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首页> 外文期刊>International Journal of Solids and Structures >Failure surface of epoxy-modified fiber-reinforced composites under transverse tension and out-of-plane shear
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Failure surface of epoxy-modified fiber-reinforced composites under transverse tension and out-of-plane shear

机译:环氧改性纤维增强复合材料在横向张力和面外剪切作用下的破坏面

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摘要

The mechanical behavior of uniaxially fiber-reinforced composites with a ductile rubber-toughened epoxy matrix was studied through the finite element analysis of a RVE of the composite microstructure. The fibers were represented by elastic and isotropic solids, while the rubber-modified epoxy matrix behaved as a elasto-viscoplastic solid. The matrix flow stress followed the model developed by Jeong [ Jeong, H.-Y., 2002. A new yield function and a hydrostatic stress-controlled void nucleation model for porous solids with pressure-sensitive matrices. International Journal of Solids and Structures 39, 1385 1403.], which included the inherent pressure-sensitivity of the yield stress in the epoxy matrix, the damage due to the cavitation of the rubber particles and subsequent void growth, and the particular features of elastic-viscoplastic behavior in glassy polymers, particularly the intrinsic softening upon yield followed by hardening. Composites with either perfect or weak fiber/matrix interfaces (the latter introduced through cohesive elements) were studied to assess the influence of interface strength on the composite behavior. Simulations under transverse tension and out-of-plane shear were carried out to establish the effect of loading conditions on the dominant deformation and failure micromechanisms. In addition, the corresponding failure locus was obtained and compared with the predictions of current phenomenological failure criteria for composites. The range of validity of these criteria and the areas for further improvement were established by comparison with the numerical results.
机译:通过对复合材料微结构的RVE进行有限元分析,研究了具有韧性橡胶增韧环氧基体的单轴纤维增强复合材料的力学性能。纤维以弹性和各向同性的固体为代表,而橡胶改性的环氧基质表现为弹粘塑性固体。基质流动应力遵循Jeong [Jeong,H.-Y.,2002年开发的模型。具有压敏基质的多孔固体的新的屈服函数和静水压力控制的空核形核模型。 International Journal of Solids and Structures 39,1385 1403.],其中包括环氧基质中屈服应力的固有压力敏感性,由于橡胶颗粒的空化和随后的空隙增长而引起的损坏以及弹性体的特殊特征。 -玻璃态聚合物的粘塑性行为,特别是屈服后固有的软化,然后硬化。研究了具有完美或较弱纤维/基体界面(后者通过粘结元素引入)的复合材料,以评估界面强度对复合材料行为的影响。进行了横向拉伸和平面外剪切下的模拟,以建立加载条件对主要变形和破坏微力学的影响。此外,获得了相应的失效位点,并将其与复合材料目前的现象学失效标准的预测进行了比较。通过与数值结果进行比较,确定了这些标准的有效性范围和需要进一步改进的领域。

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