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Determination of the material constants of creep damage constitutive equations using Matlab optimization procedure

机译:用Matlab优化程序确定蠕变损伤本构方程的材料常数

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Creep damage constitutive equations based in continuum damage mechanics are characterized by their complexity due to the coupled form of the multi-damage state variables over a wide range of stresses. Thus, the determination of the material constants involved in these equations requires the application of an optimization technique. A new objective function was designed where the errors between the predicted and experimental normalized deformation and lifetime were used in conjunction of the minimal nonlinear least square method from Matlab. Its use is simpler, more compact, and less uncertain and is able to obtain an accurate solution for a sample material (0.5Cr 0.5Mo 0.25V ferritic steel) at the range of 560-590°C. The specific experimental data, the material constants, and all the factors needed are provided as a comparison with the existent investigation of this material. Future works should aim at to further establish the reliability and user-friendness of the method.
机译:基于连续损伤力学的蠕变损伤本构方程的特征在于其复杂性,这是由于在广泛的应力范围内多损伤状态变量的耦合形式所致。因此,确定这些方程式中涉及的材料常数需要应用优化技术。设计了一个新的目标函数,其中结合了Matlab的最小非线性最小二乘法,使用了预测的和实验的归一化变形与寿命之间的误差。它的使用更简单,更紧凑且不确定性更小,并且能够在560-590°C的温度范围内为样品材料(0.5Cr 0.5Mo 0.25V铁素体钢)获得精确的解决方案。提供了具体的实验数据,材料常数和所需的所有因素,以与对该材料的现有研究进行比较。未来的工作应旨在进一步建立该方法的可靠性和用户友好性。

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