首页> 外文期刊>Journal of Materials Research and Technology >Hot deformation behavior and 3D processing map of super austenitic stainless steel containing 7Mo–0.46N–0.02Ce: Effect of the solidification direction orientation of columnar crystal to loading direction
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Hot deformation behavior and 3D processing map of super austenitic stainless steel containing 7Mo–0.46N–0.02Ce: Effect of the solidification direction orientation of columnar crystal to loading direction

机译:含7MO-0.46N-0.02CE的超级奥氏体不锈钢的热变形行为和3D处理地图:柱状晶体凝固方向取向对装载方向的影响

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In the present paper, hot compression tests on a super austenitic stainless steel (SASS) containing 7Mo-0.46N-0.02Ce were performed at temperatures of 900 °C-1200 °C and strain rates of 0.01-10 s-1. The effect of angle between solidification direction of columnar crystal and loading direction (0°, 30°, 60°, and 90°) on the flow behavior and microstructure evolution of SASS was studied. Results showed that, samples with different columnar crystal characteristics and test conditions displayed various flow behaviors due to the difference in dynamic restoration softening mechanism, flow localization, and shear band formation. With the decrease of the angle between the solidification direction of columnar crystal and loading direction, the deformation activation energy (Q) and the ln Z value of SASS decreased at the true strain of 0.7. It indicates that dynamic recovery (DRV) and dynamic recrystallization (DRX) are more likely to happen in the samples with low angles. The location and range of high efficiency of power dissipation (η) region and instability region of the samples differed much with different columnar crystal characteristics. This means obviously different hot workability and microstructure evolution behaviors. At the true strain of 0.7, no negative η-value region was observed in the 0° sample, and the range of instability region was relatively small. On the whole, SASS presented the optimum hot workability when the angle between the solidification direction of columnar crystal and loading direction was 0°.
机译:在本文中,在900℃-1200℃和0.01-10S-1的应变率的温度下进行含有7MO-0.46N-0.02Ce的超级奥氏体不锈钢(SASS)上的热压缩试验。研究了柱状晶体凝固方向(0°,30°,60°,60°和90°)的角度在SASS流动行为和微观结构演变之间的影响。结果表明,由于动态恢复软化机构,流量定位和剪切带形成的差异,具有不同柱状晶体特性和试验条件的样品。随着柱状晶体和装载方向的凝固方向之间的角度减小,变形活化能量(Q)和SAS的LN Z值在0.7的真实应变下减小。它表明动态恢复(DRV)和动态再结晶(DRX)更可能发生在具有低角度的样本中。样品的功耗高效率(η)区域和不稳定性区域的位置和范围不同于不同的柱状晶体特性。这意味着明显不同的热可加工性和微观结构演变行为。在0.7的真实应变处,在0°样品中没有观察到负值区域,并且不稳定区域的范围相对较小。总的来说,当柱状晶体和装载方向的凝固方向之间的角度为0°时,SASS提出了最佳热可加工性。

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