混合Pla和碳-Pla在不同层压板结构中的特性

Muhammad Ibnu Rashyid, Ardi Wiranata, Muhammad Akhsin Muflikhun
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引用次数: 0

摘要

多挤出机打印机允许将不同的材料打印成一个产品。采用具有刚性特性的聚乳酸和具有弹性特性的碳-聚乳酸进行了多材料复合材料的实验研究。选择弯曲硬度和邵氏硬度试验来了解两种不同材料是如何相互影响的。结果表明,不同的层合性能会影响其抗弯强度。3种复合材料的最高抗折强度CPC为53.33 MPa,比单聚乳酸低3.03%,比单聚乳酸高37.9%。在2个层压试样中,PC层压板的抗弯强度最高,达到73.07 MPa,比纯PLA层压板高5.4%,比纯Carbon-PLA层压板高50.01%。邵氏硬度值在复合材料和单一材料之间没有显著变化。同时也证明了层压的形成既可以提高材料的抗弯强度,也可以导致不利的结果。这一发现使多材料3D打印的设计者能够考虑材料的形成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characteristics of Hybrid Pla and Carbon-Pla in Different Laminates Formations
The multi-extruder printer allows to printing of different materials into one product. This paper experimented on multi-material lamination using PLA with rigid characteristics and Carbon-PLA with elastic characteristics. The flexural and shore hardness test was chosen to understand how two different materials affect each other. The results show that the different lamination performances affect the flexural strength. The highest flexural strength from 3 laminations was the CPC of 53.33 MPa, this is 3.03% lower than the PLA only and 37.9% higher than Carbon-PLA only. From the 2 laminate specimens the PC laminates achieved the highest flexural strength of 73.07 MPa, the value is 5.4% higher than the PLA only and 50.01% higher than Carbon-PLA only. The shore hardness value showed no significant changes between the lamination and 1 material only. It was also proved that lamination formation can increase the flexural strength or lead to detrimental results. This finding enables the designer of multi-material 3D printing to consider the formation of materials.
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