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An Additive Manufacturing Method Using Large-Scale Wood Inspired by Laminated Object Manufacturing and Plywood Technology

机译:一种采用层压物体制造和胶合板技术的大规模木材的添加剂制造方法

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摘要

Wood-based materials in current additive manufacturing (AM) feedstocks are primarily restricted to the micron scale. Utilizing large-scale wood in existing AM techniques remains a challenge. This paper proposes an AM method—laser-cut veneer lamination (LcVL)—for wood-based product fabrication. Inspired by laminated object manufacturing (LOM) and plywood technology, LcVL bonds wood veneers in a layer-upon-layer manner. As demonstrated by printed samples, LcVL was able to retain the advantageous qualities of AM, specifically, the ability to manufacture products with complex geometries which would otherwise be impossible using subtractive manufacturing techniques. Furthermore, LcVL-product structures designed through adjusting internal voids and wood-texture directionality could serve as material templates or matrices for functional wood-based materials. Numerical analyses established relations between the processing resolution of LcVL and proportional veneer thickness (layer height). LcVL could serve as a basis for the further development of large-scale wood usage in AM.
机译:目前添加剂制造(AM)原料的木材材料主要限于微米级。在现有的AM技术中利用大型木材仍然是一个挑战。本文提出了AM方法激光切割胶合板(LCV1) - 用于木材基产品制造。灵感来自层压物体制造(LOM)和胶合板技术,LCVL以层间的方式粘合木贴面。如印刷样品所证明的,LCVL能够保留上午的有利品质,具体地,制造具有复杂几何形状的产品的能力,否则使用减法制造技术将不可能是不可能的。此外,通过调节内部空隙和木材纹理方向性设计的LCVL-产品结构可以用作用于功能性木材的材料的材料模板或矩阵。数值分析建立了LCVL和比例片厚度(层高)的处理分辨率之间的关系。 LCVL可以作为进一步发展上午的大规模木材使用的基础。

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