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Simultaneous Digital Design and Additive Manufacture of Structures and Materials

机译:同时进行数字设计和结构与材料的增材制造

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摘要

The integration of emerging technologies into a complete digital thread promises to disrupt design and manufacturing workflows throughout the value chain to enable efficiency and productivity transformation, while unlocking completely new design freedom. A particularly appealing aspect involves the simultaneous design and manufacture of the macroscale structural topology and material microstructure of a product. Here we demonstrate such a workflow that digitally integrates: design automation – conception and automation of a design problem based on multiscale topology optimization; material compilation – computational geometry algorithms that create spatially-variable, physically-realizable multimaterial microstructures; and digital fabrication – fabrication of multiscale optimized components via voxel-based additive manufacturing with material jetting of multiple photo-curable polymers. We validate the digital design and manufacturing workflow by designing, fabricating, and testing a series of structures that illustrate capabilities, show how it empowers the exploitation of new design freedom, and even challenges traditional design principles relating form, structure, and function.
机译:将新兴技术集成到完整的数字线程中,有望破坏整个价值链中的设计和制造工作流程,从而实现效率和生产率的转换,同时释放全新的设计自由。一个特别吸引人的方面涉及产品的宏观结构拓扑和材料微观结构的同时设计和制造。在这里,我们演示了一种以数字方式集成的工作流程:设计自动化–基于多尺度拓扑优化的设计问题的概念和自动化;材料编辑–计算几何算法,创建空间可变,可物理实现的多材料微观结构;和数字制造–通过基于体素的增材制造以及多种光固化聚合物的材料喷射来制造多尺度优化组件。我们通过设计,制造和测试一系列说明功能的结构来验证数字设计和制造工作流程,展示其如何赋予开发新设计自由的权力,甚至挑战与形式,结构和功能有关的传统设计原则。

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