首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Synthesis of photocurable cellulose acetate butyrate resin for continuous liquid interface production of three-dimensional objects with excellent mechanical and chemical-resistant properties
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Synthesis of photocurable cellulose acetate butyrate resin for continuous liquid interface production of three-dimensional objects with excellent mechanical and chemical-resistant properties

机译:可光固化纤维素乙酸丁酯树脂的合成连续液面界面生产三维物体,具有优异的机械和耐化学性能

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摘要

Three-dimensional (3D) printing parts with excellent resolution and high performance are of great significance for scientific and engineering applications. In this study, a novel photocurable cellulose acetate butyrate (PCCAB) resin was synthesized for continuous liquid interface production (CLIP) to construct 3D objects with high resolution, tailored mechanical properties, excellent chemical resistance and thermal stability. Particularly, the tensile and flexural strength of the CLIP 3D printed specimen could reach 44.67 and 64.53 MPa, respectively. Their solvent resistance against various organic solvents and strong acidic/basic solutions was evaluated. As expected, the 3D prints could well maintain their structural integrity and exhibited very low swelling ratios owing to the photo-induced chemical crosslinking structure. Notably, even after immersion in methylene chloride or 1.0M acid/alkali for 3 h, the 3D prints still showed excellent mechanical and thermal properties. Further study demonstrated that when PC-CAB in the CLIP ink was optimized to 20 wt% while the photoinitiator (PI) was 0.5 wt%, complex-structured 3D printed objects with high surface quality could be obtained under specific printing parameters.
机译:具有优异分辨率和高性能的三维(3D)印刷部件对科学和工程应用具有重要意义。在该研究中,为连续液面生产(夹子)合成了一种新型光固化纤维素乙酸丁酸丁酯(PcCab)树脂,以构建具有高分辨率,定制的机械性能,优异的耐化学性和热稳定性的3D对象。特别地,夹子3D印刷样本的拉伸和弯曲强度分别可以达到44.67和64.53MPa。它们对各种有机溶剂和强酸性/碱性溶液进行了抗溶剂性。如预期的那样,3D印刷品可以很好地保持其结构完整性,并且由于光诱导的化学交联结构而表现出非常低的溶胀比率。值得注意的是,即使在浸入二氯甲烷或1.0m酸/碱3小时后,3D印刷仍然显示出优异的机械和热性能。进一步的研究表明,当夹子油墨中的PC-Q型速度优化至20wt%时,在光引发剂(PI)为0.5wt%,在特定的印刷参数下可以获得具有高表面质量的复杂结构的3D印刷物体。

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