静压系统连接器的应力腐蚀开裂

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引用次数: 0

摘要

在几架飞机上发现了静止系统连接器的裂纹。其中两个裂纹连接器为2024-T351铝合金,提交了失效分析。连接器切断了管道状的螺纹,安装时用聚四氟乙烯型胶带密封。纵向裂缝位于每个连接器的母端开口附近。横截面显示在一个接头中有多个分支的晶间裂纹。扫描电镜(SEM)显示晶粒间开裂和拉长晶粒分离。由于攻丝不当,连接器螺纹的横截面显示螺纹形状不完整。结果表明,静压系统连接件的失效是由SCC引起的。压力是通过将螺纹不正确的母螺母压在螺纹完全正确的公螺母上以达到密封效果而产生的。测试化学成分的一个连接器不是由报道的2024铝合金制成的,而是由2017铝合金制成的。建议修改静压系统连接器的制造工艺,生产全深度螺纹,而不是伪管螺纹。如果使用管螺纹,应增加壁厚以增加环向应力承受面积。并提出了紧固接头的适当扭矩值的确定方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stress-Corrosion Cracking of Pitostatic System Connectors
Pitostatic system connectors were being found cracked on several aircraft. Two of the cracked connectors made of 2024-T351 aluminum alloy were submitted for failure analysis. The connectors had cut pipelike threads that were sealed with Teflon-type tape when installed. Longitudinal cracks were located near the opening of the female ends of each connector. A cross section showed intergranular cracking with multiple branching in one connector. Scanning electron microscopy (SEM) showed intergranular cracking and separation of elongated grains. A cross section of connector threads showed an incomplete thread form resulting from improper tapping. It was concluded that the pitostatic system connectors failed by SCC. The stress was caused by forcing the improperly threaded female nut over its fully threaded male counterpart to effect a seal. The one connector tested for chemical composition was not made of 2024 aluminum alloy as reported but of 2017 aluminum. It was recommended that the pitostatic system connector manufacturing process be revised to produce full-depth threads rather than pseudo pipe threads. Wall thickness should be increased to increase the hoop stress bearing area if pipe threads were to be used. A determination of proper torque values for tightening the connectors was suggested also.
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