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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Deformation-Induced Phase Transformation and Strain Hardening in Type 304 Austenitic Stainless Steel
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Deformation-Induced Phase Transformation and Strain Hardening in Type 304 Austenitic Stainless Steel

机译:304型奥氏体不锈钢的变形诱导相变和应变硬化

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Deformation-induced phase transformation in a type 304 austenitic stainless steel has been studied in tension at room temperature and -50 deg C. The evolution of transformation products was monitored using X-ray diffraction (XRD) line profile analysis of diffraction peaks from a single XRD scan employing the direct comparison method. Crystallographic texture transitions due to deformation strain have been evaluated using (11 l)_(gamma) pole figures. The tensile stress-strain data have been analyzed to explain the influence of underlying deformation-induced microstructural changes and associated texture changes in the steel. It is found that the initial stage of rapidly decreasing strain hardening rate in type 304 steel is primarily influenced by hcp s-martensite formation, and the second stage of increasing strain hardening rate is associated with an increase in the alpha' -martensite formation. The formation of epsilon-martensite is associated with a gradual strengthening of the copper-type texture components up to 15 pct strain and decreasing with further strain at -50 deg C. Texture changes during low-temperature deformation not only change the mechanism of s-martensite formation but also influence the strain rate sensitivity of the present steel.
机译:已经研究了在室温和-50℃下在张力下对304型奥氏体不锈钢中形变引起的相变的影响。使用X射线衍射(XRD)线轮廓分析从单个峰衍射峰来监测相变产物的演变XRD扫描采用直接比较方法。已经使用(11 l)_(γ)极坐标图评估了由于形变应变引起的晶体结构转变。分析了拉伸应力-应变数据,以解释钢中潜在的形变引起的微观结构变化和相关的织构变化的影响。发现304型钢应变硬化速率迅速降低的初始阶段主要受hcp s-马氏体形成的影响,应变硬化速率增加的第二阶段与α'-马氏体形成的增加有关。 ε-马氏体的形成与铜型织构组分的逐渐强化有关,直至15 pct应变并在-50℃随进一步应变而降低。低温变形过程中的织构变化不仅改变了s-机理马氏体的形成,但也影响本钢的应变率敏感性。

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