首页> 外文会议>Annual international Solid Freeform Fabrication symposium >DESIGN FOR ADDITIVE MANUFACTURING: AN INVESTIGATION OF KEY MANUFACTURING CONSIDERATIONS IN MULTI-MATERIAL POLYJET 3D PRINTING
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DESIGN FOR ADDITIVE MANUFACTURING: AN INVESTIGATION OF KEY MANUFACTURING CONSIDERATIONS IN MULTI-MATERIAL POLYJET 3D PRINTING

机译:增材制造设计:多材料POLYJET 3D印刷中关键制造注意事项的调查

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The PolyJet material jetting process is uniquely qualified to create complex, multi-material structures. However, there is currently a lack of understanding and characterization regarding important manufacturing considerations to guide designers in their use of the PolyJet process. This paper investigates key considerations necessary to ensure that proposed designs are manufacturable and that part properties are appropriate for the intended use. Considerations included in this paper include 1) minimum manufacturable feature size, 2) removal of support material from channels, 3) survivability of small features during water jet cleaning, and 4) the maximum self-supporting angle of printed parts in the absence of support material. The result of this work is an understanding of which geometric and process variables affect these manufacturing considerations. This understanding is crucial for the creation of a set of Design for Additive Manufacturing (DfAM) guidelines to help designers create ideal, manufacturable parts with less iteration and provide constraints for insertion into automated design processes such as topology optimization.
机译:PolyJet材料喷射过程具有创造复杂的多材料结构的独特资格。但是,目前缺乏对重要的制造考虑因素的理解和表征,以指导设计人员使用PolyJet工艺。本文研究了确保建议的设计可制造以及零件特性适合预期用途所必需的关键考虑因素。本文考虑的因素包括:1)最小可制造特征尺寸; 2)从通道中去除支撑材料; 3)喷水清洗过程中小特征的生存能力; 4)在没有支撑的情况下印刷零件的最大自支撑角度材料。这项工作的结果是了解哪些几何和工艺变量会影响这些制造注意事项。这种理解对于创建一组“增材制造设计(DfAM)指南”至关重要,以帮助设计人员以较少的迭代次数创建理想的可制造零件,并为插入自动设计过程(如拓扑优化)提供约束。

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