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首页> 外文期刊>Journal de Physique, IV: Proceedings of International Conference >Modeling of mechanical behaviour of HSLA low carbon bainitic steel thermomechanically processed
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Modeling of mechanical behaviour of HSLA low carbon bainitic steel thermomechanically processed

机译:热机械加工的HSLA低碳贝氏体钢的力学行为建模

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摘要

A comparative study of the microstructure characterization and mechanical properties was done in a HSLA low carbon (0.08%) bainitic steel containing boron, developed by industry as a bainitic steel grade APIX80. The steel was submitted to two different thermomechanical processes. In the first one, controlled rolling followed by accelerated cooling was applied in laboratory mill. In the second processing, specimens of the same steel were submitted to hot torsion testing. The influence of cooling conditions like start cooling temperature, cooling rates and finish cooling temperature on the microstructure and mechanical properties were investigated. The final microstructure obtained was a complex mixture of polygonal ferrite, pearlite, bainite and martensite/retained austenite constituent. The use of multiple regression analysis allowed the establishment of quantitative relationships between the accelerated cooling variables and mechanical properties of the steel available from Vickers microhardness and tensile tests.
机译:在含硼的HSLA低碳(0.08%)贝氏体钢中进行了显微组织表征和力学性能的比较研究,该工业由工业界开发为贝氏体钢级APIX80。钢经受了两种不同的热机械过程。在第一个实验中,在实验室轧机中采用控制轧制,然后进行加速冷却。在第二次处理中,将相同钢的样品进行热扭力测试。研究了冷却条件如开始冷却温度,冷却速率和结束冷却温度对组织和力学性能的影响。得到的最终显微组织是多边形铁素体,珠光体,贝氏体和马氏体/残余奥氏体成分的复杂混合物。多元回归分析的使用允许在加速冷却变量和可从维氏显微硬度和拉伸试验获得的钢的机械性能之间建立定量关系。

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