Physical metallurgy of modern creep-resistant steel for steam power plants: microstructure and phase transformations

V. Igwemezie, C. C. Ugwuegbu, U. Mark
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引用次数: 19

Abstract

The fact that the microstructure of steel depends on its composition and the heat treatment given to it has been heavily exploited in the design of steel for power plant applications. To obtain a steel that can function at the higher temperature where power plants operate without failure for extended life, heat treatment is needed to produce fine and highly stable dispersion of carbides, nitrides, and intermetallic compounds in the microstructure of the material. A significant contribution also comes from solid solution strengthening by substitutional solutes. We review here various types of phases, microstructures, functions, and interacting effects of the various alloying elements in the design of steel for modern power plant application.
蒸汽电厂用现代抗蠕变钢的物理冶金:显微组织和相变
钢的显微组织取决于其成分和热处理,这一事实在电厂用钢的设计中得到了大量的利用。为了获得一种可以在更高温度下工作的钢,而发电厂在延长寿命的过程中不会出现故障,需要进行热处理,以在材料的微观结构中产生精细且高度稳定的碳化物、氮化物和金属间化合物的分散。取代溶质对固溶体的强化也起着重要的作用。本文综述了现代电厂用钢设计中各种合金元素的相、组织、功能及其相互作用。
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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