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Medial axis tree-an internal supporting structure for 3D printing

机译:中间轴树-3D打印的内部支撑结构

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摘要

Saving material and improving strength are two important but conflicting requirements in 3D printing. We propose a novel method for designing the internal supporting frame structures of 3D objects based on their medial axis such that the objects are fabricated with minimal amount of material but can still withstand specified external load. Our method is inspired by the observation that the medial axis, being the skeleton of an object, serves as a natural backbone structure of the object to improve its resistance to external loads. A hexagon-dominant framework beneath the boundary surface is constructed and a set of tree-like branching bars are designed to connect this framework to the medial axis. The internal supporting structure is further optimized to minimize the material cost subject to strength constraints. Models fabricated with our method are intended to withstand external loads from various directions, other than just from a particular direction as considered in some other existing methods. Experimental results show that our method is capable of processing various kinds of input models and producing stronger and lighter 3D printed objects than those produced with other existing methods.
机译:节省材料和提高强度是3D打印中两个重要但相互矛盾的要求。我们提出了一种新颖的方法,用于基于其中间轴设计3D对象的内部支撑框架结构,从而使对象用最少的材料制成,但仍可以承受指定的外部载荷。我们的方法的灵感来自于观察,即作为对象骨骼的中间轴充当对象的天然骨架结构,以提高其对外部负载的抵抗力。在边界表面下方构造了一个六边形为主的框架,并设计了一组树状分支杆以将该框架连接到中间轴。内部支撑结构进一步优化,以最大程度地降低材料成本(受强度限制)。用我们的方法制造的模型旨在承受各种方向的外部载荷,而不仅仅是某些其他现有方法中考虑的特定方向。实验结果表明,与使用其他现有方法生成的对象相比,我们的方法能够处理各种输入模型并生成更强大,更轻的3D打印对象。

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