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3D printing of optimized composites with variable fiber volume fraction and stiffness using continuous fiber

机译:使用连续纤维对具有可变纤维体积分数和刚度的优化复合材料进行3D打印

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摘要

In this study, we optimized the curved fiber trajectories to realize variable fiber volume fraction and stiffness composites (VVfSC) using a continuous fiber composite 3D printer. During optimization, the fiber orientation was maintained along the principal stress direction based on preliminary stress field calculations, and the fiber trajectories were subsequently obtained. The fiber volume fraction was calculated from the obtained fiber trajectories; then, stress field calculations and redetermination of the fiber trajectories were performed. Optimization was achieved by repeating this sequence until convergence was obtained. Based on the optimization result, the specimens were molded using a continuous carbon fiber 3D printer and evaluated with bolt joint tensile tests. It was demonstrated that the stiffness and strength per unit weight of the optimized VVfSC were 9.4 and 1.6 times greater than those of conventional linear laminates, respectively.
机译:在这项研究中,我们优化了弯曲纤维的轨迹,以使用连续纤维复合材料3D打印机实现可变的纤维体积分数和刚度复合材料(VVfSC)。在优化过程中,基于初步的应力场计算,沿主应力方向保持了纤维方向,随后获得了纤维轨迹。由得到的纤维轨迹计算出纤维体积分率。然后,进行应力场计算和纤维轨迹的重新确定。通过重复该序列直至获得收敛来实现优化。根据优化结果,使用连续碳纤维3D打印机对样品进行成型,并通过螺栓接头拉伸试验进行评估。结果表明,优化的VVfSC的刚度和每单位重量的强度分别是常规线性层压板的9.4和1.6倍。

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