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首页> 外文期刊>Transactions of the Institute of Measurement and Control >Control of rigid and flexible objects on a pneumatic active surface device
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Control of rigid and flexible objects on a pneumatic active surface device

机译:控制气动活动表面设备上的刚性和柔性物体

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Submillimeter or even micro-sized objects, such as micromechatronics, are becoming increasingly important and have the potential of making a huge impact on our society. Current manufacturing techniques are, however, incapable of massively parallel automated handling of objects at these scales, thereby limiting the possibilities of widespread commercial success in these fields (e.g., micro-electromechanical system, MEMS). In response to this type of challenge, a programmable, closed-loop controllable, pneumatic active surface device has been developed, the details of which are presented in this paper. It is a fundamentally new approach to automated massive parallel small-sized parts manipulation. By regulating the air flow in and out of numerous small orifices, the pneumatic active surface device, is shown to cause objects placed on the array to be moved in ways that are useful. It offers great flexibility, speed and the possibility of potentially handling many objects simultaneously. It can be employed to position, orient, identify, sort, feed, and assemble parts or objects. The first part of this paper describes the experimental device used to prove the concept and possible applications. The latter part of the paper goes into detail on the basics of closed-loop motion and positioning control techniques for rigid (VLSI chips, MEMS) objects and the control of flexible (PVC polyvinyl foil, paper) objects.
机译:亚毫米甚至微型物体(例如微机电一体化)正变得越来越重要,并有可能对我们的社会产生巨大影响。然而,当前的制造技术不能在这些规模上大规模并行地自动处理物体,从而限制了在这些领域(例如,微机电系统,MEMS)中广泛商业成功的可能性。为了应对此类挑战,已经开发了一种可编程的,闭环可控的气动主动表面装置,其详细信息在本文中介绍。从根本上说,这是自动化大规模并行处理小型零件的新方法。通过调节流入和流出许多小孔的空气流,显示了气动有效表面装置,该装置使放置在阵列上的物体以有用的方式移动。它提供了极大的灵活性,速度,并可能同时处理许多对象。它可以用于定位,定向,识别,分类,进给和组装零件或对象。本文的第一部分描述了用于证明这一概念和可能应用的实验设备。本文的后半部分详细介绍了刚性(VLSI芯片,MEMS)物体的闭环运动和定位控制技术以及柔性(PVC聚乙烯箔,纸)物体的控制原理。

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