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首页> 外文期刊>Fibers and Polymers >Comparison of Mechanical Behavior of Biaxial, Unidirectional and Standard Woven Fabric Reinforced Composites
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Comparison of Mechanical Behavior of Biaxial, Unidirectional and Standard Woven Fabric Reinforced Composites

机译:双轴,单向和标准织物增强复合材料力学行为的比较

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The conventional woven fabrics (plain, twill, satin, etc.) have yarn undulations, that may lead to the fibre breakage and loss of mechanical strength. This problem was resolved using unidirectional woven structures having straight yarns, but they provide strength in one direction only. A possible solution is the use of biaxial fabric having yarns at +/- 45 degrees as reinforcement, but its fabrication cost is too high. The current study focussed on the development of a composite material using conventional fabrics having comparable properties with biaxial fabric composites. Three different reinforcements (plain, twill and unidirectional) were prepared using glass fibre. For composite fabrication, plies were cut, stacked at +/- 45 degrees and infused with unsaturated polyester resin to produce a composite equivalent to the biaxial composite. Similarly, the stitched composites were also fabricated by stitching the similar stack (using chain stitch class 101) before impregnating with resin. Laminated composites from biaxial fabric (both stitched and unstitched) were also produced for comparison. All these composites were characterised for tensile and impact properties. The tensile strength of stitched unidirectional composites was higher as compared to the other woven and biaxial structures. Similarly, the impact strength was also higher for stitched unidirectional composite. Hence, the +/- 45 degrees stacked unidirectional composite may be used as a potential replacement of biaxial composite.
机译:传统的织物(平原,斜纹,缎面等)具有纱线起伏,可能导致纤维破裂和机械强度的损失。使用具有直纱的单向编织结构来解决该问题,但它们仅在一个方向上提供强度。可能的解决方案是在+/- 45度下使用纱线的双轴织物作为增强,但其制造成本太高。目前研究侧重于使用具有双轴织物复合材料的常规织物的常规织物的复合材料的开发。使用玻璃纤维制备三种不同的增强(平原,斜纹和单向)。对于复合制造,切割帘布层,堆叠在+/- 45度并注入不饱和聚酯树脂,以产生与双轴复合物等同的复合材料。类似地,通过在用树脂浸渍之前缝合类似的堆叠(使用链针迹等级101),还通过缝合缝合复合材料来制造。还生产来自双轴织物(缝合和未缝合)的层压复合物以进行比较。所有这些复合材料的特征在于拉伸和冲击性能。与其他织造和双轴结构相比,缝合单向复合材料的拉伸强度较高。类似地,缝合单向复合材料的冲击强度也更高。因此,堆叠单向复合材料的+/- 45度可用作双轴复合材料的潜在替代。

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