钢套筒扳手头因锻件褶皱而开裂

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引用次数: 0

摘要

使用经过热处理的0.40C-0.34Cr钢制作的套筒扳手,扳手头在使用过程中出现裂纹。该组分的明显纤维结构在用2%的镍蚀刻时就变得明显。材料在成形过程中产生的褶皱是可见的,显微照片显示,裂缝沿着这些褶皱沿着纤维方向延伸。除硬化裂纹外,裂纹部分充满氧化物,边缘处有脱碳现象。由此可以推测,部分外皮在锻造过程中被压进了褶皱中。这一证据支持了这样的结论,即即使有一些化学分离的迹象,锻造过程中产生的褶皱也是导致主裂纹的原因。此外,即使钢是更均匀的,硬化裂纹也可能是由褶皱带的粗裂纹促进的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cracking of a Steel Socket Spanner Head Because of Forging Folds
The head of a socket spanner made of heat-treated 0.40C-0.34Cr steel cracked in service. The pronounced fibrous structure of the component became evident as soon as it was etched with 2% nital. Folds in the material originating from the shaping process were visible, and the micrograph showed that cracks ran along these folds oriented according to the fiber. The fissures, with the exception of the hardening crack, were partly filled with oxide and showed signs of decarburization at the edges. From this it could be assumed that parts of the external skin had been forced into the folds during forging. This evidence supported the conclusion that even through there was some indication of chemical segregation, the folds made during forging initiated the main crack. Furthermore, even if the steel had been more homogeneous, hardening cracks would probably have been promoted by the coarse fissures at the fold zones.
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