Investigation on brittle fracture mechanism of a grade E cast steel knuckle

Jin Huang, Lu Xia, Youshou Zhang, Sinian Li
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引用次数: 6

Abstract

This paper investigated the brittle fracture mechanism of a grade E cast steel knuckle that is one of the key components of the coupler for railway wagon by using scanning electronic microscope, optical microscope, energy dispersive spectroscopy as well as mechanical property testing methods. It is found that large amounts of developed coarse dendrites and shrinkage porosity existed in the knuckle's microstructure, the plasticity and impact toughness of the knuckle entity are very bad and far below that of the Keel block represented this knuckle. Apparently, the shrinkage porosity resulted in the knuckle unsound metallic matrix and poor mechanical properties. The fracture morphology mainly shows the characteristic of cleavage, quasi-cleavage fracture as well as a little ductile fracture, so the failure of the knuckle can be attributed to brittle fracture distinctly. Moreover, a welding repair area with high hardness is also found in the fracture region, which might initiate micro-cracks on the surface of the knuckle. As a result, it can be inferred that under an impact load that did not exceed material fracture limit, the micro-cracks initiated from weld repair zone propagated rapidly into the inner matrix by continuously fracturing the dendrites along shrinkage porosity regions until the knuckle failed instantly.

E级铸钢关节脆性断裂机理研究
采用扫描电镜、光学显微镜、能量色散光谱及力学性能测试等方法,研究了铁路客车车钩关键部件之一E级铸钢指节的脆性断裂机理。结果表明,接头组织中存在大量发育的粗枝晶和缩孔,接头实体的塑性和冲击韧性很差,远低于代表该接头的龙骨块。显然,收缩孔隙率导致关节金属基体不健全,力学性能较差。断口形貌主要表现为解理、准解理断裂和少量韧性断裂特征,故指节的破坏明显属于脆性断裂。断口处还存在高硬度的焊接修复区,这可能导致关节表面出现微裂纹。由此可以推断,在不超过材料断裂极限的冲击载荷作用下,由焊缝修复区产生的微裂纹沿缩孔区不断地破坏枝晶,迅速向基体内部扩展,直至关节瞬间失效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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