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Adaptive voids Primal and dual adaptive cellular structures for additive manufacturing

机译:自适应空隙用于增材制造的原始和双重自适应孔结构

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Additive manufacturing processes have the potential to change the way we produce everyday objects. Design for additive manufacturing focuses on dealing with the characteristics and constraints of a given additive process. These constraints include both geometric and material constraints which have a major impact on the feasibility, quality and cost of the printed object. When designing for additive manufacturing, one of the desirable objectives is to reduce the amount of material while maximising the strength of the printed part. For this, the inclusion of cellular structures in the design has been an efficient way to address these constraints while supporting other application-specific requirements. These structures, which are commonly inspired by shapes found in nature, provide high strength while maintaining a low mass. In this paper we propose the adaptive voids algorithm, an automatic approach to generate, given a volume boundary, a parameterised adaptive infill primal and/or dual cellular structure for additive manufacturing. The produced output can potentially be applied in various applications, including design and engineering, architecture, clothing and protective equipment, furniture and biomedical applications.
机译:增材制造工艺可能会改变我们生产日常物品的方式。增材制造的设计重点在于处理给定增材过程的特征和约束。这些限制包括几何和材料限制,这对打印对象的可行性,质量和成本有重大影响。当设计用于增材制造时,期望的目的之一是减少材料的数量,同时最大化印刷部件的强度。为此,在设计中包含蜂窝结构已成为解决这些限制并同时支持其他特定于应用程序的需求的有效方法。这些结构通常受到自然界发现的形状的启发,提供高强度,同时又保持了较低的质量。在本文中,我们提出了自适应空隙算法,一种在给定体积边界的情况下自动生成参数化的自适应填充原始和/或双孔结构以进行增材制造的自动方法。产生的输出可以潜在地应用于各种应用,包括设计和工程,建筑,服装和防护设备,家具和生物医学应用。

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