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Optimization of hot working parameters for thermo-mechanical processing of modified 9Cr-1Mo (P91) steel employing dynamic materials model

机译:动态材料模型优化改性9Cr-1Mo(P91)钢热机械加工热加工参数

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摘要

Intrinsic workability of modified 9Cr-1Mo steel has been studied in a wide range of temperatures (1123-1373 K) and strain rates (0.001-10 s~(-1)). Using the experimental data obtained from isothermal hot compression tests, processing map at 0.5 true strain has been developed employing dynamic material model (DMM) approach. The activation energy map has been developed to substantiate the results obtained from processing map and to finalize the optimum processing parameters. Microstruc-tural studies have been carried out to validate the domains of the processing map. The material shows localized deformation bands in the temperature range of 1150-1373 K at strain rates above 1 s~(-1) and exhibits abnormally elongated martensite laths at higher temperature (1373 K) and lower strain rates (0.001-0.01 s~(-1)). The optimum domain for the hot deformation is found to be in the temperature ranges of 1250-1350 K and strain rate ranges 0.015-0.3 s~(-1) with a peak efficiency of 38%. In this domain, apparent activation energy is found to be 400 kJ/mol. The microstructure of the specimens deformed in this region exhibits defect free equiaxed grains.
机译:研究了9Cr-1Mo改性钢在宽温度(1123-1373 K)和应变速率(0.001-10 s〜(-1))下的固有工作性能。使用从等温热压缩测试获得的实验数据,采用动态材料模型(DMM)方法开发了0.5真应变的加工图。已经开发了活化能图,以证实从处理图获得的结果并确定最佳处理参数。进行了微结构研究以验证加工图的范围。该材料在高于1 s〜(-1)的应变速率下在1150-1373 K的温度范围内显示局部变形带,并且在较高的温度(1373 K)和较低的应变速率(0.001-0.01 s〜()下显示出异常伸长的马氏体板条-1))。发现热变形的最佳范围是在1250-1350 K的温度范围内,应变速率在0.015-0.3 s〜(-1)范围内,峰值效率为38%。在该域中,发现表观活化能为400kJ / mol。在该区域变形的试样的微观结构表现出无缺陷的等轴晶粒。

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