A feed pump subassembly for detergent automation control batching
Technical Field
The utility model relates to the technical field of feed pumps, in particular to a feed pump assembly for automatically controlling ingredients of a detergent.
Background
Detergents are specially formulated products that are used for cleaning by a cleaning process. The main components are generally composed of surfactants, builders, additives and the like. The types of detergents are various, and they can be classified into heavy-duty detergents and light-duty detergents according to the types of dirt to be removed, and they can be classified into various forms such as powder, block, paste, slurry and liquid according to the external shape of the product.
The detergent production needs to be injected into the mixing tank through automatic control, the ingredients can be pumped away under the action of the feed pump, most of the ingredients can enter the mixing tank, but small parts of the ingredients are adhered to the inner wall of the pipeline, and the ingredients are easily taken out of the pipeline by other ingredients after long-time accumulation, so that the quality of the detergent is affected, the pipeline is required to be cleaned for preventing the ingredients from adhering, water is required to be injected into the pipeline during cleaning and then discharged through the mixing tank, the water consumption is increased in the mode, the mixing tank is polluted during cleaning of the pipeline, the mixing tank is required to be treated, and the whole cleaning process is complex.
Disclosure of utility model
The present utility model aims to provide a feed pump assembly for automatically controlling ingredients of a detergent, which solves the problems set forth in the background art.
The utility model provides a technical scheme that the feeding pump assembly for automatically controlling ingredients of a detergent comprises a mixing tank, a discharge hole, a drain seat and a servo motor, wherein a storage box is arranged on the mixing tank, a pump is arranged on the storage box, the output end of the pump is detachably connected with a connecting pipe, the output end of the connecting pipe is detachably connected to the connecting seat of the mixing tank, a blocking plate is slidably connected to the connecting seat, an outer seat is arranged on the connecting pipe, a leak is formed in the connecting pipe in the outer seat, a lantern ring is sleeved on the outer side of the leak, the lantern ring is arranged in the output direction of a worm, and the worm is arranged on the servo motor.
Preferably, a worm wheel is connected to the worm of the servo motor in a meshed mode, a first screw rod is arranged on the worm wheel, and the first screw rod and the worm are distributed in a cross mode.
Preferably, the first screw rod is parallel to the connecting seat, the first screw rod is parallel to the blocking plate of the connecting seat, and the blocking plate is in threaded connection with the first screw rod.
Preferably, a linkage rod is arranged at the output end of the worm, and a second screw rod is arranged at the output end of the linkage rod.
Preferably, the second screw rod is connected with a thread seat in a threaded manner, and the thread seat is arranged on the corresponding lantern ring.
Preferably, the lantern ring is provided with a sliding port, the lantern ring is connected to the outer seat in a sliding mode, and the inner diameter of the sliding port is the same as the outer diameter of the connecting pipe.
Compared with the prior art, the utility model has the beneficial effects that:
Through setting up the connecting seat on the blending tank, the connecting seat just can communicate with each other with the connecting pipe of pump, the inside sliding connection closure plate of connecting seat, just can separate the inside space of connecting seat when the closure plate inserts inside the connecting seat, the water that pours into in the connecting pipe just can't flow into the blending tank in, will make the water flow into the blending tank inside when the closure plate stretches out from the connecting seat inside, just can start servo motor when wasing the connecting pipe, servo motor will drive the closure plate and remove inside making the connecting seat separate to the connecting seat, also can drive the lantern ring and keep away from the drain outlet when starting, the water will be discharged into the outer seat through the drain outlet in the time of the inside circulating water of connecting pipe at last, then discharge through the drain seat of outer seat, can realize the individual washing of connecting pipe through setting, thereby it is more convenient to make the washing, also can avoid the waste of water.
Through set up the worm on servo motor, one side meshing of worm is being connected the worm wheel, just can drive the worm wheel and rotate when the worm rotates, be provided with first lead screw on the worm wheel, first lead screw just can rotate under the spacing of connecting seat, the closure plate is being connected to the output of first lead screw, just can drive the closure plate and move when first lead screw rotates, the closure plate just can remove in the inside and outside of connecting seat, be provided with the gangbar on the worm, be provided with the second lead screw on the gangbar, threaded connection screw seat on the second lead screw, the screw seat sets up on the lantern ring, the lantern ring will remove along the connecting seat when the screw seat moves along the second lead screw, the lantern ring just can not block up in the weep position, the water just can pass through the outer seat discharge, thereby realize the independent processing of waste water.
Drawings
FIG. 1 is a schematic diagram of the whole of the present utility model;
FIG. 2 is a second overall schematic of the present utility model;
FIG. 3 is an enlarged schematic view of the area A in the present utility model;
FIG. 4 is an enlarged view of region B in the present utility model
The device comprises a mixing tank 1, a storage tank 2, a pump 3, a connecting pipe 4, a connecting pipe 5, an outer seat 6, a connecting seat 7, a discharge port 8, a blocking plate 9, a servo motor 10, a worm, an 11, a linkage rod 12, a first screw rod 13, a second screw rod 14, a thread seat 15, a leak port 16, a lantern ring 17, a drainage seat 18, a slide port 19 and a worm gear.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. 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 to 4, the utility model provides a technical scheme that a supply pump assembly for automatically controlling ingredients of a detergent comprises a mixing tank 1, a discharge hole 7, a drain seat 17 and a servo motor 9, wherein a storage box 2 is arranged on the mixing tank 1, a pump 3 is arranged on the storage box 2, an output end of the pump 3 is detachably connected with a connecting pipe 4, an output end of the connecting pipe 4 is detachably connected with a connecting seat 6 of the mixing tank 1, the connecting seat 6 is slidably connected with a blocking plate 8, an outer seat 5 is arranged on the connecting pipe 4, a leak hole 15 is formed in the connecting pipe 4 in the outer seat 5, a sleeve ring 16 is sleeved outside the leak hole 15, the sleeve ring 16 is arranged in the output direction of a worm 10, and the worm 10 is arranged on the servo motor 9.
The servo motor 9 can be started when the connecting pipe 4 is cleaned, the servo motor 9 can drive the blocking plate 8 to move to the inside of the connecting seat 6 to enable the connecting seat 6 to be separated, the collar 16 can be driven to be away from the leakage opening 15 when the servo motor 9 is started, the water body can be finally discharged into the outer seat 5 through the leakage opening 15 when the connecting pipe 4 circulates in the water body, then the water is discharged through the water discharging seat 17 of the outer seat 5, the independent cleaning of the connecting pipe 4 can be realized through the arrangement, thereby the cleaning is more convenient, the waste of the water body can be avoided, the worm 10 is arranged on the servo motor 9, one side of the worm 10 is meshed with the worm wheel 19, the worm 10 can be driven to rotate when rotating, the worm wheel 19 is provided with the first screw 12, the first screw 12 can rotate under the limit of the connecting seat 6, the output end of the first screw 12 is connected with the blocking plate 8, the first screw 12 can drive the blocking plate 8 to move when rotating, the blocking plate 8 can move inside and outside the connecting seat 6, the worm 10 is provided with the second screw 13, the second screw 13 is arranged on the screw rod 11, the second screw 16 is connected with the second screw 13, the second screw 16 is arranged on the connecting seat 14, and the second screw 16 can be independently moved along the water discharging seat 16 when the screw seat 16 is in the position of the connecting seat 6, the position is not corresponding to the screw seat 16, and the waste water is discharged along the screw seat 16.
A worm wheel 19 is connected to the worm 10 of the servo motor 9 in a meshed manner, a first screw rod 12 is arranged on the worm wheel 19, and the first screw rod 12 and the worm 10 are distributed in a cross shape. By arranging the worm 10 on the servo motor 9, the worm 10 rotates under the action of the servo motor 9, the worm wheel 19 meshed with the worm 10 is driven to rotate during rotation, the worm wheel 19 is connected with the first screw rod 12, and the first screw rod 12 rotates along with the worm wheel 19.
The first screw rod 12 is parallel to the connecting seat 6, the first screw rod 12 is parallel to the blocking plate 8 of the connecting seat 6, and the blocking plate 8 is in threaded connection with the first screw rod 12. The first lead screw 12 is in threaded connection with the blocking plate 8, the blocking plate 8 can move along the first lead screw 12 when the first lead screw 12 rotates, and the blocking plate 8 cannot rotate under the limit of the connecting seat 6, so that the blocking plate 8 cannot shift in position when moving.
The output end of the worm 10 is provided with a linkage rod 11, and the output end of the linkage rod 11 is provided with a second screw rod 13. Through setting up the gangbar 11 on worm 10, worm 10 also can drive the gangbar 11 and rotate when rotating, is provided with second lead screw 13 on the gangbar 11, and second lead screw 13 will rotate simultaneously with worm 10, and second lead screw 13 is connected screw seat 14.
The second screw rod 13 is in threaded connection with a threaded seat 14, and the threaded seat 14 is arranged on a corresponding lantern ring 16. When the second screw rod 13 rotates, the thread seat 14 moves along the second screw rod 13, the thread seat 14 is arranged on the sleeve ring 16, and when the thread seat 14 moves, the sleeve ring 16 is driven to move, so that the sleeve ring 16 can also block the leakage opening 15 and can also be far away from the leakage opening 15.
The sleeve ring 16 is provided with a sliding opening 18, the sleeve ring 16 is connected to the outer seat 5 in a sliding way, and the inner diameter of the sliding opening 18 is the same as the outer diameter of the connecting pipe 4. The sleeve 16 can be sleeved in the connecting pipe 4 through the sleeve 16, and the connecting pipe 4 can penetrate into the sliding port 18 of the sleeve 16, so that sealing is realized, and water body overflow can not occur when the sleeve 16 moves.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.