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首页> 外文期刊>3D Printing and Additive Manufacturing >Additive Timber Manufacturing: A Novel, Wood-Based Filament and Its Additive Robotic Fabrication Techniques for Large-Scale, Material-Efficient Construction
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Additive Timber Manufacturing: A Novel, Wood-Based Filament and Its Additive Robotic Fabrication Techniques for Large-Scale, Material-Efficient Construction

机译:添加剂木材制造:小说、木制长丝及其添加剂机械制造技术对大规模,Material-Efficient建设

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摘要

Additive manufacturing (AM), as resource-efficient fabrication processes, could also be used in the dimensions of the construction industry, as a variety of experimental projects using concrete and steel demonstrate. In timber construction, currently few additive technologies have been developed having the potential to be used in large scale. Currently known AM processes use wood in pulverized form, losing its inherent structural and mechanical properties. This research proposes a new material that maintains a complete wood structure with continuous and strong fibers, and that can be fabricated from fast-growing locally harvested plants. We describe the material technology to create a solid and continuous filament made of willow twigs and investigate binding and robotic AM methods for flat, curved, lamination, and hollow layering geometric typologies. The resulting willow filament and composite material are characterized for structural capacity and fabrication constraints. We discuss our technology in comparison with veneer-based lamination, existing wood filament printing, and fiber-based AM in terms of fabrication, material capacity, and sustainability. We conclude by showing possible applications in the construction industry and future research possibilities.
机译:加法制造(AM),如资源制造过程中,也可以使用的建筑业的维度使用混凝土各种实验项目和钢铁演示。目前很少有添加剂的技术用于开发的潜力大规模的。木粉形式,失去其固有的结构和力学性能。研究提出了一种新材料,维护完整的连续和木材结构强大的纤维,可以伪造的快速增长的本地植物收割。描述材料技术来创建一个固体和长丝制成的柳树树枝和调查绑定和机器人方法对平面、曲面纹理,空心分层几何类型学。柳树丝和复合材料结构能力和特点制造约束。技术与veneer-based相比纹理,现有木材纤维印刷基于光纤的制造,材料能力,和可持续性。显示可能的应用建设行业和未来研究的可能性。

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