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A design process to eliminate bucket-to-bucket interference on chain bucket elevator:

机译:消除链斗式提升机上料斗间干扰的设计过程:

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Bucket elevators are efficient machines to transport the granular materials in the vertical direction or along the inclined planes. Traditional bucket elevators have strong limitations in the discharging position and discharging mode. So it has important practical significance to design and develop a chain bucket elevator with multipoint discharge which can realize the horizontal and vertical simultaneous continuous transportation. The bucket is the load bearing component of the bucket elevators. This article presents the method of solving the maximum contour of the bucket, which is the combination of analytic method and graphical method. The constraint conditions and the mathematical model of the interference analysis are obtained by the interference analysis at the inflection points, and the boundary contour of the bucket at the inflection points is obtained by solving the constraint equation with MATLAB. And the boundary contour of the bucket at the discharging position is obtained by the graphical met...
机译:斗式提升机是在垂直方向或沿倾斜平面运输粒状物料的高效机器。传统的斗式提升机在卸货位置和卸货方式上都有很大的局限性。因此,设计开发多点卸料的链斗式提升机,实现水平,垂直同时连续运输具有重要的现实意义。铲斗是铲斗升降机的承重组件。本文提出了求解铲斗最大轮廓的方法,该方法是解析方法与图形方法的结合。通过在拐点处进行干涉分析,获得了干扰分析的约束条件和数学模型,并通过使用MATLAB求解约束方程,获得了铲斗在拐点处的边界轮廓。并通过图形化方法获得铲斗在卸料位置的边界轮廓。

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