用于虚拟动态力学分析实验的fft求解器:在玻璃/非晶系统和颗粒复合材料上的应用

S. Andre, J. Boisse, C. Noûs
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引用次数: 4

摘要

基于fft的求解器越来越多地被许多研究小组用于模拟与非均质微观结构相关的力学行为。本文报道了一般通过动态力学分析(DMA)进行实验研究的复合材料结构粘弹性行为的研究进展。在复数值条件下开发的并行计算代码,直接在由力学性能体素网格描述的异质系统的频域上提供虚拟DMA实验。所获得的精度和计算时间都很好。从文献中发现的两个例子开始,努力展示了这种虚拟DMA工具的应用:在小尺度上对玻璃/非晶系统进行建模,以及在温度扫描模式下对由玻璃微珠和聚苯乙烯基体制成的颗粒复合材料进行DMA获得的实验数据进行建模。这两个例子都显示了虚拟DMA如何有助于从理论或实验的角度对松弛现象进行质疑、分析和理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An FFT-solver used for virtual Dynamic Mechanical Analysis experiments: Application on a glassy/amorphous system and on a particulate composite
FFT-based solvers are increasingly used by many researcher groups interested in modelling the mechanical behavior associated to a heterogeneous microstructure. A development is reported here that concerns the viscoelastic behavior of composite structures generally studied experimentally through Dynamic Mechanical Analysis (DMA). A parallelized computation code developed under complex-valued quantities provides virtual DMA experiments directly in the frequency domain on a heterogenous system described by a voxel grid of mechanical properties. The achieved precision and computation times are very good. An effort has been made to show the application of such virtual DMA tool starting from two examples found in the literature: the modelling of glassy/amorphous systems at a small scale and the modelling of experimental data obtained in temperature sweeping mode by DMA on a particulate composite made of glass beads and a polystyrene matrix, at a larger scale. Both examples show how virtual DMA can contribute to question, analyze, understand relaxation phenomena either on the theoretical or experimental point of view.
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