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In-situ, On-demand Lubrication System for Space Mechanisms

机译:空间机构的原位按需润滑系统

摘要

Many of today's spacecraft have long mission lifetimes. Whatever the lubrication method selected, the initial lubricant charge is required to last the entire mission. Fluid lubricant losses are mainly due to evaporation, tribo-degradation, and oil creep out of the tribological regions. In the past, several techniques were developed to maintain the appropriate amount of oil in the system. They were based on oil reservoirs (cartridges, impregnated porous parts), barrier films, and labyrinth seals. Nevertheless, all these systems have had limited success or have not established a proven record for space missions. The system reported here provides to the ball-race contact fresh lubricant in-situ and on demand. The lubricant is stored in a porous cartridge attached to the inner or the outer ring of a ball bearing. The oil is released by heating the cartridge to eject oil, taking advantage of the greater thermal expansion of the oil compared to the porous network. The heating may be activated by torque increases that signal the depletion of oil in the contact. The low surface tension of the oil compared to the ball bearing material is utilized and the close proximity of the cartridge to the moving balls allows the lubricant to reach the ball-race contacts. This oil resupply system can be used to avoid a mechanism failure or reduce torque to an acceptable level and extend the life of the component.
机译:当今许多航天器的任务寿命很长。无论选择哪种润滑方式,都需要初始润滑剂充注才能完成整个任务。流体润滑剂的损失主要是由于蒸发,摩擦降解和油从摩擦区域中逸出。过去,人们开发了几种技术来维持系统中适量的机油。它们基于储油罐(墨盒,浸渍的多孔部件),隔离膜和迷宫式密封件。然而,所有这些系统都取得了有限的成功,或者尚未建立太空飞行的可靠记录。此处报告的系统可根据需要向滚珠丝杠接触器提供新鲜润滑剂。润滑剂存储在一个多孔的药筒中,该药筒连接到球轴承的内圈或外圈。与多孔网络相比,利用油的更大的热膨胀,可以通过加热阀芯以排出油来释放油。可以通过扭矩增加来激活加热,扭矩增加表明触点中的油已耗尽。与滚珠轴承材料相比,油的表面张力低,并且油盒与运动的滚珠非常接近,因此润滑剂可以到达滚珠-滚珠触点。该补油系统可用于避免机械故障或将扭矩降低到可接受的水平,并延长组件的使用寿命。

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