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首页> 外文期刊>Tribology Transactions >Scuffing Resistance and Starved Lubrication Behavior in Helicopter Gear Contacts: Dependence on Material, Surface Finish, and Novel Lubricants
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Scuffing Resistance and Starved Lubrication Behavior in Helicopter Gear Contacts: Dependence on Material, Surface Finish, and Novel Lubricants

机译:直升机齿轮接触中的抗磨损性和饥饿的润滑行为:依赖材料,表面光洁度和新型润滑剂

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摘要

A loss of lubrication event within rotorcraft drivetrain components leads to the rapid failure of contacting gear and bearing surfaces, thermal runaway, and catastrophic damage with possible loss of life. This article demonstrates that the scuffing failure of the gear and bearing surfaces can be delayed by varying the properties of the contact materials and residual lubricant in high-speed contacts. A ball-on-disc tribometer is used to simulate loss of lubrication conditions in gears for a variety of material, surface finish, and lubricant combinations to compare relative time to scuffing initiation at high entrainment and sliding velocities (both 16 m/s). Comparisons of material and surface finishing generally show that contacts tend to survive longer without lubricant if the coefficient of friction is relatively low during initial run-in. However, a 9 cSt oil produced longer times to failure than the baseline 5 cSt oil with higher coefficients of friction throughout the experiment. Further measurements showed that silicon nitride and AISI 9310 steel in contact can survive much longer after the lubricant supply is shut off compared to a steel-on-steel contact. The 9 cSt oil, silicon nitride, and superfinished surfaces showed the greatest promise in loss of lubrication technology from these results, with increases of 28, 388, and 1,538%, respectively, over baseline results. Thus, material, surface finish, and novel lubricant selection strategies may allow tailoring of survivability characteristics of aircraft mechanical systems.
机译:旋翼机传动系部件内的润滑损失事件会导致齿轮和轴承表面的快速接触失效、热失控,以及可能导致生命损失的灾难性损坏。本文证明,通过改变高速接触中接触材料和残余润滑剂的性质,齿轮和轴承表面的胶合失效可以延迟。球盘式摩擦磨损仪用于模拟齿轮中各种材料、表面光洁度和润滑剂组合的润滑条件损失,以比较在高夹带和滑动速度(均为16 m/s)下发生擦伤的相对时间。材料和表面处理的比较通常表明,如果在初始磨合期间摩擦系数相对较低,则在没有润滑剂的情况下,触点的寿命往往较长。然而,在整个实验过程中,9 cSt润滑油产生的故障时间比基准5 cSt润滑油更长,摩擦系数更高。进一步的测量表明,与钢对钢接触相比,在润滑剂供应关闭后,接触的氮化硅和AISI 9310钢可以存活更长的时间。从这些结果来看,9 cSt油、氮化硅和超精加工表面在润滑技术损失方面表现出最大的潜力,分别比基线结果增加28%、388%和1538%。因此,材料、表面光洁度和新型润滑剂选择策略可能允许裁剪飞机机械系统的生存能力特征。

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