奥氏体不锈钢焊接金属中的铁素体分解

A. Tavassoli, A. Bisson, P. Soulat
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引用次数: 19

摘要

摘要研究了几种常见的奥氏体不锈钢焊接金属在添加或不添加钼的情况下的残余铁素体分解。结果表明,铁素体在490℃以下分解为α相和富铬α′相,在540℃以上转变为σ相。在490 ~ 540℃之间,α + α′和α + σ相变同时发生。利用LSW (Lifshitz, Slyozov, Wagner)扩散控制粗化理论,估计了α→α + α′分解的表观活化能(Q = 67 kJ mol−1),并推导出了α′粒度随时效时间和温度变化的一般方程。该方程用于预测低温下α + α′分解引起的脆化动力学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ferrite decomposition in austenitic stainless steel weld metals
AbstractResidual ferrite decomposition in several common austenitic stainless steel weld metals, with or without molybdenum additions, has been investigated. It is shown that ferrite decomposes in α and chromium rich α′ phase at temperatures below about 490°C, whereas it transforms to σ at temperatures above 540°C. At temperatures between 490 and 540°C, α + α′ and α + σ transformations occur simultaneously. These transformations are accompanied by precipitation of carbides and in molybdenum bearing alloys by Mo containing phases such as R. Using the LSW (Lifshitz, Slyozov, Wagner) theory of diffusion controlled coarsening, the apparent activation energy for α → α + α′ decomposition is estimated (Q = 67 kJ mol−1) and a general equation giving the particle size of α′ as a function of aging time and temperature is derived. This equation is used to predict the kinetics of embrittlement owing to α + α′ decomposition at low temperatures.
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