印刷有形文化遗产复制品的连锁件

Giuseppe Alemanno, Paolo Cignoni, N. Pietroni, F. Ponchio, Roberto Scopigno
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引用次数: 30

摘要

我们提出了一种将三维数字形状分解成一组易于制造和组装的互锁块的技术。这些部件的设计使它们可以被表示为一个简单的高度场,因此,它们可以由普通的3D打印机制造,而无需使用支撑材料。移除支撑材料通常是一项繁重的任务,并可能最终损坏打印对象的表面。我们的方法使最终的复制成本更低,更准确,更适合于物质文化遗产的复制。此外,由于所提出的技术将艺术品分解成碎片,它也克服了普通打印机的工作空间限制。输入(高分辨率)三角形网格的分解由粗多边形基网格驱动(表示目标细分);定义每个块的高度场是通过沿构成基网格的每个面法线的采样距离生成的。创新的联锁机制允许相邻的部件相互插入,形成最终的形状。这种联锁机制的设计是为了保持部件的高度场特性,并提供足够程度的抓地力,以确保组装结构的形状紧凑和稳定。我们通过一些实际的复制例子证明了我们的方法的有效性,并表明了它的局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interlocking Pieces for Printing Tangible Cultural Heritage Replicas
We propose a technique to decompose a 3D digital shape into a set of interlocking pieces that are easy to be manufactured and assembled. The pieces are designed so that they can be represented as a simple height field and, therefore, they can be manufactured by common 3D printers without the usage of supporting material. The removal of the supporting material is often a burdensome task and may eventually damage the surface of the printed object. Our approach makes the final reproduction cheaper, accurate and suitable for the reproduction of tangible cultural heritages. Moreover, since the proposed technique decomposes the artwork in pieces, it also overcomes the working space limits of common printers. The decomposition of the input (high-resolution) triangular mesh is driven by a coarse polygonal base mesh (representing the target subdivision in pieces); the height fields defining each piece are generated by sampling distances along the normal of each face composing the base mesh. A innovative interlocking mechanism allows adjacent pieces to plug each other to compose the final shape. This interlocking mechanism is designed to preserve the height field property of the pieces and to provide a sufficient degree of grip to ensure the assembled structure shape to be compact and stable. We demonstrate the effectiveness of our approach and show its limitations with some practical reproduction examples.
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