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Influence of Nb microaddition on a microstructure of low-alloyed steels with increased manganese content

机译:铌微添加对锰含量增加的低合金钢组织的影响

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The present study is a first step of a project to obtain thermo-mechanically processed fine-grained increased Mn content TRIP steels with large fractions of retained austenite. Two 0.17C-3Mn-1.6Al-0.2Si-0.2Mo steels with and without Nb microaddition were produced in a vacuum induction furnace. The influence of Nb microaddition on a macrostructure, a grain size and hot-working behavior were examined. The steels are characterized by a slight macrosegregation of Al in the as-cast state, minimized for a Nb-microalloyed steel. After hot forging refined bainitic-martensitic structures with large fractions of γ phase obtained. The steel microalloyed with Nb has finer granules of retained austenite at comparable fractions of this phase. The force-energetic parameters of hot-working were determined in an uniaxial hot-compression test at temperatures of 1150 and 950°C and strain rates from 0.1 to 10s~(-1). The Gleeble 3800 thermomechanical simulator was used. The hot-working behaviour of the investigated steels is challenging because of higher flow stresses and ε_(max) strains compared to conventional TRIP steels with lower Mn contents.
机译:本研究是获得具有较大残留奥氏体分数的热机械加工细晶粒增加Mn含量的TRIP钢的项目的第一步。在真空感应炉中生产了两种添加和不添加微量Nb的0.17C-3Mn-1.6Al-0.2Si-0.2Mo钢。研究了Nb微量添加对宏观组织,晶粒尺寸和热加工行为的影响。这些钢的特征在于,铸态状态的Al出现少量的宏观偏析,而对于Nb微合金化的钢来说,这种偏析最小。经过热锻后,获得了具有很大一部分γ相的细化贝氏体-马氏体组织。用Nb微合金化的钢在此相的可比分数下具有更细的残余奥氏体颗粒。在1150和950°C的温度和0.1至10s〜(-1)的应变速率下,通过单轴热压缩试验确定了热加工的力能参数。使用了Gleeble 3800热机械模拟器。与具有较低Mn含量的常规TRIP钢相比,由于较高的流动应力和ε_(max)应变,被研究钢的热加工行为具有挑战性。

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