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Stress redistributions in unit cells of fibre-reinforced polymer composites with interface degradation

机译:纤维增强的聚合物复合材料的晶胞中的应力再分布随着界面降解

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摘要

Experimental evidence indicates that the main damage mechanisms found in fibre-reinforced composites under static loading or environmental action are matrix damage, fibre damage and interface damage, leading to various forms of strong inhomogeneities at the micromechanical level. The main objective of this paper is to identify the stress redistributions that take place at the unit cell level, in which damage has already occurred due to an independent process. A deterministic approach is carried out to illustrate the main features of the transverse behaviour of a unidirectional fibre-reinforced composite under static loading. Damage is modelled by means of interface defects, in which the number and size of defects are considered as parameters of the damaged configuration and also by changes in material properties. The two-dimensional problem is solved using a general purpose finite-element code. The results show the extent of damage propagation to be expected in several configurations with inhomogeneities.
机译:实验证据表明,在静态载荷或环境作用下,纤维增强复合材料的主要破坏机理是基体破坏,纤维破坏和界面破坏,从而导致在微机械水平上出现各种形式的强不均匀性。本文的主要目的是确定在晶胞水平上发生的应力重新分布,其中由于独立的过程已经发生了损伤。采取确定性方法来说明单向纤维增强复合材料在静态载荷下的横向行为的主要特征。损坏是通过界面缺陷建模的,其中,缺陷的数量和大小被视为损坏配置的参数,还可以通过材料特性的变化来考虑。使用通用有限元代码可以解决二维问题。结果表明,在几种不均匀的构型中,损伤传播的程度是可以预期的。

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