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Study on the low-velocity impact response of foam-filled multi-cavity composite panels

机译:泡沫填充多腔复合板低速冲击响应研究

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摘要

This paper investigates the influence of lattice-web layout on the low-velocity impact performance of foam filled multi-cavity composite panels (FMCPs). The effect of impact velocity has been explored to demonstrate the impact resistance property and energy absorption capacity. Due to the light weight and great energy absorption capacity, the FMCP with double-layer dislocation webs can be used as a good energy buffer device. An energy balance model, based on the energy absorption during impacts, was developed to predict the peak loads of the FMCPs. Numerical models were established and parametric analysis was conducted on the GFRP thickness and foam density.
机译:本文研究了格子腹板布局对泡沫填充多腔复合板(FMCPs)低速冲击性能的影响。探索了冲击速度的影响,证明了冲击性能和能量吸收能力。由于重量轻,吸能能力大,具有双层位错网的FMCP可以作为良好的能量缓冲装置。建立了基于冲击过程中能量吸收的能量平衡模型,预测了FMCP的峰值载荷,建立了数值模型,并对GFRP厚度和泡沫密度进行了参数化分析。

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