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Simulation of slitting method for calculation of compliance functions of laminated composites

机译:切缝法计算层合复合材料柔度函数的模拟

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摘要

In this research, the process of slitting with an assumed residual stress distribution is simulated to calculate compliance functions of laminated composites. The primary aim of this article is to investigate different parameters influencing the calculation of compliance coefficients for laminated composites using a finite element model. First, using two- and three-dimensional finite element models, the process of slitting in isotropic materials for calculating the compliance coefficients is simulated. The results show a complete agreement between the two models. Also, the results of simulation show that in the modeling of slitting method for laminated composites, real slit width must be considered. That is because composite laminates are generally thin and slitting in these materials results in large slit width to thickness ratio. Finally, the developed simulation method is applied to calculate compliance coefficients for two carbon/epoxy- and glass/epoxy-laminated composites with quasi-isotropic and cross-ply lay-ups using a three-dimensional finite element modeling. For a better precision, a full three-dimensional model without symmetry assumption is considered. The presented method is capable of simulating slitting method in parts and specimens with complicated geometry as well as in orthotropic materials with any degree of orthotropy.
机译:在这项研究中,模拟了在假定残余应力分布的情况下开裂的过程,以计算层压复合材料的柔度函数。本文的主要目的是研究使用有限元模型影响层压复合材料柔顺系数计算的不同参数。首先,使用二维和三维有限元模型,模拟了在各向同性材料中切缝以计算柔量系数的过程。结果表明两个模型之间完全一致。仿真结果还表明,在层压复合材料的纵剪方法建模中,必须考虑实际的纵剪宽度。这是因为复合层压板通常较薄,并且在这些材料中切缝会导致较大的切缝宽度与厚度比。最后,采用三维有限元模型,将开发的模拟方法应用于计算具有准各向同性和交叉铺层的两种碳/环氧树脂和玻璃/环氧树脂层压复合材料的柔顺系数。为了获得更好的精度,考虑了不具有对称假设的完整三维模型。该方法能够模拟具有复杂几何形状的零件和试样以及具有正交各向异性程度的正交各向异性材料中的纵剪方法。

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