铸造不锈钢杠杆的疲劳断裂

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引用次数: 0

摘要

为了确保没有故障,尽管没有明显的问题,但在对经历了高振动的测试飞机发动机进行服务后,一个主要的燃料控制被送回工厂进行检查。当燃料控制装置拆卸时,一根由AMS 5350 (AISI 410型)不锈钢铸造的杠杆,经过26至32 HRC的硬化和钝化,显示出裂纹。裂纹始于细长铣削槽的尖角,并向外壁扩展。裂缝周围的剖面间距约为30度,表明所调查的断裂面在沿铣削槽的尖角处有滩痕。振动频率或振幅的变化引起不同的传播速率,从而导致图案的变化。这一证据支持了杠杆在疲劳中失效的结论,这是由于测试发动机上燃油控制装置的过度振动造成的。建议包括重新设计的杠杆与大半径的角落,开裂的起源。这将显著降低应力集中系数,从而最大限度地减少杠杆对疲劳的敏感性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fatigue Fracture of a Cast Stainless Steel Lever
To ensure no malfunctions and although there were no apparent problems, a main fuel control was returned to the factory for examination after service on a test aircraft engine that had experienced high vibrations. When the fuel control was disassembled, a lever, cast from AMS 5350 (AISI type 410) stainless steel that was through-hardened to 26 to 32 HRC and passivated, was shown to be cracked. The crack initiated at the sharp corner of the elongated milled slot and propagated across to the outer wall. The sections around the crack were spread about 30 deg apart, showing the fracture surface under investigation had beach marks initiating at the sharp corner along the milled slot. Changes in frequency or amplitude of vibration caused different rates of propagation, resulting in a change in pattern. This evidence supported the conclusion that the lever failed in fatigue as a result of excessive vibration of the fuel control on the test engine. Recommendations included redesign of the lever with a large radius in the corner where cracking originated. This would reduce the stress-concentration factor significantly, thus minimizing the susceptibility of the lever to fatigue.
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