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TC4钛合金的电热拉伸变形行为及本构模型研究
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作者 顾锐 党鹏 +5 位作者 王永军 吴为 刘宝胜 曹凤超 曾元松 王明涛 《热加工工艺》 北大核心 2021年第22期60-66,72,共8页
使用CSS-44100电子万能试验机对通直流电加热的TC4钛合金试件进行单向拉伸试验,得到了TC4钛合金试件的载荷-位移曲线。在变形过程中,通过减小电流以控制材料截面积减小而导致的电阻升高,从而调整试件的温度。采用切块法,将试件均匀分段... 使用CSS-44100电子万能试验机对通直流电加热的TC4钛合金试件进行单向拉伸试验,得到了TC4钛合金试件的载荷-位移曲线。在变形过程中,通过减小电流以控制材料截面积减小而导致的电阻升高,从而调整试件的温度。采用切块法,将试件均匀分段,每段视为等温,从而在变形试件上建立了温度场计算模型,进一步运用林建国的粘塑性本构模型建立了试件应力-应变的计算方程。对TC4钛合金的通电拉伸试验数据进行分析计算。结果表明:所建立的计算方法有效,可用于钛合金非绝热状态下电热单向拉伸本构模型模型参数的辨识。 展开更多
关键词 TC4钛合金 通电热拉伸变形行为 温度场计算模型 粘塑性本构模型
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An optimized hardness model for carburizing-quenching of low carbon alloy steel 被引量:11
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作者 张星 唐进元 张学瑞 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第1期9-16,共8页
Research has been conducted about the hardness prediction for the carburizing and quenching process based on an optimized hardness simulation model,in accordance with the calculation rule of mixed phases.The coupling ... Research has been conducted about the hardness prediction for the carburizing and quenching process based on an optimized hardness simulation model,in accordance with the calculation rule of mixed phases.The coupling field model incorporates carburizing field analysis,temperature field analysis,phase transformation kinetics analysis and a modified hardness calculation model.In determination of the calculation model for hardness,calculation equations are given to be applied to low carbon content(x(C)<0.5%) for the child phases and the martensite hardness is calculated for high carbon content(x(C)>0.5%) in alloy.Then,the complete carburizing-quenching hardness calculation model is built,and the hardness simulation data are corrected considering the influence of residual austenite(RA) on hardness.Hardness simulations of the carburizing and quenching process of 17CrNiMo6 samples have been performed using DEFORM-HT_V10.2 and MATLAB R2013 a.Finally,a series of comparisons of simulation results and measured values show a good agreement between them,which validates the accuracy of the proposed mathematical model. 展开更多
关键词 carburizing-quenching simulation hardness model DEFORM-HT residual austenite high carbon content
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