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首页> 外文期刊>Mechatronics: The Science of Intelligent Machines >High-speed conveyor junction based on an air-jet floatation technique
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High-speed conveyor junction based on an air-jet floatation technique

机译:基于喷气浮选技术的高速输送机交汇点

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This paper investigates how forces developed by air-jets might be used to convey or manipulate delicate planar objects at high-speed without damage. The theory of turbulent jets and classic fluid mechanics are used in combination with practical experiments to establish how air-jet velocities and forces are related to orifice size and supply pressure. The basic stability problem of how to support a planar object on a single or multiple-array of air-jets is discussed. A passive control solution is developed based on the insertion of a porous layer between the object and the air-jets. This solution is incorporated in a mechatronic conveyor junction that can selectively re-direct or lane rigid or flexible planar objects from one conveyor to another mounted at right angles. In trials the conveyor junction reliably handled fragile biscuits at more than eight per second and could re-direct objects travelling at up to 2.5 m/s.
机译:本文研究了由喷气机产生的力如何用于高速传输或操纵精密的平面物体而不会造成损坏。湍流射流理论和经典的流体力学与实际实验结合使用,确定了射流速度和力如何与孔口尺寸和供应压力相关。讨论了如何将平面物体支撑在单个或多个喷气飞机阵列上的基本稳定性问题。基于在物体和喷气口之间插入多孔层,开发了一种被动控制解决方案。该解决方案被并入了一个机电一体化的输送机交界处,该交界处可以有选择地将刚性或柔性平面物体从一个输送机重定向到另一条或垂直放置。在试验中,传送带结以每秒超过8个的速度可靠地处理了易碎的饼干,并且可以重定向以高达2.5 m / s的速度移动的物体。

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