Influence of martensite morphology and its dispersion on mechanical properties and fracture mechanisms of Fe-Mn-C dual phase steels

Xi He, N. Terao, A. Berghezan
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引用次数: 67

Abstract

The influence of martensite morphology and its geometrical distribution in ferrite matrix on the mechanical properties and fracture mechanisms of Fe-Mn-C dual phase steels has been studied experimentally. Special attention has been paid to the determination of the fracture mechanisms. Examination of the repolished longitudinal sections of fractured specimens by scanning electron microscopy has revealed that, according to their different morphologies and dispersions, the main mechanism of void formation in these dual phase steels can change from martensite cracking to decohesion at the ferrite/martensite interface. These two features, in turn, can determine the failure mechanisms of the specimen: cleavage or ductile `cup and cone' fracture. In addition, the observed mechanical properties have been related to these modes of fracture.
马氏体形态及其弥散对Fe-Mn-C双相钢力学性能及断裂机制的影响
实验研究了铁素体基体中马氏体形态及其几何分布对Fe-Mn-C双相钢力学性能和断裂机制的影响。特别注意的是断裂机制的确定。通过扫描电镜对断口试样进行再抛光纵剖面的观察发现,由于其不同的形貌和分散性,这些双相钢中空洞形成的主要机制可以从马氏体开裂转变为铁素体/马氏体界面的脱聚。这两个特征依次决定了试样的破坏机制:解理或延性“杯状和锥状”断裂。此外,观察到的力学性能与这些断裂模式有关。
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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