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Failure of 304 stainless bellows expansion joint

关凯书Kaishu Guan a* Xinghua Zhang b Xuedong Gu c Longzhan Cai cHong Xu a Zhiwen Wang a

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摘要/描述

The failure of a bellow expansion joint of 304 stainless steel has been analysed. Stress corrosion cracking (SCC)caused by wet hydrogen sulfide was responsible for the failure. Observation of metallographic sections indicated thatthe crack is transgranular SCC (TGSCC) with cracking in a direction perpendicular to axial stress. Scanning electronmicroscopy (SEM) analysis of the fracture surface showed that the cracks are cleavage and quasi-cleavage with obviousfan-shaped marking and branched propagation, which indicated that the cracking mode is hydrogen-induced cracking(HIC). Metallographic and SEM analysis showed strain-induced martensite transformed from austenite during the coldworking process. This resulted in a considerable susceptibility to sulfide stress corrosion cracking (SSCC). The quantitativeanalysis results of XRD indicated that the content of martensite was up to 44%. The location of HIC at theexpansion joint located at crests with maximum cold work deformation and hardness.

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