数控车床加工技术与夹具设计.docx
数控车床加工技术与夹具设计
目录
一、内容概要..............................................4
1.1数控车床加工概述......................................4
1.1.1数控车床的发展历程..................................6
1.1.2数控车床的组成结构..................................7
1.1.3数控车床的分类与应用...............................10
1.2数控车削加工特点.....................................11
1.2.1精加工能力.........................................12
1.2.2高效率生产.........................................13
1.2.3适应复杂轮廓加工...................................14
1.3本课题研究意义与目标.................................15
1.3.1提升加工精度.......................................17
1.3.2优化生产效率.......................................18
1.3.3推动技术进步.......................................19
二、数控车床加工基础.....................................21
2.1数控车削原理.........................................22
2.1.1数控系统工作原理...................................24
2.1.2车削运动控制方式...................................25
2.1.3加工坐标系建立.....................................26
2.2数控车床主要参数.....................................27
2.2.1主轴转速范围.......................................28
2.2.2进给速度调节.......................................30
2.2.3刀具行程与功率.....................................32
2.3常用数控系统简介.....................................33
2.3.1FANUC系统特点......................................34
2.3.2SIEMENS系统特点....................................36
2.3.3华中系统特点.......................................37
三、数控车削工艺.........................................38
3.1零件图分析...........................................42
3.1.1尺寸标注与公差.....................................43
3.1.2形位公差分析.......................................44
3.1.3表面粗糙度要求.....................................45
3.2加工方案制定.........................................47
3.2.1工艺路线规划.......................................49
3.2.2加工顺序安排.......................................51
3.2.3刀具选择与切削参数.................................53
3.3切削用量选择.........................................54
3.3.1切削速度确定.......................................56
3.3.2进给量计算.....