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- W2184938892 abstract "The size of a fabric model with a yarn level resolution that can be studied using a finite element analysis (FEA) is restricted by the computational requirements of the simulation. Such models are very useful in gaining insight into the mechanics of interactions, deformation, and energy absorption during the impact of woven composites. However such an analysis of systems with realistic dimensions is presently not possible. The focus of this paper is to present a multiscale model wherein a high level of resolution is used around the impact zone and this level decreases with distance away from the impact zone. Therefore yarns modeled using solid and shell elements are used at near-field regions while a homogenized resolution with shell elements that neglects the yarn architecture is used at far-field regions. Acoustic impedance matched interfaces are created between the various finite element formulations at the various scales of modeling. This approach is referred to as the 'Hybrid Element Analysis (HEA)' and it has been shown to reduce the computational requirements in terms of both processor and memory requirements, while still being able to reproduce baseline simulation results. This will enable the simulation of larger fabric systems that were previously computationally prohibitively expensive." @default.
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- W2184938892 date "2008-01-01" @default.
- W2184938892 modified "2023-09-26" @default.
- W2184938892 title "Simulating the Impact of Multi-layer Fabric Targets using a Multi-scale Model and the Finite Element Method" @default.
- W2184938892 hasPublicationYear "2008" @default.
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