MODERN APPROACHES TO THE USE OF COMPOSITE MATERIALS IN CONSTRUCTION

Valigun Margarita
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Abstract

A review of the literature on scientific approaches in the development of composite materials and building structures made of composites is carried out. When creating and manufacturing traditional and new composite materials, for example, by additive manufacturing, and when creating structures and structures in engineering calculations, new techniques, finite element computational software systems, and neural network technologies are used, which are used in the creation of modern metal and composite materials, analysis of mechanical characteristics of materials, forecasting loads on the structure, optimization of structures and calculation of their construction characteristics. The distinctive features of modern composite materials are shown. The main types of composite materials are considered: talc, diatomite, calcium carbonate, gibbsite, barium sulfate, feldspar, nepheline, aragonite, calcium carbonate, wool, silk, cotton, linen, jute, wood pulp, asbestos, fiberglass, metal fibers, quartz fibers, basalt fibers, polyamide fibers, polyester fibers, polyvinyl alcohol fibers, carbon fibers, viscose fibers. The physical and mechanical characteristics of composite materials (based on epoxy, aluminum, carbon, magnesium, and nickel matrices) and traditional (steel, aluminum, brick, concrete) building materials are presented. The disadvantages of such composite materials as carbon fiber, fiberglass, organoplastics, textolite, carbon concrete, and polystyrene concrete are presented. Deformation diagrams of some types of fibers for composite materials are considered: high-modulus carbon fibers, high-strength carbon fibers, aramid fibers, glass fibers, and basalt fibers. The advantages of the system of external reinforcement of building structures with composite materials are described. Examples of reinforcement of building structures are considered: reinforced concrete reinforcement; reinforcement of floor slabs; reinforcement of columns; and reinforcement of brick walls.
在建筑中使用复合材料的现代方法
本文回顾了有关复合材料和复合材料建筑结构开发科学方法的文献。在创建和制造传统和新型复合材料(例如,通过快速成型制造)以及在工程计算中创建结构和构造时,使用了新技术、有限元计算软件系统和神经网络技术,这些技术用于创建现代金属和复合材料、分析材料的机械特性、预测结构上的载荷、优化结构以及计算其构造特性。展示了现代复合材料的显著特征。复合材料的主要类型包括:滑石、硅藻土、碳酸钙、吉布斯特、硫酸钡、长石、霞石、文石、碳酸钙、羊毛、丝绸、棉花、亚麻、黄麻、木浆、石棉、玻璃纤维、金属纤维、石英纤维、玄武岩纤维、聚酰胺纤维、聚酯纤维、聚乙烯醇纤维、碳纤维、粘胶纤维。介绍了复合材料(基于环氧树脂、铝、碳、镁和镍基质)和传统建筑材料(钢、铝、砖、混凝土)的物理和机械特性。介绍了碳纤维、玻璃纤维、有机塑料、膨润土、碳混凝土和聚苯乙烯混凝土等复合材料的缺点。考虑了用于复合材料的几种纤维的变形图:高模量碳纤维、高强度碳纤维、芳纶纤维、玻璃纤维和玄武岩纤维。介绍了使用复合材料对建筑结构进行外部加固系统的优点。考虑了建筑结构加固的实例:钢筋混凝土加固、楼板加固、柱子加固和砖墙加固。
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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