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首页> 外文期刊>Materials Science and Engineering >Effect of strain rate and stress triaxiality on tensile behavior of Titanium alloy Ti-10-2-3 at elevated temperatures
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Effect of strain rate and stress triaxiality on tensile behavior of Titanium alloy Ti-10-2-3 at elevated temperatures

机译:应变速率和三轴应力对高温下钛合金Ti-10-2-3拉伸性能的影响

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摘要

In this study, Split hopkinson tension bar (SHTB) has been employed to investigate the dynamic tensile flow behavior of Ti-10-2-3 alloy at high strain rates and elevated temperatures. The combined effect of stress triaxiality, strain rate and temperature and on the tensile behavior of the alloy was evaluated. Johnson-Cook (J-C) constitutive and fracture models were developed based on high strain rate tensile data. A modified Johnson-Cook model was established and proved to have high accuracy. A comparative assessment has been done to confirm the accuracy of modified J-C model based on finite element method (FEM). The improved model provides better description on the influence of equivalent plastic strain rate and temperature on the plastic flow. The simulation results proved to be in good agreement with the experimental data. The fracture surfaces of specimens tested under various strain rates and temperatures were studied under scanning electron microscopy (SEM).
机译:在这项研究中,采用分裂霍普金森张力棒(SHTB)来研究Ti-10-2-3合金在高应变速率和高温下的动态拉伸流动行为。评估了应力三轴性,应变速率和温度以及合金对拉伸性能的综合影响。基于高应变速率拉伸数据,开发了Johnson-Cook(J-C)本构和断裂模型。建立了改进的Johnson-Cook模型并证明其具有较高的准确性。已经进行了比较评估,以确认基于有限元方法(FEM)的改进J-C模型的准确性。改进的模型对等效塑性应变速率和温度对塑性流动的影响提供了更好的描述。仿真结果与实验数据吻合良好。在扫描电镜(SEM)下研究了在各种应变速率和温度下测试的试样的断裂表面。

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