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Determination of poroelastic properties of cartilage using constrained optimization coupled with finite element analysis

机译:约束优化与有限元分析相结合确定软骨的多孔弹性

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摘要

The feasibility of determining biphasic material properties using a finite element model of stress relaxation coupled with two types of constrained optimization to match measured data was investigated. Comparison of these two approaches, a zero-order method and a gradient-based algorithm, validated the predicted material properties. Optimizations were started from multiple different initial guesses of material properties (design variables) to establish the robustness of the optimization. Overall, the optimal values are close to those found by , but these small differences produced a marked improvement in the fit to the measured stress relaxation. Despite the greater deviation in the optimized values obtained from the zero-order method, both optimization procedures produced material properties that gave equally good overall fits to the measured data. Furthermore, optimized values were all within the expected range of material properties. Modeling stress relaxation using the optimized material properties showed an excellent fit to the entire time history of the measured data.
机译:研究了使用应力松弛有限元模型和两种约束优化来匹配测量数据来确定双相材料特性的可行性。比较这两种方法(零阶方法和基于梯度的算法)可以验证预测的材料特性。从对材料特性(设计变量)的多种不同初始猜测开始优化,以建立优化的鲁棒性。总体而言,最佳值接近于,由发现,但这些小的差异使所测应力松弛的拟合度显着提高。尽管从零阶方法获得的优化值存在较大的偏差,但两种优化程序都产生了材料特性,这些材料特性对测量数据的总体拟合程度相同。此外,优化值均在材料性能的预期范围内。使用优化的材料特性对应力松弛进行建模显示出与测量数据的整个时间历程的极佳拟合。

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