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Effect of reverted austenite on tensile and impact strength in a martensitic stainless steel-An in-situ X-ray diffraction study

机译:还原奥氏体对马氏体不锈钢中拉伸强度和冲击强度的影响-原位X射线衍射研究

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摘要

The transformation kinetics from martensite to reverted austenite and partially back to martensite during tempering of a martensitic stainless steel is investigated by in-situ high temperature X-ray diffraction (HT-XRD). Phase fractions and microstructural parameters such as the dislocation density are deduced by means of the Rietveld method in combination with the double-Voigt peak broadening model. The dislocation densities of the phases investigated are related to the square of the microstrain by a pre-factor that depends on Poisson's ratio and lattice constant only. For low tempering temperatures the dislocation density in martensite remains high and the mass fraction of austenite at room temperature remains low. The highest value of the mass fraction of austenite - stable at room temperature - occurs at intermediate tempering temperatures and this condition corresponds to a maximum in impact strength and a minimum in tensile strength. At higher temperatures austenite formed during tempering partially retransforms to martensite during cooling. The average dislocation density in martensite increases with increasing fraction of newly transformed martensite resulting in lower values of impact strength. The in-situ XRD experiments can be used to analyze structural changes in detail and offer thereby a powerful tool to design appropriate heat treatments for engineering steels to obtain tailored mechanical properties.
机译:通过原位高温X射线衍射(HT-XRD)研究了马氏体不锈钢回火过程中从马氏体到还原奥氏体,部分回到马氏体的转变动力学。借助Rietveld方法结合Double-Voigt峰展宽模型,推导了相分数和微观结构参数,例如位错密度。所研究的相的位错密度通过仅取决于泊松比和晶格常数的预因子与微应变的平方相关。对于较低的回火温度,马氏体中的位错密度保持较高,而室温下的奥氏体质量分数保持较低。奥氏体质量分数的最高值-在室温下稳定-在中间回火温度下发生,并且该条件对应于冲击强度的最大值和拉伸强度的最小值。在较高温度下,回火过程中形成的奥氏体在冷却过程中会部分重新转变为马氏体。马氏体中的平均位错密度随着新转变的马氏体的分数的增加而增加,从而导致冲击强度的值降低。原位XRD实验可用于详细分析结构变化,从而为设计用于工程钢的适当热处理以获得定制的机械性能提供了强大的工具。

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