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Microstructure and Crystallographic Texture Development of Microalloyed Twinning Induced Plasticity (TWIP) Steels Under Uniaxial Hot-Tensile Conditions

机译:单轴热拉伸条件下微合金孪晶诱导塑性(Twip)钢的微结构和晶体纹理开发

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Nowadays, there are limited referenced data on the hot deformation of twinning induced plasticity (TWIP) steels, particularly on the crystallographic preferred orientation (crystallographic texture). It is well know that texture is one of the most important factors affecting sheet metal forming performance. The aim of this research work is to determine the influence of microalloying elements on the microstructure and texture of high-Mn austenitic TWIP steels deformed under uniaxial hot-tensile conditions. For this purpose, one non-microalloyed and other single microalloyed with Ti, V and Mo TWIP steels were melted in an induction furnace and cast into metal and sand molds. Samples with average austenitic grain size between 400 and 2000 μm were deformed in the temperature range between 800 and 900 °C at a constant true strain rate of 10~(-3) s~(-1). The evolution of the microstructure and texture near to the fracture tip were characterized using electron back-scattering diffraction (EBSD) technique. The results show that the TWIP steels microalloyed with V and Mo and the non-microalloyed one, solidified in metal mold, exhibit dynamically recrystallized grains oriented in the [012] preferential direction, which was corroborated by local misorientation measurements, indicating low dislocation density. On the other hand, most TWIP steels solidified in sand molds do not show dynamically recrystallized grains, having the largest austenitic grains oriented in the [001]/[101] preferred directions. In general, weak textural Cube {001 }<100> combined with <111> fiber, namely γ-fiber, spread from E {111}<110> to Y {111}<112> as major texture components were detected.
机译:如今,关于孪生诱导可塑性(Twip)钢的热变形有限的参考数据,特别是在晶体中优选的取向(晶体纹理)上。很好地知道,质地是影响金属板成形性能的最重要因素之一。该研究的目的是确定微合金元素对在单轴热拉伸条件下变形的高Mn奥氏体Twip钢的微观结构和质地的影响。为此目的,将一种非微合金和其他单一微合金化与Ti,V和Mo Twip钢熔化在感应炉中并铸造成金属和砂模。平均奥氏体晶粒尺寸在400-2000μm之间的样品在800-900℃的温度范围内以10〜(-3)S〜(-1)的恒定应变率变形。使用电子背散射衍射(EBSD)技术表征了近骨折尖端的微观结构和纹理的演变。结果表明,在金属模具中凝固的V和Mo和非微合金化的Twip胶片,在金属模具中凝固,在[012]优先方面上显示出在[012]优先方面的动态重结晶的晶粒,其通过局部错误化测量来证实,表明低位脱位密度。另一方面,在砂模中固化的大多数Twip钢不显示在优选方向上具有定向的最大奥氏体晶粒的动态再结晶晶粒。通常,弱纹理立方体{001} <100>与<111>纤维相结合,即γ-纤维,从e {111} <110℃扩散到Y {111} <112>作为主要质地组分。

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