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Morphological control in desktop manufacturing by distributed attraction optimization methods

机译:分布式吸引力优化方法在桌面制造中的形态控制

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Rapid prototyping techniques employing thermal material deposition are intended for direct fabrication of functional metal products and tooling. This article introduces an analytical model of such material transfer processes, using superposition of unit deposition distributions, composed of elementary ellipsoid primitives. The real-time surface geometry model, with its parameters identified by in-process profile measurements, is used for Smith-prediction of the material shape in the inaccessible deposition region. Thus, a distributed-parameter geometry control scheme is established to obtain a desired surface topology, by modulating the feed and motion of a moving mass source. This is based on dynamic geometry shaping by a real-time complex optimization technique, using distributed attraction of the mass source. The methodology is tested in geometric command following on a robotic fused wire deposition PAW station, using optical sensing by a scanning laser stripe.
机译:采用热材料沉积的快速原型技术旨在直接制造功能性金属产品和工具。本文介绍了这种材料转移过程的分析模型,该模型使用单位沉积分布的叠加(由基本的椭球基元组成)。实时表面几何模型及其参数通过过程中的轮廓测量确定,用于对难以接近的沉积区域中的材料形状进行史密斯预测。因此,通过调制移动质量源的进给和运动,建立了分布参数几何控制方案,以获得所需的表面拓扑。这是基于采用实时复杂优化技术的动态几何形状整形,并使用质量源的分布式吸引力。在机器人熔丝沉积PAW工作站上,按照几何命令对方法进行了测试,并使用了扫描激光条的光学传感技术。

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