Mechanical Properties of 3D Printed Biomimicked Composites

S. Allameh, Roger Miller, H. Allameh
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引用次数: 1

Abstract

Additive manufacturing technology has significantly matured over the last two decades. Recent progress in 3D printing has made it an attractive choice for fabricating complex shapes out of select materials possessing desirable properties at small and large scales. The application of biomimetics to the fabrication of structural composites has been shown to enhance their toughness and dynamic shear resistance. Building homes from bioinspired composites is possible if the process is automated. This can be achieved through additive manufacturing where layers of hard and soft materials can be deposited by 3D printing. This study examines mechanical properties of reinforced concrete fabricated by 3D printing. Preliminary results of 4-point bend tests are presented and the implications of 3D-printed home building on current conventional construction practices are discussed.
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3D打印仿生复合材料的力学性能
在过去的二十年里,增材制造技术已经显著成熟。3D打印的最新进展使其成为一种有吸引力的选择,可以用具有理想性能的材料在小型和大型尺度上制造复杂的形状。仿生技术在结构复合材料制造中的应用已被证明可以提高结构复合材料的韧性和抗动剪切能力。如果这个过程是自动化的,那么用生物复合材料建造房屋是可能的。这可以通过增材制造来实现,其中可以通过3D打印沉积硬和软材料层。本研究考察了3D打印制造的钢筋混凝土的力学性能。提出了4点弯曲试验的初步结果,并讨论了3d打印住宅建筑对当前传统建筑实践的影响。
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