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Dense ceramics with complex shape fabricated by 3D printing: A review

机译:具有复杂形状的密集陶瓷由3D打印制造的复杂形状:评论

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Three-dimensional (3D) printing technology is becoming a promising method for fabricating highly complex ceramics owing to the arbitrary design and the infinite combination of materials. Insufficient density is one of the main problems with 3D printed ceramics, but concentrated descriptions of making dense ceramics are scarce. This review specifically introduces the principles of the four 3D printing technologies and focuses on the parameters of each technology that affect the densification of 3D printed ceramics, such as the performance of raw materials and the interaction between energy and materials. The technical challenges and suggestions about how to achieve higher ceramic density are presented subsequently. The goal of the presented work is to comprehend the roles of critical parameters in the subsequent 3D printing process to prepare dense ceramics that can meet the practical applications.
机译:三维(3D)印刷技术成为由于任意设计和材料的无限组合而制造高度复杂的陶瓷的有希望的方法。 密度不足是3D印刷陶瓷的主要问题之一,但浓缩陶瓷的集中描述是稀缺的。 该审查具体地介绍了四种3D打印技术的原理,并专注于影响3D印刷陶瓷的致密化的每种技术的参数,例如原料的性能和能量和材料之间的相互作用。 随后提出了关于如何实现更高陶瓷密度的技术挑战和建议。 所呈现的工作的目标是理解关键参数在后续3D打印过程中的作用,以准备能够满足实际应用的密集陶瓷。

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