Carbon Fiber Polymer Composites

L. Markovičová, V. Zatkalíková, P. Hanusová
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引用次数: 5

Abstract

Abstract Carbon fiber reinforced composite materials offer greater rigidity and strength than any other composites, but are much more expensive than e.g. glass fiber reinforced composite materials. Continuous fibers in polyester give the best properties. The fibers carry mechanical loads, the matrix transfers the loads to the fibers, is ductile and tough, protect the fibers from handling and environmental damage. The working temperature and the processing conditions of the composite depend on the matrix material. Polyesters are the most commonly used matrices because they offer good properties at relatively low cost. The strength of the composite increases along with the fiber-matrix ratio and the fiber orientation parallel to the load direction. The longer the fibers, the more effective the load transfer is. Increasing the thickness of the laminate leads to a reduction in the strength of the composite and the modulus of strength, since the likelihood of the presence of defects increases. The aim of this research is to analyze the change in the mechanical properties of the polymer composite. The polymer composite consists of carbon fibers and epoxy resin. The change in compressive strength in the longitudinal and transverse directions of the fiber orientation was evaluated. At the same time, the influence of the wet environment on the change of mechanical properties of the composite was evaluated.
碳纤维聚合物复合材料
碳纤维增强复合材料比任何其他复合材料具有更高的刚度和强度,但比玻璃纤维增强复合材料昂贵得多。聚酯纤维中的连续纤维具有最好的性能。纤维承担机械负荷,基质将负荷转移到纤维上,具有延展性和韧性,保护纤维免受搬运和环境破坏。复合材料的工作温度和加工条件取决于基体材料。聚酯是最常用的基质,因为它们以相对较低的成本提供良好的性能。复合材料的强度随纤维-基体比和纤维取向平行于载荷方向而增大。纤维越长,载荷传递越有效。增加层压板的厚度导致复合材料的强度和强度模量的降低,因为存在缺陷的可能性增加了。本研究的目的是分析聚合物复合材料力学性能的变化。该聚合物复合材料由碳纤维和环氧树脂组成。对纤维取向纵向和横向的抗压强度变化进行了评价。同时,评价了湿环境对复合材料力学性能变化的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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