会议论文详细信息
18th APS-SCCM; 24th AIRAPT
A multiphase approach for modelling the shock response of composite materials
Key, C.T.^1 ; Schumacher, S.C.^2 ; Ruggirello, K.P.^2 ; Alexander, C.S.^3
HI-TEST Laboratories, Applied Technologies Group, PO Box 87, Arvonia
VA
23004, United States^1
Sandia National Laboratories, PO Box 5800 MS-0836, Albuquerque
NM
87123, United States^2
Sandia National Laboratories, PO Box 5800 MS-1195, Albuquerque
NM
87123, United States^3
关键词: Directional dependence;    Elastic-plastic Material;    Geometric configurations;    Interaction parameters;    Momentum exchange;    Multiphase approach;    Pressure differences;    Unidirectional fibers;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/500/11/112056/pdf
DOI  :  10.1088/1742-6596/500/11/112056
来源: IOP
PDF
【 摘 要 】

The shock response of unidirectional fiber reinforced composite materials is inherently anisotropic due to their microstructural geometric configuration. Unlike typical elastic-plastic materials, composite materials form the observed two-wave structure under longitudinal shocks due to a precursor wave travelling through the fibers ahead of a bulk wave in the resin constituent. The nature of this response presents a problem in traditional hydrocode frameworks where each cell or material point tracks only a single velocity field. This paper outlines an adaptation of the Baer and Nunziato multi-phase model in CTH where a mixture rule is used to determine the velocity field of each constituent (fiber and matrix) of the composite material. The model modifies the momentum exchange term to represent the frictional drag forces between the fiber and matrix constituents, while assuming no mass or energy exchange. The momentum drag model is dependent not only upon the pressure difference between the constituents but also the directional dependence of the shock response. Finally, the model is implemented and the sensitivity of the solution to the interaction parameters demonstrated.

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