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An Inverse Computational Approach for the Identification of the Parameters of the Constitutive Model for Damaged Ceramics Subjected to Impact Loading

机译:冲击载荷作用下损伤陶瓷本构模型参数辨识的逆计算方法

摘要

In the present study, a computational method was developed, validated and applied for the determination of parameters of a constitutive model for a ceramic material. An optimization algorithm, based on a direct search method, was applied to the determination of the load-displacement response of the specimen, and for the identification of the parameters of the constitutive model.A one-dimensional nonlinear initial-boundary value problem of wave propagation in a composite bar made of dissimilar materials was formulated and solved numerically. Convergence of the numerical scheme was studied, and range of convergence was established. Numerical scheme was validated for a number of benchmark problems with known analytical solutions, and for the problems solved using finite element method. Investigation of the accuracy of the displacement and strain responses was conducted; known limitations of the Kolsky's method for split Hopkinson pressure bar were revealed. For numerical examples considered in the present study, comparison of performance of the optimized finite-difference solver and of the finite element code LS-DYNA showed that the finite-difference code is about 10 times faster.Developed method and solutions were applied for the identification of the parameters of the Johnson-Holmquist constitutive model for five sets of experimental data for aluminum oxide AD995. Results of analysis revealed significant sensitivity of stress response to variation of fractured strength model parameters and damage model parameters.For the determined values of parameters, detailed parametric study of stress field, damage accumulation, and velocity field, was conducted with the help of the finite element method.It was found that the accuracy of the simulation using the JH-2 constitutive model changes with the rate of damage accumulation in the ceramic material.The damage patterns and history of damage development, obtained numerically, agreed qualitatively with the fracture history and its patterns, observed in the recovered Macor ceramics available in the literature.A method for image analysis of the photographic images of the lateral sides of the recovered specimen was proposed. It was used to quantify density of the damage in the specimen and to establish a better integral approach to predict amount of damage inside the specimen.
机译:在本研究中,开发了一种计算方法,并将其验证并用于确定陶瓷材料本构模型的参数。一种基于直接搜索法的优化算法,用于确定试件的荷载-位移响应,并确定本构模型的参数。一维非线性波的初值问题公式化并求解了由异种材料制成的复合棒中的传播。研究了数值格式的收敛性,并建立了收敛范围。使用已知的解析解验证了数值方案的许多基准问题,以及使用有限元方法解决的问题。研究了位移和应变响应的准确性;揭示了霍普金森分压棒的Kolsky方法的已知局限性。对于本研究中考虑的数值示例,优化的有限差分求解器与有限元代码LS-DYNA的性能比较表明,有限差分代码的速度快约10倍。将开发的方法和解决方案用于识别对五组氧化铝AD995实验数据的Johnson-Holmquist本构模型的参数分析分析结果表明,应力响应对断裂强度模型参数和损伤模型参数的变化具有显着敏感性。对于确定的参数值,借助有限元对应力场,损伤累积和速度场进行了详细的参数研究。研究发现,使用JH-2本构模型进行模拟的精度随陶瓷材料中损伤累积的速率而变化。数值获得的损伤模式和损伤发展历史与断裂历史和定性基本吻合。提出了一种在回收的Macor陶瓷中观察到的图案。提出了一种对回收的标本侧面照片图像进行图像分析的方法。它用于量化样品中损伤的密度,并建立更好的积分方法来预测样品内部的损伤量。

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