Mixing apparatus and system
Provided is a mixing apparatus. The mixing apparatus comprises a housing defining a primary chamber, an inlet for receiving material into the mixing apparatus, as well as an outlet for discharging material from the mixing apparatus. The housing provides within the primary chamber a plurality of rotating shafts, each rotating shaft having a plurality of flailing fixtures associated therewith.
1. A mixing apparatus configured to breakdown and mix a semi-solid material with a treatment additive to absorb and capture liquid in the semi-solid material, and thereby discharge a mixture that will become a low slump material, the mixing apparatus comprising:
a housing defining a primary chamber;
an inlet provided on the housing for receiving the semi-solid material and the treatment additive into the mixing apparatus;
an outlet provided on the housing for discharging the mixture from the mixing apparatus, the outlet being disposed vertically below the inlet;
a plurality of rotating shafts arranged within the primary chamber horizontally relative to an operating position of the mixing apparatus and perpendicular to a flow path of the semi-solid material and the treatment additive through the primary chamber from the inlet to the outlet, each rotating shaft being vertically spaced from another of the rotating shafts along the flow path; and
a plurality of flailing fixtures movably attached to each of the plurality of rotating shafts, with each flailing fixture having a disrupter end that moves about freely relative to its respective rotating shaft,
wherein the housing is constructed in such a manner as to route the semi-solid material and the treatment additive along the flow path onto each of the rotating shafts that transversely cross the primary chamber to thereby be engaged by the plurality of flailing fixtures respectively thereon, and
wherein each of the plurality of flailing fixtures is configured to flail and make contact with the semi-solid material and the treatment additive due to centrifugal force and momentum provided by the respective rotating shaft to thereby enhance the breakdown and mixing action within the primary chamber of the mixing apparatus.
2. The mixing apparatus according to claim 1 , wherein each of the plurality of flailing fixtures is connected at a connection end to the respective rotating shaft.
3. The mixing apparatus according to claim 1 , wherein the choice of construction material for the plurality of flailing fixtures includes chains, and chains with end weights.
4. The mixing apparatus according to claim 3 , wherein the plurality of flailing fixtures includes a combination of different construction materials.
5. The mixing apparatus according to claim 1 , wherein the plurality of flailing fixtures associated with each rotating shaft are arranged with a spacing between adjacent flailing fixtures configured to achieve a specific mixing action.
6. The mixing apparatus according to claim 5 , wherein the spacing between adjacent flailing fixtures is selected to present a wider spacing between adjacent flailing fixtures on rotating shafts closer to the inlet, and where the spacing progressively becomes narrower for each rotating shaft arranged towards the outlet.
7. The mixing apparatus according to claim 1 , wherein the plurality of rotating shafts are power driven and controlled to rotate at selectively variable speeds and direction.
8. The mixing apparatus according to claim 1 , wherein the housing additionally comprises one or more flow guides extending into the primary chamber to aid in the routing of the semi-solid material and the treatment additive along the flow path within the primary chamber of the mixing apparatus.
9. The mixing apparatus according to claim 1 , wherein one or more protrusions having sharp edges extend into the primary chamber from a wall of the housing to enhance the breakdown and mixing action within the primary chamber.
10. The mixing apparatus according to claim 1 , wherein a first rotating shaft along the flow path is configured to rotate one of a clockwise or counter-clockwise direction and a second rotating shaft along the flow path is configured to rotate in an opposite direction to the first rotating shaft.