Stress corrosion cracking in Type.316 plates of a heat exchanger

S.H. Khodamorad , N. Alinezhad , D. Haghshenas Fatmehsari , K. Ghahtan
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引用次数: 27

Abstract

In Jam petrochemical complex (JPC), Iran, the plates (ASTM A.240 Type.316) of some heat exchangers have been damaged due to the occurrence of cracks at the sitting place of gaskets. A comprehensive failure analysis including the chemical analysis, visual inspection, optical microscopy and scanning electron microscopy (SEM) of the cracks spread over the plates together with the energy dispersive X-ray spectroscopy (EDS) of the corrosion products and the measurement of chloride and sulfide ions content of the process water were employed for the examination of the failure mode and its causes. The obtained results indicate the building-up of the chloride and sulfide ions at the crevices between plates and gaskets at high temperature leads to stress cracking corrosion (SCC) of the plates. Moreover, the simultaneous presence of chloride and sulfide in the media hastens the SCC failure in the heat exchanger plates.

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热交换器316型板的应力腐蚀开裂
在伊朗Jam石化公司(JPC),一些热交换器的板(ASTM A.240型。316)由于垫片的位置出现裂缝而损坏。采用化学分析、目视检查、光学显微镜、扫描电镜等综合失效分析方法,结合腐蚀产物的能量色散x射线能谱仪(EDS)和工艺水中氯离子、硫化物离子含量的测定,对裂纹的失效模式和原因进行了分析。结果表明,在高温下,氯离子和硫化物离子在板与垫片之间的缝隙处积聚,导致板的应力开裂腐蚀。此外,介质中同时存在的氯化物和硫化物加速了热交换器板的SCC失效。
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