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PROCESS PLANNING FOR EMBEDDING FLEXIBLE MATERIALS IN MULTI-MATERIAL PROTOTYPES

机译:嵌入多材料原型的柔性材料的过程计划

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摘要

We describe a set of techniques to permit the fabrication of multi-material layered prototypes with embedded flexible components such as reinforcing fibers, fabrics and electrical wiring. The main challenges are to maintain the shapes of the flexible elements during processing and to control precisely the geometries of adjacent regions of part material without either damaging the flexible elements or being hindered by them. The solutions involve sequences of controlled deposition and/or removal of part material and sacrificial "buffer" material. Functional considerations concerning strength and fatigue life may induce additional constraints on the processing sequence. Where conventional material removal is impractical, we present a new approach involving a hybrid of photolithography and shape deposition manufacturing. Alternative methods of achieving similar functions without cross-boundary embedding can ease fabrication and even improve performance. Design and process selection guidelines have been composed based on fabrication experience.
机译:我们描述了一组技术,以允许制造具有嵌入式柔性组件(如增强纤维,织物和电线)的多层多层材料原型。主要的挑战是在加工过程中保持柔性元件的形状,并精确控制零件材料相邻区域的几何形状,而不会损坏柔性元件或受其阻碍。解决方案涉及零件材料和牺牲性“缓冲”材料的受控沉积和/或去除的顺序。有关强度和疲劳寿命的功能考量可能会导致加工顺序受到其他限制。在常规材料去除不可行的地方,我们提出了一种新方法,其中涉及光刻和形状沉积制造的混合。在没有跨边界嵌入的情况下实现相似功能的替代方法可以简化制造过程,甚至提高性能。设计和工艺选择准则是根据制造经验制定的。

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