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Low-velocity impact behavior of weft-knitted spacer fabrics reinforced composites based on energy absorption

机译:基于能量吸收的纬编垫片织物增强复合材料的低速冲击性能

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Spacer fabrics are prefered to other types of textile fabrics in energy absorption applications due to existence of pile yarns. The particular geometry of spacer fabrics induce to increase resisting out of plane forces such as impact along their thickness. In order to investigate the low-velocity impact behaviour of composites reinforced with spacer fabric, weft-knitted spacer fabrics with different types of pile orientation and pile length were produced using E-glass yarns. Using produced fabrics and epoxy resin, composites samples were provided by hand lay-up method. Low-velocity impact test was carried out on the prepared samples based on a drop-weight method using spherical steel projectile. The indentation at maximum force was extracted as-comparative criteria used to calculate absorbed energy.The results show that the energy absorption of composites increases by increasing the pile density and pile length.
机译:由于桩纱的存在,优选将垫片织物优于其他类型的纺织品织物中的能量吸收应用。间隔织物的特定几何形状诱导增加诸如沿厚度的撞击的平面力增加。为了探讨用间隔织物加固的复合材料的低速冲击行为,使用E-玻璃纱线生产具有不同类型堆积和桩长的纬编垫片织物。使用生产的织物和环氧树脂,通过手叠层提供复合材料样品。基于使用球形钢射弹的滴重法在制备的样品上进行低速冲击试验。最大力的压痕被提取为比较标准用于计算吸收的能量。结果表明复合材料的能量吸收通过增加桩密度和桩长而增加。

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