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Rheological and Curing Behavior of Acrylate-Based Suspensions for the DLP 3D Printing of Complex Zirconia Parts

机译:DLP 3D打印复杂氧化锆零件的丙烯酸酯基悬浮液的流变和固化行为

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摘要

The present study demonstrates the possibility of fabricating zirconia parts with a complex shape and internal architecture using a low-cost stereolithography-based technique. One of the critical steps in ceramics stereolithography is the preparation of a photo-curable slurry with properties that fulfill specific requirements, such as having a low viscosity, high solids loading and appropriate curing characteristics. Slurries with different acrylic monomers and ceramic fillers were studied concerning their rheological and curing behavior. New formulations based on mono- and tri-functional acrylic monomers revealed the following excellent rheological properties: The viscosity of the mono-/tri-acrylate-based slurry with 75 wt.% of zirconia was 1.6 Pa·s at 30 s−1. Zirconia stabilized with 3 mol.% yttria was found to be more favorable than zirconia with 8 mol.% yttria for slurry preparation, because of its lower surface area and higher tapped density. It was shown that the cure depth of the suspensions was suitable for printing objects with a 50 µm layer thickness, good interlayers connection and surface finishing.
机译:本研究证明了使用低成本的基于立体光刻技术制造具有复杂形状和内部结构的氧化锆零件的可能性。陶瓷立体光刻法中的关键步骤之一是制备可满足特定要求的光固化浆料,例如具有低粘度,高固体含量和适当的固化特性。研究了具有不同丙烯酸单体和陶瓷填料的浆料的流变和固化行为。基于单官能和三官能丙烯酸单体的新配方具有以下优异的流变性能:氧化锆含量为75%(重量)的单丙烯酸/三丙烯酸酯基浆料的粘度在30 s为1.6 Pa·s。 -1 。发现用3摩尔%的氧化钇稳定的氧化锆比8摩尔%的氧化钇的氧化锆更有利于浆料制备,这是因为其表面积较小并且堆积密度较高。结果表明,悬浮液的固化深度适合于印刷厚度为50 µm,良好的层间连接和表面光洁度的物体。

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