Automated reconstruction of smoothly joining 3D printed restorations to fix broken objects

Nikolas Lamb, Sean Banerjee, N. Banerjee
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引用次数: 11

Abstract

In this work, we provide an approach to automatically reconstruct a 3D printed restoration piece for a broken object from 3D scanned meshes of the broken object and an original counterpart. Our approach provides two contributions to reconstruct a restoration with a smooth join to the broken object, necessary for object functionality such as liquid containment, injury prevention, and visual aesthetic. As our first contribution, we leverage the original counterpart mesh to grow an exterior surface for the restoration piece that approaches the broken object within a small tolerance. As our second contribution, we project the exterior surface boundary onto the broken object to create a fracture surface boundary whose vertices satisfy the constraints of proximity, normal alignment, and tangency to vertices on the exterior surface boundary. Our approach prevents artifacts of volumetric Boolean subtraction, such as floating components and thin long slivers at the join, and avoids ruts at the join region introduced by Euclidean distance thresholding. We show 3D printed restoration results for 14 objects and 3D printable results for 8 objects.
自动重建平滑连接3D打印修复修复损坏的对象
在这项工作中,我们提供了一种方法,可以从破碎物体的3D扫描网格和原始副本中自动重建破碎物体的3D打印修复件。我们的方法为重建修复提供了两个方面的贡献,其中包括与破碎物体的平滑连接,这对于物体功能(如液体容器、伤害预防和视觉美学)是必要的。作为我们的第一个贡献,我们利用原始的对应网格为修复件生长一个外表面,在一个小的公差范围内接近破碎的物体。作为我们的第二个贡献,我们将外部表面边界投影到破碎对象上,以创建一个破裂表面边界,其顶点满足外部表面边界上顶点的接近性,法向对齐和切线约束。我们的方法防止了体积布尔减法的伪影,如连接处的浮动分量和细长条,并避免了由欧几里得距离阈值引入的连接区域的车辙。我们展示了14个对象的3D打印恢复结果和8个对象的3D打印结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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