起重机跑道上1020钢挡块导轨脆性断裂

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引用次数: 0

摘要

停止块导向装置的一部分在失效后掉到了起重机跑道的地板上。通过对断口表面的检查,发现了脆性结晶型断裂。起始点是在火焰切割和焊接过程中形成的硬化热影响层。这种金属经鉴定为1020钢。母材的粗轧组织(ASTM 00 - 4的晶粒尺寸)表明焊件(止动块和导件)没有经过正火处理。脆性破坏被认为是由火焰切割和焊接产生的冶金和机械缺口引起的。作为纠正措施,采用最大晶粒尺寸达到ASTM 5的全硅杀死1020钢制作新的止块焊件。焊件经火焰切割和焊接后900℃正火处理,以改善显微组织和冲击强度。所有火焰切割的表面都经过研磨以去除缺口。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Brittle Fracture of a 1020 Steel Stop-Block Guide on a Crane Runway
A section from a stop-block guide fell to the floor on a crane runway after it failed. A brittle crystalline-type break was disclosed by examination of the fracture surface. The point of initiation was in a hardened heat-affected layer that had developed during flame cutting and welding. The metal was identified to be 1020 steel. It was indicated by the coarse as-rolled structure (grain size of ASTM 00 to 4) of the base metal that the weldment (stop block and guide) had not been normalized. The brittle failure was evaluated to have been initiated at a metallurgical and mechanical notch produced by flame cutting and welding. As corrective measures, fully silicon-killed 1020 steel with a maximum grain size of ASTM 5 were used to make new stop-block weldments. The weldments were normalized at 900 deg C after flame cutting and welding to improve microstructure and impact strength. All flame-cut surfaces were ground to remove notches.
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