For the simple harmonic motion to cause a mass or
object to move in one direction, its line of action is
pitched upward from the conveying surface, to impart
a trajectory effect. The mass, or object, moves along
the surface in a series of short trajectories, as shown
in Fig. 1. Optimum operating conditions, in terms of
amplitude, frequency and pitching angle, have been
developed for water-quenched ash through trial and
error, and will be described later in this paper.
The differential velocity motion, having different
mean velocities and peak accelerations through each
half of a cycle, through differential friction can cause
movement of the mass or object in the direction of the
lower mean velocity. The line of action may be parallel
to the conveying surface; the mass, or object, will slide
along the surface in a series of "slip-stick" sequences,
as shown in Fig. 2.
All the differences in design and performance between
the vibrating conveyor and the horizontal differential
conveyor stem from the differences in the kind
For the simple harmonic motion to cause a mass orobject to move in one direction, its line of action ispitched upward from the conveying surface, to imparta trajectory effect. The mass, or object, moves alongthe surface in a series of short trajectories, as shownin Fig. 1. Optimum operating conditions, in terms ofamplitude, frequency and pitching angle, have beendeveloped for water-quenched ash through trial anderror, and will be described later in this paper.The differential velocity motion, having differentmean velocities and peak accelerations through eachhalf of a cycle, through differential friction can causemovement of the mass or object in the direction of thelower mean velocity. The line of action may be parallelto the conveying surface; the mass, or object, will slidealong the surface in a series of "slip-stick" sequences,as shown in Fig. 2.All the differences in design and performance betweenthe vibrating conveyor and the horizontal differentialconveyor stem from the differences in the kind
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