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首页> 外文期刊>Journal of Mechanical Design >Force Analysis of a Vibratory Bowl Feeder for Automatic Assembly
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Force Analysis of a Vibratory Bowl Feeder for Automatic Assembly

机译:自动装配振动碗式给料机的受力分析

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摘要

This paper investigates the vibratory bowl feeder for automatic assembly, presents a geometric model of the feeder, and develops force analysis, leading to dynamical modeling of the vibratory feeder. Based on the leaf-spring modeling of the three legs of the symmetrically arranged bowl of the feeder, and equating the vibratory feeder to a three-legged parallel mechanism, the paper reveals the geometric property of the feeder. The effects of the leaf-spring legs are transformed to forces and moments acting on the base and bowl of the feeder. Resultant forces are obtained based upon the coordinate transformation, and the moment analysis is produced based upon the orthogonality of the orientation matrix. This reveals the characteristics of the feeder, that the resultant force is along the z-axis and the resultant moment is about the z direction and further generates the closed-form motion equation. The analysis presents a dynamic model that integrates the angular displacement of the bowl with the displacement of the leaf-spring legs. Both Newtonian and Lagrangian approaches are used to verify the model, and an industrial case-based simulation is used to demonstrate the results.
机译:本文研究了用于自动装配的振动碗进料器,提出了该进料器的几何模型,并进行了力分析,从而对振动进料器进行了动力学建模。基于对送料器对称排列的碗的三个支腿的板簧建模,并将振动送料器等同于三支腿并联机构,本文揭示了送料器的几何特性。板簧支腿的作用转化为作用在送料器底座和碗上的力和力矩。基于坐标变换获得合力,并基于方向矩阵的正交性进行力矩分析。这揭示了进给器的特性,即合力沿z轴,合力矩约为z方向,并进一步生成闭合形式的运动方程。分析提供了一个动态模型,该模型将碗的角位移与板簧腿的位移整合在一起。牛顿法和拉格朗日法均用于验证模型,而基于工业案例的仿真则用于证明结果。

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