基于SolidWorks的轮毂轴承法兰盘外圈力矩刚性分析

 余兵浩1,赵坤2,周庆庆1

(1.启东锦桥轴承有限公司,江苏 南通 226200;2.慈兴集团有限公司 技术中心,浙江 宁波 315301)
摘要:基于有限元分析方法,利用SolidWorks的实体建模和有限元分析模拟功能,建立了第二代汽车轮毂轴承法兰盘外圈的三维模型,而后进行网格划分得到离散化的有限元分析模型。针对第二代汽车轮毂轴承的实际应用情况,参照VW-5载荷谱,对建立好的有限元分析模型施加VW-5载荷谱中的最严苛的第18步载荷步的工况,计算分析得出法兰盘外圈的应力分布和轴向形变。结果表明,最大应力位于螺纹孔安装面上,其值为694.22 MPa,大于规定的塑性延伸强度,但小于该材料的拉伸强度,说明法兰盘外圈发生了不可恢复的塑性变形。轴向位移为0.357 mm,通过力矩刚性计算公式得出其力矩刚性为9.48′。
关键词:轮毂轴承;法兰盘外圈;力矩刚性;SolidWorks;有限元分析
中图分类号:U463.343 文献标志码:A doi:10.3969/j.issn.1006-0316.2018.05.010
文章编号:1006-0316 (2018) 05-0036-03
Moment Rigidity Analysis of Wheel Hub Bearing Flange Outer Ring Based on SolidWorks
YU Binghao1,ZHAO Kun2,ZHOU Qingqing1
( 1.Qidong Jinqiao Bearing Co., Ltd, Nantong 226200, China;2.Technology Center, Cixing Group Co., Ltd, Ningbo 315301, China )
Abstract:Based on the finite element analysis method, using SolidWorks entity modeling and finite element analysis simulation function, established 3D model of generation second wheel hub bearing flange outer ring, and then to grid discretization of the finite element analysis model. In view of the practical engineering application, with reference to VW-5 load spectrum, applying the toughest steps 18th load condition of VW-5 load spectrum in flange outer ring, calculated and analyzed it to get that the stress distribution and axial deformation of the flange outer ring. The results show that the maximum stress is located in the installation on the threaded holes, the value is 694.22 MPa, it is more than the plastic elongation strength and less than tensile strength of the material, it shows have taken place unrecoverable plastic deformation in the flange outer ring. The axial displacement is 0.357 mm, and the moment rigidity is 9.48' by calculation formula.
Key words:wheel hub bearing;flange outer ring;moment rigidity;SolidWorks;FEA
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收稿日期:2017-10-23
基金项目:2014年宁波市企业技术创新团队——高档轿车关键轴承单元及组件研发
作者简介:余兵浩(1988-),男,江西鄱阳人,硕士,工程师,主要研究方向为结构优化设计与轴承制造工艺。
 

 

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