StackMold: Rapid Prototyping of Functional Multi-Material Objects with Selective Levels of Surface Details

Tom Valkeneers, D. Leen, Daniel Ashbrook, Raf Ramakers
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引用次数: 25

Abstract

We present StackMold, a DIY molding technique to prototype multi-material and multi-colored objects with embedded electronics. The key concept of our approach is a novel multi-stage mold buildup in which casting operations are interleaved with the assembly of the mold to form independent compartments for casting different materials. To build multi-stage molds, we contribute novel algorithms that computationally design and optimize the mold and casting procedure. By default, the multi-stage mold is fabricated in slices using a laser cutter. For regions that require more surface detail, a high-fidelity 3D-printed mold subsection can be incorporated. StackMold is an integrated end-to-end system, supporting all stages of the process: it provides a UI to specify material and detail regions of a 3D~object; it generates fabrication files for the molds; and it produces a step-by-step casting instruction manual.
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StackMold:快速原型的功能多材料对象与表面细节的选择水平
我们提出StackMold,一个DIY成型技术,原型多材料和多颜色的对象与嵌入式电子。我们方法的关键概念是一种新的多阶段模具构建,其中铸造操作与模具组装交织在一起,形成独立的隔间,用于铸造不同的材料。为了建立多阶段模具,我们提出了新的算法,计算设计和优化模具和铸造过程。默认情况下,多级模具是用激光切割机切片制造的。对于需要更多表面细节的区域,可以采用高保真3d打印模具分段。StackMold是一个集成的端到端系统,支持过程的所有阶段:它提供了一个UI来指定3D对象的材料和细节区域;生成模具制作文件;它产生一步一步的铸造指导手册。
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