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首页> 外文期刊>Materialwissenschaft und Werkstofftechnik >Effects of partitioning parameters in quenching and partitioning on microstructure and mechanical properties of an ultra-high strength low-alloy steel
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Effects of partitioning parameters in quenching and partitioning on microstructure and mechanical properties of an ultra-high strength low-alloy steel

机译:淬火和分配中分配参数对超高强度低合金钢组织和力学性能的影响

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摘要

In this research the effects of partitioning temperature and time in quenching and partitioning (Q& P) heat treatment was studied by applying the two-step quenching and partitioning on a novel low-alloy medium carbon steel. Partitioning was carried out at 250 degrees C and 300 degrees C for various times to obtain different amount of retained austenite and carbide precipitation. Microstructural studies revealed that after 3000 s at 250 degrees C same as 500 s at 300 degrees C, the matrix transformed from martensite to tempered martensite and lower bainite. The increase in partitioning time, due to carbide precipitation led to yield strength improvement, while it caused the reduction in elongation. The tensile test results showed that all quenching and partitioning specimens had tensile strengths higher than 1500 MPa and yield strengths over 1000 MPa.
机译:在这项研究中,通过对新型低合金中碳钢进行两步淬火和分配,研究了分配温度和时间对淬火和分配(Q&P)热处理的影响。在250℃和300℃下进行分区多次,以获得不同量的残留奥氏体和碳化物沉淀。显微组织研究表明,在250摄氏度下3000 s与300摄氏度下500 s相同,基体从马氏体转变为回火马氏体和下贝氏体。由于碳化物的析出,分配时间的增加导致屈服强度的提高,而伸长率的降低则引起。拉伸试验结果表明,所有淬火和分配试样均具有高于1500 MPa的拉伸强度和超过1000 MPa的屈服强度。

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