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Hot Deformation Characteristics—Constitutive Equation and Processing Maps—of 21-4N Heat-Resistant Steel

机译:21-4N耐热钢的热变形特性(本构方程和工艺图)

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摘要

The hot deformation behavior of 21-4N heat-resistant steel was studied by hot compression test in a deformation temperature range of 1000–1180 °C, a strain rate range of 0.01–10 s−1 and a deformation degree of 60%, and the stress-strain curves were obtained. The functional relationship between flow stress and process parameters (deformation degree, deformation temperature, strain rate, etc.) of 21-4N heat-resistant steel during hot deformation was explored, the constitutive equation of peak stress was established, and its accuracy was verified. Based on the dynamic material model, the energy dissipation maps and destabilization maps of 21-4N heat-resistant steel were established at strains of 0.2, 0.4 and 0.6, and processing maps were obtained by their superposition. Within the deformation temperature range of 1060~1120°C and a strain rate range of 0.01–0.1 s−1, there is a stable domain with the peak efficiency of about 0.5. The best hot working parameters (strain rate and deformation temperature) of 21-4N heat-resistant steel are determined by the stable and instable domain in the processing maps, which are in the deformation temperature range of 1120–1180 °C and the strain rate range of 0.01–10 s−1.
机译:通过热压缩试验研究了21-4N耐热钢在1000-1180°C的变形温度范围,0.01-10 s -1 的应变速率范围内的热变形行为。变形度为60%,并获得了应力-应变曲线。探索了21-4N耐热钢热变形过程中流变应力与工艺参数(变形度,变形温度,应变速率等)的函数关系,建立了峰值应力本构方程,并验证了其准确性。 。基于动态材料模型,建立了应变为0.2、0.4和0.6的21-4N耐热钢的能量耗散图和失稳图,并通过叠加获得了加工图。在1060〜1120°C的变形温度范围和0.01-0.1 s -1 的应变速率范围内,存在一个稳定的区域,峰值效率约为0.5。 21-4N耐热钢的最佳热加工参数(应变率和变形温度)由加工图中的稳定和不稳定区域确定,它们在1120–1180°C的变形温度范围内和应变率范围0.01–10 s -1

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