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Roller Profile Development for an Axially Loaded, Single Row Spherical Roller Bearing in an Oscillating Application

机译:用于轴向装载的滚子轮廓开发,振动应用中的单行球形滚子轴承

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Typically it is not recommended to use a single row spherical roller bearing in an application in which there are significant axial loads. The use of these bearings in a less than optimal customer application can be driven by the need for a high load capacity within a limited geometric envelope. Specialized roller profiles can be developed that eliminate high contact stresses on the roller ends that can lead to the premature failure of the bearing. In this paper, analytical results are presented for the roller to raceway contact stress of four different roller profiles with a given load applied to the bearing. The profiles considered are single transverse radius, double transverse radii, and optimized symmetric and asymmetric. The piecewise logarithmic profiles developed are applied to a barrel roller in this paper, but a generalized method is developed such that the profile could be applied to any type of roller-cylindrical, barrel, hourglass, or tapered. The analysis results for two of the profiles are validated by dynamic testing performed within RBC's Corporate Test Laboratory on a three axis, hydraulic, computer controlled test rig. The bearing inner ring is oscillated while the bearing is subjected to simultaneous radial and axial loads. The control software allows the monitoring of radial displacement and bearing torque during testing. The test results correlate very well with the analytical results. The displacement and torque readouts are shown to predict the onset of raceway fatigue and spalling for one of the roller configurations before testing is complete and the bearing is disassembled.
机译:通常,建议不要在具有显着轴向载荷的应用中使用单行球形滚子轴承。这些轴承在较低的客户申请中的使用可以通过有限的几何包络内的高负载能力来驱动。可以开发专用滚子型材,从而消除滚子端部上的高接触应力,这可能导致轴承过早失效。在本文中,向滚轮向滚道接触应力提供了分析结果,具有施加到轴承的给定负载的四种不同辊子轮廓的滚道接触应力。考虑的轮廓是单横向半径,双横向半径和优化对称和不对称。在本文中,开发的分段对数型材应用于枪管辊,但是开发了广义的方法,使得轮廓可以应用于任何类型的滚子圆柱,筒,沙漏或锥形。通过RBC的企业测试实验室内的三轴,液压,计算机控制的试验台上执行的动态测试,验证了两种配置文件的分析结果。轴承内圈在轴承经受同时径向和轴向载荷的同时振荡。控制软件允许在测试期间监控径向位移和轴承扭矩。测试结果与分析结果相比非常好。显示出位移和扭矩读数以预测滚道疲劳并在测试完成之前的滚轮配置脱落,并且轴承被拆卸。

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