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Bending Properties of Five-layer Biaxial Weft Knitted Fabric Reinforced Composite Materials

机译:五层双轴纬编针织织物增强复合材料的弯曲性能

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Five-layer biaxial weft knitted (FBWK) fabric is one kind of multilayered biaxial weft knitted (MBWK) fabric. FBWK fabric is made of carbon fiber as inserted yarns and stitched with polyester yarns, and it has been impregnated with epoxy via resin transfer molding (RTM) technique to manufacture the composite plates. The bending properties of the FBWK fabric reinforced composite are studied with the three-point bending test method. The bending properties of the FBWK fabric reinforced composite materials with different fiber volume fraction have been investigated. The results show that the relationship between bending load and deflection is obviously linear before reaching the maximum load. Within a certain range, the bending strength of this kind of composites increases with the fiber volume fraction increasing. When the fiber volume fraction is 57%, the bending strength is 1051.4 MPa.
机译:五层双轴纬编编织(FBWK)织物是一种多层双轴纬编针织(MBWK)织物。 FBWK织物由碳纤维制成,如插入的纱线和用聚酯纱线缝合,并且通过树脂转移模塑(RTM)技术浸渍环氧树脂以制造复合板。采用三点弯曲试验法研究了FBWK织物增强复合材料的弯曲性能。研究了具有不同纤维体积分数的FBWK织物增强复合材料的弯曲性能。结果表明,在达到最大负载之前,弯曲载荷和偏转之间的关系显然是线性的。在一定范围内,这种复合材料的弯曲强度随比纤维体积分数增加而增加。当纤维体积分数为57%时,弯曲强度为1051.4MPa。

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