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Influence of fiber waviness on the effective properties of discontinuous fiber reinforced composites

机译:纤维波纹对不连续纤维增强复合材料有效性能的影响

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摘要

In this study, 3D Representative Volume Element (RVE) models are used to investigate the effect of fiber waviness not only on the Young's moduli but also on the shear moduli and Poisson's ratios of unidirectional discontinuous fiber reinforced (DFR) composites. In order to measure the sole influence of fiber waviness, properties of the RVE model with curved fibers are compared with those of the RVE model with corresponding straight fibers. This comparison shows that fiber waviness significantly affects E_(11) and moderately affects all the other effective properties. Variation in E_(22) due to fiber waviness is contrary to general expectations. It is observed that E_(22) initially decreases and then increases with the increase in fiber waviness. Influence of fiber volume fraction (V_f), fiber/matrix material property mismatch, fiber spatial distribution and fiber/matrix interphase region on the effective properties of DFR composite with curved fibers is also numerically investigated. It is found that V_f, material property mismatch and interphase region have strong influence whereas spatial distribution has weak influence on the effective properties of unidirectional DFR composite containing curved fibers.
机译:在本研究中,3D代表体积元素(RVE)模型用于研究纤维波纹的效果,不仅对杨氏模数而且还对单向不连续纤维增强(DFR)复合材料的剪切模和泊松比的抗剪切模量和泊松比。为了测量纤维波纹的唯一影响,将具有弯曲纤维的RVE模型的性质与具有相应直纤维的RVE模型的rve模型进行比较。该比较表明,纤维波纹显着影响E_(11),并适度影响所有其他有效的属性。由于光纤波纹导致的E_(22)的变化与一般期望相反。观察到E_(22)最初降低,然后随着纤维波纹的增加而增加。在数值上研究了纤维体积分数(V_F),纤维/基质材料性能失配,纤维/基质物质失配,纤维空间分布和纤维/基质差异区域的DFR复合材料的有效性能。发现V_F,材料性质失配和间间区域具有很强的影响,而空间分布对含有弯曲纤维的单向DFR复合材料的有效性质的影响较弱。

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