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Effect of deformation temperature on microstructure and mechanical behaviour of warm working vanadium microalloyed steels

机译:变形温度对温工作钒微合金钢组织和力学性能的影响

摘要

Plane strain compression tests of two V microalloyed steels and one plain C-Mn steel have been done to analyse the influence of the deformation temperature, in the warm working range, on the final microstructure and subsequent mechanical behaviour. In the case of V microalloyed steels, the reheating temperature has an effect on the amount of vanadium in solution prior to deformation. This factor influences the austenite evolution during warm deformation and the transformation during cooling. As a consequence, in the microalloyed steels complex multiphase microstructures are obtained that lead to a wide range of strength-toughness combinations. In contrast, in the case of the plain C-Mn steel minor effects are observed in the deformation range from 800 to 870 °C. © 2011 Springer Science+Business Media, LLC.
机译:进行了两种V微合金钢和一种普通C-Mn钢的平面应变压缩试验,以分析变形温度在温暖的工作范围内对最终组织和随后的机械性能的影响。对于V型微合金钢,再加热温度会影响变形前溶液中钒的含量。该因素影响在热变形期间奥氏体的演变以及在冷却期间的奥氏体的转变。结果,在微合金钢中获得了复杂的多相微观结构,从而导致了广泛的强度-韧性组合。相反,在普通C-Mn钢的情况下,在800至870°C的变形范围内观察到较小的影响。 ©2011 Springer Science + Business Media,LLC。

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