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Adaptable design of a flexible vibratory bowel-feeder

机译:柔性振动碗式喂食器的适应性设计

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A novel vibratory bowel-feeder with decoupled mechanical structure and digital coupled controller was investigated, utilizing decoupled principles and product platform concepts. To realize the independent controlling and synthesizing of rotate vibration and rectilinear vibration, the uncoupled mechanical structure was designed and working principles of the vibration platform was analyzed. The dynamics model was set up, analyzed and calculated using analytic and numeric simulation software respectively. The work space of the ellipse vibration with relation to vibratory angle was put forward. A prototype vibratory bowel feeder for magnetic pieces was built based on the vibration platform. The results show that composite motion of the feeding parts is working in line by the fact that two control systems for both the magnitude and phase can be changed independently. The feeder can meet the request to high speed, low wom-out, low noise part feeding, as well as adaptation the best out demand of feeding series parts and parts with different material.
机译:利用去耦原理和产品平台概念,研究了一种具有解耦机械结构和数字耦合控制器的新型振动式肠饲机。为了实现旋转振动和直线振动的独立控制和综合,设计了分离的机械结构,分析了振动平台的工作原理。分别使用解析和数值模拟软件建立,分析和计算动力学模型。提出了椭圆振动的工作空间与振动角的关系。在该振动平台的基础上,建立了用于磁片的振动式肠饲机样机。结果表明,由于两个控制系统的幅值和相位都可以独立改变,因此进给部件的复合运动正好一致。该给料机可以满足对高速,低磨损,低噪音零件进料的要求,并适应对系列零件和不同材料零件的最佳进料需求。

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