Laminated Composite Materials Obtained by Lamination with Carbon Fiber

R. Iernuțan
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引用次数: 0

Abstract

Composite materials have had a rapid development in recent decades and have come to be used in various fields of industry, including civil engineering. The study of composite materials, but especially of those layered with fibers of different types, is based on improving the physical and mechanical properties and increasing the resistance of the resulting new materials. Through the experimental study, it is aimed to resolve some technological issues regarding the  anufacture of samples from composite materials reinforced with carbon fiber and epoxy resins and to improve the mechanical resistance of the usual construction materials from the composition of resistance structures. Combining or  reinforcing materials such as wood or concrete, with carbon fiber or glass laminated with epoxy resins or inserted directly into their composition as dispersed reinforcement, increases their properties. In this way, smaller dimensions of the elements can be obtained, leading to an increase in their load-bearing capacity. In this experimental work it is aimed to increase the mechanical and physical resistance behavior of certain materials with the help of carbon fiber laminated with epoxy resins. It has been chosen to use as raw material for samples: concrete, solid brick sandwich, wood, and extruded polystyrene. Depending on the utility of each, after lamination with carbon fibers, the samples are tested for bending moment, compression, fire resistance and  shock resistance.
碳纤维层压制备的层压复合材料
近几十年来,复合材料得到了迅速的发展,并在包括土木工程在内的各个工业领域得到了应用。对复合材料的研究,特别是对那些由不同类型的纤维层合而成的复合材料的研究,是建立在改善其物理和机械性能以及增加其阻力的基础上的。通过实验研究,旨在解决碳纤维和环氧树脂增强复合材料样品制造中的一些技术问题,并从抗阻结构的组成上提高常用建筑材料的机械抗力。将木材或混凝土等材料与碳纤维或环氧树脂层压玻璃或直接插入其组成物中作为分散的增强材料相结合或增强,可以提高其性能。这样,可以获得较小的元件尺寸,从而增加其承载能力。在这项实验工作中,它的目的是提高某些材料的机械和物理阻力性能,帮助碳纤维与环氧树脂层合。它已被选择用作样品的原材料:混凝土,实心砖夹层,木材和挤压聚苯乙烯。根据每种材料的用途,在与碳纤维层压后,测试样品的弯度,压缩性,防火性和抗震性。
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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