Modelling and Comparative Study for Deep Groove Ball Bearing Based on Structural Analysis using FE Simulation

Avinash Galande, S. Pachpore, Ashish R. Pawar
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Abstract

: A deep groove ball bearing is a rotary element designed for supporting a radial as well as axial load, low friction, and widely used due to little noise and vibration which supports high rotational speeds. In this article, the author carried out a structural analysis (using FE Simulation) of a single row deep groove ball bearing for estimating contact stress and total deformation for three grades of materials viz. Silicon Nitride (Si3N4), 440C Stainless Steel, and AISI 4140 Alloy Steel. Under the scope of the study, modeling is done using Autodesk Platform and analyzed using ANSYS as an FEA tool. The natural boundary conditions were applied to estimate the fatigue life of bearings under standard operating conditions. The obtained results indicate Silicon nitride material was found to be more significant amongst all materials taken for considerations.
基于结构分析的深沟球轴承有限元模拟建模与对比研究
深沟球轴承是为承受径向和轴向载荷而设计的旋转元件,摩擦小,噪音小,振动小,可支持高转速,因此得到广泛应用。在本文中,作者对单列深沟球轴承进行了结构分析(采用有限元模拟),以估计氮化硅(Si3N4)、440C不锈钢和AISI 4140合金钢三种材料的接触应力和总变形。在研究范围内,使用Autodesk平台进行建模,并使用ANSYS作为有限元分析工具进行分析。采用自然边界条件估计轴承在标准工况下的疲劳寿命。所得结果表明,氮化硅材料在所有考虑的材料中更为显著。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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