喷气发动机扫油泵故障的研究

L.D. Cologna
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引用次数: 0

摘要

一架喷气式发动机在启动过程中,一个保护剪切颈断裂,导致一个油清除泵失效。目视检查显示,在一个轴承室的从动齿轮是冻结的,因为是相应的驱动齿轮。还观察到垫片磨损和热变色(特别是在从动齿轮上)。齿轮由32Cr-Mo-V13钢制成,淬火并氮化至750至950 HV。齿轮齿的显微检查揭示了微观结构的变化,在上下文中,似乎是摩擦加热的结果。垫片由Cu合金(AMS4845)衬套组成,与AA2024-T3铝合金间距元件配合。结果表明,两组分之间不受控制的配合干涉导致了Cu合金的超应力。在操作条件下进行热循环生成该材料。然而,膨胀是直接向内的轴,因为衬套只有几微米的间隙。这种作用导致油被挤出,导致金属与金属接触,最终失效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of Jet Engine Oil Scavenge Pump Failure
An oil scavenge pump was found to have failed when a protective shear neck fractured during the start of a jet engine. Visual inspection revealed that the driven gear in one of the bearing compartments was frozen as was the corresponding drive gear. Spacer wear and thermal discoloration (particularly on the driven gear) were also observed. The gears were made from 32Cr-Mo-V13 steel, hardened and nitrided to 750 to 950 HV. Micrographic inspection of the gear teeth revealed microstructural changes that, in context, appear to be the result of friction heating. The spacers consist of Cu alloy (AMS4845) bushings force fit into AA2024-T3 Al alloy spacing elements. It was found that uncontrolled fit interference between the two components had led to Cu alloy overstress. Thermal cycling under operating conditions yielded the material. The dilation was directed inward to the shaft, however, because the bushing had only a few microns of clearance. The effect caused the oil to squeeze out, resulting in metal-to-metal contact, and ultimately failure.
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