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首页> 外文期刊>International journal of non-linear mechanics >Prediction of elastic moduli and ultimate strength of fiber/yarn-reinforced elastic-plastic matrix using Fourier series approach and cuboidal/wedge sub-volumes
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Prediction of elastic moduli and ultimate strength of fiber/yarn-reinforced elastic-plastic matrix using Fourier series approach and cuboidal/wedge sub-volumes

机译:使用傅立叶串联方法和立方/楔形尺寸的纤维/纱线增强弹塑性基质弹性模量和极限强度的预测

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摘要

Homogenization of mechanical properties of a heterogeneous material using analytical/semi-analytical micromechanics approaches is computationally less expensive than that through numerical techniques. However, analytical methods cannot be easily applied to a complex distribution of the microstructure in a unit cell (or a representative volume element). Here, we alleviate this by accommodating cuboidal and wedge shaped sub-volumes in the Fourier series approach (FSA). This is akin to using penta- and hexa-hedral elements to discretize the geometry in 3-dimensional finite element analysis (FEA). The technique is applied to study the elasto-plastic response of unidirectional fiber/yarn-reinforced composites with square, circular and star shaped fibers to transverse loading. It is shown that (i) predicted transverse elastic modulus and the shear moduli are sensitive to the fiber shape and the unit cell configuration, (H) the stress-strain curves for the homogenized composite agree with those reported in the literature found by using the FEA, and (Hi) the presently computed elastic constants for plain and 2/2 twill weave fabrics are close to those found by other methods and deduced from the test data. A linear softening model based on plasticity approach is implemented within the FSA to predict failure and progressive softening in the yarn and the resin. It captures the nonlinear response and provides the ultimate strength under tensile loading.
机译:使用分析/半分析微机械方法的异质材料的机械性能均质化比通过数值技术的计算方式计算得更便宜。然而,分析方法不能容易地应用于单元电池(或代表体积元件)中的微观结构的复杂分布。在这里,我们通过在傅立叶串行方法(FSA)中容纳立方体和楔形子卷来缓解这一点。这类似于使用五角形和六角HEDRAL元件来离散三维有限元分析(FEA)中的几何形状。应用该技术以研究单向纤维/纱线增强复合材料的弹性塑料响应与方形,圆形和星形纤维以横向载荷。结果表明,(i)预测的横向弹性模量和剪切模量对纤维形状和单位电池构型敏感,(h)均质复合材料的应力 - 应变曲线与使用的文献中报告的曲线表示FEA和(HI)目前计算的普通和2/2斜纹织物的弹性常数靠近其他方法发现的织物,并从测试数据推导出来。基于塑性方法的线性软化模型在FSA内实现,以预测纱线和树脂的故障和逐渐软化。它捕获了非线性响应,并在拉伸载荷下提供极限强度。

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