Bidirectional belt mechanism of automatic material distributor
Technical Field
The utility model relates to a slot type composting equipment technical field, concretely relates to automatic two-way belt mechanism of cloth machine.
Background
With the continuous increase of the discharge amount of solid wastes, the treatment of the wastes becomes a big problem related to ecological environment, and as a treatment method of the wastes, a tank type composting technology is more and more emphasized, and corresponding composting complete equipment is rapidly developed. The groove type aerobic composting fermentation system has the advantages of high temperature of a compost body, short fermentation time, thorough decomposition of organic matters and effective prevention of the spread of pathogenic bacteria and the emission of peculiar smell. The corresponding automatic material distribution system, the compost turner and the rail changing device of the compost turner are produced.
In the existing trough type composting equipment, in order to realize feeding, a pile turning machine needs to be moved to a position far away from a feeding position, materials are loaded into a trough manually or by a forklift, and then the materials loaded into the trough are flattened manually, so that the uniform fermentation of the materials cannot be ensured by the material conveying mode, the uniformity of the composting materials is poor, the ventilation is unbalanced, the material layer is uneven, local anaerobism and caking are caused, the material turning and throwing of the pile turning machine are uneven, the pile turning machine cannot normally operate, and the fermentation of the materials is incomplete.
SUMMERY OF THE UTILITY MODEL
The utility model provides an automatic cloth machine two-way belt mechanism to the not enough of prior art existence.
The utility model provides a technical scheme that technical problem adopted is:
the utility model provides an automatic two-way belt mechanism of cloth machine, including two-way belt feeder, the adjustable shelf, walking motor and two-way electric hoist, two-way belt feeder installs on the adjustable shelf, install a plurality of walking wheel under the adjustable shelf, the walking motor is installed on the adjustable shelf, the walking motor drives the transmission shaft and rotates, the transmission shaft drives the walking wheel and moves on fermentation tank track, two-way belt feeder is by the top idler, the snub pulley, driven cylinder, two-way belt and driving pulley are constituteed, two-way belt is driven by driving pulley along driving pulley, the top idler, driven cylinder and snub pulley are the circulation and rotate in succession, two-way electric hoist installs in two-way belt frame, two-way electric hoist drives two-way belt through wire rope and controls.
When the utility model works, the mixed materials are conveyed to the one-way belt through other conveying equipment, the one-way belt conveys the materials to the two-way belt of the utility model, the two-way belt drives the belt to operate at the driving roller to convey the materials to one end in the fermentation tank, when the materials reach the specified height, the two-way belt is driven by the two-way electric hoist to move leftwards or rightwards along the pulley on the movable frame, the belt of the two-way belt is also moved leftwards and rightwards, the materials are evenly scattered from one end of the fermentation tank to the other end, the materials are evenly scattered in the fermentation tank at the same position, the material distribution at one position of the fermentation tank is completed, when the materials are distributed to the adjacent position, the two-way belt drives the transmission shaft to rotate at the traveling motor, the traveling wheels are installed on the transmission shaft, the transmission shaft drives the traveling wheels to move one, and when the next material distribution point is reached, starting automatic material distribution at the next material distribution position. When the bidirectional belt conveyor moves to a next material distribution position, the unidirectional belt conveyor fixed on the bidirectional belt movable frame moves to the next material distribution position along with the movement of the material distribution position, the unidirectional belt conveyor is connected with the bidirectional belt conveyor device movable frame, and when the material distribution position is completed, the bidirectional belt device can move to the next material distribution position again until the fermentation tank needing material distribution is completely filled with the materials, and the automatic material distribution system completes the material distribution.
The utility model discloses an in the fermentation vat is carried in compost material automatic, the controllable nature in succession, the cloth is even, is favorable to the fermentation of good oxygen compost, has improved compost operating efficiency, has improved the yield, has reduced manufacturing cost and intensity of labour.
Drawings
The present invention will be further explained with reference to the drawings and examples.
Fig. 1 is a schematic structural diagram of the present invention;
fig. 2 is a schematic side view of the present invention;
fig. 3 is a schematic top view of the present invention.
In the figure, a bidirectional belt conveyor 1, an upper carrier roller 2, a lower carrier roller 3, a driven roller 4, a bidirectional belt 5, a driving roller 6, a steel wire rope 7, a traveling wheel 8, a transmission shaft 9, a movable frame 10, a traveling motor 11, a bidirectional electric hoist 12 and a pulley 13 are arranged.
Detailed Description
As shown in fig. 1, 2 and 3, a bidirectional belt mechanism of an automatic distributing machine comprises a bidirectional belt conveyor 1, a movable frame 10, a traveling motor 11 and a bidirectional electric hoist 12, wherein the bidirectional belt conveyor 1 is installed on the movable frame 10, a plurality of traveling wheels 8 are installed below the movable frame 10, the traveling motor 11 is installed on the movable frame 10, the traveling motor 11 drives a transmission shaft 9 to rotate, the transmission shaft 9 drives the traveling wheels 8 to move on a fermentation tank track, the bidirectional belt conveyor 1 comprises an upper carrier roller 2 and a lower carrier roller 3, driven cylinder 4, two-way belt 5 and driving roll 6 constitute, and two-way belt 5 is by driving roll 6 drive along driving roll, upper supporting roller 2, driven cylinder 4 and lower supporting roller 3 do the circulation continuous rotation, and two-way electric block 12 is installed in two-way belt frame, and two-way electric block passes through wire rope 7 and drives two-way belt 5 and controls two-way motion along pulley 13 on the adjustable shelf 10.
When the utility model works, the mixed materials are conveyed to the one-way belt through other conveying equipment, the one-way belt conveys the materials to the two-way belt of the utility model, the two-way belt drives the belt to operate at the driving roller to convey the materials to one end in the fermentation tank, when the materials reach the specified height, the two-way belt is driven by the two-way electric hoist to move leftwards or rightwards along the pulley on the movable frame, the belt of the two-way belt is also moved leftwards and rightwards, the materials are evenly scattered from one end of the fermentation tank to the other end, the materials are evenly scattered in the fermentation tank at the same position, the material distribution at one position of the fermentation tank is completed, when the materials are distributed to the adjacent position, the two-way belt drives the transmission shaft to rotate at the traveling motor, the traveling wheels are installed on the transmission shaft, the transmission shaft drives the traveling wheels to move one, and when the next material distribution point is reached, starting automatic material distribution at the next material distribution position. When the bidirectional belt conveyor moves to a next material distribution position, the unidirectional belt conveyor fixed on the bidirectional belt movable frame moves to the next material distribution position along with the movement of the material distribution position, the unidirectional belt conveyor is connected with the bidirectional belt conveyor device movable frame, and when the material distribution position is completed, the bidirectional belt device can move to the next material distribution position again until the fermentation tank needing material distribution is completely filled with the materials, and the automatic material distribution system completes the material distribution.
The utility model discloses the adjustable shelf bears two-way belt feeder, moves about on it along the adjustable shelf track to track back-and-forth movement on along the material groove. A plurality of travelling wheels are arranged below the movable frame and are arranged on the track of the fermentation tank. The movable frame is provided with a walking motor and a transmission shaft, the walking motor drives the walking transmission shaft to rotate, and the transmission shaft drives the movable frame walking wheel to move forwards and backwards on the fermentation tank track, so that the forward and backward movement of the bidirectional belt is realized. The movable frame is connected with the unidirectional belt conveyor into a whole through channel steel, and when the fixed frame moves back and forth, the unidirectional belt also moves back and forth along with the fixed frame, so that materials on the unidirectional belt conveyor can be continuously conveyed to the bidirectional belt conveyor. The movable frame is provided with a bidirectional belt conveyor: the bidirectional belt conveyor uniformly conveys the materials conveyed by the unidirectional belt conveyor to all the material troughs. The bidirectional belt conveyor is provided with an upper carrier roller, a lower carrier roller, a driving roller, a driven roller, a belt, a traveling wheel and a bidirectional electric hoist, is driven by the driving roller, circularly and continuously rotates along the driving roller, the upper carrier roller, the driven roller and the lower carrier roller, and conveys materials into the fermentation tank. The bidirectional belt conveyor frame is provided with a bidirectional electric hoist, a pulley and a steel wire rope which drive the belt conveyor to move in two directions, the bidirectional electric hoist drives the steel wire rope to drive the bidirectional belt to move left and right along the guide rail on the fixed frame in two directions, and materials conveyed by the bidirectional belt conveyor into the fermentation tank are uniformly scattered into the whole fermentation tank.
The bidirectional belt device is used for continuously and automatically and controllably conveying materials into the fermentation tank. The whole fixing and supporting component of the bidirectional belt device is a steel component, the bidirectional belt device is connected with the movable frame and the automatic distributing system platform through the travelling wheels, the travelling wheels move front and back and left and right in the track, and meanwhile the bidirectional belt movable frame installed on the fermentation tank moves forward and back on the fermentation tank under the driving of the driving device.