Elastic properties and strength criterion of reinforced composite

Mykhailo Bohatyr, G. Lvov
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引用次数: 0

Abstract

Woven composite materials are increasingly being used in various fields of modern technology. Unlike composites reinforced with straight fibers, they have a higher shear stress loading strength and improved impact strength characteristics. Woven composites have good technological properties. Blanks with carbon or glass fabrics are well laid out on tooling in the manufacture of thin-walled structural elements of complex shapes. The technological advantages of woven composite materials have determined the economic feasibility of their widespread use in the aviation industry and the automotive industry. The paper presents a numerical method for identifying the elastic and strength characteristics of woven carbon fiber based on the results of a micromechanical analysis of a representative volume based on the known properties of the matrix and fibers. Numerical experiments on uniaxial tension in the x, y, and z axes directions have been carried out. Modeled shift in three coordinate planes. The strength characteristics of the representative volume of the composite under conditions of tension and compression in three directions, shifts in three planes, and three biaxial tensions are determined.
增强复合材料的弹性性能及强度准则
机织复合材料越来越多地应用于现代技术的各个领域。与用直纤维增强的复合材料不同,它们具有更高的剪切应力载荷强度和改进的冲击强度特性。机织复合材料具有良好的工艺性能。在制造复杂形状的薄壁结构元件时,碳纤维或玻璃织物坯料在模具上布置得很好。机织复合材料的技术优势决定了其在航空工业和汽车工业中广泛应用的经济可行性。本文提出了一种基于已知基体和纤维性能的典型体细观力学分析结果的编织碳纤维弹性和强度特性识别的数值方法。在x、y和z轴方向上进行了单轴拉伸的数值实验。在三个坐标平面上建模移位。确定了复合材料代表体在三个方向的拉压、三个平面的位移和三个双轴拉伸条件下的强度特性。
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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