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首页> 外文期刊>Holzforschung >Low-velocity impact response of wood-strand sandwich panels and their components
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Low-velocity impact response of wood-strand sandwich panels and their components

机译:木绞线夹芯板及其组件的低速冲击响应

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摘要

Profiled hollow core sandwich panels (SPs) and their components (outer layers and core) were manufactured with ponderosa and lodgepole pine wood strands to determine the effects of low-velocity impact forces and to observe their energy absorption (EA) capacities and failure modes. An instrumented drop weight impact system was applied and the tests were performed by releasing the impact head from 500 mm for all the specimens while the impactors (IMPs) were equipped with hemispherical and flat head cylindrical heads. SPs with cavities filled with a rigid foam insulation material (SPfoam) were also tested to understand the change in EA behavior and failure mode. Failure modes induced by both IMPs to SPs were found to be splitting, perforating, penetrating, core crushing and debonding between the core and the outer layers. SP(foam)s absorbed 26% more energy than unfilled SPs. SP(foam)s with urethane foam suffer less severe failure modes than SPs. SPs in a ridge-loading configuration absorbed more impact energy than those in a valley-loading configuration, especially when impacted by a hemispherical IMP. Based on the results, it is evident that sandwich structure is more efficient than a solid panel concerning impact energy absorption, primarily due to a larger elastic section modulus of the core's corrugated geometry.
机译:异型空心夹芯板(SP)及其组件(外层和内芯)是用美国黄松木和黑松木线材制造的,以确定低速冲击力的影响并观察其能量吸收(EA)的能力和破坏模式。应用仪器式落锤冲击系统,并通过从所有样品中释放500 mm的冲击头进行测试,同时冲击器(IMP)配备有半球形和扁平头圆柱头。还测试了带有填充有硬质泡沫绝缘材料(SPfoam)的空腔的SP,以了解EA行为和失效模式的变化。发现由两种IMPs引起的SP的破坏模式是在岩心和外层之间分裂,穿孔,穿透,岩心压碎和剥离。 SP(泡沫)吸收的能量比未填充的SP多26%。具有聚氨酯泡沫的SP(泡沫)遭受的破坏模式比SP严重得多。脊加载结构中的SP吸收的冲击能量比谷加载结构中的SP吸收的冲击能量更多,尤其是在受到半球形IMP冲击时。根据结果​​,很明显,夹层结构在冲击能量吸收方面比实心板更有效,这主要是由于芯的波纹几何形状的弹性截面模量更大。

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