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Failure analysis of 18CrNi3MoA drilling tails

机译:18crni3moa钻孔的故障分析

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The fracture of a drilling tail made of 18CrNi3MoA steel in the exchanging water hole was analyzed in terms of inclusions, prior austenite grain size, carburized layers, and fatigue fracture morphology by means of optical microscopy, quantitative metallography, and scanning electron microscopy (SEM). Fatigue crack initiation and propagation on the drilling tail were also studied. The results showed that the fracture on the drilling tail was not induced by inclusions and the distribution inhomogeneity of prior austenite grain size. Instead, because the outside surface of the exchanging water hole was not continuously geometric, there was a great deal of stress concentration in those areas under continuous twisting, axial impact, and corrosion of mineral water. Thus three crack sources emerged in these areas. Initial cracks centered on these sources spread from the outside surface to the inside surface, and eventually the drilling tail ruptured. Furthermore, the fractograph of the region around the crack sources exhibited a typical ductile dimple fracture pattern, and cracks initiated on the outside surface of the carburized layers of the exchanging water hole. Three crack sources could be the sources of fatigue crack propagation. Based on the analysis of fatigue crack propagation, it was further demonstrated that fatigue damage originated from the outside surface of the exchanging water hole.
机译:通过光学显微镜,定量金相和扫描电子显微镜(SEM),在夹杂物,先前奥氏体晶粒尺寸,渗碳层和疲劳断裂形貌中分析了由18crni3moa钢制成的钻孔纹骨折。通过光学显微镜,定量金相和扫描电子显微镜(SEM) 。还研究了钻孔裂纹的疲劳裂纹启动和繁殖。结果表明,钻孔上的骨折未​​通过夹杂物和先前奥氏体晶粒尺寸的分布诱导。相反,由于交换水孔的外表面不连续几何,因此在连续扭曲,轴向冲击和矿泉水腐蚀下存在大量的应力集中。因此,在这些区域出现了三个裂缝来源。以这些源为中心的初始裂缝从外表面传播到内表面,最终钻孔尾部破裂。此外,裂纹源周围的区域的分数表现出典型的延性凹痕图案,并且在交换水孔的渗碳层的外表面上发起的裂缝。三个裂纹来源可能是疲劳裂纹繁殖的来源。基于对疲劳裂纹繁殖的分析,进一步证明源于交换水孔的外表面的疲劳损伤。

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