Stress-Corrosion Cracking of a T-Bolt

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Abstract

A T-bolt was part of the coupling for a bleed air duct of a jet engine on a transport plane. Specifications required that the 4.8 mm diam component be made of AISI type 431 stainless steel and heat treated to 44 HRC. The operating temperature of the duct is 425 to 540 deg C (800 to 1000 deg F), but that of the bolt is lower. The T-bolt broke after three years of service. The expected service life was equal to that of the aircraft. It was found that the bolt broke as a result of SCC. Thermal stresses were induced into the bolt by intermittent operation of the jet engine. Mechanical stresses were induced by tightening of the clamp around the duct, which in effect acted to straighten the bolt. The action of these stresses on the carbides that precipitated in the grain boundaries resulted in fracture of the bolt. Due to the operating temperatures of the duct near the bolt, the material was changed to A-286, which is less susceptible to carbide precipitation. The bolt is strengthened by shot peening and rolling the threads after heat treatment. Avoiding temperatures in the sensitizing range is desirable, but difficult to ensure because of the application.
t型螺栓的应力腐蚀开裂
t型螺栓是运输机喷气发动机引气管道联轴器的一部分。规格要求4.8 mm直径的部件由AISI 431型不锈钢制成,并热处理至44 HRC。风管工作温度为425℃~ 540℃(800℃~ 1000℃),螺栓工作温度较低。t形螺栓用了三年就坏了。预期使用寿命等于飞机的使用寿命。结果发现螺栓断裂是由于SCC引起的。喷气发动机的间歇运转使螺栓产生热应力。机械应力是由管道周围的夹紧引起的,这实际上起到了拉直螺栓的作用。这些应力作用于晶界中析出的碳化物,导致螺栓断裂。由于螺栓附近风管的工作温度,材料改为A-286,不易析出碳化物。螺栓采用喷丸强化,热处理后滚螺纹强化。避免在敏化范围内的温度是可取的,但由于应用的原因难以确保。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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