Polyacrylonitrile (PAN) Electrospun nanofibers Coated 3D printed PLA materials with Different Infill Patterns and Their Tensile Properties

Atike İnce Yardimci
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引用次数: 0

Abstract

In this study, the mechanical properties of 3D printed PLA samples produced with FDM technology with five different infill patterns; trihexagon, triangle, line, gyroid, and grid, and these patterns were compared for their mechanical properties. In the second part of the study, PLA specimens with different infill patterns were covered with PAN nanofibers synthesized by the electrospinning method to enhance their PLA poor mechanical properties. In the tensile tests, among the infill patterns, gyroid showed the highest Young Modulus with 1108 MPa. SEM results showed that PAN electrospun nanofibers were beadless and ordered nanofibers with an average diameter of 165.7±33 nm. The results showed that after PAN nanofibers coating on PLA specimens, the mechanical properties of the samples for all infill patterns improved, and tensile strain values of all specimens increased. PAN nanofibers could significantly enhance the brittle behavior of 3D printed PLA materials.
聚丙烯腈(PAN)静电纺纳米纤维包覆3D打印PLA材料及其拉伸性能
在本研究中,采用FDM技术生产的3D打印PLA样品具有五种不同的填充模式的力学性能;三六边形、三角形、线形、陀螺形和网格形,并对这些图案的力学性能进行了比较。在第二部分的研究中,利用静电纺丝法合成的PAN纳米纤维覆盖不同填充模式的PLA试样,以改善PLA的力学性能。拉伸试验中,不同填充方式中,回转线的杨氏模量最高,为1108 MPa。SEM结果表明,PAN静电纺纳米纤维为无头有序纳米纤维,平均直径为165.7±33 nm。结果表明:聚丙烯腈纳米纤维包覆PLA试样后,各填充模式的力学性能均得到改善,拉伸应变值均有所提高;PAN纳米纤维可以显著增强3D打印PLA材料的脆性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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