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Parameter range estimation and uncertainty analysis for high strain rate material response via model fusion

机译:通过模型融合对高应变率材料响应进行参数范围估计和不确定性分析

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摘要

The dynamic stress-strain response of a material can be described by a number of different models of varying fidelity. However, an individual model's ability to replicate the dynamic stress-strain response of a material can be hindered by experimental variability. Reification, an approach to fusing models and experimental data with inherent scatter, is presented. It is then used to determine the optimum parameters of the Johnson-Cook (JC) and Zerilli-Armstrong (ZA) models using a fusion of Split-Hopkinson Pressure Bar (SHPB) data and the JC and ZA models fit to the SHPB data using a traditional approach. The output of the fused model is a dataset that represents a "best-guess " sampling of the possible stress-strain response of a high strength steel. In the present work, the dynamic response of a newly developed steel, AF9628, is evaluated. Under the reification framework, the experimental variability and limitations of the mathematical model expressions are addressed by the optimized sampling of data and combined fitting process. The JC and ZA models are then re-fit to partitions of the fused dataset, which bound the responses of the traditionally fit JC and ZA models. The behavior of the re-fit models and the traditionally fit models are compared via a simulated Taylor anvil test. Published under an exclusive license by AIP Publishing.
机译:材料的动态应力-应变响应可以用许多不同保真度的不同模型来描述。然而,单个模型复制材料动态应力-应变响应的能力可能会受到实验变异性的阻碍。提出了Reification,一种将模型和实验数据与固有散射融合的方法。然后,它使用Split-Hopkinson压力棒(SHPB)数据的融合来确定Johnson-Cook(JC)和Zerilli-Armstrong(ZA)模型的最佳参数,并使用传统方法将JC和ZA模型拟合到SHPB数据。熔融模型的输出是一个数据集,该数据集代表了高强度钢可能的应力-应变响应的“最佳猜测”采样。在本研究中,评估了一种新开发的钢AF9628的动态响应。在再现框架下,通过优化数据抽样和组合拟合过程,解决了数学模型表达式的实验变异性和局限性。然后将 JC 和 ZA 模型重新拟合到融合数据集的分区中,从而约束传统拟合的 JC 和 ZA 模型的响应。通过模拟泰勒砧测试比较了重新拟合模型和传统拟合模型的行为。在 AIP Publishing 的独家许可下发布。

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