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基于ANSYS的平面磨削温度场的有限元仿真
引用本文:杨洪波,赵恒华,刘伟锐.基于ANSYS的平面磨削温度场的有限元仿真[J].机械制造与自动化,2014(4):111-114.
作者姓名:杨洪波  赵恒华  刘伟锐
作者单位:辽宁石油化工大学机械工程学院,辽宁抚顺113001
基金项目:基金项目:辽宁省自然科学基金项目(20052211).
摘    要:通过确定移动热源的加载方式,运用ANSYS软件的热分析模块对磨削温度场进行仿真分析,得到了不同载荷步的温度场分布以及不同深度的节点的温度变化曲线,验证了越靠近热源磨削温度越高以及工件下层材料温升显著低于工件表面。通过改变砂轮线速度、工件进给速度和磨削深度,得到了主要的磨削参数对磨削区温度场的影响状况,证明了钛合金磨削存在临界磨削速度。在临界磨削速度附近某一区间磨削温度出现回落,因此适当的磨削速度、高的工件进给速度和小的磨削深度可以有效的减小磨削温度。

关 键 词:平面磨削  温度场  仿真  热动热源  ANSYS软件

Finite Element Simulation of Grinding Temperature Field in Plane Grinding Based on ANSYS
YANG Hong-bo,ZHAO Heng-hua,LIU Wei-rui.Finite Element Simulation of Grinding Temperature Field in Plane Grinding Based on ANSYS[J].Machine Building & Automation,2014(4):111-114.
Authors:YANG Hong-bo  ZHAO Heng-hua  LIU Wei-rui
Affiliation:(College of Mechanical Engineering,Liaoning Shihua University, Fushun 113001, China)
Abstract:The thermal analysis module of ANSYS software is used for grinding temperature field simulation analysis through the determination of the moving heat source loading method to obtain the temperature field distribution of different load steps and the temperature change curve of nodes in different depth,the temperature is higher with being more close to the heat source and the temperature rise of artifacts below materials is lower than the workpiece surface.The influence cirele of the main grinding parameters on the grinding zone temperature field is gotten by change the wheel speed,workpiece feed speed and grinding depth,titanium al oy grinding existing critical grinding speed is verified.The grinding temperature fal s in a certain interval near the critical grinding speed,so the appropriate grinding speed, high feed speed and low grinding xepth can effectively reduce the grinding temperature.
Keywords:plane grinding  temperature field  simulation  moving thermal resuorce  ANSYS software
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