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首页> 外文期刊>Polymer science, Series A. Physics >Study of Thermal-Responsive Poly-L-lactic acid/Nanohydroxyapatite Composite Filament and its 3D Printing
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Study of Thermal-Responsive Poly-L-lactic acid/Nanohydroxyapatite Composite Filament and its 3D Printing

机译:研究Thermal-Responsive Poly-L-lactic酸/ Nanohydroxyapatite复合长丝其3 d打印

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摘要

There have been critical needs for the development of biomedical and cost-effective filaments for fused deposition modeling 3D printer. In the present work, we prepared poly-L-lactic acid (PLLA)/10 wt % nanohydroxyapatite (nHA) composite filaments suitable for 3D printing by melt extrusion. Scanning electron microscopy and tensile tests were carried out to examine surface morphology and tensile properties of the materials. Differential scanning calorimetry and thermal gravimetric analysis had been performed in order to assess filaments' suitability for the 3D printing process, in terms of melting point, degradation temperature and so on. Thermally-activated shape memory response of the composites had also been studied. The printing effects of filaments were tested using a desktop 3D printer. The samples printed in different directions were used to perform compression and bending experiments. PLLA/nHA macroporous bone scaffold fabricated by 3D printing showed shape memory effect retained from PLLA/nHA composite. Even though the bone scaffold we obtained was far from the ultimate application in minimally invasive surgery, possible solutions to print more satisfying scaffold are discussed in the conclusion of this article.
机译:有关键需求的发展生物医学和具有成本效益的细丝熔融沉积造型3 d打印机。目前的工作,我们准备好的poly-L-lactic酸(PLLA nanohydroxyapatite wt %) / 10 (nHA)复合细丝适合3 d打印的融化挤压。进行拉伸试验检查表面的形态和拉伸性能材料。热重量分析被执行为了评估细丝的适用性3 d打印过程,熔点,降解温度等等。热活化形状记忆的反应复合材料也被研究过。使用桌面细丝的影响进行了测试3 d打印机。被用来执行压缩和方向弯曲实验。支架制作,3 d打印显示的形状记忆效应从丙交脂/ nHA复合留存。尽管我们获得了远远的骨支架从最终的应用程序在最低限度打印侵入性手术,可能的解决方案更令人满意的脚手架进行了讨论本文的结论。

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