),其中外文资料应占一定比例。
本学科的基础和专业课教材一般不应列为参考资料。
6.参考文献的书写应遵循毕业设计(论文)撰写规范要求。
7.开题报告应与文献综述、一篇外文译文和外文原文复印件同时提交,文献综述的撰写格式按毕业设计(论文)撰写规范的要求,字数在2000字左右。
毕业设计(论文)开题报告本科生毕业设计 (论文)外文翻译原文标题Introduction of Machining译文标题加工基础作者所在系别机械系作者所在专业机械设计制造及其自动化作者所在班级作者姓名作者学号19指导教师姓名指导教师职称副教授完成时间年 3 月北华航天工业学院教务处制Introduction of MachiningHave a shape as a processing method, all machining process for the production of the most commonly used and most important method. Machining process is a process generated shape, in this process, Drivers device on the workpiece material to be in the form of chip removal. Although in some occasions, the workpiece under no circumstances, the use of mobile equipment to the processing, However, the majority of the machining is not only supporting the workpiece also supporting tools and equipment to complete.Machining know the process has two aspects. Small group of low-cost production. For casting, forging and machining pressure, every production of a specific shape of the workpiece, even a spare parts, almost have to spend the high cost of processing. Welding to rely on the shape of the structure, to a large extent, depend on effective in the form of raw materials. In general, through the use of expensive equipment and without special processing conditions, can be almost any type of raw materials, mechanical processing to convert the raw materials processed into the arbitrary shape of the structure, as long as the external dimensions large enough, it is possible. Because of a production of spare parts, even when the parts and structure of the production batch sizes are suitable for the original casting, Forging or pressure processing to produce, but usually prefer machining.Strict precision and good surface finish, Machining the second purpose is the establishment of the high precision and surface finish possible on the basis of. Many parts, if any other means of production belonging to the large-scale production, Well Machining is alow-tolerance and can meet the requirements of small batch production. Besides, many parts on the production and processing of coarse process to improve its general shape of the surface. It is only necessary precision and choose only the surface machining. For instance, thread, in addition to mechanical processing, almost no other processing method for processing. Another example is the blacksmith pieces keyhole processing, as well as training to be conducted immediately after themechanical completion of the processing.Primary Cutting ParametersCutting the work piece and tool based on the basic relationship between the following four elements to fully describe : the tool geometry, cutting speed, feed rate, depth and penetration of a cutting tool.Cutting Tools must be of a suitable material to manufacture, it must be strong, tough, hard and wear-resistant. Tool geometry -- to the tip plane and cutter angle characteristics -- for each cutting process must be correct.Cutting speed is the cutting edge of work piece surface rate, it is inches per minute to show. In order to effectively processing, and cutting speed must adapt to the level of specific parts -- with knives. Generally, the more hard work piece material, the lower the rate.Progressive Tool to speed is cut into the work piece speed. If the work piece or tool for rotating movement, feed rate per round over the number of inches to the measurement. When the work piece or tool for reciprocating movement and feed rate on each trip through the measurement of inches. Generally, in other conditions, feed rate and cutting speed is inversely proportional to。
CA6140车床法兰盘的加工工艺及其夹具

CA6140车床法兰盘的加工工艺及其夹具摘要本文介绍了CA6140车床法兰盘的加工工艺,包括所需工辟口材料、工艺步骤、加工参数等方面内容。
同时,还说明了用于夹持法兰盘的夹具的设计要求和使用方法。
通过本文的指导,读者可以了解到CA6140车床法兰盘的精确加工方法,提高工作效率和加工质量。
引言CA6140车床是一种常用的金属加工设备,用于对工件进行旋转加工。
其中,法兰盘是一种常见的工件,广泛应用于机械、航空等领域。
为了保证法兰盘的加工质量和精度,需要进行精确的加工工艺和使用合适的夹具。
工具和材料进行CA6140车床法兰盘加工的工郸口材料如下:・CA6140车床•刀具-测量工具(卡尺、千分尺等)-钢材(根据法兰盘的设计要求选择合适的材料)工艺步骤CA6140车床法兰盘的加工步骤如下:1.设计加工工艺路线:根据法兰盘的设计要求,确定加工路线和加工顺序。
2.安装工件:将法兰盘固定在车床的主轴上,确保工件的稳定性和固定度。
3.确定加工切削参数:根据法兰盘的材料和尺寸,确定切削速度、进给量和切削深度。
4.调整刀具:根据加工切削参数,选择合适的刀具,并进行刀具装配和调整。
5.进行粗加工:根据工艺路线和加工切削参数,进行法兰盘的粗加工,并及时检查加工质量。
6.进行精加工:在粗加工的基础上,根据加工要求进行法兰盘的精加工,达到设计要求的尺寸和平整度。
7.进行表面处理:根据需求,对法兰盘进行表面处理,如打磨、喷涂等。
8.进行最终检验:对加工后的法兰盘进行最终的尺寸检验和质量检查,确保加工质量符合要求。
9.修整和清洁:修整加工后的法兰盘边缘和切削表面,并进行清洁处理。
10.完成加工:将加工好的法兰盘取下,进行后续的组装和使用。
加工参数CA6140车床法兰盘加工中常用的加工参数如下:一切削速度:根据材料类型确定,一般在60-90m/min之间。
-进给量:根据加工要求和刀具的情况确定,T殳在0.1・0.2mm/r之间。
-切削深度:根据加工要求和材料的情况确定,一般在1-5mm之间。
CA6140车床拨叉的加工工艺及夹具设计

CA6140车床拨叉的加工工艺及夹具设计一、CA6140车床拨叉的加工工艺1.材料准备:选用适当的材料进行加工,一般选择高强度耐磨的合金钢或不锈钢。
2.工艺路线确定:根据零件的形状、尺寸和精度要求,确定加工工艺路线。
例如,车削底面、圆面和孔等。
3.设计夹具:根据零件的形状和加工要求,设计合适的夹具,确保工件能够在加工过程中保持稳定。
4.组织备料:按照工艺路线,将所需的原材料准备好,并进行必要的切断、锯切等预处理。
5.装夹工件:使用夹具将工件牢固地固定在加工台上,确保在加工过程中不会出现移动或晃动。
6.加工操作:根据工艺路线进行相应的加工操作,例如车削、钻孔、镗孔等,使用合适的刀具和切削参数。
7.加工精度控制:通过调整加工参数、切削速度和进给速度等,控制加工精度,保证加工尺寸和精度要求。
8.表面处理:根据零件的要求,进行表面处理,例如研磨、抛光、镀铬等,提高零件的表面光洁度和耐磨性。
9.检验:对加工后的零件进行检验,检查尺寸、外形和表面质量等,确保加工质量符合要求。
10.包装出厂:检验合格的零件进行包装,标明零件名称、规格和质量等信息,方便运输和使用。
二、CA6140车床拨叉的夹具设计夹具设计是确保工件在加工过程中稳定牢固地固定在加工台上的关键。
下面是CA6140车床拨叉夹具设计的主要考虑因素:1.工件的形状和尺寸:根据工件的形状和尺寸,设计合适的夹具结构,确保工件能够被牢固地夹持住。
2.夹具的稳定性:夹具的设计要能够保证工件在加工过程中不会发生晃动或移位,确保加工精度和质量。
3.夹具的刚性:夹具要具备足够的刚性,防止在切削过程中产生振动,影响加工质量。
4.夹具的操作性:夹具的设计要便于操作,方便工人进行安装和拆卸,提高工作效率。
根据以上考虑因素,以下是CA6140车床拨叉夹具设计的一种常见方案:1.底座设计:设计底座用于固定夹具在车床上,底座应采用稳定的结构,并通过螺栓或螺母固定在车床上。
2.卡盘设计:使用卡盘夹持工件,卡盘可以根据工件的尺寸和形状进行调整,并通过螺栓或夹紧机构固定。
CA6140拨叉类零件加工工艺及夹具设计【开题报告】

开题报告机械设计制造及其自动化CA6140拨叉类零件加工工艺及夹具设计1.本课题的研究目的及意义本课题研究目的就是学习研究制定CA6140车床拔叉零件工艺规程和工艺装备的设计,制定复杂的机械加工工艺规程来作为生产的指导性技术文件,使工件能按照零件图的技术要求加工出来。
通过仔细了解零件结构,认真分析零件图,培养我们独立识图能力,增强我们对零件图的认识和了解,通过对零件图的绘制,不仅能增强我们的绘图能力和运用autoCAD软件的能力。
制订工艺规程、确定加工余量、工艺尺寸计算、工时定额计算、定位误差分析等。
在整个设计中也是非常重要的,通过这些设计,不仅让我们更为全面地了解零件的加工过程、加工尺寸的确定,而且让我们知道工艺路线和加工余量的确定,必须与工厂实际的机床相适应。
这对以前学习过的知识的复习,也是以后工作的一个铺垫。
2.本课题的主要任务要求1、绘制零件图、毛坯图;2、设计机械加工该零件工艺规程,并填写工艺卡片(过程卡、工序卡);3、设计铣拨叉18H11底槽加工专用夹具一套,绘制装配图和零件图;4、设计铣拨叉25H7六齿方花键专用拉刀一把,绘制刀具工作图;5、翻译外文资料;6、编写设计说明书3.本课题的关键问题及解决问题的思路本课题的关键问题是CA6140拔叉的加工工艺和夹具的设计。
工序的划分和定位基准的选择:在开始的时候,要认真分析零件图,了解拔叉的结构特点和相关的技术要求。
加工表面的平行度、粗糙度、垂直度注意零件各孔系自身精度(同轴度、圆度、粗糙度等)和它们的相互位置精度。
采用autoCAD软件绘制零件图,一方面增加我们对零件的了解认识,另一方面增加我们对autoCAD软件的熟悉。
工序的划分:确定加工顺序和工序内容,安排工序的集中和分散程度,划分工序阶段,与生产纲领有密切关系,具体可以根据生产类型、零件的结构特点、技术要求和机床设备。
定位基准的选择:根据粗基准,精基准的选择原则;遵循基准统一、基准重合。
ca6140车床数控化改造设计开题报告

开题报告1、数控系统发展1946年诞生了世界上第一台电子计算机,这表明人类创造了可增强和部分代替脑力劳动的工具。
它与人类在农业、工业社会中创造的那些只是增强体力劳动的工具相比,起了质的飞跃,为人类进入信息社会奠定了基础。
6年后,即在1952年,计算机技术应用到了机床上,在美国诞生了第一台数控机床。
从此,传统机床产生了质的变化。
近半个世纪以来,数控系统经历了两个阶段和六代的发展。
2、国内外发展的动向(一)国内数控机床现状近年来我国企业的数控机床占有率逐年上升,在大中企业已有较多的使用,在中小企业甚至个体企业中也普遍开始使用。
在这些数控机床中,除少量机床以FMS模式集成使用外,大都处于单机运行状态,并且相当部分处于使用效率不高,管理方式落后的状态。
2001年,我国机床工业产值已进入世界第5名,机床消费额在世界排名上升到第3位,达47.39亿美元,仅次于美国的53.67亿美元,消费额比上一年增长25%。
但由于国产数控机床不能满足市场的需求,使我国机床的进口额呈逐年上升态势,2001年进口机床跃升至世界第2位,达24.06亿美元,比上年增长27.3%。
近年来我国出口额增幅较大的数控机床有数控车床、数控磨床、数控特种加工机床、数控剪板机、数控成形折弯机、数控压铸机等,普通机床有钻床、锯床、插床、拉床、组合机床、液压压力机、木工机床等。
出口的数控机床品种以中低档为主。
(二)国内数控机床的特点1、新产品开发有了很大突破,技术含量高的产品占据主导地位。
2、数控机床产量大幅度增长,数控化率显著提高。
2001年国内数控金切机床产量已达1.8万台,比上年增长28.5%。
金切机床行业产值数控化率从2000年的17.4%提高到2001年的22.7%。
3、数控机床发展的关键配套产品有了突破。
3、数控系统的趋势1. 继续向开放式、基于PC的第六代方向发展基于PC所具有的开放性、低成本、高可靠性、软硬件资源丰富等特点,更多的数控系统生产厂家会走上这条道路。
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理工科类本科生毕业设计(论文)开题报告论文(设计)题目输出轴(CA6140车床)加工工艺及夹具设计作者所在系别机械系作者所在专业机械设计制造及其自动化作者所在班级作者姓名作者学号19指导教师姓名指导教师职称教授完成时间 2 年 3 月北华航天工业学院教务处制说明1.根据学校《毕业设计(论文)工作暂行规定》,学生必须撰写《毕业设计(论文)开题报告》。
开题报告作为毕业设计(论文)答辩委员会对学生答辩资格审查的依据材料之一。
2.开题报告应在指导教师指导下,由学生在毕业设计(论文)工作前期内完成,经指导教师签署意见及所在专业教研室论证审查后生效。
开题报告不合格者需重做。
3.毕业设计开题报告各项内容要实事求是,逐条认真填写。
其中的文字表达要明确、严谨,语言通顺,外来语要同时用原文和中文表达。
第一次出现缩写词,须注出全称。
4.开题报告中除最后一页外均由学生填写,填写各栏目时可根据内容另加附页。
5.阅读的主要参考文献应在10篇以上(土建类专业文献篇数可酌减),其中外文资料应占一定比例。
本学科的基础和专业课教材一般不应列为参考资料。
6.参考文献的书写应遵循毕业设计(论文)撰写规范要求。
7.开题报告应与文献综述、一篇外文译文和外文原文复印件同时提交,文献综述的撰写格式按毕业设计(论文)撰写规范的要求,字数在2000字左右。
毕业设计(论文)开题报告本科生毕业设计 (论文)外文翻译原文标题Introduction of Machining译文标题加工基础作者所在系别机械系作者所在专业机械设计制造及其自动化作者所在班级作者姓名作者学号19指导教师姓名指导教师职称副教授完成时间年 3 月北华航天工业学院教务处制Introduction of MachiningHave a shape as a processing method, all machining process for the production of the most commonly used and most important method. Machining process is a process generated shape, in this process, Drivers device on the workpiece material to be in the form of chip removal. Although in some occasions, the workpiece under no circumstances, the use of mobile equipment to the processing, However, the majority of the machining is not only supporting the workpiece also supporting tools and equipment to complete.Machining know the process has two aspects. Small group of low-cost production. For casting, forging and machining pressure, every production of a specific shape of the workpiece, even a spare parts, almost have to spend the high cost of processing. Welding to rely on the shape of the structure, to a large extent, depend on effective in the form of raw materials. In general, through the use of expensive equipment and without special processing conditions, can be almost any type of raw materials, mechanical processing to convert the raw materials processed into the arbitrary shape of the structure, as long as the external dimensions large enough, it is possible. Because of a production of spare parts, even when the parts and structure of the production batch sizes are suitable for the original casting, Forging or pressure processing to produce, but usually prefer machining.Strict precision and good surface finish, Machining the second purpose is the establishment of the high precision and surface finish possible on the basis of. Many parts, if any other means of production belonging to the large-scale production, Well Machining is alow-tolerance and can meet the requirements of small batch production. Besides, many parts on the production and processing of coarse process to improve its general shape of the surface. It is only necessary precision and choose only the surface machining. For instance, thread, in addition to mechanical processing, almost no other processing method for processing. Another example is the blacksmith pieces keyhole processing, as well as training to be conducted immediately after themechanical completion of the processing.Primary Cutting ParametersCutting the work piece and tool based on the basic relationship between the following four elements to fully describe : the tool geometry, cutting speed, feed rate, depth and penetration of a cutting tool.Cutting Tools must be of a suitable material to manufacture, it must be strong, tough, hard and wear-resistant. Tool geometry -- to the tip plane and cutter angle characteristics -- for each cutting process must be correct.Cutting speed is the cutting edge of work piece surface rate, it is inches per minute to show. In order to effectively processing, and cutting speed must adapt to the level of specific parts -- with knives. Generally, the more hard work piece material, the lower the rate.Progressive Tool to speed is cut into the work piece speed. If the work piece or tool for rotating movement, feed rate per round over the number of inches to the measurement. When the work piece or tool for reciprocating movement and feed rate on each trip through the measurement of inches. Generally, in other conditions, feed rate and cutting speed is inversely proportional to。
Depth of penetration of a cutting tool -- to inches dollars -- is the tool to the work piece distance. Rotary cutting it to the chip or equal to the width of the linear cutting chip thickness. Rough than finishing, deeper penetration of a cutting tool depth.Wears of Cutting ToolWe already have been processed and the rattle of the countless cracks edge tool, we learn that tool wear are basically three forms : flank wear, the former flank wear and V-Notch wear. Flank wear occurred in both the main blade occurred vice blade. On the main blade, shoulderremoved because most metal chip mandate, which resulted in an increase cutting force and cutting temperature increase, If not allowed to check, That could lead to the work piece and the tool vibration and provide for efficient cutting conditions may no longer exist. Vice-bladed on, it is determined work piece dimensions and surface finish. Flank wear size of the possible failure of the product and surface finish are also inferior. In most actual cutting conditions, as the principal in the former first deputy flank before flank wear, wear arrival enough, Tool will be effective, the results are made unqualified parts.As Tool stress on the surface uneven, chip and flank before sliding contact zone between stress, in sliding contact the start of the largest, and in contact with the tail of zero, so abrasive wear in the region occurred. This is because the card cutting edge than the nearby settlements near the more serious wear, and bladed chip due to the vicinity of the former flank and lost contact wear lighter. This results from a certain distance from the cutting edge of the surface formed before the knife point Ma pit, which is usually considered before wear. Under normal circumstances, this is wear cross-sectional shape of an arc. In many instances and for the actual cutting conditions, the former flank wear compared to flank wear light, Therefore flank wear more generally as a tool failure of scale signs. But because many authors have said in the cutting speed of the increase, Maeto surface temperature than the knife surface temperatures have risen faster. but because any form of wear rate is essentially temperature changes by the significant impact. Therefore, the former usually wear in high-speed cutting happen.The main tool flank wear the tail is not processed with the work piece surface in contact, Therefore flank wear than wear along with the ends more visible, which is the most common. This is because the local effect, which is as rough on the surface has hardened layer, This effect is by cutting in front of the hardening of t he work piece. Not just cutting, and as oxidation skin, the blade local high temperature will also cause this effect. This partial wear normally referred to as pit sexual wear, but occasionally it is very serious. Despite the emergence of the pitson the Cutting Tool nature is not meaningful impact, but often pits gradually become darker If cutting continued the case, then there cutter fracture crisis.If any form of sexual allowed to wear, eventually wear rate increase obviously will be a tool to destroy failure destruction, that will no longer tool for cutting, cause the work piece scrapped, it is good, can cause serious damage machine. For various carbide cutting tools and for the various types of wear, in the event of a serious lapse, on the tool that has reached the end of the life cycle. But for various high-speed steel cutting tools and wear belonging to the non-uniformity of wear, has been found : When the wear and even to allow for a serious lapse, the most meaningful is that the tool can re-mill use, of course, In practice, cutting the time to use than the short time lapse. Several phenomena are one tool serious lapse began features : the most common is the sudden increase cutting force, appeared on the work piece burning ring patterns and an increase in noise.The Effect of Changes in Cutting Parameters on Cutting TemperaturesIn metal cutting operations heat is generated in the primary and secondary deformation zones and this results in a complex temperature distribution throughout the tool, workpiece and chip. A typical set of isotherms is shown in figure where it can be seen that, as could be expected, there is a very large temperature gradient throughout the width of the chip as the workpiece material is sheared in primary deformation and there is a further large temperature in the chip adjacent to the face as the chip is sheared in secondary deformation. This leads to a maximum cutting temperature a short distance up the face from the cutting edge and a small distance into the chip.Since virtually all the work done in metal cutting is converted into heat, it could be expected that factors which increase the power consumed per unit volume of metal removed will increase the cutting temperature. Thus an increase in the rake angle, all other parameters remaining constant, will reduce the power per unit volume of metalremoved and cutting temperatures will reduce. When considering increase in undeformed chip thickness and cutting speed the situation is more comples. An increase in undeformed chip thickness and cutting speed the situation is more complex. An increase in undeformed chip thickness tends to be a scale effect where the amounts of heat which pass to the workpiece, the tool and chip remain in fixed proportions and the changes in cutting temperature tend to be small. Increase in cutting speed, however, reduce the amount of heat which passes into the workpiece and this increase the temperature rise of the chip in primary deformation. Further, the secondary deformation zone tends to be smaller and this has the effect of increasing the temperatures in this zone. Other changes in cutting parameters have virtually no effect on the power consumed per unit volume of metal removed and consequently have virtually no effect on the power consumed per unit volume of metal removed and consequently have virtually no effect on the cutting temperatures. Since it has been shown that even small changes in cutting temperature have a significant effect on tool wear rate, it is appropriate to indicate how cutting temperatures can be assessed from cutting data.The most direct and accurate method for measuring temperatures in high-speed-steel cutting tools is that of Wright&Trent which also yields detailed information on temperature distributions inhigh-speed-steel tools which relates microstructural changes to thermal history.Trent has described measurements of cutting temperatures and temperature distributions for high-speed-steel tools when machining a wide range of workpiece materials. This technique has been further developed by using scanning electron microscopy to study fine-scale microstructural changes srising from over tempering of the tempered martensitic matrix of various high-speed-steels. This technique has also been used to study temperature distributions in bothhigh-speed-steel single point turning tools and twist drills.Automatic Fixture DesignAssembly equipment used in the traditional synchronous fixture put parts of the fixture mobile center, to ensure that components from transmission from the plane or equipment plate placed after removal has been scheduled for position. However, in certain applications, mobile mandatory parts of the center line, it may cause parts or equipment damage. When parts vulnerability and may lead to a small vibration abandoned, or when their location is by machine spindle or specific to die, Tolerance again or when the request is a sophisticated, it would rather let the fixture to adapt to the location of parts, and not the contrary. For these tasks, Elyria, Ohio, the company has developed Zaytran a general non-functional data synchronization West category FLEXIBILITY fixture. Fixture because of the interaction and synchronization devices is independent, The synchronous device can use sophisticated equipment to replace the slip without affecting the fixture force. Fixture specification range from 0.2 inches itinerary, 5 pounds clamping force of the six-inch trip, 400-inch clamping force.The characteristics of modern production is becoming smaller and smaller quantities and product specifications biggest changes. Therefore, in the final stages of production, assembly of production, quantity and product design changes appear to be particularly vulnerable. This situation is forcing many companies to make greater efforts to rationalize the extensive reform and the previously mentioned case of assembly automati on. Despite flexible fixture behind the rapid development of flexible transport and handling devices, such as backward in the development of industrial robots, it is still expected to increase the flexibility fixture. In fact the important fixture devices -- the production of the devices to strengthen investment on the fixture so that more flexibility in economic support holders.According to their flexibility and fixture can be divided into : special fixture, the fixture combinations, the standard fixture, high flexible fixture. Flexible fixture on different parts of their highadaptability and the few low-cost replacement for the characteristic.Forms can transform the structure of the flexible fixture can be installed with the change of structure components (such as needle cheek plate, Multi-chip components and flake cheek plate), a non-standard work piece gripper or clamping elements (for example : commencement standard with a clamping fixture and mobile components fixture supporting documents), or with ceramic or hardening of the intermediary substances (such as : Mobile particle bed fixture and heat fixture tight fixture). To production, the parts were secured fixture, the need to generate clamping function, its fixture with a few unrelated to the sexual submissive steps :According to the processing was part of that foundation and working characteristics to determine the work piece fixture in the required position, then need to select some stability flat combination, These constitute a stable plane was fixed in the work piece fixture set position on the clamp-profile structure, all balanced and torque, it has also ensured that the work features close to the work piece. Finally, it must be calculated and adjusted, assembly or disassembly be standard fixture components required for the position, so that the work piece firmly by clamping fixture in China. In accordance with this procedure, the outline fixture structure and equipped with the planning and recording process can be automated control.Structural modeling task is to produce some stable flat combination, Thus, these plane of the work pieces clamping force and will fixture stability. According to usual practice, this task can be human-machine dialogue that is almost completely automated way to completion. A man-machine dialogue that is automated fixture structure modeling to determine the merits can be conducted in an organized and planning fixture design, reduce the amount of the design, shortening the study period and better distribution of work conditions. In short, can be successfully achieved significantly improve fixture efficiency and effectiveness.Fully prepared to structure programs and the number of material circumstances, the completion of the first successful assembly can save up to 60% of the time.Therefore fixture process modeling agencies is the purpose of the program have appropriate documents.加工基础作为产生形状的一种加工方法,机械加工是所有制造过程中最普遍使用的而且是最重要的方法。