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Bending stress of rolling element in elastic composite cylindrical roller bearing

Bending stress of rolling element in elastic composite cylindrical roller bearing

作     者:姚齐水 杨文 于德介 余江鸿 

作者机构:College of Mechanical and Vehicle Engineering Hunan University College of Mechanical Engineering Hunan University of Technology 

基  金:Project(51175168)supported by the National Natural Science Foundation of China Projects(2011GK3148,2012GK3092)supported by Science and Technology Program of Hunan Province,China 

出 版 物:《Journal of Central South University》 (中南大学学报(英文版))

年 卷 期:2013年第20卷第12期

页      码:3437-3444页

摘      要:A new structure design method of elastic composite cylindrical roller bearing is proposed, in which PTFE is embedded into a hollow cylindrical rolling element, according to the principle of creative combinations and through innovation research on cylindrical roller bearing structure. In order to systematically investigate the inner wall bending stress of the rolling element in elastic composite cylindrical roller bearing, finite element analysis on different elastic composite cylindrical rolling elements was conducted. The results show that, the bending stress of the elastic composite cylindrical rolling increases along with the increase of hollowness with the same filling material. The bending stress of the elastic composite cylindrical rolling element decreases along with the increase of the elasticity modulus of the material under the same physical dimension. Under the same load, on hollow cylindrical rolling element, the maximum bending tensile stress values of the elastic composite cylindrical rolling element after material filling at 0° and 180° are 8.2% and 9.5%, respectively, lower than those of the deep cavity hollow cylindrical rolling element. In addition, the maximum bending-compressive stress value at 90° is decreased by 6.1%.

主 题 词:elastic composite cylindrical roller bearing hollowness (degree of filling) finite element analysis bending stress rolling element 

学科分类:08[工学] 080203[080203] 0802[工学-机械学] 080201[080201] 

核心收录:

D O I:10.1007/s11771-013-1868-1

馆 藏 号:203108883...

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