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Optimized Zirconia 3D Printing Using Digital Light Processing with Continuous Film Supply and Recyclable Slurry System

机译:优化Zirconia 3D打印使用连续薄膜供应和可回收浆料系统使用数字光处理

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摘要

Stereolithography (SL) can fabricate complex ceramic parts layer by layer using computer-aided design (CAD) models. The traditional SL system utilizes a vat filled with ceramic slurry with a high solid content, which for ceramics contributes to several limitations and operational difficulties, and further renders it nonrecyclable mainly due to the presence of printed residue and its high viscosity. In this study, we utilized a continuous film supply (CFS) system integrated with a tape-casting type digital light processing (DLP) printer to fabricate zirconia prototypes with a solid content of 45 volume percent (vol.%). Various printing and postprocessing parameters were studied for optimization, to achieve a relative density of 99.02% ± 0.08% with a microhardness of 12.59 ± 0.47 GPa. Slurry reusability was also demonstrated by printing with recycled slurry to produce consistent relative density values in the range of 98.86% ± 0.02% to 98.94% ± 0.03%. This method provides new opportunities for material recycling and the fabrication of dense complex ceramic products, reducing the consumption of the material.
机译:立体光刻(SL)可以使用计算机辅助设计(CAD)模型通过层制造复杂的陶瓷部件层。传统的SL系统利用填充有陶瓷浆料的增值税,其具有高固体含量,这对于陶瓷有助于若干限制和操作困难,并且进一步使其不可粘合,主要是由于印刷残留物的存在和其高粘度。在这项研究中,我们利用集成的连续薄膜供应(CFS)系统与胶带铸造型数字光处理(DLP)打印机集成,用于制造氧化锆原型,其固体含量为45体积%(Vol.%)。研究了各种印刷和后处理参数进行优化,以达到99.02%±0.08%的相对密度,微硬度为12.59±0.47gPa。还通过用再循环浆料印刷来证明浆料可重用性,以产生一致的相对密度值,范围为98.86%±0.02%至98.94%±0.03%。该方法为材料回收和致密复杂陶瓷产品的制造提供了新的机会,降低了材料的消耗。

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