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Analysis on Stress Field of Asymmetrical Cold Ring Rolling for High-speed Rail Bearing Inner Ring

机译:高速轨轴承内圈不对称冷环轧制应力场分析

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In this paper, the finite element model of asymmetric cold ring rolling for high-speed rail bearing inner ring is built by using ABAQUS software and the inner stress field of the ring metal during the whole cold ring rolling process is researched and analyzed, which reveals. The distribution of radial, axial , circumferential and equivalent stress at the bite rolling stage, the stable rolling stage and the fine rolling stage in the asymmetric cold rolling forming process for high-speed rail bearing inner ring were analyzed respectively. The stress in each direction of the ring was found to increase first and then decrease with each stage of cold rolling going. Finally, it tends to be stable. The stress on the contact area between the ring blank and the drive roll and the mandrel is obviously greater than that on the core of ring, and the stress in the core is more uniform.
机译:在本文中,通过使用ABAQUS软件和高速轨轴承内圈的不对称冷环轧制的有限元模型,并研究了整个冷环轧制过程中环金属的内应力场进行了研究和分析,揭示了。分别分别分别对咬合轧制台的径向,轴向,周向和等效应力的分布,稳定的轧制台和高速轨道轴承内圈中的不对称冷轧成形过程中的稳定轧制台和细轧阶段。发现环的每个方向上的应力首先增加,然后随着冷轧的每个阶段减小。最后,它往往是稳定的。环形坯料和驱动辊和芯轴之间的接触面积上的应力明显大于环的核心,并且芯中的应力更均匀。

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