Fracture failure analysis of 4Cr13 stainless steel linkages in circuit breakers

Wu Wang-ping
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引用次数: 4

Abstract

In this study, the fracture failure of the 4Cr13 stainless steel linkage components in circuit breakers was studied. The microstructure and morphology of fracture surface were observed by scanning electron microscopy and optical microscopy. A micro-Vickers tester measured the hardness of the components. The tensile strength and strain of the components were determined by a universal testing machine. The results show that fracture failure mode was quasi-cleavage fracture, and some dimples and edges of cleavage were present on the fracture surface. The substandard sample exhibited higher hardness than the standard sample. The high hardness could cause the strong rigidity and less toughness, which was not helpful to bend the samples to form hook structure. The heat treatment influenced the mechanical properties of the 4Cr13 components. With increasing the tempering temperature, the hardness of the component was decreased when the quenching temperature was kept stable.

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4Cr13不锈钢断路器连杆断裂失效分析
本研究以断路器4Cr13不锈钢连杆部件断裂失效为研究对象。采用扫描电镜和光学显微镜观察断口的显微组织和形貌。显微维氏硬度计测量了构件的硬度。构件的抗拉强度和应变由万能试验机测定。结果表明:断口破坏模式为准解理断裂,断口表面存在一定的韧窝和解理边缘;不合格样品的硬度高于标准样品。高硬度导致试样刚性强,韧性差,不利于试样弯曲形成钩状结构。热处理对4Cr13零件的力学性能有影响。在淬火温度一定的情况下,随着回火温度的升高,构件的硬度降低。
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