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Effective properties of hierarchical fiber-reinforced composites via a three-scale asymptotic homogenization approach

机译:通过三尺寸渐近均质化方法进行分层纤维增强复合材料的有效性能

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摘要

The study of the properties of multiscale composites is of great interest in engineering and biology. Particularly, hierarchical composite structures can be found in nature and in engineering. During the past decades, the multiscale asymptotic homogenization technique has shown its potential in the description of such composites by taking advantage of their characteristics at the smaller scales, ciphered in the so-called effective coefficients. Here, we extend previous works by studying the in-plane and out-of-plane effective properties of hierarchical linear elastic solid composites via a three-scale asymptotic homogenization technique. In particular, the approach is adjusted for a multiscale composite with a square-symmetric arrangement of uniaxially aligned cylindrical fibers, and the formulae for computing its effective properties are provided. Finally, we show the potential of the proposed asymptotic homogenization procedure by modeling the effective properties of musculoskeletal mineralized tissues, and we compare the results with theoretical and experimental data for bone and tendon tissues.
机译:对多尺度复合材料的性质的研究对工程和生物学感兴趣。特别地,可以在自然和工程中找到分层复合结构。在过去几十年中,通过利用它们在较小尺度的特性,在所谓的有效系数中加密其特性,多尺度渐近均匀化技术在这种复合材料的描述中示出了其潜力。这里,我们通过三尺寸渐近均质化技术研究分层线性弹性固体复合材料的平面内和外平有效性能来扩展以前的作用。特别地,通过单轴对准的圆柱纤维的方形对称布置来调节该方法,用于计算其有效性能的平方体。最后,我们通过对肌肉骨骼矿化组织的有效性质进行建模,显示所提出的渐近均质化程序的潜力,并将结果与​​骨骼和肌腱组织的理论和实验数据进行比较。

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