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首页> 外文期刊>Materials Research >Influence of Stacking Sequence on the Mechanical and Dynamic Mechanical Properties of Cotton/Glass Fiber Reinforced Polyester Composites
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Influence of Stacking Sequence on the Mechanical and Dynamic Mechanical Properties of Cotton/Glass Fiber Reinforced Polyester Composites

机译:堆积顺序对棉/玻璃纤维增​​强聚酯复合材料力学和动态力学性能的影响

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This study focuses on the use of waste cotton fiber from the textile industry to produce composites with unsaturated polyester and to evaluate the performance of glass (G) / cotton (C) fiber laminates, particularly their mechanical and dynamic mechanical properties. Distinct stacking sequences were studied but the overall fiber content was kept constant. In general, hybrid laminates exhibited intermediate mechanical properties compared to those of the pure laminates, and optimum performance was obtained when the glass fiber mats were placed on the surfaces of the composite. Furthermore, some hybrid laminates exhibited superior dynamic mechanical performance, even compared to the pure glass laminate. Lower tan delta peak height (related to better fiber-matrix interaction) values and higher T g were reported for the [C/G/ G ?ˉ ]s and [G/C/ C ?ˉ ]s samples which, together with the [G/C/ G ?ˉ ]s sample, exhibited the best results for reinforcement effectiveness and loss modulus peak height. Therefore, it is found possible to partially replace the glass fiber by waste cotton fiber considering that the final product may be optimized for mechanical property, which requires glass fiber at the surface of the laminate, or for dynamic mechanical properties, that allows higher cotton fiber content.
机译:这项研究的重点是使用纺织工业的废棉纤维来生产不饱和聚酯复合材料,并评估玻璃(G)/棉(C)纤维层压板的性能,尤其是其机械和动态机械性能。研究了不同的堆叠顺序,但总纤维含量保持恒定。通常,与纯层压材料相比,混合层压材料表现出中等的机械性能,并且当将玻璃纤维垫放置在复合材料的表面上时,可以获得最佳性能。此外,即使与纯玻璃层压板相比,某些混合层压板也表现出卓越的动态机械性能。据报道[C / G /GΔˉ] s和[G / C /CΔˉ] s样品的较低的tanδ峰高值(与更好的纤维-基质相互作用有关)值和较高的T g值,以及[G / C / Gα]样品显示出增强效果和损耗模量峰高的最佳结果。因此,考虑到最终产品可能针对机械性能进行了优化(需要在层压材料表面使用玻璃纤维),或者考虑了动态机械性能(允许使用更高的棉纤维),因此发现可以用废弃的棉纤维部分替代玻璃纤维。内容。

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