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Hot deformation behavior of the 1.15C-4.00Cr-3.00V-6.00W-5.00Mo powder metallurgy high speed steel

机译:1.15C-4.00Cr-3.00V-6.00W-5.00Mo粉末冶金高速钢的热变形行为

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摘要

The deformation behavior of the 1.15C-4.00Cr-3.00V-6.00W-5.00Mo powder metallurgy (PM) high speed steel in hot working process was investigated by the isothermal compression tests carried out at the temperature of 950-1150 ℃ and the strain rate of 0.001-1.0 s~(-1) with the height reduction of 60%. True stress-true strain curves are investigated; the hot deformation activation energy of the steel is determined to be 750 kJ/mol, and a constitutive equation is obtained. The processing maps were constructed, identification of the instability region and optimization of hot deformation parameters. It is found that the hot working process of the steel can be carried out safely in the domain of (T_d: 1000-1150 ℃, ε: 0.006-0.1 s~(-1)). To obtain the homogeneous microstructure with fine grains, the hot working process should be carried out at the condition of (T_(opi): 1050 ℃, ε_(opi): 0.1 s~(-1)). The flow instability is expected in the two domains at 1030-1150 ℃/0.1 - 1.0 s~(-1) and 1000-1075 ℃/0.001 -0.006 s~(-1). Furthermore, the true strain takes a great effect on processing maps in which the efficiency of power dissipation η obviously changes with the increase of strain from 0.05 to 0.90.
机译:通过在950-1150℃的温度下等温压缩试验研究了1.15C-4.00Cr-3.00V-6.00W-5.00Mo粉末冶金(PM)高速钢在热加工过程中的变形行为。应变速率为0.001-1.0 s〜(-1),高度降低60%。研究了真实应力-真实应变曲线;确定钢的热形变活化能为750 kJ / mol,并得到本构方程。绘制加工图,确定不稳定性区域并优化热变形参数。结果表明,在(T_d:1000-1150℃,ε:0.006-0.1 s〜(-1))范围内可以安全地进行钢的热加工。为了获得具有细晶粒的均匀组织,应在(T_(opi):1050℃,ε_(opi):0.1 s〜(-1))的条件下进行热加工。预计在1030-1150℃/ 0.1-1.0 s〜(-1)和1000-1075℃/ 0.001 -0.006 s〜(-1)的两个区域中将出现流动失稳。此外,真实应变对处理图有很大影响,其中功率消耗效率η随应变从0.05增加到0.90而明显变化。

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