Organic fertilizer anti-sticking wall cleaning device
Technical Field
The utility model relates to the technical field of fertilizer production, in particular to an organic fertilizer anti-sticking wall cleaning device.
Background
Organic fertilizers are also called "farmyard manure", mainly organic substances derived from plants or animals, such as human manure, compost, green manure, cake manure, biogas manure, etc. After being treated, the substances can be converted into fertilizer rich in nutrients, and continuous nutrition support is provided for plant growth.
Publication number CN219463249U discloses a fertilizer processing equipment cleaning device, through opening the delivery pipe, can add a certain amount of clearance water to the inside of mixer main part, opens the frame-type agitator afterwards, clears up the material that adheres to on the mixer main part inner wall under the effect of tetrafluoro wall plate on the frame-type agitator, opens dispersion disk agitator and emulsion homogenizer afterwards and further improves the efficiency of clearance, but this patent still has following problem in the in-service use:
When the material on the inner wall of the device is cleaned, the material is directly flushed through the water pipe, but the residual material on the inner wall of the device just after the mixing is finished has certain quality, and if the material is directly flushed through the water, the material adhered on the inner wall of the device is directly wasted, so that certain loss is caused.
An organic fertilizer anti-sticking wall cleaning device is provided so as to solve the problems set forth in the above.
Disclosure of utility model
The utility model aims to provide an organic fertilizer anti-sticking wall cleaning device, which aims to solve the problems that at present, when materials on the inner wall of the device are cleaned, the materials are directly washed through a water pipe, but the materials remained on the inner wall of the device just after mixing have certain quality, and if the materials are directly washed through water, the materials adhered on the inner wall of the device are directly wasted, so that certain loss is caused.
In order to achieve the aim, the utility model provides the technical scheme that the organic fertilizer anti-sticking wall cleaning device comprises a device body and a charging port arranged at the upper part of one side of the device body, wherein a discharging valve is arranged at the lower part of one side of the device body;
Further comprises:
The top of the device body is provided with a stirring assembly, the stirring assembly comprises a mounting plate, the back surface of the mounting plate is provided with a first motor, the front surface of the mounting plate is rotationally connected with a wafer, and the output end of the first motor is fixedly connected with the wafer;
the front surface of the wafer is fixedly connected with a connecting column, a movable plate is arranged outside the connecting column, a sliding groove is formed in the movable plate, and the connecting column slides in the sliding groove;
Wherein, the mounting groove has been seted up at the top of device body, and the inside sliding connection of mounting groove has the slider, and slider and movable plate fixed connection.
Preferably, the inside fixedly connected with gag lever post of mounting groove, the slider can slide in the outside of gag lever post moreover.
Preferably, the second motor is installed at the top of slider, and the bottom rotation of slider is connected with the puddler, and the puddler is located the inside of device body.
Preferably, the inside of device body is equipped with the clearance subassembly, the clearance subassembly is including the effect swivel post, and the swivel post rotates in the inside of device body, and the inside of swivel post is on an upper side fixedly connected with first gear, the bottom fixedly connected with rack of slider moreover, first gear is connected with rack meshing moreover, and the sliding tray with rack looks adaptation has been seted up to one side of device body moreover.
Preferably, the device body is fixedly connected with a circular ring in the device body, the circular ring is rotationally connected with a gear ring in the device body, a second gear is fixedly connected with the rotary column in a lower mode in the device body, the second gear is meshed with the gear ring, and the rotary column and the second gear can rotate in the circular ring.
Preferably, the bottom fixedly connected with connecting block of ring gear, and one side fixedly connected with doctor-bar of connecting block, and the doctor-bar offsets with the inner wall of device body.
Preferably, the connecting block is L-shaped.
Compared with the prior art, the device has the beneficial effects that the position of the stirring rod can reciprocate to increase the mixing efficiency when the fertilizer is mixed, and meanwhile, the inner wall of the device can be scraped to avoid the waste of materials adhered to the inner wall of the device, so that certain loss is caused, and the device comprises the following specific contents:
1. The first motor is started, the wafer rotates, then the spliced pole can annular operation, because the position can change when the spliced pole operates, consequently, the spliced pole can drive the movable plate and remove, and because the movement track of spliced pole is annular, consequently, the spliced pole can drive movable plate reciprocating motion, then the movable plate can drive slider reciprocating motion, and then make puddler position reciprocating motion, start the second motor simultaneously for the puddler rotates, thereby makes the puddler when the stirring, its position can reciprocating motion, makes can improve the efficiency to material stirring mix.
2. The sliding block moves and drives the rack to move, then the rack drives the first gear to rotate, so that the rotary column rotates, then the rotary column rotates and drives the second gear to rotate, then the second gear drives the gear ring to rotate, then the gear ring drives the connecting block to move annularly, then the connecting block drives the scraping blade to move annularly, then the scraping blade scrapes materials on the inner wall of the device body, the mixed materials are prevented from adhering to the inner wall of the device body, and then the quantity of the connecting block and the scraping blade can be set according to actual conditions.
Drawings
FIG. 1 is a schematic diagram of a front view of the present utility model;
FIG. 2 is a schematic illustration of the present utility model a schematic cross-sectional structure;
FIG. 3 is a schematic cross-sectional view of the ring of the present utility model;
FIG. 4 is a schematic side view of the present utility model;
FIG. 5 is a schematic view of a wafer bonding structure according to the present utility model;
fig. 6 is an enlarged schematic view of the structure of fig. 3 a according to the present utility model.
The device comprises a device body, a charging port, a discharging valve, a stirring assembly, a 401, a mounting plate, a 402, a first motor, a 403, a wafer, a 404, a connecting column, a 405, a moving plate, a 406, a chute, a 407, a mounting groove, a 408, a sliding block, a 409, a limiting rod, a 410, a second motor, a 411, a stirring rod, a 5, a cleaning assembly, a 501, a rotating column, a 502, a first gear, a 503, a rack, a 504, a circular ring, a 505, a gear ring, a 506, a second gear, a 507, a connecting block, a 508 and a scraping blade.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and fully with reference to the accompanying drawings, in which it is evident that the embodiments described are only some, but not all embodiments of the utility model. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-6, the present utility model provides the following technical solutions:
The device comprises a device body 1 and a feed inlet 2 arranged at the upper part of one side of the device body 1, wherein a discharge valve 3 is arranged at the lower part of one side of the device body 1, a stirring component 4 is arranged at the top of the device body 1, the stirring component 4 comprises a mounting plate 401, a first motor 402 is arranged at the back of the mounting plate 401, the front of the mounting plate 401 is rotationally connected with a wafer 403, the output end of the first motor 402 is fixedly connected with the wafer 403, the front of the wafer 403 is fixedly connected with a connecting column 404, a movable plate 405 is arranged outside the connecting column 404, a sliding groove 406 is formed in the movable plate 405, the connecting column 404 slides in the sliding groove 406, a mounting groove 407 is formed in the top of the device body 1, a sliding block 408 is connected in the mounting groove 407 in a sliding manner, as shown in fig. 3-5, raw materials to be mixed are placed into the device body 1 through the feed inlet 2, then the first motor 402 is started, the wafer 403 is enabled to rotate, the connecting column 404 is enabled to circularly run, the position of the connecting column 404 is changed when the connecting column 404 is in operation, the connecting column 404 is enabled to move, the movable plate 405 is enabled to move, the movable plate 408 is enabled to move, and the movable plate 405 is enabled to move, and the movable plate is enabled to move.
The inside fixedly connected with gag lever post 409 of mounting groove 407, slider 408 can slide in the outside of gag lever post 409 moreover, second motor 410 is installed at the top of slider 408, and the bottom rotation of slider 408 is connected with puddler 411, as shown in fig. 3, 5, make puddler 411 position reciprocating motion, start second motor 410 simultaneously, make puddler 411 rotate, thereby make puddler 411 when stirring, its position can reciprocating motion, make can improve the efficiency to the material stirring mix, and puddler 411 is located the inside of device body 1.
The inside of device body 1 is equipped with clearance subassembly 5, clearance subassembly 5 is including the effect column 501, and column 501 rotates in the inside of device body 1, and column 501's inside is gone up fixedly connected with first gear 502, and slider 408's bottom fixedly connected with rack 503, and first gear 502 is connected with rack 503 meshing, and the sliding tray with rack 503 looks adaptation has been seted up to one side of device body 1, device body 1's inside fixedly connected with ring 504, and ring 504's inside rotation is connected with ring gear 505, and column 501's inside is gone down fixedly connected with second gear 506, and second gear 506 is connected with ring gear 505 meshing, and column 501 and second gear 506 all can rotate in ring 504's inside, ring gear 505's bottom fixedly connected with connecting block 507, as shown in fig. 3, 6, can drive rack 503 and remove when slider 408 removes, then rack 503 can drive first gear 502 and rotate, then column 501 rotates and can drive second gear 506 and rotate, then second gear 506 can drive ring gear 506 and rotate 505, and then ring gear 508 can drive the ring gear 508 and then rotate, and the scraping blade 508 can be connected with the device of the shape of connecting block 1 according to the inner wall that the scraping blade, the inner wall can be connected with the shape of connecting block body, the connecting block 1, and the connecting block can be connected with the shape of the connecting block is the connecting block 1, and the shape of the connecting block is connected with the connecting block is the shape of the connecting block is practical, the connecting block is connected with the connecting block to the shape of the connecting block is 1.
Before the organic fertilizer anti-sticking wall cleaning device is used, the whole condition of the device is required to be checked firstly to ensure that normal operation can be carried out, and according to the conditions shown in fig. 1-6, firstly, raw materials to be mixed are placed into the device body 1 through a charging hole 2, then a first motor 402 is started to enable a wafer 403 to rotate, then a connecting column 404 can move annularly, and the connecting column 404 can drive a moving plate 405 to move because the position of the connecting column 404 changes when the connecting column 404 moves, and the connecting column 404 can drive the moving plate 405 to move reciprocally because the moving track of the connecting column 404 is annular, then the moving plate 405 can drive a sliding block 408 to move reciprocally, so that the position of a stirring rod 411 moves reciprocally, and meanwhile, a second motor 410 is started to enable the stirring rod 411 to rotate, so that the position of the stirring rod 411 can move reciprocally when stirring, and the efficiency of stirring and mixing materials can be improved.
The sliding block 408 moves and drives the rack 503 to move, then the rack 503 drives the first gear 502 to rotate, further the rotary column 501 rotates, then the rotary column 501 rotates and drives the second gear 506 to rotate, then the second gear 506 drives the gear ring 505 to rotate, then the gear ring 505 drives the connecting block 507 to move annularly, then the connecting block 507 drives the scraping blade 508 to move annularly, then the scraping blade 508 scrapes materials on the inner wall of the device body 1, mixed materials are prevented from adhering to the inner wall of the device body 1, and then the quantity of the connecting block 507 and the scraping blade 508 can be set according to actual conditions.
Although the present utility model has been described with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described, or equivalents may be substituted for elements thereof, and any modifications, equivalents, improvements and changes may be made without departing from the spirit and principles of the present utility model.