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首页> 外文期刊>Journal of Failure Analysis and Prevention >Failure Analyses of Six Cylinder Aircraft Engine Crankshafts
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Failure Analyses of Six Cylinder Aircraft Engine Crankshafts

机译:六缸飞机发动机曲轴的失效分析

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摘要

Results of failure analyses of two aircraft crankshafts are described. These crankshafts were forged from AMS 6414 (similar composition to AISI 4340) vacuum arc remelted steels with sulfur contents of 0.003% (low sulfur) and 0.0005% (ultra-low sulfur). A grain boundary sulfide precipitate was caused by overheat of the low sulfur steel, and an incipient melting of grain boundary junctions was caused by overheat of the ultra-low sulfur steel. The precipitates and incipient melting in these two failed crankshafts were observed during the examination. As expected, impact fractures from the low sulfur steel crankshaft contained planar dimpled facets (PDF) along separated grain boundaries with a small spherical manganese sulfide precipitates within each dimple. In contrast, PDFs along separated grain boundaries of impact fractures from the ultra-low sulfur crankshaft steel contained a majority of small spherical particles consisting of nitrogen, boron, iron, carbon, and a small amount of oxygen. Some other dimples contained manganese sulfide precipitates. Fatigue samples machined from the ultra-low sulfur steel crankshaft failed internally at planar grain boundary facets. Some of the facets were covered with nitrogen, boron, iron, and carbon film, while other facets were relatively free of such coverage. Results of experimental forging studies defined the times and temperatures required to produce incipient melting overheat and facets at grain boundary junctions of ultra-low sulfur AMS 6414 steels.
机译:描述了两个飞机曲轴的故障分析结果。这些曲轴由AMS 6414(与AISI 4340相似的成分)真空电弧重熔钢制成,硫含量为0.003%(低硫)和0.0005%(超低硫)。低硫钢的过热引起晶界硫化物沉淀,而超低硫钢的过热引起晶界接合点的初期熔化。在检查过程中观察到这两个故障曲轴中的沉淀物和初期熔化。正如预期的那样,低硫钢曲轴的冲击破裂沿分开的晶界包含平面凹坑小面(PDF),每个凹坑内都有小的球形硫化锰沉淀。相反,沿着超低硫曲轴钢的冲击断裂沿分开的晶界的PDF包含大部分由氮,硼,铁,碳和少量氧气组成的小球形颗粒。其他一些酒窝中含有硫化锰沉淀。用超低硫钢曲轴加工的疲劳样品在平面晶界刻面内部失效。一些方面被氮,硼,铁和碳膜覆盖,而其他方面相对没有这种覆盖。实验锻造研究的结果定义了在超低硫AMS 6414钢的晶界交界处产生初期熔化过热和小平面所需的时间和温度。

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