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首页> 外文期刊>Journal of Composite Materials >Exploration relation between interlaminar shear properties of thin-ply laminates under short-beam bending and meso-structures
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Exploration relation between interlaminar shear properties of thin-ply laminates under short-beam bending and meso-structures

机译:短梁弯曲和中学结构下薄层层压板层间剪切特性的探索关系

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Carbon fiber reinforced polymer matrix composite laminates with standard thickness plies (0.125mm) usually have weak interlaminar shear strength, meanwhile, for thin-thickness laminate structures such as aircraft wing skin, it is difficult to design a balanced laminate with the standard plies. It is a possible way to improve the interlaminar shear performance of carbon fiber reinforced polymer composite laminates and enlarge the design space of the thin-thickness structures by using thin-plies technology. In this paper, the interlaminar shear strength of carbon fiber/epoxy laminates with thin prepreg thickness subjected to short-beam bending is investigated. Unidirectional, cross-ply and quasi-isotropic laminate specimens were prepared by using prepregs with different ply thicknesses. Results show that, with decreasing of the ply thickness, higher interlaminar shear strength and smaller coefficient of variation of the data are obtained. Compared to laminates made by standard thickness prepreg, the laminates with thin-thickness prepreg exhibit more homogeneous microstructures and more regularly interlaminar shear stress distribution. This indicates that inherent anisotropy of the laminate composites is weakened in the thin-ply laminates and show pseudo-isotropic behavior. Especially in the case of ply thickness less than 0.020mm, the interlaminar shear stress distributions of the cross-ply and quasi-isotropic laminate are almost the same with that of isotropic materials according to the classic laminate theory. On the other hand, as expected, the design space of the thin-thickness laminate structures will be increased since more ply number are allowed and superior interlaminar properties can be obtained due to the pseudo-isotropic behavior of the thin plies.
机译:碳纤维增强聚合物基质复合层叠层叠层叠层压层(0.125mm)通常具有弱的层间剪切强度,同时,对于薄厚度的层压结构,例如飞机机翼皮肤,难以设计具有标准层的平衡层压板。通过使用薄层技术,改善碳纤维增强聚合物复合材料层压板的层间剪切性能并扩大薄厚度结构的设计空间是可能的。本文研究了经过短梁弯曲的薄预浸料厚度的碳纤维/环氧树脂层层的层间剪切强度。通过使用具有不同帘布层厚度的预浸料来制备单向,交叉层和准各向同性层压材料样本。结果表明,随着帘布层厚度的降低,获得了更高的层间剪切强度和更小的数据变化系数。与标准厚度预浸料制备的层压材料相比,具有薄厚度预浸料的层压板具有更均匀的微结构和更定期的层间剪切应力分布。这表明层压复合材料的固有各向异性在薄层层压板中削弱并显示出伪各向同性行为。特别是在厚度小于0.020mm的情况下,交叉层和准各向同性层压体的层间剪切应力分布与根据经典层压理论的各向同性材料几乎相同。另一方面,如预期的那样,薄厚度层压结构的设计空间将增加,因为允许更多的倍数并且由于薄层的伪各向同性行为而可以获得优异的层间性能。

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