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Investigation of α-Ti plastic anisotropy under thermomechanical loadings: temperature influence on deformation mechanisms

机译:热机械载荷下α-TI塑性各向异性的研究:温度对变形机制的影响

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In situ neutron diffraction method has been used to investigate deformation mechanisms (slip and twinning deformation modes) during uniaxial tensile tests of extruded a-titanium alloy at room temperature, 100 and 300 °C. For this purpose, the prediction of an Elasto-Plastic Self-Consistent (EPSC) model was compared with the experimental data. Results show that there is a good agreement between the simulations and neutron diffraction measurements. The EPSC model enables realistic predictions of not only the elastic lattice strains developed in variously oriented grain families but also the macroscopic stress-strain response within the bulk material.
机译:原位中子衍射方法已被用于在室温,100和300℃的挤出的A-钛合金的单轴拉伸试验期间研究变形机制(滑动和孪晶变形模式)。 为此目的,将弹性塑料自我一致(EPSC)模型的预测与实验数据进行了比较。 结果表明,模拟与中子衍射测量之间存在良好的一致性。 EPSC模型不仅可以在各种面向谷物家庭开发的弹性晶格菌株的现实预测,还可以实现散装材料内的宏观应力 - 应变响应。

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