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首页> 外文期刊>Journal of Materials Research and Technology >Abnormal mechanical response in a silicon bearing medium carbon low alloy steel following quenching and bainitic holding versus quenching and partitioning treatment
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Abnormal mechanical response in a silicon bearing medium carbon low alloy steel following quenching and bainitic holding versus quenching and partitioning treatment

机译:在淬火和贝氏体保持与淬火和分配处理之后,硅轴承介质碳低合金钢的异常机械响应

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摘要

Multiphase advanced high strength low alloy steels having a refined microstructure of hard bainite and/or martensite laths, interspersed with finely divided retained austenite films, are the potential candidate materials for futuristic industrial applications, such as automotive industry, structural parts, crankshafts and shafts, and powertrain components. In this study, a silicon-bearing, medium-carbon low alloy steel grade of DIN 1.5025 was subjected to both quenching and bainitic holding (Q&B), as well as quenching and partitioning (Q&P) isothermal heat treatments at temperatures closely above and below the martensite start temperature (Ms), respectively. The mechanical response of heat treated samples was evaluated by conducting hardness and tensile tests, corroborated by XRD analysis and metallography using both scanning electron microscopy combined with electron backscatter diffraction as well as transmission electron microscopy. The experimental results showed that a number of Q&B heat treated samples displayed a superior combination of high strength levels with good ductility and work hardening capacity in comparison to that of Q&P ones, akin to the requirements for third generation high strength multiphase steels. It was also found that the superior mechanical response of Q&B heat treated samples was rationalized in respect of the formation of tough strong multiphase microstructures involving a fine mixture of hard bainite and/or martensite laths along with thin films of mostly interlath retained austenite that imparted superior combination of ductility and tensile strength through TRIP phenomenon. Moreover, limited tensile test results conducted in this study, supported by XRD and electron microscopy analyses, suggested that the TRIP response was quite effective in the Q&B multiphase samples containing more than 18 vol.% of retained austenite.
机译:多相先进的高强度低合金钢具有精细的硬贝氏体和/或马氏物板条,穿插着细碎的保留奥氏体薄膜,是用于未来工业应用的潜在候选材料,如汽车工业,结构部件,曲轴和轴,和动力总成组件。在该研究中,耐氧化件的中碳低合金钢等级的DIN 1.5025进行淬火和贝氏体保持(Q&B),以及在紧邻和下方的温度下淬火和分配(Q&P)等温热处理马氏体开始温度(MS)。通过使用扫描电子显微镜和电子反向散射衍射和透射电子显微镜相结合,通过通过XRD分析和标志仪进行硬度和拉伸试验来评估热处理样品的机械响应。实验结果表明,许多Q&B热处理样品呈现出高强度水平的优异组合,具有良好的延展性和工作硬化容量,与Q&P型相比,类似于第三代高强度多相钢的要求。还发现,Q&B热处理样品的卓越机械响应是在形成坚韧的强大的多相微结构的形成中合理化,涉及硬贝氏体和/或马氏体板条的精细混合物以及多数间隙保留奥氏体的薄膜,其赋予优异的通过跳闸现象的延展性和拉伸强度的组合。此外,通过XRD和电子显微镜分析支持的本研究中进行的有限的拉伸试验结果表明,在含有超过18体积的Q&B多相样品中,跳闸响应在含有超过18体积的Q&B的多相样品中非常有效。占保留奥氏体的%。

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