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Development of a sheet-based material handling system for layered manufacturing

机译:开发用于分层制造的片材式物料搬运系统

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Computer-aided manufacturing of laminated engineering materials (CAM-LEM), developed at Case Western Reserve University, is a layered-manufacturing approach utilizing automated stacking of parts laser-cut from sheet materials. This paper presents the design of a material-handling system and its integration with a modular laser-cutting system, completing the most recent version of CAM-LEM. Our material-handling system is required to: transfer individual sheets from at least three material stacks to the cutting table of the laser-cutting system; extract single-layer, laser-cut parts from the cutting table; and stack the parts onto a vertical-stack assembly, resulting in fabrication of a 3D object. Design philosophy, details, and stacking performance measurements of the constructed system are presented. It is shown that the resulting system is capable of assembling objects within a 150 mm cube with an assembly precision of approximately 0.050 mm. Further, the assembly operations are relatively fast, so that part build rates are limited primarily by the laser cutter.
机译:凯斯西储大学(Case Western Reserve University)开发的层压工程材料(CAM-LEM)的计算机辅助制造是一种分层制造方法,利用了自动堆叠从板材切割出的零件的方法。本文介绍了物料搬运系统的设计及其与模块化激光切割系统的集成,从而完成了CAM-LEM的最新版本。我们的物料处理系统需要:将至少三个物料堆中的单张纸转移到激光切割系统的切割台上;从切割台上提取激光切割的单层零件;并将零件堆叠到垂直堆叠组件上,从而制造出3D对象。介绍了所构建系统的设计原理,细节和堆叠性能度量。结果表明,所得到的系统能够以约0.050 mm的组装精度组装150 mm立方体内的物体。此外,组装操作相对较快,因此零件的制造速度主要受到激光切割机的限制。

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