Y81系列金属液压打包机

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金属液压打包机安全操作规程

金属液压打包机安全操作规程

Y81-125金属液压打包机安全操作规程WI/GJ-03-1321.操作前要穿紧身防护服,袖口扣紧,上衣下摆不能敞开,不得在开动的机床旁穿、脱换衣服,或围布于身上,防止机器绞伤。

必须戴好安全帽,辫子应放入帽内,不得穿裙子、拖鞋;2.打包机工作前首先启动设备空转3分钟,同时检查油箱油位是否足够、油泵声否正常、液压单元及管道、接头、活塞是否有泄露现象;3.翻包时盖缸手柄拉至回程位置后,再推动翻包手柄。

翻包板的周围每翻包一次都应及时清理,以防卡死;4.打包时操作工必须注意安全、铺铜均匀、铺铜到位,应将上面的箱盖门关闭,才能开始打包;5.打包时液压操作柄应快速推到指定位置,以防阀门阻塞及液压油流量不够,导致电机过流。

每一动作操作到位,均需将阀手柄还原至中位;6.停机时应将门盖关闭,然后停止电机,切断电源;7.打包完成后所有液压杆都必须缩回液压缸内,以防灰尘损坏密封圈而漏油;8.定期做好保养工作,发现油管有漏油地方立即找机修处理;9.如发现异常应立即停止操作,排除原因后方可进行;10.箱盖门打开后,严禁压门操作,以防发生意外;11.油箱内的油液须经过严格过滤,并经常保持足够的油量。

油箱每半年应清洗并更换一次油;12.设备各润滑处应按要求每班至少加注一次润滑油,每班清理一次容腔中的杂物;13.当多人同时操作时应分工明确,避免误操作发生危险。

不了解主要机器结构、性能和操作规程者不得擅自开动机器;14.当机器出现严重漏油或工作中发生异常现象时应立即停车。

眼睛不要对着油液喷射的地方看,不能直接用手去堵,不得强行带病运转;15.机器在运转或打包时,不得进行修理或用手摸运动部件,严禁用手或脚在料箱内按压物料;16.泵、阀、压力表进行调整时,必须有经验的技术人员进行,如发现压力表有故障,应立即维修或更换;。

扬州市勇之宇液压机械有限公司介绍企业发展分析报告模板

扬州市勇之宇液压机械有限公司介绍企业发展分析报告模板

Enterprise Development专业品质权威Analysis Report企业发展分析报告扬州市勇之宇液压机械有限公司免责声明:本报告通过对该企业公开数据进行分析生成,并不完全代表我方对该企业的意见,如有错误请及时联系;本报告出于对企业发展研究目的产生,仅供参考,在任何情况下,使用本报告所引起的一切后果,我方不承担任何责任:本报告不得用于一切商业用途,如需引用或合作,请与我方联系:扬州市勇之宇液压机械有限公司1企业发展分析结果1.1 企业发展指数得分企业发展指数得分扬州市勇之宇液压机械有限公司综合得分说明:企业发展指数根据企业规模、企业创新、企业风险、企业活力四个维度对企业发展情况进行评价。

该企业的综合评价得分需要您得到该公司授权后,我们将协助您分析给出。

1.2 企业画像类别内容行业空资质空产品服务:液压动力机械及元件制造;气压动力机械及元1.3 发展历程2工商2.1工商信息2.2工商变更2.3股东结构2.4主要人员2.5分支机构2.6对外投资2.7企业年报2.8股权出质2.9动产抵押2.10司法协助2.11清算2.12注销3投融资3.1融资历史3.2投资事件3.3核心团队3.4企业业务4企业信用4.1企业信用4.2行政许可-工商局4.3行政处罚-信用中国4.4行政处罚-工商局4.5税务评级4.6税务处罚4.7经营异常4.8经营异常-工商局4.9采购不良行为4.10产品抽查4.11产品抽查-工商局4.12欠税公告4.13环保处罚4.14被执行人5司法文书5.1法律诉讼(当事人)5.2法律诉讼(相关人)5.3开庭公告5.4被执行人5.5法院公告5.6破产暂无破产数据6企业资质6.1资质许可6.2人员资质6.3产品许可6.4特殊许可7知识产权7.1商标7.2专利7.3软件著作权7.4作品著作权7.5网站备案7.6应用APP7.7微信公众号8招标中标8.1政府招标8.2政府中标8.3央企招标8.4央企中标9标准9.1国家标准9.2行业标准9.3团体标准9.4地方标准10成果奖励10.1国家奖励10.2省部奖励10.3社会奖励10.4科技成果11土地11.1大块土地出让11.2出让公告11.3土地抵押11.4地块公示11.5大企业购地11.6土地出租11.7土地结果11.8土地转让12基金12.1国家自然基金12.2国家自然基金成果12.3国家社科基金13招聘13.1招聘信息感谢阅读:感谢您耐心地阅读这份企业调查分析报告。

100万吨废钢铁回收加工配送中心建设项目.pdf

100万吨废钢铁回收加工配送中心建设项目.pdf
表七............................................................................................................22
验收监测期间生产工况记录:.......................................................................... 22 验收监测结果:.................................................................................................. 22
100 万吨废钢铁回收加工配送中心建设项目 竣工环境保护 验收监测报告表
建设单位: 中兴拓湖北再生资源有限公司
二〇二〇年一月
1
100 万吨废钢铁回收加工配送中心建设项目竣工环境保护验收监测报告表
建设单位法人代表:卓兴长 编制单位法人代表: 袁修彬 项 目 负 责 人:杨 勇 报 告 编 写 人:黄 彦
表三............................................................................................................10
主要污染源、污染物处理和排放:.................................................................. 10
表六............................................................................................................20

Y81系列金属液压打包机

Y81系列金属液压打包机

Y81系列金属液压打包机产品用途:Y81系列金属液压打包机主要用于炼钢厂,回收加工行业及有色、黑色金属冶炼行业。

可将各种金属边角料、钢刨花、废钢、废铝等挤压成长方体、圆柱体、八角形体等各种形状的合格炉料,以降低运输和冶炼成本。

产品特色:①各种机型均采用液压驱动,可选择手动或PC自动控制操作。

②安装无须底角螺丝,在无电源的地方可配用柴油机作动力。

③出包有翻包和推包两种形式。

④挤压力从63吨至400吨有八个等级,生产率0.5吨/小时至50吨/小时。

技术参数:型号公称推力(kn)压缩室尺寸(长*宽*高)(mm)包块尺寸(宽*高)(mm)包块密度(kg/h)生产效率(kg/h)单次循环时间(s)配用功率(kw)出包/操作方法Y81-63 6301000*600*500 200*20≥200900-1100≤107.5翻包,手动操作Y81-63X 630800*500*450 200*20≥200800-1000≤75 7.5手动操作Y81-100 10001000*700*550 250*25≥2001200-1500≤85 11翻包,手动操作Y81-125A 12501200*700*600 300*30≥2001200-1800≤1115翻包,手动操作Y81-125B 12501200*700*600 250*25≥2001200-1700≤11515翻包,手动操作Y81-125C 12501200*700*600 250*25≥2001200-1700≤11515翻包,手动操作Y81F-160 16001400*900*700 350*35≥2002200-3800≤95 22翻包,手动操作Y81F-160A 1600 1600*10400*40≥2002200-≤1022 翻包,00*800 0 0 3800 0 手动操作Y81F-160B 16001600*1200*800 400*40≥2002500-4000≤1122翻包,手动操作Y81F-200A 20001600*1200*800 400*40≥2002800-4500≤1137翻包,手动操作Y81F-200B 20001800*1400*900 450*45≥2003000-5000≤1237翻包,手动操作Y81F-250A 25002000*1400*1000 500*50≥2004000-6300≤1344翻包,手动操作更多液压打包机的相关问题,请登录了解详情。

BNS 30-01ZG-2211金属封闭式设备商品说明书

BNS 30-01ZG-2211金属封闭式设备商品说明书

DATASHEETDataOrdering dataProduct type description BNS 30-01ZG-2211 Article number (order number)101166315EAN (European Article Number)4030661214214 eCl@ss number, version 11.027-27-24-02eCl@ss number, version 9.027-27-24-02ETIM number, version 7.0EC002544ETIM number, version 6.0EC002544General dataStandards BG-GS-ET-14EN IEC 60947-5-3 Coding level according to EN ISO 14119LowWorking principle Magnetic drive Installation conditions (mechanical)quasi-flush Enclosure material BrassEnclosure coating material nickel-platedDuration of risk, maximum50 msGross weight190 gGeneral data - FeaturesSafety monitoring module integrated YesSafety classificationStandards EN ISO 13849-1Mission time20 Year(s)Mechanical dataActuating element MagnetMechanical data - Switching distances according EN IEC 60947-5-35 mmAssured switching distance "ON" SaoAssured switching distance "OFF" S15 mmarMechanical data - DimensionsISO thread of the sensor M30Length of sensor78 mmAmbient conditionsDegree of protection IP67Ambient temperature-25 ... +55 °CStorage and transport temperature, minimum-25 °CStorage and transport temperature, maximum+70 °CResistance to vibrations10 … 55 Hz, amplitude 1 mm Restistance to shock30 g / 11 msElectrical dataSwitching voltage, maximum250 VACSwitching current, maximum 3 ASwitching capacity, maximum750 WTime to readiness, maximum50 msSwitching frequency, maximum 5 HzScope of deliveryScope of delivery Actuator must be ordered separately.AccessoryRecommendation (actuator)BPS 300BPS 303BPS 303 SSNoteNote (General)Contact symbols shown for the closed condition of the guarddevice.Ordering codeProduct type description:BNS 30-01Z(1)-(2)-(3)(1)without without LED switching conditions displayG with LED switching conditions display (on version withcable)(2)without with cableST M12 connector2211higher switching distance2334increased switching distance and supplementarysignalling output2246Ue 42 VACPicturesProduct picture (catalogue individual photo)ID: kbns3f08| 502.0 kB | .jpg | 222.603 x 635.353 mm - 631 x 1801 px - 72 dpi| 83.5 kB | .png | 74.083 x 211.314 mm - 210 x 599 px - 72 dpiDimensional drawing basic componentID: 1bns3g08| 58.8 kB | .cdr || 3.0 kB | .png | 74.083 x 51.506 mm - 210 x 146 px - 72 dpi| 57.6 kB | .jpg | 352.778 x 245.886 mm - 1000 x 697 px - 72 dpiCharacteristic curveID: kbns3a02| 17.7 kB | .png | 74.083 x 42.333 mm - 210 x 120 px - 72 dpi| 148.1 kB | .jpg | 352.778 x 201.436 mm - 1000 x 571 px - 72 dpiSchmersal Ltd., Sparrowhawk Close, WR14 1GL MalvernThe details and data referred to have been carefully checked. Images may diverge from original. Further technical data can be found in the manual. Technical amendments and errors possible.Generated on: 26/07/2023, 07:06。

Y81-125打包机

Y81-125打包机
(三)侧压缸进门盖关闭到位后将侧压缸阀手柄扳至前位,高压油经侧压缸阀进入侧压缸后腔推动活塞前进,侧压头前进对物料进行次级压缩,待油缸行程到位(压力表示值达到系统压力)后将手柄扳至中位。
(四)主压缸进侧压缸前进到位后,将主压缸阀手柄扳至前位。主压缸推动主压头前进对物料进行终极压缩,物料在次最终压缩成型,待压力表示值达到系统压力后,保持3~5秒后,将手柄扳至中位。
b、主压油缸主压油缸利用前法兰安装在侧架的主缸支座上,活塞杆与压头用螺钉连接用于终极压缩,使压缩室内初步成形的物料最终形成包块。
c、侧压油缸侧压油缸安装在门梁下部,用两根半销轴铰接与机身左右侧架后部的支座孔内,活塞杆与压头用螺钉联接,用于次级压缩,使压缩室内的物料初步成形。
d、门盖油缸门盖油缸用两销轴铰接于机身门梁上,活塞杆与门盖上的滑块用销轴连接,通过活塞杆地前进与后退完成门盖的开合与锁紧动作。
清洗或更换滤网,清洗管道;更换柱塞、轴承
(二)工作原理
将需打包之物料加入料箱内,操作换向阀手柄,门盖关闭并使锁头将门盖锁住使之不上浮,进行初级预压,接着侧压油缸前进进行次级压缩;行程到位,主压油缸前进进行终级压缩,待主压缸达到系统压力后保压3~5秒,主、侧压油缸回程,拔出锁头并开起门盖,翻包油缸工作翻出包块并回程,此时完成一个工作循环。
注意:束块之长短,决定于所挤压的废料的重量、材质和几何形状,所以对比较厚实的即本身密度较大的废料不允许装得太多,否则将会使包快过长而无法翻出包快,甚至造成侧压头无法到位,引起主压头错位等一系列弊病。
2、特点
a:采用旋转合盖式结构,料箱开口面积大,对大、空薄料的加料尤显方便。
b:各运动部件均采用液压驱动,工作平稳;打包压力大,束块紧密,打包效率高。
c:手动换向阀操作简单、方便、安全可靠。

液压金属打包机设计含全套CAD图纸

液压金属打包机设计含全套CAD图纸

说明书设计题目:液压金属打包机设计专业年级:2011届机械工程及自动化学院学号:姓名:专业:机械设计制造及其自动化指导教师、职称:2015年3月22日摘要随着人类科技的飞速发展,金属资源对于各国来讲也变得越加重要。

对现有的金属资源的过渡开采和不合理利用的,造成了大量的金属浪费。

这自但是然的引发了人们的担忧,因此,废金属的回收再利用的课题也成了工业发展中必不可少的研究方向。

本设计的主要内容是液压缸和机构的设计、选型,金属打包机液压原理图,电气原理图和叠加阀的设计、选型。

本设计中,主、侧液压缸为打包机提供紧缩动力,替代了传统的丝杆。

主液压缸安置在紧缩室后端面,侧压缸安置在紧缩室左侧面。

液压缸的设计包括了缸筒、活塞、导向套、活塞杆等的设计计算,和密封圈、防尘圈、活塞与缸筒、活塞杆密封方式的选型。

紧缩室的设计主如果用来肯定尺寸大小而且对其强度校核。

本金属打包机除主、侧液压缸外,还有上盖、锁紧机构、前门三个辅助液压缸,它们别离控制着上盖的闭合、锁紧机构的进退、前门的开合。

本设计完成了上述液压缸和机构的设计、选型,金属打包机液压原理图、电气原理图和叠加阀设计选型。

整个打包机不但制造本钱低,而且企业的普遍需要,拥有很好的市场前景。

关键词:废金属的回收、金属打包机、液压ABSTRACTWith the rapid development of science and technology, industrial production has become an inevitable trend of the development of automation. Metal resources is also becoming increasingly important for countries. The transition of the existing metal resources mining and unreasonable use of, and are responsible for a large number of metal waste. This naturally caused concern, therefore, scrap metal recycling project has become essential to industrial development and the research direction. The design of the hydraulic metal baling press use hydraulic pressure to compress with packaging, metal scrap has a certain size, convenient transportation, recycling and recycled scrap metal, in order to put into production again. So greatly improve the utilization rate of the metal, the process of the waste is in a certain extent, ease the intense demand for metal resources.The main content of this design is the design of the hydraulic cylinder and institutions, selection, metal baling press hydraulic principle diagram, electrical principle diagram and superposition valve design, type selection. In this design, the main hydraulic cylinder, side provide compression power for packing machine, replacing the conventional screw. The main hydraulic cylinder face after placed in the compression chamber, lateral pressure cylinder placed in the left lateral compression chamber. The design of the hydraulic cylinder includes cylinder, piston, guide sleeve, piston rod etc. The design and calculation, and the sealing ring, dust ring, piston and cylinder, piston rod sealing mode selection. The design of the compression chamber is mainly to determine the size and intensity. This metal baling press in addition to the main hydraulic cylinder, side, and on the cover, locking mechanism, the front three auxiliary hydraulic cylinder, respectively control with lid closed, in a locking mechanism, the front door open and close. And three auxiliary cylinder and the main work, side two cylinder each cross movement.This design completed the hydraulic cylinder and institutional design, selection, metal baling press hydraulic principle diagram, electrical schematic diagram and superposition valve design selection. Some of its operations to achieve automation, which improve labor efficiency, reduce labor intensity. The baling press not only manufacturing cost is low, and enterprise need to extensively, have good market prospects.Key words:Scrap metal recycling、Metal baling press、hydraulic pressure目录摘要 (I)ABSTRACT ...................................................................................................I II 目录. (IV)第1章引言 ······························································································- 1 -引言······································································································- 1 -1.1.1课题研究背景··········································································- 1 -1.1.2课题研究的意义 ······································································- 2 -设计内容简介 ·························································································- 2 -1.2.1研究解决的问题 ······································································- 2 -本章小结································································································- 3 -第2章打包机主体的设计分析·········································································- 4 -打包机的结构设计 ···················································································- 4 -2.1.1打包机的运动··········································································- 4 -2.1.2打包机的总布局·······································································- 4 -打包机紧缩室的设计与强度校核 ·································································- 6 -2.2.1压头的强度校核 ······································································- 6 -2.2.2紧缩室的设计 ·········································································- 6 -第3章打包机液压系统的设计·········································································- 9 -液压系统的特点 ······················································································- 9 -液压系统工况分析 ···················································································- 9 -3.2.1分析系统工况··········································································- 9 -3.2.2肯定液压系统的主要参数···························································- 9 -拟订液压系统原理图 ·············································································· - 11 -3.3.1肯定供油线路········································································ - 11 -3.3.2液压回路的设计····································································· - 11 -3.3.3拟订液压系统图 ···································································· - 12 -3.3.4液压系统原理图的分析设计······················································ - 12 -液压系统的计算和液压元件的选定 ···························································· - 14 -3.4.1液压缸的设计计算·································································· - 14 -3.4.2选择液压元件 ······································································· - 19 -第4章PLC控制系统设计 ·············································································· - 22 -系统控制要求 ······················································································· - 23 -I/O点数的肯定 ····················································································· - 24 -画电气原理图 ······················································································· - 24 -总结······································································································· - 25 -致谢······································································································· - 26 -参考文献···································································································· - 27 -第1章引言引言1.1.1课题研究背景几乎所有的打包机都是一个原理:使要加工的材料在不被破坏的条件下,通过设备的紧缩、打包,让本来散乱、占空间大的材料变成统一规格的小体积、比重大且容易集装回收与运输的包块。

华宏1000吨压块打包机遥控器使用全部教程(一)

华宏1000吨压块打包机遥控器使用全部教程(一)

华宏1000吨压块打包机遥控器使用全部教程(一)
华宏1000吨压块打包机遥控器使用全部教程
1. 引言
•简要介绍华宏1000吨压块打包机遥控器的功能和使用场景。

2. 开箱与配对
•描述如何打开华宏1000吨压块打包机遥控器的包装盒。

•解释如何将遥控器与打包机进行配对。

3. 遥控器按钮功能
•逐一列出遥控器上的按钮,并对每个按钮的功能进行说明。

4. 操作流程示例
•提供一个详细的操作流程示例,包括按下不同按钮的顺序和操作指南。

5. 常见问题解答
•针对常见问题,回答用户可能会遇到的疑惑和困惑。

6. 其他功能介绍
•介绍华宏1000吨压块打包机遥控器可能具备的其他功能,如音量调节、亮度调节等。

7. 使用建议和维护注意事项
•提供一些建议,帮助用户更好地使用华宏1000吨压块打包机遥控器并保持其良好状态。

8. 总结
•总结华宏1000吨压块打包机遥控器的特点和使用方法。

以上是针对“华宏1000吨压块打包机遥控器使用全部教程”的详细教程,希望能帮助用户更好地使用该产品。

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Y81系列金属液压打包机
产品用途:
Y81系列金属液压打包机主要用于炼钢厂,回收加工行业及有色、黑色金属冶炼行业。

可将各种金属边角料、钢刨花、废钢、废铝等挤压成长方体、圆柱体、八角形体等各种形状的合格炉料,以降低运输和冶炼成本。

产品特色:
①各种机型均采用液压驱动,可选择手动或PC自动控制操作。

②安装无须底角螺丝,在无电源的地方可配用柴油机作动力。

③出包有翻包和推包两种形式。

④挤压力从63吨至400吨有八个等级,生产率0.5吨/小时至50吨/小时。

技术参数:
型号公称
推力
(kn)
压缩室尺寸
(长*宽*
高)(mm)
包块尺寸
(宽*
高)(mm)
包块密

(kg/h)
生产效

(kg/h)
单次
循环
时间
(s)
配用
功率
(kw)
出包/操
作方法
Y81-63 630
1000*60
0*500 200*20
≥200
900-1
100
≤10
7.5
翻包,
手动操

Y81-63X 630
800*500
*450 200*20
≥200
800-1
000
≤75 7.5
手动操

Y81-100 1000
1000*70
0*550 250*25
≥200
1200-
1500
≤85 11
翻包,
手动操

Y81-125A 1250
1200*70
0*600 300*30
≥200
1200-
1800
≤11
15
翻包,
手动操

Y81-125B 1250
1200*70
0*600 250*25
≥200
1200-
1700
≤11
5
15
翻包,
手动操

Y81-125C 1250
1200*70
0*600 250*25
≥200
1200-
1700
≤11
5
15
翻包,
手动操

Y81F-160 1600
1400*90
0*700 350*35
≥200
2200-
3800
≤95 22
翻包,
手动操

Y81F-160A 1600 1600*10400*40≥2002200-≤1022 翻包,
00*800 0 0 3800 0 手动操

Y81F-160B 1600
1600*12
00*800 400*40
≥200
2500-
4000
≤11
22
翻包,
手动操

Y81F-200A 2000
1600*12
00*800 400*40
≥200
2800-
4500
≤11
37
翻包,
手动操

Y81F-200B 2000
1800*14
00*900 450*45
≥200
3000-
5000
≤12
37
翻包,
手动操

Y81F-250A 2500
2000*14
00*1000 500*50
≥200
4000-
6300
≤13
44
翻包,
手动操

更多液压打包机的相关问题,请登录了解详情。

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