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The 3D mixer allows the material to move
in 3D space.
It not only has turbulence, which can accelerate the diffusion and movement of materials, but also has flipping motion, which can reduce the impact of centrifugal forces, solve specific gravity deviations, and do not produce material accumulation and agglomeration
.
Its turbulence is strong and the overturning speed is slow
.
Stirring drum movement mode: rotating while rotating, with up, down, left, right, front and rear two ways
of movement.
Therefore, it has many advantages: short mixing time, high mixing uniformity, large loading coefficient of mixing cylinder, low equipment, small slewing space, small footprint, adjustable station for inlet and outlet, low vibration, low noise, etc.
, and it is important
to improve production efficiency and product quality.
The 3D mixer is an efficient mixing device
.
The active and driven biaxial and two-axis end three-dimensional motion rocker structure design enables the mixing drum to carry out complex multi-directional movement
in three-dimensional space.
It makes the material move along the cylinder in three directions of circumference, radial and axial, accelerating the flow and diffusion
of the material.
The material has no centrifugal force, specific gravity segregation, layering, accumulation, and dead angle, so as to achieve the purpose of
uniform mixing.
The driven shaft of the machine adopts a flexible design, which makes the machine more flexible, portable, and easier to debug and maintain
.
The connection part of the bearing to the barrel is outside the barrel, and the material will not contact the bearing and cause contamination
.
This machine is suitable for high uniform mixing
of powdery and granular materials such as medicine, chemical industry, food, light industry, electronics, mining and metallurgy, national defense industry and scientific research institutions.
The working principle of the three-dimensional mixer is different from that of the traditional rotary mixer
.
Driven by the drive shaft, the feeding cylinder carries out translation, rotation and swing movement in three-dimensional space, so that the material in the mixing cylinder is in a complex motion state such as "rotation flow - translation - inversion", generating alternating pulses of continuous driving materials; The turbulence generated by motion has a variable energy gradient that gives each particle in the mixed material a different state of
motion.
Each particle constantly changes its position during frequent motion diffusion, resulting in a satisfactory mixing effect
.