Hot compression tests were conducted on a Gleeble-1500D thermal simulating tester. Based on the deformation behavior and microstructural evolution of superalloy GH4742, different types of instability criteria of Prasa...Hot compression tests were conducted on a Gleeble-1500D thermal simulating tester. Based on the deformation behavior and microstructural evolution of superalloy GH4742, different types of instability criteria of Prasad, Gegel, Malas, Murty and Semiatin were compared, and the physical significance of parameters was analyzed. Meanwhile, the processing maps with different instability criteria were obtained. It was shown that instability did not occur when average power dissipation rate was larger than 50% in the temperature range of 1020- 1130℃, corresponding to the strain rate range of 5 × 10-4-3.2 × 10-3 s-1. The domain is appropriate for the processing deformation of superalloy GH4742.展开更多
利用Gleeble-1500D热模拟实验机研究机械合金化法制备的14Cr-ODS铁素体钢在变形温度为1 050-1 200℃、应变速率为0.001-0.3 s 1条件下的高温变形行为,测定其真应力真应变曲线,分析流变应力随应变速率以及变形温度的变化关系。应用MATLA...利用Gleeble-1500D热模拟实验机研究机械合金化法制备的14Cr-ODS铁素体钢在变形温度为1 050-1 200℃、应变速率为0.001-0.3 s 1条件下的高温变形行为,测定其真应力真应变曲线,分析流变应力随应变速率以及变形温度的变化关系。应用MATLAB软件计算最佳的应力水平参数,通过线性回归分析得出材料的变形激活能、材料常数和材料的双曲线本构方程,构造14Cr-ODS铁素体钢的热加工图。结果表明:14Cr-ODS铁素体钢的流变应力随温度升高而减小,随应变速率增加而增大;其变形激活能为501.11 kJ/mol,最佳应力水平参数为0.007,应力指数为4.08;加工失稳温度区域为1 050-1 100℃,应变速率区域为0.1-0.3 s 1;适合加工的条件是变形温度为1 150℃,应变速率为0.1 s 1。展开更多
基金the Nation "973" Project of China (2007CB613807)the New Century Excellent Talents in University (NCET-07-0696)the fund of the State Key Laboratory of Solidification Processing in NWPU (35-TP-2009)
基金supported by the National Key Basic Research Program of China (No. 2010CB631203)
文摘Hot compression tests were conducted on a Gleeble-1500D thermal simulating tester. Based on the deformation behavior and microstructural evolution of superalloy GH4742, different types of instability criteria of Prasad, Gegel, Malas, Murty and Semiatin were compared, and the physical significance of parameters was analyzed. Meanwhile, the processing maps with different instability criteria were obtained. It was shown that instability did not occur when average power dissipation rate was larger than 50% in the temperature range of 1020- 1130℃, corresponding to the strain rate range of 5 × 10-4-3.2 × 10-3 s-1. The domain is appropriate for the processing deformation of superalloy GH4742.
文摘利用Gleeble-1500D热模拟实验机研究机械合金化法制备的14Cr-ODS铁素体钢在变形温度为1 050-1 200℃、应变速率为0.001-0.3 s 1条件下的高温变形行为,测定其真应力真应变曲线,分析流变应力随应变速率以及变形温度的变化关系。应用MATLAB软件计算最佳的应力水平参数,通过线性回归分析得出材料的变形激活能、材料常数和材料的双曲线本构方程,构造14Cr-ODS铁素体钢的热加工图。结果表明:14Cr-ODS铁素体钢的流变应力随温度升高而减小,随应变速率增加而增大;其变形激活能为501.11 kJ/mol,最佳应力水平参数为0.007,应力指数为4.08;加工失稳温度区域为1 050-1 100℃,应变速率区域为0.1-0.3 s 1;适合加工的条件是变形温度为1 150℃,应变速率为0.1 s 1。