7178-T6铝合金飞机油箱底板的疲劳断裂

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摘要

两架飞机油箱的地板(由7178-T6铝合金板材制成,部分板材经化学铣削以减少厚度)分别在服役1076和1323小时后几乎完全失效。两个储罐的故障都发生在底部的化学研磨部分。在化学研磨和喷漆之前,在面板上使用碱性蚀刻型清洁剂。各种试验和测量表明,用于油箱底板的铝合金符合7178-T6的规格。通过低倍率放大、扫描电子断口和光学显微镜检查研磨后的部分,发现地板两侧有广泛的点蚀。发现的证据支持这样的结论,即底板是由于疲劳开裂而失效的,这种开裂始于油箱底板中心附近,并最终扩展为快速的延性过载断裂。疲劳裂纹起源于燃料箱底部燃料电池一侧的凹坑。这些凹坑是碱蚀刻清洗过程造成的。建议包括监测碱性蚀刻清洁,以避免形成凹坑,并在碱性蚀刻清洁后进行仔细检查,在释放地板进行油漆之前安排。
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 Aluminum Alloy 7178-T6 Aircraft Fuel-Tank Floors
The floors (fabricated from aluminum alloy 7178-T6 sheet, with portions of the sheet chemically milled to reduce thickness) of the fuel tanks in two aircraft failed almost identically after 1076 and 1323 h of service, respectively. Failure in both tanks occurred in the rear chemically milled section of the floor. An alkaline etch-type cleaner was used on the panels before chemical milling and before painting. Various tests and measurements indicated that the aluminum alloy used for the fuel-tank floors conformed to the specifications for 7178-T6. Low power magnification, fractographs taken with a scanning electron, and optical microscopic examination of the milled sections revealed extensive pitting on both sides of the floors. Evidence found supports the conclusions that the floors failed by fatigue cracking that initiated near the center of the fuel-tank floor and ultimately propagated as rapid ductile-overload fractures. The fatigue cracks originated in pits on the fuel-cell side of the tank floors. The pits were attributed to attack caused by the alkaline-etch cleaning process. Recommendations included monitoring of the alkaline-etch cleaning to avoid the formation of pits and careful inspection following alkaline-etch cleaning, to be scheduled before release of the floor panels for painting.
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