首页> 外文会议>ASME international mechanical engineering congress and exposition;IMECE2011 >AN IN SITU MECHANISM FOR THE OPTIMAL COOLING OF OIL-LUBRICATED ROLLING ELEMENT BEARINGS AND PLANETARY GEAR SYSTEMS
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AN IN SITU MECHANISM FOR THE OPTIMAL COOLING OF OIL-LUBRICATED ROLLING ELEMENT BEARINGS AND PLANETARY GEAR SYSTEMS

机译:油润滑的滚动轴承和行星齿轮系统的最佳冷却的原位机理

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A major detriment to reliable and sustainable operation of rotational equipment has been extensively linked to high thermal loads from frictional dissipation. Frictional dissipation in critical tribological components such as bearings and gears results in lubricant degradation and subsequent subpar thermal performance. In this study, a novel in situ lubricant cooling system is used to provide a continuous cooling of these critical tribo-components. Experiments were conducted using rolling element bearing (REB) and planetary gear system (PGS) sets. The stationary outer race of a REB was used to accommodate a cooling coil in a heat exchange-like arrangement. Similarly, the stationary outer ring of the PGS housed a cooling coil in another heat exchanger-like arrangement. Use of the heat exchanger arrangements assured continuous in situ cooling to remove the heat generated in the tribological REB and PGS. Water was used as the coolant while Amsoil 75W-90 Severe Gear® oil was the lubricant used. Highly conductive copper coils surrounded the REB or PGS and the coolant was circulated through the coils to remove the heat from the outer bearing race and ring gear. The hot lubricant rejects heat by convection into the outer race thereby limiting lubricant degradation. The incidence of wear and premature failure are also minimized. So far results from this experimental study show that heat generation is significantly minimized in bearings and gears when cooled in situ. This preliminary study has offered important insight for more rigorous follow-on studies.
机译:旋转设备的可靠和可持续运行的主要不利因素已广泛地与摩擦耗散带来的高热负荷联系在一起。关键摩擦组件(例如轴承和齿轮)中的摩擦耗散会导致润滑剂降解以及随后的低于理想的热性能。在这项研究中,一种新颖的原位润滑剂冷却系统用于对这些关键的摩擦组件进行连续冷却。实验是使用滚动轴承(REB)和行星齿轮系统(PGS)组进行的。 REB的固定外圈用于以类似热交换的方式容纳冷却盘管。类似地,PGS的固定外圈在另一个类似热交换器的装置中容纳了一个冷却盘管。换热器装置的使用可确保连续进行原位冷却,以除去摩擦学REB和PGS中产生的热量。水用作冷却剂,而Amsoil 75W-90 SevereGear®油则用作润滑剂。高导电铜线圈围绕REB或PGS,冷却液通过这些线圈循环,以从轴承座圈和环形齿轮中带走热量。热润滑剂通过对流排入外座圈来散热,从而限制了润滑剂的降解。磨损和过早失效的发生率也降至最低。到目前为止,该实验研究的结果表明,就地冷却时,轴承和齿轮中的热量产生显着减少。这项初步研究为更严格的后续研究提供了重要的见识。

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