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Crystallographic analysis of specimens used for calibrate a failure model for an Al 6061 - T6 alloy

机译:用于校准Al 6061-T6合金失效模型的试样的晶体学分析

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Calibration and exploitation of failure criterion is at present a challenging field in the structural integrity scenario. Calibrated failure criteria allow the simulation/reproduction of damages using virtual approach and eventually further assessment of the residual integrity of the components. Therefore the increase of awareness in failure issues makes the numerical simulation an actual, useful and reliable tool for the analysis of complex structures under extreme loads, especially in aerospace field where full scale tests are often very expensive and difficult to carry out. With this aim, the constitutive relations of an Aluminium Al 6061-T6 alloy have been calibrated with dedicated focus on failure criterion. The results obtained have been discussed considering the crystallographic measurements that permit to point out the dissipative behavior on the basis of texture formation as a function of the load type. The final aim is to confirm and explain the different failure behavior depending on the different stress triaxiality.
机译:失效准则的校准和开发目前是结构完整性场景中的一个充满挑战的领域。校准的故障准则允许使用虚拟方法模拟/再现损坏,并最终进一步评估组件的剩余完整性。因此,对故障问题的认识的提高使数值模拟成为一种用于分析极端载荷下复杂结构的实用,有用和可靠的工具,尤其是在航空航天领域,因为全面测试通常非常昂贵且难以执行。出于这个目的,已经专门针对破坏准则对铝Al 6061-T6合金的本构关系进行了校准。已经讨论了考虑晶体学测量的结果,该晶体测量允许根据织构的形成来指出耗散行为与载荷类型的关系。最终目的是确认并解释取决于不同应力三轴性的不同失效行为。

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