Conveying device for waste cloth
Technical Field
The utility model relates to the technical field of cloth recycling and reprocessing, in particular to a conveying device for waste cloth.
Background
The waste cloth can be recycled and processed to be made into fiber particles for reuse, the recycled waste cloth usually needs to be cut into pieces, crushed materials and the like, and the crushed materials can be processed into small pieces of cloth through a crusher in the crushed material cloth, and the crushed cloth can be transported through a conveyor belt;
As disclosed in patent application No. CN220294785U, in the operation of the present invention, cloth to be crushed is placed on one end of two first conveyor belts 3 located outside a box 1, the two first conveyor belts 3 can simultaneously convey the cloth to be crushed into the box 1, the cloth falls down from the first conveyor belts 3 and then falls onto an inclined plate 5, then slides down along the inclined plate 5 between two rotating crushing rollers 6 to finish crushing, the crushed cloth falls onto a second conveyor belt 9, and then is carried out of the box 1 by the second conveyor belt 9;
Cloth among the prior art is transported through the conveyer belt generally, but mix a large amount of flocks in the cloth behind the rag of rag machine, follow the in-process that the conveyer belt removed, can raise a large amount of flocks, can influence workman's operational environment, inhale the flock for a long time, easily causes pulmonary disease.
Disclosure of utility model
The utility model aims to solve the technical problem of providing a conveying device for waste cloth, so as to solve the problem that in the prior art, the cloth after crushed aggregates are transported by a conveyor belt is easy to cause the spreading of flocks in a factory.
The utility model provides a conveying device for waste cloth, which comprises
The conveying belt is arranged between the two supporting frames;
the baffle cover is fixedly connected to the two support frames and is positioned above the conveyor belt, and the baffle cover is provided with a feed inlet;
the air inlet pipes are arranged on the baffle cover;
the two dust hoods are respectively and fixedly connected to opposite surfaces of the two supporting frames;
Wherein, the support frame is provided with a dust collection opening communicated with the dust hood;
The filter screen is fixedly connected in the dust hood, separates the dust hood into two chambers, and one chamber is communicated with the dust collection port;
The two moving plates are respectively arranged in the two chambers in a reciprocating manner;
The two brush plates are respectively and fixedly connected to one surfaces of the two movable plates corresponding to the filter screens, and brush hair contacted with the filter screens is arranged on each brush plate;
and the dust collection pipes are arranged on the dust hood and are communicated with the other cavity.
Preferably, the inner wall of the chamber is fixedly connected with a guide rail, and the moving plate is sleeved on the guide rail in a sliding way.
Preferably, the outer walls of the two sides of the dust hood are respectively and rotatably provided with a winding and unwinding roller, the positions of the two side walls of the dust hood, which correspond to the two movable plates, are respectively provided with a through hole, the positions of the movable plates, which correspond to the through holes, are respectively and fixedly connected with a interlink, the interlink is respectively and fixedly connected with a connecting rope, one end of the connecting rope, which is far away from the interlink, penetrates through the through holes at the corresponding positions in a sliding manner and is fixedly connected with the winding and unwinding roller, and the two movable plates are corresponding to the center of the filter screen.
Preferably, the side wall of the dust removal cover is fixedly connected with a cover body corresponding to the position of the winding and unwinding roller, the through hole is positioned in the opening range of the cover body, the winding and unwinding roller is rotationally connected with the cover body, the cover body is fixedly connected with a driving motor, and the output end of the driving motor is fixedly connected with the rotating shaft of the winding and unwinding roller.
Preferably, the bottom of the dust hood is provided with a material guiding pipe communicated with the dust hood, and the lower port of the material guiding pipe is covered with a cover body.
Preferably, a blocking net is arranged in the air inlet pipe.
The beneficial effects of adopting above technical scheme are:
According to the application, the dust collection pipe is externally connected with dust collection equipment, so that the dust collection cover is in a negative pressure state, and therefore, the dust between the two support frames is sucked through the dust collection opening and filtered by the filter screen, and the brush hair on the brush board can be driven to move through the movement of the two moving boards, so that the brush hair can brush down the dust on the filter screen.
Drawings
Fig. 1 is a schematic view of a conveying device for waste cloth according to the present utility model.
Fig. 2 is a partial schematic view of fig. 1 in accordance with the present utility model.
FIG. 3 is a cross-sectional view of a transporting device for waste cloth according to the present utility model.
Wherein, the dust-collecting device comprises a supporting frame 10, a dust-collecting opening 11, a conveyor belt 20, a dust-collecting cover 30, a dust-collecting pipe 31, a material guiding pipe 32, a cover body 33, a filter screen 40, a moving plate 50, a guide rail 51, a interlink 52, a connecting rope 53, a through hole 54, a collecting roller 60, a driving motor 61, a cover body 62, bristles 70, a brush plate 71, a baffle cover 80, an air inlet pipe 81, a baffle net 82 and a feeding opening 83.
Detailed Description
Embodiments of the present utility model will be described in detail below with reference to the accompanying drawings.
In a first embodiment, as shown in FIGS. 1 to 3, a transporting device for waste cloth comprises
A conveyor belt 20 disposed between the two support frames 10;
The shielding cover 80 is fixedly connected to the two supporting frames 10 and is positioned above the conveyor belt 20, and a feed inlet 83 is formed in the shielding cover 80;
a plurality of air inlet pipes 81 arranged on the baffle cover 80;
Two dust hoods 30 fixedly connected to opposite faces of the two support frames 10, respectively;
wherein, the support frame 10 is provided with a dust collection opening 11 communicated with the dust hood 30;
The filter screen 40 is fixedly connected in the dust hood 30, separates the dust hood 30 into two chambers, and one chamber is communicated with the dust collection port 11;
two moving plates 50 reciprocally disposed in the two chambers, respectively;
Two brush plates 71 fixedly connected to one surfaces of the two moving plates 50 corresponding to the filter screens 40, wherein the brush plates 71 are provided with bristles 70 contacting with the filter screens 40;
A plurality of dust collection pipes 31 are arranged on the dust hood 30, and the dust collection pipes 31 are communicated with the other chamber.
The present embodiment is implemented as follows:
When the dust collector is used, cloth falls on the conveyor belt 20 through the feeding hole 83, at the moment, the dust collector externally connected with the dust collection pipe 31 is started, so that the dust collection cover 30 sucks filings into the dust collection cover 30 through the dust collection hole 11, the filter screen 40 can filter the filings, when the filings are not removed, the moving plate 50 moves back and forth in the cavity, so that the brush hairs 70 of the brush plate 71 on the moving plate 50 can brush the filings adhered to the filter screen 40, the filter screen 40 can continuously filter the filings, and the air inlet pipe 82 is used for timely providing air between the two support frames 10.
The present application has the advantage over the prior art of enabling sustainable removal of lint generated by the rag on the conveyor 20.
Referring to fig. 3, a guide rail 51 is fixedly connected to an inner wall of the chamber, and a moving plate 50 is slidably sleeved on the guide rail 51;
the guide rail 51 can be used for moving the moving plate 50, improving the stability of the movement of the moving plate 50.
Referring to fig. 3, the outer walls of the two sides of the dust hood 30 are respectively rotatably provided with a winding roller 60, the positions of the two side walls of the dust hood 30 corresponding to the two moving plates 50 are respectively provided with a through hole 54, the positions of the moving plates 50 corresponding to the through holes 54 are respectively and fixedly connected with a interlink 52, the interlink 52 is respectively and fixedly connected with a connecting rope 53, and one end of the connecting rope 53 far away from the interlink 52 penetrates through the through hole 54 at the corresponding position in a sliding manner and is fixedly connected with the winding roller 60, and the two moving plates 50 are corresponding to the center of the filter screen 40;
By the rotation of the winding and unwinding roller 60, one connecting rope 53 is wound up and the other two are released, so that the connecting rope 53 can pull the connecting ring 52, the connecting ring 52 pulls the moving plate 50, and the moving plate 50 moves reciprocally on the guide rail 51.
Referring to fig. 1, 2 and 3, a cover 62 is fixedly connected to a side wall of the dust hood 30 at a position corresponding to the retraction roller 60, the through hole 54 is located in an opening range of the cover 62, the retraction roller 60 is rotatably connected with the cover 62, a driving motor 61 is fixedly connected to the cover 62, and an output end of the driving motor 61 is fixedly connected with a rotating shaft of the retraction roller 60;
The winding and unwinding roller 60 can be driven to rotate in the cover 62 by the driving motor 61, and the through hole 54 is opposite to the opening end of the cover 62, so that the leakage of the filth can be avoided.
Referring to fig. 1 and 2, a material guiding pipe 32 is arranged at the bottom of the dust hood 30 and is communicated with the dust hood 30, and a cover 33 is covered at the lower end opening of the material guiding pipe 32;
The brushed-off filings can be received through the material guide pipe 32 and the cover body 33, so that the filings can be conveniently and periodically cleaned, wherein the filter screen 40 extends into the material guide pipe 32, and the filings can be blocked to pass through the filter screen 40.
Referring to fig. 1, a blocking net 82 is disposed in an air inlet pipe 81;
By providing the barrier net 82, foreign substances can be prevented from entering the barrier cover 80.
The foregoing is merely a preferred embodiment of the present utility model, and it should be noted that modifications and improvements could be made by those skilled in the art without departing from the inventive concept, which fall within the scope of the present utility model.