滚动轴承的双模失效机理

Y. Meged
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引用次数: 1

摘要

滚动接触轴承的失效理论是基于波动的高水平载荷和材料疲劳。该理论是单峰的,只考虑轴承的固体成分,而忽略了作为润滑剂的液相。轴承寿命相当分散,极值之间的比例达到20。自该理论建立以来,检测到了一些无法用其解释的异常现象,如:1)接触路径以外的点蚀损伤;2) 润滑剂中微量水对轴承寿命的有害影响。润滑剂中25ppm的水导致轴承寿命缩短超过30%。双峰失效理论同时考虑了固体和液体轴承部件。润滑剂的破坏过程是由其空化作用演变而来的。在此过程中,在低压区中形成充满蒸汽的空腔。当这些空腔到达高压区时,它们会发生放热内爆。这些内爆导致局部高压脉冲达到30000 at,并伴随着约2000°K的温度上升[1]。本文介绍了用振动台和风洞试验台对不锈钢试样进行气蚀试验的结果。介绍并评价了润滑油脱水的各种方法。该分析得出的主要结论是使用无水润滑剂,以延长RC轴承的使用寿命并使其使用寿命更加均匀。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bi-Modal Failure Mechanism of Rolling Contact Bearings
The theory of failure of rolling contact bearings is based on fluctuating high level loading and material fatigue. This theory is unimodal, considering only the solid components of the bearing, and ignoring the liquid phase, which is the lubricant. Bearing life is rather dispersed, reaching a ratio of 20 between the extreme values. Since this theory was established, several exceptional phenomena were detected that could not be explained by it, such as: 1) Pitting damage beyond the contact path; 2) Detrimental effect of a minute quantity of water in the lubricant on bearing life. 25 ppm of water in the lubricant brought about shorter bearing life by over than 30%. The bimodal failure theory considers both solid and liquid bearing components. The damaging process of the lubricant evolves from its cavitation. During this process vapor filled cavities are formed in low pressure zones. When these cavities reach high pressure zones they implode exothermally. These implosions cause local high pressure pulses reaching 30,000 at accompanied by a temperature rise of about 2000 degrees K [1]. This paper includes cavitation erosion test results on stainless steel samples by vibratory and water tunnel test rigs. Various methods of lubricant dehydration are presented and evaluated. The main conclusion from this analysis is the use of water-free lubricants, for long life of RC bearings and more uniform service life thereof.
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