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首页> 外文期刊>Journal of Sandwich Structures and Materials >Low-velocity impact and compressive behavior for shifted-tri-axial composite panels
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Low-velocity impact and compressive behavior for shifted-tri-axial composite panels

机译:换档三轴复合板的低速冲击和压缩行为

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This paper presents the experimental behavior of low-energy impact and quasi-static compression test of shifted-tri-axial structural wood-fiber-based composite panels made from laminated paper. The experimental results were analyzed based on design parameters and configurations of panels for the further design and optimization. The results showed that the face stiffness and strength was a significant factor to improve both impact performance and compressive performance. The panels made with additional carbon fiber fabric composite faces had higher energy absorption compared with the same panels made without it. The core configuration also affected the impact behavior of the panels, the foam filled core integrated with the shifted-tri-axial rib structure improved the impact load and absorbed more energy than the same panels without the foam. Further, the structure and size of the element in the core influenced the impact performance and energy absorption. The location for both compression and impact at the triangular lattice element center of the ribs had higher absorbed energy than the location at the hexagonal lattice element center of the ribs. A 3D contour surface map of maximum energy absorption was made based on the experimental data, the contour shows localized energy absorption based on the impact location on the core, the small triangular lattice element of the core had highest maximum energy absorption of panels. For both the quasi-static compression tests and the low-velocity impact tests, the panels with the same core configuration had similar compressive load-displacement trends during the early contact phase. However, the peak load was higher in compression than the peak load for the low-velocity impact for panels with the same configuration.
机译:本文介绍了由层压纸制成的换档三轴结构木材 - 纤维复合板的低​​能量冲击和准静态压缩试验的实验行为。基于用于进一步设计和优化的面板的设计参数和配置来分析实验结果。结果表明,面刚度和强度是改善影响性能和压缩性能的重要因素。用额外的碳纤维织物复合面制造的面板与没有其制造的相同面板相比具有更高的能量吸收。芯构造也影响了面板的冲击行为,泡沫填充芯与换档三轴肋结构相结合,改善了冲击载荷并比没有泡沫的相同面板吸收更多的能量。此外,核心中元件的结构和尺寸影响了影响性能和能量吸收。肋的三角形格子元件中心的压缩和冲击的位置具有比肋的六边形格子元素中心的位置更高的吸收能量。基于实验数据制造了最大能量吸收的3D轮廓表面图,轮廓显示了基于芯上的冲击位置的局部能量吸收,核心的小三角形晶格元件具有最高的面板的最大能量吸收。对于准静态压缩测试和低速冲击试验,具有相同核心配置的面板在早期接触阶段期间具有相似的压缩负载 - 位移趋势。然而,压缩的峰值负荷高于具有相同配置的面板的低速冲击的峰值负荷。

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