首页> 外文期刊>Journal of Sandwich Structures and Materials >Energy absorption in aluminium honeycomb cores reinforced with carbon fibre reinforced plastic tubes
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Energy absorption in aluminium honeycomb cores reinforced with carbon fibre reinforced plastic tubes

机译:铝蜂窝芯中的能量吸收加强碳纤维增强塑料管

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The energy-absorbing behaviour of an aluminium honeycomb core reinforced with unidirectional and woven carbon fibre reinforced plastic composite tubes has been investigated experimentally at quasi-static rates of strain. Small diameter carbon fibre reinforced plastic tubes, with chamfered ends, were inserted into the cells of an aluminium honeycomb in order to yield a lightweight energy-absorbing material. The resulting data are compared with crushing tests on arrays of free-standing composite tubes, supported on a specially designed compression test fixture. The study continues with an investigation into size effects in the energy-absorbing response of these cellular materials, where compression tests are undertaken on four scaled sizes of reinforced honeycomb core. Crushing tests on the multi-tube arrays have shown that woven carbon fibre reinforced plastic tubes absorb significantly greater levels of energy than their unidirectional counterparts. Here, the specific energy absorption did not vary with the number of tubes in the array, with values for the woven tubes averaging 110 kJ/kg and those for the unidirectional tubes averaging 75 kJ/kg. Inserting composite tubes into aluminium honeycomb served to increase the measured specific energy absorption of the core, resulting in values of specific energy absorption of up to 100 kJ/kg being recorded in the woven-based system. Tests on four scaled sizes of core have shown that the measured SEA does not vary with specimen size, indicating that data generated on small samples can be used to represent the energy-absorbing response of larger, more representative components.
机译:用单向和编织的碳纤维增强塑料复合管增强的铝蜂窝芯的能量吸收行为已经通过实验研究了Quasi-静态的菌株速率。小直径碳纤维增强塑料管,倒角端插入铝蜂窝状的电池中,以产生轻质的能量吸收材料。将所得数据与在独立式复合管阵列上的破碎试验进行比较,支持专门设计的压缩测试夹具。该研究继续调查这些细胞材料的能量吸收响应中的尺寸效应,其中压缩试验在四个缩放蜂窝核心的四个缩放尺寸上进行。在多管阵列上的破碎试验表明,编织碳纤维增强塑料管比其单向对应物吸收显着更大的能量水平。这里,具体的能量吸收没有随着阵列中的管数而变化,其编织管的值平均为110kJ / kg和用于平均75kJ / kg的单向管的值。将复合管插入铝蜂窝中,用于增加核心的测量的特定能量吸收,导致在基于编织的系统中记录的特定能量吸收值高达100kJ / kg。对四个缩放尺寸的核心测试表明,测量的海洋不会因样本尺寸而变化,表明在小型样品上产生的数据可用于表示更大,更代表性的组分的能量吸收响应。

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