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时间:2018-07-16
《基于ansys的挤出跑步机塑料边条模具的设计及机头的加工仿真》由会员上传分享,免费在线阅读,更多相关内容在教育资源-天天文库。
1、基于ANSYS的挤出跑步机塑料边条模具的设计及机头的加工仿真盐城工学院本科生毕业设计说明书2008目录1绪论.................................................................11.1行业模具...........................................................11.2国内外模具发展状况和趋势...........................................12挤出工艺与模具设计...
2、................................................32.1挤出模具设计.......................................................32.2机头设计...........................................................32.3分流锥及其支架设计.................................................32.4冷却定径套设计......
3、...............................................42.4.1内定径芯模.......................................................42.4.2压缩空气外定径套.................................................52.4.3真空外定径套.....................................................52.5过滤部分(机头过滤体)...
4、..........................................62.6机头和挤塑机联接设计...............................................82.7机筒...............................................................92.8模具内熔料的流变特性..............................................102.9挤塑模设计的理论基础............
5、..................................103模具的装配和校核....................................................113.1塑料熔体在圆管内流动..............................................113.2口模联接螺钉的强度校核............................................133.3口模尺寸................................
6、..........................133.3.1成形端长度......................................................133.4机筒材料..........................................................143.5分流器支架的校核.................................错误!未定义书签。3.6PRO/E模具装配.................................
7、..错误!未定义书签。3.6.1绘制三维图.....................................错误!未定义书签。3.6.2零件装配.......................................错误!未定义书签。3.6.3装配爆炸图.....................................错误!未定义书签。3.7ANSYS有限元静力分析..............................错误!未定义书签。3.7.1分析问题................
8、.......................错误!未定义书签。3.7.2建立模型.......................................错误!未定义书签。3.7.3机头的底部施加位移约束.........................错误!未定义书签。4仿真加工...........................................
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