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Effect of reverse austenitic transformation on mechanical property and associated texture evolution in AISI 316 austenitic stainless steel processed by low temperature rolling and annealing

机译:奥氏体逆相变对低温轧制和退火处理的AISI 316奥氏体不锈钢力学性能和相关组织演变的影响

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The tensile behaviour of austenitic stainless steel after cryorolling and subsequent annealing has been reported. The defect structures generated during cryorolling, lead to the formation of α’ and ε-martensite. Subsequent annealing leads to the formation of refined austenitic grains surrounded by martensitic islands. These martensitic islands consist of α’ phase only. The dislocation-martensite interaction leads to discontinuous yielding for high Ultimate Tensile Strength (UTS)/Yield Strength (YS) ratio. In case of annealing at 923 K (650 °C) for 10 min after 30% cryorolling leads to nearly 30% untransformed martensite whereas only 7% martensite remains after annealing for 1 h. The effect of remnant martensite on tensile behaviour leading to yield plateau has been discussed in this work. It can be noticed that sample with 20% cryo rolling and annealed at 650 °C for 1 h shows higher YS (721 MPa) with YS/UTS ratio of 0.79 and ~ 18% uniform elongation. Sample with 30% cryo rolling and annealed at 650 °C for 1 h shows YS of 305 MPa with YS/UTS ratio of 0.27 and uniform elongation of ~ 24%. Therefore, 20% cryo rolled and annealed at 650 °C for 1 h has the best combination of mechanical properties.
机译:据报道,经过冷轧和随后的退火处理后,奥氏体不锈钢的拉伸性能。低温轧制过程中产生的缺陷结构导致形成α'和ε-马氏体。随后的退火导致形成被马氏体岛包围的精炼奥氏体晶粒。这些马氏体岛仅由α'相组成。位错-马氏体相互作用导致高极限抗拉强度(UTS)/屈服强度(YS)比高的不连续屈服。在30%的冷轧后于923 K(650°C)退火10 min的情况下,将导致近30%的未变形马氏体,而退火1 h后仅剩下7%的马氏体。在这项工作中已经讨论了残余马氏体对导致屈服平稳的拉伸行为的影响。可以注意到,在20%的冷轧和650°C的温度下退火1lh的样品显示出更高的YS(721 MPa),YS / UTS比为0.79,均匀伸长率为〜18%。经过30%低温冷轧并在650 C退火1 h的样品显示YS为305 MPa,YS / UTS比为0.27,均匀伸长率为〜24%。因此,将20%的低温冷轧和650°C退火1 rolledh具有最佳的机械性能组合。

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