Abstract

The container of a shaker mixer follows a complicated movement. The movement of the mixer is described using six coordinates. Important parameters such as the relative angles and the angular speeds of the main parts of the mixer in the movement are calculated. Expressions for the centroid positions of the main parts of the mixer and the centroid velocity components of the container in the static reference coordinates are given. Using a dynamic analysis of the shaker mixer, the method for calculating the power required for an asymmetrical twin-container shaker mixer is described. An energy-saving design of an asymmetrical twin-container shaker mixer is presented.

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