3D打印长纤维增强聚合物复合材料:增强材料性质和工艺参数对力学性能的影响

Francis Dantas, Kevin Couling, Gregory J. Gibbons
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引用次数: 5

摘要

本研究的目的是确定材料类型(基体和增强)和工艺参数对使用商用3D打印机(Mark 2)制造的3D打印长纤维增强聚合物复合材料机械性能的影响。基体材料(缟玛瑙或聚酰胺)、增强类型(碳素、凯夫拉?研究了钢筋体积和钢筋铺层方向对极限抗拉强度(UTS)和弯曲模量的影响。对于缟玛瑙,碳纤维增强材料的UTS和弯曲模量比未增强材料的增加幅度最大(1228±?19%和1114±?6%)。凯夫拉尔?HSHT也有改善,但不太显著。同样,对于尼龙,UTS和弯曲模量增加了1431±?56%和1924?±?5%通过添加碳纤维增强。统计分析表明,改变配筋层数对UTS和抗弯强度的影响最大,且各参数均有统计学意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Long-fibre reinforced polymer composites by 3D printing: influence of nature of reinforcement and processing parameters on mechanical performance

Long-fibre reinforced polymer composites by 3D printing: influence of nature of reinforcement and processing parameters on mechanical performance

The aim of this study was to identify the effect of material type (matrix and reinforcement) and process parameters, on the mechanical properties of 3D Printed long-fibre reinforced polymer composites manufactured using a commercial 3D Printer (Mark Two). The effect of matrix material (Onyx or polyamide), reinforcement type (Carbon, Kevlar?, and HSHT glass), volume of reinforcement, and reinforcement lay-up orientation on both Ultimate Tensile Strength (UTS) and Flexural Modulus were investigated.

For Onyx, carbon fibre reinforcement offered the largest increase in both UTS and Flexural Modulus over unreinforced material (1228?±?19% and 1114?±?6% respectively). Kevlar? and HSHT also provided improvements but these were less significant. Similarly, for Nylon, the UTS and Flexural Modulus were increased by 1431?±?56% and 1924?±?5% by the addition of carbon fibre reinforcement. Statistical analysis indicated that changing the number of layers of reinforcement had the largest impact on both UTS and Flexural Strength, and all parameters were statistically significant.

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