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Viscoelastically prestressed polymeric matrix composites - Effects of test span and fibre volume fraction on Charpy impact characteristics

机译:粘弹性预应力聚合物基复合材料-试验跨度和纤维体积分数对夏比冲击特性的影响

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A viscoelastically prestressed polymeric matrix composite (VPPMC) is produced by subjecting polymeric fibres to tensile creep, the applied load being removed before moulding the fibres into a resin matrix. After matrix curing, the viscoelastically strained fibres impart compressive stresses to the surrounding matrix, thereby improving mechanical properties. This study investigated the mechanisms considered responsible for VPPMCs improving impact toughness by performing Charpy impact tests on unidirectional nylon 6,6 fibre-polyester resin samples over a range of span settings (24-60 mm) and fibre volume fractions (3.3-16.6%). Comparing VPPMC samples with control (unstressed) counterparts, the main findings were: (ⅰ) improved impact energy absorption (up to 40%) depends principally on shear stress-induced fibre-matrix debonding (delamination) and (ⅱ) energy absorption improves slightly with increasing fibre volume fraction, but the relationship is statistically weak. The findings are discussed in relation to improving the impact performance of practical structures.
机译:粘弹性预应力聚合物基复合材料(VPPMC)是通过使聚合物纤维经受拉伸蠕变而制成的,在将纤维成型为树脂基体之前,已去除了施加的载荷。在基体固化之后,粘弹性应变的纤维向周围的基体施加压缩应力,从而改善了机械性能。这项研究调查了被认为是通过在跨度设置(24-60 mm)和纤维体积分数(3.3-16.6%)范围内对单向尼龙6,6纤维聚酯树脂样品进行夏比冲击试验而提高VPPMC冲击韧性的机制。 。将VPPMC样品与对照(无应力)样品进行比较,主要发现是:(ⅰ)改善的冲击能量吸收率(高达40%)主要取决于剪切应力引起的纤维基质脱胶(分层),并且(ⅱ)能量吸收率略有改善随着纤维体积分数的增加,但该关系在统计上较弱。讨论了与改善实际结构的冲击性能有关的发现。

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