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Short fiber reinforced 3d printed ceramic composite with shear induced alignment

机译:短纤维增强的3d打印陶瓷复合材料具有剪切诱导对准

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摘要

This paper accounts for utilization of shear induced alignment method during ceramic stereolithography. Lateral oscillation mechanism, combined with 3d printed wall pattern, was employed to generate necessary shear to align fiber in desired direction. First, semicircular channel pattern was printed to assess the effect of difference between wall direction and oscillation direction on the fiber alignment. Then, flexural strength of ceramic matrix was tested with nickel coated carbon fiber and ceramic fiber reinforcements. The results demonstrated that the shear induced alignment further improves the flexural strength compare to randomly distributed samples. Flexural strength of aligned samples with 1.0 wt% carbon fiber loading was improved by ~90% compared to randomly orientated samples and by ~333% compared to unreinforced samples. Finally, fracture surface morphology of the flexural strength test specimens was evaluated. The main fracture mechanism was observed as fiber pull-out.
机译:本文解释了在陶瓷立体光刻过程中利用剪切诱导对准方法的问题。横向振动机制与3d打印的墙面图案相结合,用于产生必要的剪切力,以使纤维沿所需方向对齐。首先,印刷半圆形通道图案,以评估壁方向和振荡方向之间的差异对纤维排列的影响。然后,用镀镍碳纤维和陶瓷纤维增强材料测试陶瓷基体的抗弯强度。结果表明,与随机分布的样品相比,剪切诱导的取向进一步提高了弯曲强度。与随机取向的样品相比,碳纤维含量为1.0 wt%的对齐样品的抗弯强度提高了约90%,与未增强的样品相比,提高了约333%。最后,评估抗弯强度试样的断裂表面形态。观察到主要断裂机理是纤维拉出。

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