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Support-Free Hollowing

机译:无支撑镂空

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摘要

Offsetting-based hollowing is a solid modeling operation widely used in 3D printing, which can change the model's physical properties and reduce the weight by generating voids inside a model. However, a hollowing operation can lead to additional supporting structures for fabrication in interior voids, which cannot be removed. As a consequence, the result of a hollowing operation is affected by these additional supporting structures when applying the operation to optimize physical properties of different models. This paper proposes a support-free hollowing framework to overcome the difficulty of fabricating voids inside a solid. The challenge of computing a support-free hollowing is decomposed into a sequence of shape optimization steps, which are repeatedly applied to interior mesh surfaces. The optimization of physical properties in different applications can be easily integrated into our framework. Comparing to prior approaches that can generate support-free inner structures, our hollowing operation can reduce more volume of material and thus provide a larger solution space for physical optimization. Experimental tests are taken on a number of 3D models to demonstrate the effectiveness of this framework.
机译:基于偏移的镂空是广泛用于3D打印的实体建模操作,它可以更改模型的物理属性并通过在模型内部生成空隙来减轻重量。然而,中空操作会导致无法在内部空隙中制造的附加支撑结构的制造。结果,在进行优化不同模型的物理性能的操作时,这些附加的支撑结构会影响空心加工的结果。本文提出了一种无支撑的空心框架,以克服在实体内部制造空隙的困难。计算无支撑镂空的挑战被分解为一系列形状优化步骤,这些步骤被重复应用于内部网格表面。可以轻松地将不同应用程序中物理特性的优化集成到我们的框架中。与可以生成无支撑内部结构的现有方法相比,我们的挖空操作可以减少更多的材料体积,从而为物理优化提供更大的解决方案空间。在许多3D模型上进行了实验测试,以证明此框架的有效性。

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