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Ductile fracture locus of Ti-6Al-4V titanium alloy

机译:Ti-6Al-4V钛合金的延性断裂轨迹

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The simulation of ductile fracture in real components is becoming a strategic issue in numerical simulations. Numerical simulations of crashes, forming processes, impacts and fractures are reliable only if carried out with an accurate material calibration. The topics involved in this kind of simulation require a complete calibration of both the true stress-strain curve and the failure. The focus of this work is the accurate calibration of the constitutive relations of the titanium alloy Ti-6Al-4V. The approach proposed is based on different experimental tests supported by numerical simulations performed by means of detailed FE models. The Bao-Wierzbicki ductile failure criterion is calibrated using a total of 11 specimens. These specimens are tested on a multiaxial test machine to investigate the failure at different stress triaxialities. Furthermore, the sensitivity to the mesh size and the assessment of the calibration accuracy are analysed in detail on different components in order to verify the geometry transferability.
机译:实际部件中的延性断裂的仿真已成为数值仿真中的一个战略性问题。碰撞,成形过程,冲击和断裂的数值模拟只有在进行精确的材料校准后才能可靠。这种模拟涉及的主题要求对真实的应力-应变曲线和破坏都进行完整的校准。这项工作的重点是精确校准钛合金Ti-6Al-4V的本构关系。建议的方法基于不同的实验测试,并通过详细的有限元模型进行了数值模拟。 Bao-Wierzbicki延性破坏准则使用总共11个样品进行了校准。这些样品在多轴测试机上测试,以研究在不同应力三轴性下的破坏。此外,在不同部件上详细分析了对筛孔尺寸的敏感性和对校准精度的评估,以验证几何形状的可传递性。

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