钢的第二相:概念、起源及其与性能的相关性的回顾

A. C. E. Silva
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引用次数: 0

摘要

钢是多相合金,其结构日益复杂。自钢铁物理冶金学诞生以来,人们就认识到了钢微观组织的这种复杂性。非金属夹杂物也很早就被认识到与理解钢的行为有关。随着析出硬化和晶粒度控制技术的发展,许多析出相在钢的设计中变得越来越重要。大约在1950- 1970年,“第二相”这个术语被创造出来,作为一个包涵一切的定义,它将包括非金属夹杂物以及氮化物和碳氮化物等细小沉淀,即使在已经具有多相结构的钢中也是如此。虽然这种分类在某些情况下可能是实用的,但我们认为,它阻碍了对钢铁中颗粒的来源和影响的正确理解,并使对它们所参与的现象的理解过度复杂化。在这项工作中,我们简要回顾了第二相颗粒概念的起源,并讨论了颗粒对钢行为的影响的关键特性。通过几个例子,我们提出尺寸和体积分数是评估颗粒如何影响钢的主要变量。虽然化学成分是了解颗粒起源的关键,但我们认为这些变量与界面特性一起,是了解颗粒对钢行为影响的最相关因素。
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Second phases in steel: a review of the concept, origin, and their relevance for properties
Steels are multiphase alloys with an increasingly complex constitution. This complexity of steel microstructures has been recognized since the birth of steel physical metallurgy. Non-metallic inclusions have also been very early recognized as relevant to the understanding of steel behavior. With the advances in precipitation hardening and grain size control, many precipitate phases gained importance in steel design. Around 1950-70 the term “second phases” was coined as an all-encompassing definition that would cover non-metallic inclusions as well as fine precipitates such as nitrides and carbonitrides even in steels that already had a multi-phase constitution. While this classification may be practical in some cases, we argue that it hinders the proper understanding of the origin and effects of particles in steel and unduly complicates the understanding of the phenomena in which they take part. In this work, we briefly review the origin of the second phase particle concept and discuss the critical properties of particles with respect to their influence on steel behavior. Through several examples, we propose that size and volume fraction are the main variables in evaluating how particles affect steels. While chemical composition is key to understanding the origin of the particles, we suggest that these variables are, together with interface properties, the most relevant to understand the effect of particles on steel behavior.
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