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Cold-rolled multiphase boron steels: microstructure and mechanical properties

机译:冷轧多相硼钢:组织和力学性能

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The influence of the boron concentration on phase transformation characteristics, microstructure and mechanical properties of multiphase steels was investigated using computational thermodynamics (Thermo-Calc?), dilatometry, quantitative metallography and tensile tests. Pilot scale 50kg steel ingots were prepared in an induction furnace operating under an argon gas atmosphere with boron contents between 0 and 47ppm. The ingots were cut into 35mm thick blocks, which were reheated to 1250°C for 1h and hot rolled for seven passes to attain a thickness of 7.0mm. The hot-rolled sheets were machined and then cold rolled to a final thickness of 1.2mm. Continuous annealing cycles were performed in a B?hr dilatomer and in a Gleeble machine. Continuous annealing laboratory simulations showed that boron did not significantly influence the amount of austenite formed during heating and soaking steps. However, boron influenced austenite transformation during the cooling step, which reduced the amount of ferrite and increased the amount of bainite. Regarding the mechanical properties, adding boron increased strength and decreased ductility of the product. The steels with boron concentrations up to 27ppm exhibited the greatest effect. The amount of austenite, which was calculated using Thermo-Calc?, was slightly overestimated compared with that obtained by dilatometry and metallography, particularly for soaking temperatures lower than 800°C.
机译:利用计算热力学(Thermo-Calc?),膨胀法,定量金相学和拉伸试验研究了硼浓度对多相钢的相变特性,显微组织和力学性能的影响。在感应炉中在硼含量为0至47ppm的氩气气氛下制备中试规模的50kg钢锭。将铸锭切成35mm厚的块,将其重新加热至1250℃持续1h,并且热轧七道次以达到7.0mm的厚度。机械加工热轧板,然后冷轧至最终厚度为1.2mm。连续退火循环是在Bhr扩张器和Gleeble机器中进行的。连续退火实验室模拟表明,硼不会显着影响加热和均热步骤期间形成的奥氏体量。但是,硼影响了冷却步骤中的奥氏体相变,从而减少了铁素体的含量并增加了贝氏体的含量。关于机械性能,添加硼增加了强度并降低了产品的延展性。硼含量高达27ppm的钢表现出最大的效果。与通过膨胀法和金相法获得的奥氏体量相比,使用Thermo-Calc™计算的奥氏体量被高估了一点,特别是在均热温度低于800°C的情况下。

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