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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Development of TRIP-Aided Lean Duplex Stainless Steel by Twin-Roll Strip Casting and Its Deformation Mechanism
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Development of TRIP-Aided Lean Duplex Stainless Steel by Twin-Roll Strip Casting and Its Deformation Mechanism

机译:双辊薄带连铸TRIP辅助贫双相不锈钢的研制及其变形机理

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摘要

In the present work, twin-roll strip casting was carried out to fabricate thin strip of a Mn-N alloyed lean duplex stainless steel with the composition of Fe-19Cr-6Mn-0.4N, in which internal pore defects had been effectively avoided as compared to conventional cast ingots. The solidification structure observed by optical microscope indicated that fine Widmannstatten structure and coarse-equiaxed crystals had been formed in the surface and center, respectively, with no columnar crystal structures through the surface to center of the cast strip. By applying hot rolling and cold rolling, thin sheets with the thickness of 0.5 mm were fabricated from the cast strips, and no edge cracks were formed during the rolling processes. With an annealing treatment at 1323 K (1050 A degrees C) for 5 minutes after cold rolling, the volume fractions of ferrite and austenite were measured to be approximately equal, and the distribution of alloying elements in the strip was further homogenized. The cold-rolled and annealed sheet exhibited an excellent combination of strength and ductility, with the ultimate tensile strength and elongation having been measured to be 1000 MPa and 65 pct, respectively. The microstructural evolution during deformation was investigated by XRD, EBSD, and TEM, indicating that ferrite and austenite had different deformation mechanisms. The deformation of ferrite phase was dominated by dislocation slipping, and the deformation of austenite phase was mainly controlled by martensitic transformation in the sequence of gamma ->epsilon-martensite ->alpha'-martensite, leading to the improvement of strength and plasticity by the so-called transformation-induced plasticity (TRIP) effect. By contrast, lean duplex stainless steels of Fe-21Cr-6Mn-0.5N and Fe-23Cr-7Mn-0.6N fabricated by twin-roll strip casting did not show TRIP effects and exhibited lower strength and elongation as compared to Fe-19Cr-6Mn-0.4N.
机译:在目前的工作中,进行了双辊薄带连铸,以制造组成为Fe-19Cr-6Mn-0.4N的Mn-N合金贫双相不锈钢薄带,从而有效地避免了内部孔隙缺陷。与传统的铸锭相比。用光学显微镜观察到的凝固组织表明,在铸件的表面和中心分别形成了细的维德曼斯坦结构和粗等晶,在铸带的表面至中心没有柱状晶体结构。通过进行热轧和冷轧,由铸带制成厚度为0.5mm的薄板,并且在轧制过程中没有形成边缘裂纹。冷轧后,在1323 K(1050 A℃)下进行5分钟的退火处理,测得铁素体和奥氏体的体积分数大致相等,带材中合金元素的分布进一步均匀化。冷轧和退火板表现出强度和延展性的极佳组合,极限拉伸强度和伸长率分别测得为1000 MPa和65 pct。用XRD,EBSD和TEM研究了变形过程中的微观组织演变,表明铁素体和奥氏体具有不同的变形机理。铁素体相的变形以位错滑移为主,奥氏体相的变形主要由马氏体相变控制,即γ->ε-马氏体->α'-马氏体,从而提高了强度和塑性。所谓的转化诱导可塑性(TRIP)效应。相比之下,通过双辊薄带连铸制造的Fe-21Cr-6Mn-0.5N和Fe-23Cr-7Mn-0.6N贫双相不锈钢没有显示出TRIP效果,并且与Fe-19Cr-相比显示出更低的强度和伸长率。 6Mn-0.4N。

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