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目 录
摘要2
Abstract:3
第一章 绪论4
§1.2 机械无级变速器的特征和应用5
§1.3机械无级变速器的选用和润滑密封7
§1.4 本文的主要内容及要求9
第二章摩擦无级变速器的机械特性加压装置和调速机构10
§2.1 机械特性10
§2.2 调速操纵机构11
§2.3 加压装置12
第三章摩擦式无级变速器设计说明和计算过程13
§3.1 摩擦机械无级变速器的工作原理13
§3.2 摩擦无级变速器的特点14
§3.3 锥轮的设计与计算14
§3.4 钢环的设计与计算18
1、钢环尺寸和参数的确定18
2、强度验算21
§3.5 轴系的设计21
§3.6 轴的结构设计22
第四章 主要零件的校核24
§4.1 .输出,输入轴的校核24
§4.2 . 轴承的校核25
总 结26
致 谢27
参考文献资料28
附 录: 文献翻译………………………………………………………29
摩擦式机械无级变速器结构设计
摘要
在某种控制的作用下,使机器的输出轴转速可在两个极值范围内连续变化的无级变速器传动随着机械、材质及加工工艺的高速发展和其需求量日益增多而得到广泛应用和发展。无级变速器的主动和从动两根轴通过传递转矩的中间介质(机械构件、流体、电磁流等)把两根轴直接或间接地联系起来并传递动力。当对主、从动轴的联系关系进行控制时,则两轴间的传动比发生变化(在两极值范围内连续而任意地变化)。用机械构件作为中间介质的为机械无级变速器,其包括摩擦式和脉动式。无级变速器与定传动比传动及有级变速传动(它只有有限的几种传动比)相比,其优点是能够根据工作需要在一定范围内连续变换速度,以适应输出转速和外界负载变化的要求,摩擦式机械无级变速器依靠传动元件之间的摩擦进行传动,钢材材质、加工工艺水平和润滑油料品质等因素是摩擦式机械式无级变速器不断发展的重要保证。本文通过查阅相关的诸多文献和书籍手册等进行钢环式无级变速器原理及其结构、变速原理的传动结构的实现的研究,并对摩擦式机械无级变速器进行结构设计,可直接作为设计文件或指导文件进行生产加工。
关键词:无级变速器;摩擦式;传动;润滑;
目 录
中文摘要 ·································································1
英文摘要 ·································································2
一、引言 ································································3
1.1 题研究的目的和意义················································3
1.2 本设计国内外研究历史与现状 ·······································4
1.3 本设计拟解决的关键问题和研究方法··································5
1.4 电火花成型加工特点和适用范围······································5
二、 电火花成型机床总体结构设计 ·····································8
2.1 电火花成型机的结构 形式···········································8
2.2 电火花成型机结构设计···············································9
三、 主轴系统设计······················································13
3.1 主轴系统设计方案··················································13
3.2 电机的选择 ·······················································14
3.3 同步齿形带设计 ···················································19
3.4 滚珠丝杆副的设计··················································22
3.5 直线导轨的设计 ···················································27
四、工作台设计 ························································29
五、十字滑座设计······················································34
六、电极夹头设计·······················································37
七、机床润滑系统设计 ·················································40
八、工作液循环装置结构设计 ··········································42
参考文献·······························································.45
谢辞 ···································································46
附录·····································································47
翻译··························································52
摘 要: 介绍了电火花成型机床的加工原理、特点及其发展历程:它是通过脉冲直流电源不断产生火花放电来去除工件材料,且在工件与工具之间有绝缘液体介质。
分析并设计了电火花成型机床结构系统。机床总体布局为单柱立式,主轴采用步进电机拖动滚珠丝杆完成升降,利用步进电机多级可变细分技术,实现伺服系统的变频、变步距双重伺服调节,提高系统的跟踪能力和稳定性。进给系统采用滚珠丝杆和十字滑座实现工作台的横向、纵向移动,运动平稳。
电火花成形加工要在加工精度、加工效率、加工范围等方面取得重大突破,一个重要的发展方向就是对机床成形运动方式的创新和多样化。本课题的研究,是对电火花成型加工发展方向的一次有益尝试,通过改进电火花加工机床的伺服系统、控制系统、机床结构等,在保证加工精度的前提下提高了加工效率;通过开放式的控制系统,提高了电火花成型加工过程的自动化。
关键词:电火花; 主轴; 滚珠丝杆; 十字滑座; V型导轨






