Emerging Behaviour of Alloy Steel Microstructure in Hydrogen Sulphide Environment - A Review

S. L. Lawal, S. Afolalu, Tien Chien Jen, E. Akinlabi
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引用次数: 0

Abstract

Alloy steel is known to be different from carbon steel due to the presence of the alloying element in varying compositions which is usually done for the purpose of modifying and improving the performance of the steel. However, a major problem with the alloy steel is that it usually exhibits different behavior in terms of the microstructures and the mechanical properties, especially, in sulphide environment. Thus, this study focused on the different microstructure of alloy steel and their performance in different environment with strong emphasis in sulphide environment. It was established in the study that a major problem of alloy steel in hydrogen sulphide environment is the sulphide stress cracking which is attributed to the presence of hydrogen and its absorption by the alloy steel. Hence, this study provides a potential guide and information on the capacity of the grades of alloy steel that can thrive in sulphide environment.
合金钢微观结构在硫化氢环境中的新行为--综述
众所周知,合金钢不同于碳钢,这是因为合金元素以不同的成分存在,其目的通常是为了改变和提高钢的性能。然而,合金钢的一个主要问题是,它通常在微观结构和机械性能方面表现出不同的行为,尤其是在硫化物环境中。因此,本研究重点关注合金钢的不同微观结构及其在不同环境下的性能,尤其是在硫化物环境下的性能。研究发现,合金钢在硫化氢环境中的一个主要问题是硫化应力开裂,这归因于氢的存在以及合金钢对氢的吸收。因此,这项研究为合金钢在硫化环境中的性能提供了潜在的指导和信息。
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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