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Study on 3D printing process of continuous carbon fiber reinforced shape memory polymer composites

机译:连续碳纤维增强形状记忆聚合物复合材料的3D印刷过程研究

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In this paper, shape memory polymer (SMP) and continuous carbon fibers (CCF) were utilized as raw materials to manufacture composites by means of 3D printing based on FDM. Various process parameters were systematically studied by the orthogonal experiment to find out the optimal process combination where interfaces and mechanical properties of printed composites specimens were treated as research objectives. The influence of each factor on the performance of the specimen was discussed. The results indicated that the mechanical properties were preferable when the printing temperature was 200°C, the printing speed was 4.5mm/s, the scanning pitch was 1.1 mm, and the ply stacking sequence was 0°. Furthermore, the fiber content had little effect on the shape memory performance of the polymer matrix. The rapid manufacture of shape memory carbon fiber composites has potential use in the field of aerospace.
机译:在本文中,形状记忆聚合物(SMP)和连续碳纤维(CCF)用作原料,以通过基于FDM的3D印刷制造复合材料。正交实验系统地研究了各种过程参数,以找出最佳过程组合,其中印刷复合材料标本的界面和机械性能被视为研究目标。讨论了每个因素对样本性能的影响。结果表明,当印刷温度为200℃时,优选机械性能,印刷速度为4.5mm / s,扫描间距为1.1mm,堆叠序列为0°。此外,纤维含量对聚合物基质的形状记忆性能几乎没有影响。形状记忆碳纤维复合材料的快速制造具有在航空航天领域的潜在用途。

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