滚子轴承的阻转矩与耗散机构一种多尺度数值方法

P.-E. Lavelatte, O. Dalverny, J. Paris, G. Le Jeune
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引用次数: 0

摘要

本文对球面滚子轴承(SRB)在径向载荷和低角速度作用下的性能进行了研究。对电阻扭矩进行了分析,并进行了进一步的研究,以了解引起这些损失的耗散机制(摩擦和塑性变形)。结合实验扭矩测量和系统的多尺度数值模拟来解决这个问题。最后,对实验结果和数值结果进行了讨论和对比,得出了所研究载荷范围内的耗散方案。本文对球面滚子轴承(SRB)在径向载荷和低角速度作用下的性能进行了研究。对电阻扭矩进行了分析,并进行了进一步的研究,以了解引起这些损失的耗散机制(摩擦和塑性变形)。结合实验扭矩测量和系统的多尺度数值模拟来解决这个问题。最后,对实验结果和数值结果进行了讨论和对比,得出了所研究载荷范围内的耗散方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Resistive torque of roller bearings and dissipative mechanisms; a multi-scale numerical approach
This article deals with a research study on the behavior of spherical roller bearings (SRB) under radial load and low angular velocity. The resistive torque is analyzed and further investigations are conducted to understand the dissipative mechanisms (friction and plastic deformations) suspected of causing these losses. The issue is tackled combining both experimental torque measurements and a multi-scale numerical simulation of the system. Finally, we discuss and confront experimental and numerical results to sketch out a dissipation scheme for the load range investigated.This article deals with a research study on the behavior of spherical roller bearings (SRB) under radial load and low angular velocity. The resistive torque is analyzed and further investigations are conducted to understand the dissipative mechanisms (friction and plastic deformations) suspected of causing these losses. The issue is tackled combining both experimental torque measurements and a multi-scale numerical simulation of the system. Finally, we discuss and confront experimental and numerical results to sketch out a dissipation scheme for the load range investigated.
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