论文标题

频域中的无模型数据驱动的粘弹性

Model-Free Data-Driven Viscoelasticity in the Frequency Domain

论文作者

Salahshoor, Hossein, Ortiz, Michael

论文摘要

我们开发了一个数据驱动的框架,用于直接从动态测试材料数据中模拟粘弹性固体中的波传播,包括动态机械分析(DMA),纳米注视,动态剪切测试(DST)和磁共振弹性术(MRE)的数据,而无需进行回归或材料模型。该问题是在频域中提出的,解决方案的方法旨在最大程度地减少在兼容性和平衡意义上的应力和应变病史与材料数据之间的距离。我们通过其傅立叶变换的扁平形态来弥补历史的空间,这允许考虑无限波训练,例如谐波函数。平面规范的另一个重要优点是,它允许从附近频率下的数据推断系统的响应。我们通过两种测试用例证明和验证该方法,该方法是由DMA数据和以MRE数据为特征的3D软凝胶样品的聚合物桁架结构。这些示例证明了在常规商业代码中的数据驱动方案及其强大的收敛属性的易于实施,无论是在求解器和数据方面。

We develop a Data-Driven framework for the simulation of wave propagation in viscoelastic solids directly from dynamic testing material data, including data from Dynamic Mechanical Analysis (DMA), nano-indentation, Dynamic Shear Testing (DST) and Magnetic Resonance Elastography (MRE), without the need for regression or material modeling. The problem is formulated in the frequency domain and the method of solution seeks to minimize a distance between physically admissible histories of stress and strain, in the sense of compatibility and equilibrium, and the material data. We metrize the space of histories by means of the flat-norm of their Fourier transform, which allows consideration of infinite wave trains such as harmonic functions. Another significant advantage of the flat norm is that it allows the response of the system at one frequency to be inferred from data at nearby frequencies. We demonstrate and verify the approach by means of two test cases, a polymeric truss structure characterized by DMA data and a 3D soft gel sample characterized by MRE data. The examples demonstrate the ease of implementation of the Data-Driven scheme within conventional commercial codes and its robust convergence properties, both with respect to the solver and the data.

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