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首页> 外文期刊>Journal of Composite Materials >Effect of interface properties on transverse tensile response of fiber-reinforced composites: Three-dimensional micromechanical modeling
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Effect of interface properties on transverse tensile response of fiber-reinforced composites: Three-dimensional micromechanical modeling

机译:界面性能对纤维增强复合材料横向拉伸响应的影响:三维微机械建模

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This paper presents a micromechanical analysis of the influence of fiber-matrix interface fracture properties on the transverse tensile response of fiber-reinforced composite. The method combines three-dimensional (3D) computational micromechanics and augmented finite element method to provide high-fidelity results of damage initiation and propagation. Random arrangement of fibers and normal distribution of interface toughness and strength are considered in representative volume elements to capture the stochastic behavior of the composite under loading. Sensitivity analysis with respect to the interface properties distribution, and shape and size of fibers on the representative volume element's strength are performed. The effect of fiber volume fractions on the strength and elastic modulus of the composite is investigated. Failure path in different representative volume elements are compared. The results show that the response of a representative volume element with identical interface properties overestimates the composite's transverse strength. It is also shown that the damage initiation and propagation locations are affected by the distributions of fracture properties, and the shape and size of fibers within the representative volume element.
机译:本文介绍了纤维 - 基质界面断裂性能对纤维增强复合材料横向拉伸的影响的微机械分析。该方法结合了三维(3D)计算微机械和增强有限元方法,以提供损坏启动和传播的高保真结果。在代表性体积元素中考虑了纤维的随机布置和界面韧性和强度的正常分布,以捕获加载下复合材料的随机行为。执行关于界面性质分布的敏感性分析,并且执行了代表体元素强度的纤维的形状和尺寸。研究了纤维体积分数对复合材料强度和弹性模量的影响。比较不同代表卷元素的故障路径。结果表明,具有相同界面特性的代表性体积元素的响应高估了复合材料的横向强度。还表明,损伤启动和传播位置受到裂缝性能分布的影响,以及代表体积元件内的纤维的形状和尺寸。

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