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Nb,Ti微合金钢热变形的动态模拟变形抗力模型

THE MATHEMATICAL MODEL OF FLOW STRESS OF Nb,Ti MICROALLOYED STEEL UNDER DYNAMIC HOT DEFORMATION

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【作者】 徐有容侯大华王德英张恒华周以俭桑文磊

【Author】 XU Yourong HOU Dahua WANG Deying ZHANG Henhua ZHOU Yijian SANG Wenlei (Shanghai University of Science & Technology)

【机构】 上海科学技术大学上海科学技术大学

【摘要】 本文报道 Nb,Ti 微合金钢的热变形动态模拟变形抗力模型。在试验中用热加工模拟试验机进行高温压缩试验,其变形温度为1123—1423K,变形速率为0.1—60s-1。结果表明,在峰值以前该钢种的流变应力数学模型为:σ=5.99.ε0.167·(?)6.47×10-5·T·exp(4064/T)。形变激活能(Q)为444 kJ/mol,β系数为0.080。峰值应力(σp),临界应变(εc)和温度补偿应变速率参数(Z)之间的关系分别为:σp=12.56·lnZ-391.8;lnεc=0.157·lnZ-7.39。

【Abstract】 In this paper,the mathematical model of the flow stress of microalloyed steelscontaining Nb and Ti under dynamic hot deformation has been carried out by usingThermecmastor-Z simulator at deformation temperature of 1123—1423K and strain rate from0.1 to 60s-1.The results show that the dependence of the flow stress upon the hot deformationparameters is as follows:σ=5.99ε0.167(?)6.47×10-5T exp(4064/T);activation energy(Q)is444kJ/mol;β coefficient is 0.080;meanwhile,the dependences of the peak stress ρp and thecritical strain εc on Zener Hollomon parameter(Z)have also been obtained by regressionmethods.The results are as follows:σp=12.56lnZ-391.8;lnεc=0.157lnZ-7.39.

【基金】 国家自然科学基金,59071036
  • 【被引频次】1
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