毕业设计:传输汽车凸轮轴的非同步式输送打标生产线(液压plc).zip

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毕业设计:传输汽车凸轮轴的非同步式输送打标生产线(液压plc),毕业设计:传输汽车凸轮轴的非同步式输送打标生产线(液压plc)论文说明书共35页,字数总计:12836资料预览:a0-气动夹紧部件图.dwga0-非同步式打标输送生产线装配图.dwga3-工件小车部件图.dwga2-t形图.dwga1-气压原理图.dwga2-链轮+a2-离合链轮+a2-带轮a2-主轴.dwg开题报告....
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毕业设计:传输汽车凸轮轴的非同步式输送打标生产线(液压PLC)
论文说明书共35页,字数总计:12836
资料预览:
A0-气动夹紧部件图.dwg
A0-非同步式打标输送生产线装配图.dwg
A3-工件小车部件图.dwg
A2-T形图.dwg
A1-气压原理图.dwg
A2-链轮+A2-离合链轮+A2-带轮A2-主轴.dwg
开题报告.doc
毕业设计说明书:传输汽车凸轮轴的非同步式输送打标生产线(液压PLC).doc
中文摘要
非同步打标输送线是用来传输汽车凸轮轴的自动输送机器。本输送线采用纯机械离合装置,使小车走停更加灵活,可靠性能高,易于实现传输工件品种更换。具备外形美观大方,造价低廉等优点。
本文为毕业设计论文,共分为七章。第一章绪论,第二章方案设计,第三章总体设计,第四章结构设计,第五章性能说明,第六章毕业设计总结与思考,第七章外文翻译。
本毕业设计论文首先对传输机械,传输线发展现状进行概要的分析说明。然后对毕业设计题目提出的各种传动动作要求进行分解,寻找适合的设计方案。并进行初步的论证。
采用非同步打标传输线,能够提高工艺水平,提高产品质量和生产效率,大大减轻劳动者的劳动强度。改造后的机床更适合大批量的零件加工。对一个企业发展而言,成功的关键在于要实现以最好的质量,最低的价格,,最短的时间去满足市场需求的不断的变化,因此使用传输线并努力提高其功效是成功的重要一环。
从宏观上看,采用传输机械进行大规模的工作生产,除了在产品加工中实现自动化,降低劳动强度外,更重要的是在生产中采用传输机械,尤其是精密传输线,能降低人为失误,提高加工精度和效率。
从微观上看,传输线有如下优点:加工精度高,产品质量好,生产效率高,柔性化程度高,工人劳动强度低等,同时节省人力费用一般小于购买一台传输线,降低了生产成本。
本毕业设计重点对传输线中的离合小车,链轮的滑块张紧机构,气动打标夹紧机构和传输线外框架进行了技术上的设计。另外,对电器控制部分采取plc编程控制。论文中提出的车式传送装置采用上下轨道式,在传动链轮处设置了弧形弯道,使小车可沿此弯道平稳翻转。 我应用了刚带离合器的非同步传送小车,它结构简单,运行可靠,并能实现积累式小车存储。
关键词;非同步打标传输线 张紧机构 打标夹紧机构。
Abstract
Non-synchronization hit and mark and transmit line is a automatic transmission machine which is used for transmit car camshaft . The line has been used pure mechanical clutch device. so that car will be operated more flexibility, stable will be improved ,and also it will be easy to come true of exchanging variety transmission workpieces. Car will have more advantage, such as look well and cost will be low and so on.
This article is a diploma project, otal is splited into seven section. First is prolegomenon ,second is project design, third is total design, fourth is structure design, fifth is capability design, sixth is consider and sum-up of diploma project, the seventh is translation of foreign language.
First of this diploma project Summary explains mechanical transmission and present development. Then dissolute all variety transmission action which is put forwar by diploma project ,so as to find a appropriate design plan and to have a preliminary test.
Using it ,we can improve technique level ,quality of production and manufacture efficiency, in this way labor will bigly be lightened. Machine tool which have been rebuilt will be more fit to produce accessory in large quantities .Regard to development of corporation , key of success is to meet movement demand of market with best quality,cheapest price and in a shortest time.
Seeing from macro-angle, using mechanical transmission to run mass production ,expect realizing producing automation, dropping labour intensity, it will reduce faults of man-made, improve processing accuracy and efficiency with mechanical transmission and even more with precision transmission line.So we should use mechanical transmission to run mass production that our product will be intensed competition in international .
Seeing from micro-angle, transmission line has strong points as bellows: high processing accuracy,good product quality, high producing efficiency, good flexible, low labour intensity and so on. Cost to buy a transmission line is smaller than expenses of human sources which have been saved, so in this way it will reduce cost of production
The diploma project mainly put up technology design on no-relation car of transmission line ,tensioning structure of smooth chain wheel , tight structure of aerodynamic bit and mark and outside framework of transmission line .in addition, it takes PLC computer programming control on electric control part.
The car-mode transmission which is put forward by the project takes up-down track ,we set a curved track on transmission chain wheel.,so car will smoothly reverse on the curved track.
Key words: non-synchronization hit and mark and transmit line tensioning structure tight structure of aerodynamic bit and mark.
中文摘要 I
ABSTRACT II
第1章 引 言 1
1.1输送线的现状 1
1.2研究输送线的目的和意义: 2
1.3 国内外输送机械现代及发展趋势 3
第2章 方案设计 7
2.1 设计任务的分析 7
2.2 方案的设计 7
2.3凸轮轴打标装置设计 8
2.4链轮张紧装置的设计 9
第3章 非同步传输线结构设计与驱动设计 11-b..