首页> 外文期刊>ISIJ international >Effects of Alloying Elements on Sigma Phase Precipitation in Duplex Stainless Steel (1) - Modelling of Effects of Chrovmium, Molybdenum and Tungsten on Sigma Phase Growth Rate in Super Duplex Stainless Steel -
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Effects of Alloying Elements on Sigma Phase Precipitation in Duplex Stainless Steel (1) - Modelling of Effects of Chrovmium, Molybdenum and Tungsten on Sigma Phase Growth Rate in Super Duplex Stainless Steel -

机译:合金元素对双相不锈钢Sigma相析出的影响(1)-铬,钼和钨对超级双相不锈钢Sigma相生长速率影响的模型-

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The modelling of the precipitation and growth behaviour of the sigma phase in super duplex stainless steel was investigated to clarify the quantitative effects of chemistry. The alloying elements of Cr and Mo useful for improving of corrosion resistance can promote sigma phase precipitation but that phase does not always grow rapidly. Therefore it is meaningful to clarify the effect of alloying elements on the kinetics of sigma phase growth to improve the trade-off relation between the corrosion resistance and avoiding harmful phase precipitation.A physical model regarding sigma phase growth rate as a function of temperature and the parameters regarding the amount of allying elements in the steel was suggested on the basis of the traditional nucleation theory during isothermal heating process. It was confirmed that the physical model suggested in this work explains the experimental results of the effects of temperature and alloying elements of CR, MO and Won the growth rate of the sigma phase.
机译:研究了超级双相不锈钢中σ相的析出和生长行为的模型,以阐明化学的定量影响。 Cr和Mo的合金元素可用于改善耐蚀性,可促进σ相析出,但该相并不总是快速生长。因此,有必要弄清合金元素对sigma相生长动力学的影响,以改善耐蚀性和避免有害相沉淀之间的权衡关系.sigma相生长速率随温度和温度的函数而变化的物理模型。在等温加热过程中,根据传统的成核理论,提出了有关钢中合金元素含量的参数。可以肯定的是,这项工作提出的物理模型解释了温度和CR,MO和W合金元素对σ相生长速率的影响的实验结果。

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