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首页> 外文期刊>Journal of Elasticity >Effective Shear Modulus of Functionally Graded Fibrous Composites in Second Strain Gradient Elasticity
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Effective Shear Modulus of Functionally Graded Fibrous Composites in Second Strain Gradient Elasticity

机译:第二菌株梯度弹性中功能梯度纤维复合材料的有效剪切模量

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摘要

In this study, Mindlin's second strain gradient elasticity is employed to extract an estimate of the effective shear modulus of a functionally graded (FG) unidirectional fibrous composite subjected to an anti-plane mode of loading. The composite is supposed to be a periodically microstructured medium reinforced with infinitely long fibers, each of them surrounded by a coating made of a FG material. To determine the elastic field of the composite, an extended version of the equivalent inclusion method adapted with second strain gradient elasticity is utilized and, then, a unified procedure for the solution to the associated consistency equations is implemented that is applicable, in a similar manner, to any kind of two-phase, multi-phase, or FG composites. Subsequently, within a homogenization scheme, the effective shear modulus of the composite is calculated. The obtained results reflect well the size effect on the overall properties of the composite and demonstrate that the displacement field predicted by second strain gradient elasticity turns out to be a smooth function over the entire medium.
机译:在本研究中,采用Mindlin的第二种应变梯度弹性来提取经受抗平面负载模式的功能梯度(FG)单向纤维复合材料的有效剪切模量的估计。复合材料应该是具有无限长纤维增强的周期性微结构化介质,它们中的每一个被由FG材料制成的涂层包围。为了确定复合材料的弹性场,利用适用于第二应变梯度弹性的等效包含方法的扩展版本,然后,实现用于相关稠度方程的解决方案的统一过程,其以类似的方式实现,任何类型的两相,多相或FG复合材料。随后,在均质化方案中,计算复合材料的有效剪切模量。所得结果反映了对复合材料的整体性质的尺寸影响,并证明了第二种应变梯度弹性预测的位移场在整个介质上变为平滑的功能。

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