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首页> 外文期刊>International Journal of Mechanical Sciences >A two-level optimization procedure for material characterization of composites using two symmetric angle-ply beams
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A two-level optimization procedure for material characterization of composites using two symmetric angle-ply beams

机译:使用两个对称角铺层梁的复合材料材料表征的二级优化程序

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摘要

A two-level optimization procedure for determining elastic constants E{sub}1, Ec{sub}2, G{sub}12, and v{sub}12 of laminated composite materials using measured axial and lateral strains of two symmetric angle-ply beams with different fiber angles subjected to three-point-bending testing is presented. In the first-level optimization process, the theoretically and experimentally predicted axial and lateral strains of a [(45°/ -45°){sub}6]{sub}s beam are used to construct the strain discrepancy function which is a measure of the sum of the squared differences between the experimental and theoretical predictions of the axial and lateral strains. The identification of the material constants is then formulated as a constrained minimization problem in which the best estimates of shear modulus and Poisson's ratio of the beam are determined to make the strain discrepancy function a global minimum. In the second-level optimization process, shear modulus and Poisson's ratio determined in the first level of optimization are kept constant and Young's moduli of the second angle-ply beam with fiber angles different from 4.5° are identified by minimizing the strain discrepancy function established at this level of optimization. The suitability of the proposed procedure for material characterization of composite materials has been demonstrated by means of a number of examples.
机译:使用两个对称角层的轴向和横向应变确定层压复合材料的弹性常数E {sub} 1,Ec {sub} 2,G {sub} 12和v {sub} 12的二级优化程序介绍了经过三点弯曲测试的具有不同光纤角度的光束。在一级优化过程中,使用[(45°/ -45°){sub} 6] {sub} s光束的理论和实验预测的轴向和横向应变来构建应变差异函数轴向和横向应变的实验和理论预测值之间平方差的总和。然后,将材料常数的识别公式化为约束最小化问题,其中确定梁的剪切模量和泊松比的最佳估计,以使应变差异函数成为全局最小值。在第二级优化过程中,在第一级优化过程中确定的剪切模量和泊松比保持恒定,并且通过最小化在以下条件下建立的应变差异函数,确定纤维角度不同于4.5°的第二个角度层板梁的杨氏模量这种优化水平。已通过许多实例证明了所提出的方法对复合材料进行材料表征的适用性。

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