首页> 外文会议>ASME/STLE international joint tribology conference 2011 : Nanotribology .... >IMPROVING ROLLING ELEMENT BEARING THERMAL COMPLIANCE THROUGH IN SITU COOLING
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IMPROVING ROLLING ELEMENT BEARING THERMAL COMPLIANCE THROUGH IN SITU COOLING

机译:通过原位冷却来提高滚动轴承的热服从性

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In this study a novel in situ rolling element bearing (REB) lubricant cooling system is developed that provides a continuous cooling of the bearing outer race. In the design the stationary outer race is expanded to accommodate a cooling coil for the continuous cooling of the lubricant and the outer race. Water is used as the coolant While Amsoil 75W-90 Severe Gear® oil is used as a lubricant. Heat generated during the test run is removed by the coolant flowing through the cooling coil. The tribological effects at the speeds of the cooling test were evaluated using block-on-ring tribometer tests. Results from the experiments indicate that in the absence of cooling the temperature of the bearing outer race rises while cooling dramatically lowers the temperature. Also, the coefficient of friction increases with increasing speed. As such, in situ cooling that leads to reduced operational temperature minimizes lubricant degradation that can result from uncontrolled frictional heating.
机译:在这项研究中,开发了一种新颖的原位滚动轴承(REB)润滑剂冷却系统,该系统可连续冷却轴承外圈。在设计中,固定的外座圈被扩展以容纳用于连续冷却润滑剂和外座圈的冷却盘管。水用作冷却剂,而Amsoil 75W-90 SevereGear®油用作润滑剂。在测试运行过程中产生的热量被流过冷却盘管的冷却剂带走。使用环上阻塞式摩擦计测试评估了冷却测试速度下的摩擦学影响。实验结果表明,在没有冷却的情况下,轴承外圈的温度会升高,而冷却会大大降低温度。而且,摩擦系数随着速度的增加而增加。这样,导致工作温度降低的原位冷却可最大程度地减少润滑剂的降解,这可能是由于摩擦加热不受控制而导致的。

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