首页 | 本学科首页   官方微博 | 高级检索  
     

基于ANSYS钢背铜塑3层复合材料端面轴承温度场分析
引用本文:徐鸿雁,胡献国,徐玉福.基于ANSYS钢背铜塑3层复合材料端面轴承温度场分析[J].机械设计,2007,24(10):22-24.
作者姓名:徐鸿雁  胡献国  徐玉福
作者单位:合肥工业大学,机械与汽车工程学院,安徽,合肥,230009
摘    要:利用传热学、摩擦学和有限元的基本原理,建立了具有摩擦生热的聚甲醛钢背铜塑3层复合材料端面轴承的二维稳态热传导数学模型.应用ANSYS软件分析了端面轴承的稳态温度场.通过改变载荷、转速和表层材料厚度计算了复合材料端面轴承的最高温度.结果表明,端面轴承最高温度随载荷、转速、表层材料厚度的增加而升高,为研究钢背铜塑多层复合材料热影响提供了参考依据.

关 键 词:复合材料端面轴承  稳态温度场  有限元  ANSYS  ANSYS  钢背  多层复合材料  端面  轴承  稳态温度场  软件分析  composite  material  plastic  copper  steel  field  analysis  参考依据  热影响  研究  材料厚度  变载荷  结果  最高温度  厚度计算
文章编号:1001-2354(2007)10-0022-03
修稿时间:2006-10-11

Temperature field analysis on end-bearings with steel backed copper plastic 3-layered composite material
XU Hong-yan,HU Xian-guo,XU Yu-fu.Temperature field analysis on end-bearings with steel backed copper plastic 3-layered composite material[J].Journal of Machine Design,2007,24(10):22-24.
Authors:XU Hong-yan  HU Xian-guo  XU Yu-fu
Affiliation:School of Mechanical and Automotive Engineering, Hefei Polytechnic University, Hefei 230009, China
Abstract:Utilizing the basic principle of heat transfer,tribology and finite element,the mathematical model of two-dimensional steady stated heat conductance was established for end bearings with friction calorific polyformaldehyde steel backed copper plastic 3-layered composite materials.The steady stated temperature field of end bearing was analyzed by the ANSYS software. By means of changing the loading,rotary speed and thickness of the surface layer material the highest temperature of end bearing with composite materials was calculated.The result indicated that the highest temperature of end bearing would rise along with the increase of thickness of surface layer materials,thus provided referential foundation for the study on the influences of steel backed copper plastic multi-layered composite materials.
Keywords:end bearing with composite materials  steady stated temperature field  finite element  ANSYS
本文献已被 CNKI 维普 万方数据 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号