Effects of temperature and strain rate on the dynamic recrystallization of a medium-high-carbon high-silicon bainitic steel during hot deformation
首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Effects of temperature and strain rate on the dynamic recrystallization of a medium-high-carbon high-silicon bainitic steel during hot deformation
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Effects of temperature and strain rate on the dynamic recrystallization of a medium-high-carbon high-silicon bainitic steel during hot deformation

机译:温度和应变率对热变形期间中高碳高硅壳体钢动态再结晶的影响

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AbstractIsothermal compressive deformation tests for 0.58C–1.89Mn–1.57Si–0.88Cr (wt.%) bainitic steel were conducted on a Gleeble 1500D thermo-simulator machine at temperatures ranging from 950?°C to 1150?°C and strain rates ranging from 0.005 s?1to 5 s?1. The flow characteristics, particularly dynamic recrystallization (DRX) behavior, were investigated. The results showed that the deformation temperature and strain rate have significant effects on the DRX behavior of the studied steel. The grain boundaries through local bulging provide the nucleation cites for DRX. The high temperature and low strain rate can speed up the progress of DRX and the growth of recrystallized grains. The hot deformation activation energy is estimated to be 317.389?kJ/mol, and the critical conditions for initiating DRX are identified by using the Zener-Hollomon parameter. Based on the microstructure observation and the data of flow curves, the DRX models of grain size and kinetics are developed; these models yield satisfactory precision and reliability.Highlights?The hot deformation behavior of 0.58C–1.89Mn–1.57Si–0.88Cr (wt.%) bainitic steel is studied.
机译:<![CDATA [ 抽象 等温压缩变形测试0.58C-1.89mn-1.57SI-0.88CR(WT.%)贝氏体钢在Gleeble 1500D热模拟器机上在950?°C至1150℃的温度下进行,并且应变率从0.005 S ?1 到5 s ?1 。研究了流动特性,特别是动态再结晶(DRX)行为。结果表明,变形温度和应变率对所研究钢的DRX行为具有显着影响。通过局部凸出的晶界为DRX提供了核心含量。高温和低应变率可以加速DRX的进展和再结晶晶粒的生长。估计热变形激活能量为317.389?KJ / mol,并通过使用ZENER-HOLLOMON参数来识别用于启动DRX的临界条件。基于微观结构观察和流量曲线的数据,开发了晶粒尺寸和动力学的DRX模型;这些模型产生令人满意的精度和可靠性。 < ce:section-title id =“sectitle0015”>亮点 研究了0.58℃-1.89mn-1.57SI-0.88CR(重量%)贝氏体钢的热变形行为。

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