不锈钢钢丝绳终端的应力腐蚀开裂

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引用次数: 0

摘要

一个AISI 303(Se)型不锈钢眼端子,在9.5毫米直径钢丝绳的末端进行滚轧,在使用一年后广泛破裂。在接头的内表面产生了一个发际裂纹,通过金相检查发现了一个终端试样的切片。从裂纹附近区域的孔洞和裂纹表面的粗糙纹理可以看出,腐蚀介质(可能是海水)已经从管件的内表面进入到裂纹中,并与发际裂纹相结合,形成了裂缝腐蚀。由于锻压金属的高残余应力,裂纹向外表面扩展,随后是腐蚀。应力腐蚀是残余应力加上载荷应力和腐蚀共同作用的结果。旋转锻压或在冲床上锻压被推荐代替滚动锻压,因为它们使变形更对称。
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 a Stainless Steel Wire-Rope Terminal
An AISI type 303(Se) stainless steel eye terminal that was roll swaged on the end of a 9.5 mm diam wire rope cracked extensively after one year of service. A hairline crack that had initiated at the inner surface of the fitting was revealed by metallographic examination of a sectioned terminal specimen. It was indicated by the holes in the region adjoining the crack and rough texture of the crack surface that a corrosive medium (presumably seawater) had entered the crack from the inner surface of the fitting and coupled with the hairline crack to develop crevice corrosion. The crack propagated toward the outer surface due to high residual stresses in the swaged metal and was followed closely by corrosion. Stress corrosion as result of a combination of residual stresses plus load stress and corrosion was found to cause the failure. Rotary swaging or swaging in a punch press was recommended instead of roll swaging as they made deformation more symmetrical.
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