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首页> 外文期刊>Journal of the European Ceramic Society >Fabrication of ZnO periodic structures by 3D printing
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Fabrication of ZnO periodic structures by 3D printing

机译:通过3D打印制造ZnO周期性结构

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摘要

In this study, aqueous colloidal ZnO inks with tailored rheological properties have been developed for 3D printing of periodic structures. These periodic structures consisting of alternating layers with tetragonal symmetries were fabricated by extrusion of ZnO inks with concentration of 48 vol%. The as-prepared structures had well-defined and interconnected layers with rod diameters of 200 mu m. The inks exhibited pseudoplastic behaviour and were in accordance with the power-law model. Oscillatory and creep-recovery measurements indicated that the inks had the appropriate viscoelastic behaviour and excellent printing characteristics. In order to acquire a high mechanical strength, the structures were sintered at various temperatures between 900 and 1500 degrees C, and their compressive strength was evaluated. The results indicated that 1500 degrees C was an optimum sintering temperature to obtain structures with high compressive strength up to 11.09 MPa. The reported ZnO inks offer multiple possibilities for the fabrication of novel structures for practical applications. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,已开发出具有定制流变性能的水性胶体ZnO油墨,用于周期性结构的3D打印。这些周期性结构由具有四边形对称性的交替层组成,是通过挤压浓度为48%(体积)的ZnO墨水制成的。所制备的结构具有界限分明且相互连接的层,其杆直径为200μm。油墨表现出假塑性行为,并且符合幂律模型。振荡和蠕变恢复测量表明该油墨具有适当的粘弹性行为和优异的印刷特性。为了获得高机械强度,在900至1500℃之间的各种温度下烧结结构,并评估其抗压强度。结果表明,1500℃是获得具有高达11.09 MPa的高抗压强度的组织的最佳烧结温度。报道的ZnO油墨为实际应用中的新型结构的制造提供了多种可能性。 (C)2016 Elsevier Ltd.保留所有权利。

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