CN118949799A - A water treatment scale inhibitor dispersant mixing device and mixing method thereof - Google Patents

A water treatment scale inhibitor dispersant mixing device and mixing method thereof Download PDF

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Publication number
CN118949799A
CN118949799A CN202411426170.6A CN202411426170A CN118949799A CN 118949799 A CN118949799 A CN 118949799A CN 202411426170 A CN202411426170 A CN 202411426170A CN 118949799 A CN118949799 A CN 118949799A
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CN
China
Prior art keywords
tank
plate
groove
water
scale inhibition
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Granted
Application number
CN202411426170.6A
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Chinese (zh)
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CN118949799B (en
Inventor
秦进良
秦光宇
李晓辉
杜刚
关晶晶
曹根旺
薛晓东
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Luoyang Qianglong Environmental Protection Technology Co ltd
Luoyang Qianglong Industrial Co ltd
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Luoyang Qianglong Environmental Protection Technology Co ltd
Luoyang Qianglong Industrial Co ltd
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Priority to CN202411426170.6A priority Critical patent/CN118949799B/en
Publication of CN118949799A publication Critical patent/CN118949799A/en
Application granted granted Critical
Publication of CN118949799B publication Critical patent/CN118949799B/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F33/00Other mixers; Mixing plants; Combinations of mixers
    • B01F33/80Mixing plants; Combinations of mixers
    • B01F33/836Mixing plants; Combinations of mixers combining mixing with other treatments
    • B01F33/8361Mixing plants; Combinations of mixers combining mixing with other treatments with disintegrating
    • B01F33/83613Mixing plants; Combinations of mixers combining mixing with other treatments with disintegrating by grinding or milling
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D29/00Filters with filtering elements stationary during filtration, e.g. pressure or suction filters, not covered by groups B01D24/00 - B01D27/00; Filtering elements therefor
    • B01D29/62Regenerating the filter material in the filter
    • B01D29/66Regenerating the filter material in the filter by flushing, e.g. counter-current air-bumps
    • B01D29/68Regenerating the filter material in the filter by flushing, e.g. counter-current air-bumps with backwash arms, shoes or nozzles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F23/00Mixing according to the phases to be mixed, e.g. dispersing or emulsifying
    • B01F23/70Pre-treatment of the materials to be mixed
    • B01F23/708Filtering materials

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  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Mixers Of The Rotary Stirring Type (AREA)

Abstract

The invention relates to the technical field of compatibility equipment and discloses compatibility equipment and a mixing method of water treatment scale inhibition and dispersion agents, wherein the compatibility equipment comprises a compatibility body, the compatibility body consists of a mixing component and a filtering component arranged on the mixing component, the mixing component comprises a grinding tank, a driving component arranged on the grinding tank, the driving component comprises a stirring rod, a stirring paddle arranged on the stirring rod and a telescopic component arranged on the stirring rod, the stirring rod is driven to rotate around a main shaft by the driving component, meanwhile, a grinding groove is arranged at the bottom of the grinding tank, the stirring rod is used for grinding the agglomerated scale inhibition and dispersion agents which are settled to the grinding groove, the agglomerated scale inhibition and dispersion agents are prevented from being stored in the liquid scale inhibition and dispersion agents which are mixed and diluted, and suspended matters in water are prevented from being deposited on the surface of the agglomeration to cause scale generation in the pipeline, so that the dispersion performance of the scale inhibition and dispersion agents is improved, and the smoothness of the water flowing in the pipeline is avoided.

Description

Water treatment scale inhibition and dispersion agent compatibility equipment and mixing method thereof
Technical Field
The invention relates to the technical field of dispersant compatibility equipment, in particular to water treatment scale inhibition dispersant compatibility equipment and a mixing method thereof.
Background
The scale inhibition and dispersion agent is widely applied to various water treatment systems, including membrane separation systems such as boilers, refrigeration systems, pipelines, reverse osmosis, nanofiltration, ultrafiltration and the like. In the systems, the scale inhibition and dispersion agent can effectively prevent scale deposition of hardness salts, maintain normal permeability of equipment, improve the operation efficiency of the system and prolong the service life of the system.
Because the water body in the desert area has the characteristics of high salt content, rich mineral content and the like, scaling is easy to occur in the water pipe line in the desert area, the flow area in the water pipe is further reduced, and the water body flow in the water pipe line is reduced, so that the scale inhibition dispersing agent is needed to prevent the generation of scale on the inner wall of the water pipe;
For convenient transportation and saving transportation cost, the scale inhibition dispersing agent is generally in powder form, but the scale inhibition dispersing agent needs to be mixed and diluted with a water body with proper proportion when in use, when the powder scale inhibition dispersing agent is mixed with the water body, the caking condition of the scale inhibition dispersing agent can appear in the mixed liquid, the scale inhibition dispersing agent is added into water through the mode of manual addition by the existing scale inhibition agent compatibility equipment, the adding speed and adding amount of the scale inhibition agent are difficult to control through the mode of manual addition, the scale inhibition agent can not be uniformly dispersed in the water when the adding amount is too fast, so that caking is formed, when the mixed liquid is introduced into a pipeline for use, the caking can be settled on the inner wall of the pipeline, meanwhile, suspended matters, mineral matters and the like in the water can be deposited on the caking surface when the water flows through the caking, and further the formation of scale inhibition dispersing agent in the pipeline is reduced, and the circulation of the water body in the pipeline is influenced.
Disclosure of Invention
The invention aims to provide a water treatment scale inhibition and dispersion agent compatibility device and a mixing method thereof, so as to solve the problems in the process.
In order to achieve the above purpose, the present invention provides the following technical solutions: the water treatment scale inhibition and dispersion agent compatibility equipment comprises a compatibility body, wherein the compatibility body consists of a mixing component and a filtering component arranged on the mixing component;
the mixing component comprises a grinding tank, a driving component arranged on the grinding tank, the driving component comprises a stirring rod, a stirring paddle arranged on the stirring rod, a telescopic component arranged on the stirring rod, the stirring paddle is used for stirring solution in the grinding tank, and the telescopic component linearly reciprocates along the stirring rod by driving the stirring paddle;
The middle area of the lower end of the grinding tank is provided with a bump, the bump and the inner side wall of the grinding tank form a grinding groove, the array is arranged in a discharge hole at the lower end of the grinding groove, and the driving assembly drives the stirring rod to move along the grinding groove so that the stirring rod grinds the agglomerated scale inhibition dispersing agent which is settled to the grinding groove.
As a preferable scheme of the water treatment scale inhibition and dispersion agent compatibility equipment, the invention comprises the following steps: the driving assembly further comprises a mounting plate, a first mounting seat arranged on the mounting plate, a main shaft arranged on the first mounting seat, and an inclined seat arranged on the main shaft.
As a preferable scheme of the water treatment scale inhibition and dispersion agent compatibility equipment, the invention comprises the following steps: the array set up in mount pad II on the mounting panel, set up in universal piece in the mount pad II sets up two the pendulum tooth between the universal piece, the stirring rod runs through two universal pieces and pendulum tooth.
As a preferable scheme of the water treatment scale inhibition and dispersion agent compatibility equipment, the invention comprises the following steps: the support is arranged on the second mounting seat, the rotating shaft is arranged on the support, and the gear is arranged on the rotating shaft.
As a preferable scheme of the water treatment scale inhibition and dispersion agent compatibility equipment, the invention comprises the following steps: the telescopic component comprises a movable ring, an extension rod arranged on the movable ring, a guide wheel arranged on the extension rod and a telescopic block arranged in the grinding tank.
As a preferable scheme of the water treatment scale inhibition and dispersion agent compatibility equipment, the invention comprises the following steps: the filtering component comprises a liquid outlet tank, a filtering tank arranged in the liquid outlet tank and a centrifugal impeller arranged in the filtering tank.
As a preferable scheme of the water treatment scale inhibition and dispersion agent compatibility equipment, the invention comprises the following steps: the centrifugal filter comprises a centrifugal impeller, a guide plate, a guide cylinder, an air cylinder, an opening and closing plate, a limiting rod, a guide plate, a guide cylinder, an air cylinder and a guide cylinder, wherein the limiting rod is arranged on the centrifugal impeller, the guide plate is arranged on the limiting rod, the guide cylinder is arranged in the filter tank, the air cylinder is arranged in the guide cylinder, and the opening and closing plate is arranged in the air cylinder.
As a preferable scheme of the water treatment scale inhibition and dispersion agent compatibility equipment, the invention comprises the following steps: the movable plate is symmetrically arranged in the opening and closing plate, clamping grooves are formed in the movable plate, the contact columns are symmetrically arranged on the opening and closing plate, the ejector rods are arranged in the contact columns, the trigger rods are arranged in the contact columns, and the clamping blocks are arranged on the contact columns.
As a preferable scheme of the water treatment scale inhibition and dispersion agent compatibility equipment, the invention comprises the following steps: the filter component further comprises a gas hood, trigger cylinders arranged in the gas hood, trigger plates symmetrically arranged in the trigger cylinders, and lifting plates arranged in the trigger cylinders.
In order to achieve the above purpose, the present invention provides the following technical solutions: a mixing method of water treatment scale inhibition and dispersion agent compatibility equipment comprises the following steps:
firstly, starting a water pump and a motor to enable the water pump to convey water with proper proportion into a filtering tank from the water tank through a water inlet pipeline, enabling the motor to drive a rotating shaft to rotate through a first synchronous wheel and a second synchronous wheel, and enabling water entering the filtering tank to leak into a liquid outlet tank through a filtering hole;
The centrifugal impeller is driven by the rotating shaft to rotate, so that the centrifugal impeller agitates water in the filter tank which is not oozed out by the filtering holes, and at the moment, the water generates centrifugal force under the agitation of the centrifugal impeller, so that the oozing out of the water in the filter tank is quickened, and meanwhile, sediment in the water is separated from the water by the filtering holes;
Simultaneously, the rotating shaft drives the guide plate to rotate, so that the guide block slides along the guide groove, the through groove I and the through groove II are staggered, then the opening and closing plate compresses the air cylinder in the air cavity into the pressure cavity through the one-way valve, when the opening and closing plate moves to the contact position of the contact post and the bottom of the air cylinder, the contact post drives the clamping block to move to be meshed with the clamping groove, and simultaneously, in the moving process of the contact post, the clamping block pushes the moving plate to force the moving plate to slide along the moving groove, and the through hole I and the through hole II are overlapped;
The guide block slides to the limit position of the guide groove, the first spring pushes the guide plate to be far away from the air cylinder, the opening and closing plate starts to be far away from the air cylinder, air in the filter cavity enters the air cavity through the first through hole and the second through hole, then when the guide plate moves to the limit position, the push plate at the opening of the air cylinder pushes the trigger rod to enable the trigger rod to move towards the inside of the pressure groove, the air pressure in the pressure groove is increased, the ejector rod stretches and pushes the top plate, the clamping block rotates around the hinge joint of the clamping block and the contact post under the pushing of the ejector rod, then the roller is separated from the clamping groove, the clamping block resets under the acting force of the torsion spring, the top plate pushes the ejector rod and the trigger rod, at the moment, the contact post resets under the action of the third spring, the movable plate resets under the action of the third spring plate, the first through hole and the second through hole are misplaced, the guide plate drives the opening and closing plate to move towards the air cylinder again, and the air in the air cavity is compressed into the pressure cavity again;
along with the gradual increase of the gas pressure in the pressure cavity, the lifting plate gradually rises along the trigger cylinder, the trigger plate seals the groove, then the lifting plate rises to be in contact with a baffle plate far away from one end of the closed groove, at the moment, under the pushing of the lifting plate, the trigger plate slides along the sliding groove, at the moment, the trigger plate is gradually separated from the closed groove, then high-pressure gas in the pressure cavity enters the air outlet cavity, then the high-pressure gas enters the water outlet cavity through the air outlet cavity and the circulation groove, then gas in the water outlet cavity enters the filter tank through the filter hole, and at the moment, sediment blocking the filter hole of the column is pushed out of the filter hole by the high-pressure gas, so that the filter hole is prevented from being blocked by sediment;
The high-pressure gas in the pressure cavity is discharged, at the moment, the second spring pushes the lifting plate to reset, then the lifting plate contacts with the baffle plate close to the closing groove and pushes the trigger plate to slide along the sliding groove, and then the trigger plate can block the closing groove again;
The water body entering the water outlet cavity enters the grinding tank through the water pipe, at the moment, the valve is closed, the water body is accumulated in the grinding tank and continuously leaks into the mixing tank, at the moment, the cover plate is opened, and the powdery scale inhibition and dispersion agent with proper proportion is put into the grinding tank through the feed inlet;
The inclined seat drives the stirring rod to rotate around the main shaft as the axis, the movement of the stirring rod is limited by the rotation of the universal block in the universal groove, and meanwhile, the rotating shaft drives the swinging teeth to rotate through the gears, so that the stirring rod is self-transmitted in the inclined seat, and at the moment, the stirring rod drives the stirring paddle to stir in the grinding tank, and the stirring paddle can rotate;
The stirring rod drives the stirring paddle to stir the powdery scale inhibition and dispersion agent and the water body in the grinding tank, and the water body enters the mixing tank through the drain hole, so that the scale inhibition and dispersion agent which is agglomerated when meeting water gradually subsides along the flowing direction of the mixed solution, and then the stirring rod grinds the agglomerated and settled scale inhibition and dispersion agent under the action of the convex block and the grinding groove, so that the agglomerated scale inhibition and dispersion agent is grinded to be fully mixed with the water body;
In the process that the stirring rod rotates around the axis of the main shaft, the guide wheel slides along the spiral groove, then the moving ring drives the stirring paddle to slide linearly and reciprocally along the key groove, then the mixed solution in the grinding tank, which is stirred by the water body and the scale inhibition dispersing agent, enters the mixing tank through the water outlet hole, and then the mixed solution can be quantitatively discharged from the liquid outlet tank by opening the valve.
Compared with the prior art, the invention has the beneficial effects that:
1. the stirring rod is driven to rotate around the main shaft as the axis through the driving component, meanwhile, the bottom of the grinding tank is provided with the grinding groove, and the stirring rod is used for grinding the caked scale inhibition dispersing agent which is settled to the grinding groove, so that the caked scale inhibition dispersing agent is prevented from being stored in the liquid scale inhibition dispersing agent after mixed dilution, and further, suspended matters and mineral substances in the water body are prevented from being deposited on the caked surface after the caked scale inhibition dispersing agent is settled to the pipeline, so that scale in the pipeline is generated, the dispersion performance of the scale inhibition dispersing agent is improved, and the smoothness of the water body flowing in the pipeline is improved;
2. Through the meshing of the gears and the swing teeth, when the stirring rod drives the stirring paddle to rotate around the main shaft in the grinding tank, the stirring rod drives the stirring paddle to automatically transmit, so that the grinding effect of the stirring rod on the caked scale inhibition dispersing agent is improved, meanwhile, the stirring effect and the stirring efficiency of the stirring paddle are improved, the scale inhibition dispersing agent is more uniformly mixed and diluted in a water body, and the cleaning effect of the mixed liquid scale inhibition dispersing agent on scale inside a pipeline is improved;
3. The guide wheel slides along the spiral groove, so that when the stirring rod rotates around the main shaft as the axis, the stirring paddle is driven to reciprocate along the key groove by the movement change, so that the stirring paddle stirs the liquid with different liquid level surfaces in the grinding tank, and the uniformity of mixing of the scale inhibition dispersing agent in the water body is further promoted;
4. The water body to be introduced into the grinding tank is filtered through the filtering tank, so that sediment and particulate impurities in water and soil are removed, the impurities are prevented from being mixed into the scale inhibition dispersing agent solution, and the scale inhibition dispersing agent is prevented from affecting the cleaning effect of scale in the pipeline;
5. The guide plate is used for pushing the opening and closing plate to increase the air pressure in the pressure cavity, then the lifting plate is used for driving the trigger plate to move under the action of high pressure, so that high-pressure air enters the water outlet cavity through the air outlet cavity, and sediment blocked in the filtering holes is blown out under the action of the high-pressure air, so that the sediment is prevented from blocking the filtering holes, and the filtering efficiency of the filtering tank to sediment in the water body is improved.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the water treatment scale inhibition and dispersion agent compatibility equipment.
FIG. 2 is a schematic diagram of the structure of the inside of the grinding tank of the water treatment scale inhibition and dispersion agent compatibility equipment.
FIG. 3 is a schematic diagram of the driving assembly of the water treatment scale inhibition and dispersion agent compatibility device.
FIG. 4 is a schematic diagram of the structure of a part of the telescopic part of the water treatment scale inhibition and dispersion agent compatibility device.
FIG. 5 is a schematic diagram of the structure of the stirring paddle and the moving ring of the water treatment scale inhibition and dispersion agent compatibility device.
FIG. 6 is a schematic diagram of the structure of the expansion block of the scale-inhibiting dispersant compatible device for water treatment in half section.
FIG. 7 is a schematic diagram of the structure of a half section of a filtering part of the water treatment scale inhibition and dispersion agent compatibility device.
FIG. 8 is a schematic diagram of the connection of the guide plate and the limit rod of the scale inhibition and dispersion agent compatibility device for water treatment.
FIG. 9 is a schematic diagram of the structure of the inflator and the opening and closing plate of the water treatment scale-inhibiting dispersant compatibility apparatus of the present invention.
FIG. 10 is a schematic diagram of a partial structure of a half section of an opening and closing plate of the scale-inhibiting and dispersing agent compatibility apparatus for water treatment.
FIG. 11 is a schematic diagram of the semi-sectional structure of the trigger cylinder of the scale inhibition and dispersion agent compatibility equipment for water treatment.
In the figure:
1. A mixing member; 11. a grinding tank; 111. a bump; 112. grinding grooves; 12. a drive assembly; 121. a stirring rod; 122. stirring paddles; 123. a mounting plate; 124. a first mounting seat; 125. a main shaft; 126. an inclined seat; 127. a second mounting seat; 1271. a support; 1272. a rotation shaft; 1273. a gear; 128. a universal block; 129. swinging teeth;
2. A filter member; 21. discharging the liquid tank; 22. a filter tank; 23. centrifugal paddles; 24. a limit rod; 241. a guide plate; 25. a guide cylinder; 26. an air cylinder; 27. an opening and closing plate; 271. a moving plate; 272. a clamping groove; 273. a contact column; 274. a push rod; 275. a trigger lever; 276. a clamping block; 28. a gas hood; 29. a trigger cylinder; 291. a trigger plate; 292. a lifting plate;
3. A telescopic member; 31. a moving ring; 32. an extension rod; 33. a guide wheel; 34. and a telescopic block.
Detailed Description
Features and exemplary embodiments of various aspects of the invention are described in detail below. In the following detailed description, numerous specific details are set forth in order to provide a thorough understanding of the invention. It will be apparent, however, to one skilled in the art that the present invention may be practiced without some of these specific details. The following description of the embodiments is merely intended to provide a better understanding of the invention by showing examples of the invention. The present invention is in no way limited to any particular configuration and algorithm set forth below, but rather covers any modification, substitution, and improvement of elements, components, and algorithms without departing from the spirit of the invention. In the drawings and the following description, well-known structures and techniques have not been shown in order to avoid unnecessarily obscuring the present invention.
Examples
Referring to fig. 1 to 3, for a first embodiment of the present invention, there is provided a scale inhibiting and dispersing agent compounding apparatus for water treatment, which includes a compounding body composed of a mixing part 1 and a filtering part 2 provided on the mixing part 1;
The mixing component 1 comprises a grinding tank 11, a driving component 12 arranged on the grinding tank 11, the driving component 12 comprises a stirring rod 121, a stirring paddle 122 arranged on the stirring rod 121, a telescopic component 3 arranged on the stirring rod 121, the stirring paddle 122 is used for stirring solution in the grinding tank 11, the telescopic component 3 is used for driving the stirring paddle 122 to linearly reciprocate along the stirring rod 121, one end of the stirring rod 121 penetrates through the grinding tank 11, and the stirring paddle 122 is arranged inside the grinding tank 11;
The middle area of the lower end of the grinding tank 11 is provided with a bump 111, the bump 111 and the inner side wall of the grinding tank 11 form a grinding ditch 112, an array is arranged in a discharge hole at the lower end of the grinding ditch 112, the upper end of the grinding tank 11 is provided with a feed inlet, the feed inlet is hinged with a cover plate, a powdery scale inhibition dispersing agent can be put into the grinding tank 11 from the feed inlet by opening the cover plate, the side wall of the stirring rod 121 is attached to the side wall of the bump 111, the stirring rod 121 is enabled to grind the caking scale inhibition dispersing agent which is settled on the side wall of the bump 111 under the action of the stirring rod 121 and the side wall of the bump 111 in the moving process of the grinding ditch 112, so that the caking scale inhibition dispersing agent can be fully mixed with a water body, a mixing tank is fixedly arranged at the lower end of the grinding tank 11, a stand is arranged at the outer side of the mixing tank, the bottom of the mixing tank is connected with a liquid outlet pipe, a valve is arranged on the liquid outlet, and the stirring rod 121 is driven to move along the grinding ditch 112 by a driving component 12, so that the stirring rod 121 grinds the caking dispersing agent which is settled to the caking scale inhibition dispersing agent 112.
The driving assembly 12 further comprises a mounting plate 123, a first mounting seat 124 arranged on the mounting plate 123, a main shaft 125 arranged on the first mounting seat 124, an inclined seat 126 arranged on the main shaft 125, the first mounting seat 124 is arranged at the upper end of the side wall of the mounting plate 123, the main shaft 125 is rotatably arranged on the first mounting seat 124, a motor is fixedly arranged on the first mounting seat 124, an output shaft of the motor is coaxially connected with the main shaft 125, the inclined seat 126 is in an inclined state relative to the main shaft 125, and the stirring shaft is rotatably arranged on the inclined seat 126.
The array sets up mount pad two 127 on mounting panel 123, set up the universal piece 128 in mount pad two 127, set up the pendulum tooth 129 between two universal pieces 128, stirring rod 121 runs through two universal pieces 128 and pendulum tooth 129, set up the universal groove in the mount pad two 127, universal piece 128 rotates to set up in the universal groove, set up the groove of stepping down on the mount pad two 127, the groove of stepping down runs through the universal groove, universal piece 128, pendulum tooth 129 and stirring rod 121 fixed connection, and stirring rod 121 and universal piece 128, pendulum tooth 129 are coaxial.
The device comprises a support 1271 arranged on the second mounting seat 127, a rotating shaft 1272 arranged on the support 1271, a gear 1273 arranged on the rotating shaft 1272, the rotating shaft 1272 is rotatably arranged on the second mounting seat 127, the gear 1273 is positioned between the second mounting seats 127, the gear 1273 is meshed with the oscillating teeth 129, the gear 1273 is fixedly connected with the rotating shaft 1272, a first synchronous wheel is fixedly arranged at one end, far away from the second mounting seat 127, of the rotating shaft 1272, a second synchronous wheel is fixedly arranged on the main shaft 125, and the first synchronous wheel is connected with the second synchronous wheel through a belt.
In the use process, the cover plate is opened at the moment, and the powdery scale inhibition and dispersion agent with proper proportion is put into the grinding tank 11 through the feed inlet;
The main shaft 125 is driven to rotate through the motor, the inclined seat 126 drives the stirring rod 121 to rotate around the main shaft 125 as the axis, then the stirring rod 121 drives the universal block 128 to move in the universal groove, the movement of the stirring rod 121 is limited through the rotation of the universal block 128 in the universal groove, meanwhile, the rotating shaft 1272 drives the swinging teeth 129 to rotate through the gear 1273, so that the stirring rod 121 is self-conveyed in the inclined seat 126, at the moment, the stirring rod 121 drives the stirring paddle 122 to stir in the grinding tank 11, and the stirring paddle 122 itself rotates, so that the stirring efficiency of the stirring paddle 122 is improved, and meanwhile, the grinding effect of the stirring rod 121 on the agglomerated scale inhibition dispersing agent is improved;
The stirring rod 121 drives the stirring paddle 122 to stir the powdery scale inhibition dispersing agent and the water in the grinding tank 11, and the water enters the mixing tank through the drain hole, so that the scale inhibition dispersing agent which is blocked by water gradually subsides along the flowing direction of the mixed solution, then the stirring rod 121 grinds the blocked and settled scale inhibition dispersing agent under the action of the protruding block 111 and the grinding groove 112, so that the blocked scale inhibition dispersing agent is ground to be fully mixed with the water, then the mixed solution in the grinding tank 11, which is stirred by the water and the scale inhibition dispersing agent together, enters the mixing tank through the drain hole, and then the mixed solution is quantitatively discharged from the liquid outlet tank 21 by opening the valve.
Examples
Referring to fig. 1-6, a second embodiment of the present invention is shown, which differs from the first embodiment in that:
The telescopic component 3 comprises a movable ring 31, an extension rod 32 arranged on the movable ring 31, a guide wheel 33 arranged on the extension rod 32, a telescopic block 34 arranged in the grinding tank 11, a key groove formed in the stirring rod 121, stirring paddles 122 arranged in the key groove in a sliding mode, central rods symmetrically arranged on the movable ring 31 and rotationally connected with the stirring paddles 122, the movable ring 31 and the stirring rod 121 are rotationally connected, the movable ring 31 can slide on the stirring rod 121, the telescopic block 34 is fixedly arranged at the top of the grinding tank 11, a circular table groove is formed in the telescopic block 34, the stirring rod 121 is positioned in the circular table groove, a spiral groove is formed in the wall of the circular table groove, and the guide wheel 33 is slidingly arranged in the spiral groove.
During the use, in the rotation process of stirring rod 121 around the axle center of main shaft 125, stirring rod 121 will drive leading wheel 33 and slide along the helicla flute, remove the ring 31 and will follow the keyway and remove towards the direction that keeps away from the blending tank gradually this moment, the stirring rake 122 will stir the liquid of upper strata in the filter tank 22 this moment, when the gyro wheel rolls to the extremely spacing of helicla flute, remove the ring 31 and will reset under the action of the gravity of stirring rake 122 this moment, the stirring rake 122 will stir the liquid of lower floor in the grinding jar 11 this moment, drive stirring rake 122 through removing ring 31 and reciprocate linear the slip along the keyway, and then the stirring effect of stirring rake 122 to the solution in the grinding jar 11 has been improved.
The rest of the structure is the same as that of embodiment 1.
Examples
Referring to fig. 1-11, a third embodiment of the present invention is shown, which differs from the second embodiment in that:
The filtering component 2 comprises a liquid outlet tank 21, a filtering tank 22 arranged in the liquid outlet tank 21, a centrifugal paddle 23 arranged in the filtering tank 22, a water inlet pipeline connected to the upper end of the filtering tank 22, a liquid outlet tank 21 penetrating through the water inlet pipeline and communicated with the inside of the filtering tank 22, a water tank connected to one end of the water inlet pipeline, a water pump connected to the middle area of the water inlet pipeline and conveying water in the water tank to the filtering tank 22 through the water inlet pipeline, a mounting frame fixedly arranged on the grinding tank 11, a liquid outlet tank 21 fixedly arranged on the mounting frame, a water outlet cavity fixedly connected to the bottom outside of the filtering tank 22, and a centrifugal paddle 12723 comprising a centrifugal shaft and centrifugal blades arranged on the centrifugal shaft in array, wherein the centrifugal shaft penetrates through the liquid outlet tank 21 and the filtering tank 22, the centrifugal shaft is coaxially connected with the rotating shaft, a filtering hole is arranged on the side wall of the filtering tank 22, the bottom of the liquid outlet tank 21 is connected with a water pipe communicated with the water outlet cavity, and one end of the water pipe far away from the liquid outlet tank 21 is connected with the grinding tank 11 and communicated with the inside of the grinding tank 11.
The centrifugal impeller comprises a limiting rod 24 arranged on a centrifugal impeller 23, a guide plate 241 arranged on the limiting rod 24, a guide cylinder 25 arranged in a filter tank 22, an air cylinder 26 arranged in the guide cylinder 25, an opening and closing plate 27 arranged in the air cylinder 26, a cover arranged at the opening of the upper end of the liquid outlet tank 21, an opening end of the filter tank 22 fixedly connected with the cover, a limiting groove arranged at one end of a centrifugal shaft far away from a rotating shaft 1272, the limiting rod 24 is arranged in the limiting groove in a sliding manner, the guide plate 241 is arranged at one end of the limiting rod 24 far away from a centrifugal shaft, guide blocks are symmetrically arranged on the side wall of the guide plate 241, the guide cylinder 25 is fixedly connected with the cover, the guide cylinder 25 is provided with the guide groove on the side wall, the guide block is arranged in the guide groove in a sliding manner, the guide groove is composed of an ascending groove and a descending groove, one end of the guide cylinder 25 is connected with the guide plate 241, one end of the spring is connected with the guide plate 241, one end of the guide plate 241 far away from the cover is fixedly arranged in a middle area of one side of the limiting rod 24, the connecting rod is rotationally connected with the opening and closing plate 27, the opening and closing plate 27 is arranged in a sliding manner, the opening and closing plate 27 is arranged in the opening and closing plate 26 is fixedly connected with the air cylinder 26, the air cylinder 26 is fixedly connected with the air cylinder 26.
The opening and closing plate 27 is internally symmetrically provided with a moving plate 271, a clamping groove 272 arranged on the moving plate 271, a contact column 273 symmetrically arranged on the opening and closing plate 27, a push rod 274 arranged in the contact column 273, a triggering rod 275 arranged in the contact column 273, a clamping block 276 arranged on the contact column 273, the opening and closing plate 27 is symmetrically provided with a moving groove, a through groove I is arranged in the moving groove, an elastic groove is symmetrically arranged in the moving groove, the moving plate 271 is arranged in the moving groove in a sliding way, an elastic piece is arranged in the elastic groove, one end of the elastic piece is connected with the bottom of the elastic groove, the other end of the elastic piece is connected with the moving plate 271, the moving plate 271 is provided with a through groove II, the mounting groove has been seted up to the symmetry on opening and close the board 27, contact column 273 slidable mounting is in the mounting groove, contact column 273 outside cover is equipped with the spring three, three one end of spring is connected with contact column 273, three other ends of spring are connected with opening and closing the board 27, the pressure groove has been seted up in the contact column 273, and the pressure groove runs through contact column 273, trigger lever 275 slidable mounting has the one end of pressure groove, ejector pin 274 slidable setting is kept away from the one end of trigger lever 275 in the pressure groove, fixture block 276 and contact column 273 hinge cooperation, the articulated department of fixture block 276 and contact column 273 is provided with the torsional spring, the gyro wheel is installed in fixture block 276 one end rotation, the one end that the gyro wheel was kept away from to fixture block 276 is provided with the roof.
The filtering component 2 further comprises a gas hood 28, a trigger cylinder 29 arranged in the gas hood 28, trigger plates 291 symmetrically arranged in the trigger cylinder 29, a lifting plate 292 arranged in the trigger cylinder 29, the gas hood 28 is fixedly arranged on the upper surface of the cover, the open end of the gas hood 28 is fixedly connected with the cover, an exhaust hole is arranged at one end of the gas hood 28 far away from the opening, two ends of the trigger cylinder 29 are respectively fixedly connected with the gas hood 28 and the cover, an air outlet cavity is reserved between the gas hood 28 and the trigger cylinder 29, the trigger plates 291 are slidably arranged in the trigger cylinder 29, the pressure cavity is formed by the trigger plates 291, the trigger cylinder 29 and the cover, a spring II is connected with the bottom of the gas hood 28, a one-way valve penetrates through the cover, the air cavity is communicated with the inside of the pressure cavity, sliding grooves are symmetrically arranged on the inner wall of the trigger cylinder 29, two telescopic grooves are formed in the inner wall of the trigger cylinder 29, the telescopic grooves are communicated with the sliding grooves, two baffle plates 291 are fixedly arranged on the trigger plates 291, two baffle plates are arranged in the sliding grooves, and the baffle plates are fixedly arranged between the two baffle plates and the two baffle plates are arranged in the sliding grooves, and are communicated with the inner surfaces of the cover, and the two baffle plates are arranged in the air outlet cavity array, and are communicated with the two baffle plates are arranged in the air outlet cavities.
In the use process, the water pump and the motor are started, so that the water pump conveys water with proper proportion into the filter tank 22 from the water tank through the water inlet pipeline, meanwhile, the motor drives the rotating shaft 1272 to rotate through the first synchronous wheel and the second synchronous wheel, and then the water entering the filter tank 22 leaks into the liquid outlet tank 21 through the filter holes;
because the rotating shaft 1272 drives the centrifugal paddles 23 to rotate, the centrifugal paddles 23 agitate the water body in the filter tank 22 which is not oozed out by the filter holes, and at the moment, the water body generates centrifugal force under the agitation of the centrifugal paddles 23, so that the oozing out of the water body in the filter tank 22 is quickened, and meanwhile, sediment in the water body is separated from the water body by the filter holes;
Simultaneously, the rotating shaft 1272 drives the guide plate 241 to rotate, so that the guide block slides along the guide groove, at the moment, the guide plate 241 is gradually far away from the rotating shaft 1272, the first spring is deformed and compressed, then the guide plate 241 pushes the opening and closing plate 27 to move towards the direction of the air cylinder 26, at the moment, the first through groove is misplaced with the second through groove, and then the opening and closing plate 27 compresses the air cylinder 26 in the air cavity into the pressure cavity through the one-way valve;
when the opening and closing plate 27 moves until the contact column 273 contacts the bottom of the air cylinder 26, the spring III deforms and compresses at the moment, the contact column 273 drives the clamping block 276 to move to be meshed with the clamping groove 272, meanwhile, in the moving process of the contact column 273, the clamping block 276 pushes the moving plate 271 to force the moving plate 271 to slide along the moving groove, at the moment, the elastic sheet deforms and compresses, and then the through hole I coincides with the through hole II;
At this time, the guide block slides to the limit position of the guide groove, at this time, the first spring pushes the guide plate 241 to be far away from the air cylinder 26, at this time, the opening and closing plate 27 starts to be far away from the air cylinder 26, gas in the filter cavity enters the air cavity through the first through hole and the second through hole, then when the guide plate 241 moves to the limit position, the push plate at the opening of the air cylinder 26 pushes the trigger rod 275 to move towards the inside of the pressure groove, at this time, the air pressure in the pressure groove is increased, the ejector rod 274 stretches and pushes the top plate, at this time, the clamping block 276 rotates around the hinge position with the contact column 273 under the pushing of the ejector rod 274, then the roller is separated from the clamping groove 272, under the action of the torsion spring, the clamping block 276 resets, then the top plate pushes the ejector rod 274 and the trigger rod 275 to reset, at this time, under the action of the third spring, the third spring plate 271 resets, at this time, the first through hole is misplaced with the second through hole, then the guide plate 241 drives the opening and closing plate 27 to move towards the direction of the air cavity 26, and then the gas in the air cavity is compressed into the pressure cavity again;
As the gas pressure in the pressure cavity gradually increases, the lifting plate 292 will gradually rise along the trigger cylinder 29, the spring two deforms and compresses, at this time, the trigger plate 291 seals the groove, then the lifting plate 292 rises to contact with the baffle plate far away from one end of the closed groove, at this time, under the pushing of the lifting plate 292, the trigger plate 291 will slide along the chute, at this time, the trigger plate 291 and the closed groove are gradually separated, then the high-pressure gas in the pressure cavity will enter the air outlet cavity through the expansion groove, the chute and the closed groove, then the high-pressure gas enters the water outlet cavity through the air outlet cavity and the circulation groove, so that the gas pressure in the water outlet cavity increases, then the gas in the water outlet cavity will enter the filter tank 22 through the filter hole, at this time, the sediment blocking the filter hole of the column will be pushed out of the filter hole, and the filter hole will be prevented from being blocked by sediment;
Since the high pressure gas in the pressure chamber is discharged, the second spring pushes the lifting plate 292 to reset, then the lifting plate 292 contacts with the baffle plate close to the closed groove and pushes the trigger plate 291 to slide along the chute, and then the trigger plate 291 can reseat the closed groove;
the water body entering the water outlet cavity enters the grinding tank 11 through the water pipe, at the moment, the valve is closed, and the water body is accumulated in the grinding tank 11 and continuously leaks into the mixing tank.
The rest of the structure is the same as that of embodiment 2.
Examples
Referring to fig. 1-11, for a fourth embodiment of the present invention, there is provided: a mixing method of water treatment scale inhibition and dispersion agent compatibility equipment,
S1, starting a water pump and a motor to enable the water pump to convey water with proper proportion into a filter tank 22 from the water tank through a water inlet pipeline, enabling the motor to drive a rotating shaft 1272 to rotate through a first synchronous wheel and a second synchronous wheel, and enabling water entering the filter tank 22 to leak into a liquid outlet tank 21 through a filter hole;
s2, as the centrifugal impeller 23 is driven by the rotating shaft 1272 to rotate, the centrifugal impeller 23 agitates the water body in the filter tank 22 which is not oozed out by the filter holes, and at the moment, the water body generates centrifugal force under the agitation of the centrifugal impeller 23, so that the oozing out of the water body in the filter tank 22 is quickened, and meanwhile, sediment in the water body is separated from the water body by the filter holes;
S3, simultaneously, the rotating shaft 1272 drives the guide plate 241 to rotate, so that the guide block slides along the guide groove, the through groove I and the through groove II are staggered at the moment, then the opening and closing plate 27 compresses the air cylinder 26 in the air cavity into the pressure cavity through the one-way valve, when the opening and closing plate 27 moves until the contact post 273 contacts with the bottom of the air cylinder 26, the contact post 273 drives the clamping block 276 to move to be meshed with the clamping groove 272, and simultaneously, in the moving process of the contact post 273, the clamping block 276 pushes against the moving plate 271, so that the moving plate 271 is forced to slide along the moving groove, and the through hole I coincides with the through hole II;
S4, at this time, the guide block slides to the limit position of the guide groove, at this time, the first spring pushes the guide plate 241 to be far away from the air cylinder 26, at this time, the opening and closing plate 27 starts to be far away from the air cylinder 26, gas in the filter cavity enters the air cavity through the first through hole and the second through hole, then when the guide plate 241 moves to the limit position, the push plate at the opening of the air cylinder 26 pushes the trigger rod 275, so that the trigger rod 275 moves towards the inside of the pressure groove, at this time, the air pressure in the pressure groove increases, the ejector rod 274 stretches and pushes the top plate, at this time, the clamping block 276 rotates around the hinge part with the contact rod 273 under the pushing of the ejector rod 274, then the roller is separated from the clamping groove 272, the clamping block 276 resets under the action of the torsion spring, then the top plate pushes the ejector rod 274 and the trigger rod 275 resets, at this time, the contact rod 273 resets under the action of the third spring, at this time, the movable plate 271 resets under the action of the third through hole, the first through hole is misplaced with the second through hole, then the guide plate 241 drives the opening and closing plate 27 to move towards the direction of the air cylinder 26 again, and the gas in the air cavity is compressed into the pressure cavity again;
S5, as the gas pressure in the pressure cavity is gradually increased, the lifting plate 292 gradually rises along the trigger cylinder 29, at this time, the trigger plate 291 seals the groove, then when the lifting plate 292 rises to be in contact with a baffle plate far away from one end of the closed groove, at this time, under the pushing of the lifting plate 292, the trigger plate 291 slides along the sliding groove, at this time, the trigger plate 291 is gradually separated from the closed groove, then high-pressure gas in the pressure cavity enters the air outlet cavity, then the high-pressure gas enters the water outlet cavity through the air outlet cavity and the circulation groove, then gas in the water outlet cavity enters the filter tank 22 through the filter holes, at this time, sediment sealing the filter holes of the column is pushed out of the filter holes, and the filter holes are prevented from being blocked by sediment;
S6, as the high-pressure gas in the pressure cavity is discharged, the second spring pushes the lifting plate 292 to reset, then the lifting plate 292 contacts with the baffle plate close to the closed groove and pushes the trigger plate 291 to slide along the sliding groove, and then the trigger plate 291 can reseat the closed groove;
s7, water entering the water outlet cavity enters the grinding tank 11 through a water pipe, at the moment, the valve is closed, the water is accumulated in the grinding tank 11 and continuously leaks into the mixing tank, at the moment, the cover plate is opened, and the powdery scale inhibition and dispersion agent with proper proportion is put into the grinding tank 11 through the feed inlet;
S8, the inclined seat 126 drives the stirring rod 121 to rotate around the main shaft 125 as an axis, the movement of the stirring rod 121 is limited by the rotation of the universal block 128 in the universal groove, meanwhile, the rotating shaft 1272 drives the swinging teeth 129 to rotate through the gear 1273, so that the stirring rod 121 is self-conveyed in the inclined seat 126, and at the moment, the stirring rod 121 drives the stirring paddle 122 to stir in the grinding tank 11, and meanwhile, the stirring paddle 122 rotates;
S9, stirring paddles 122 are driven by stirring rods 121 to stir the powdery scale inhibition dispersing agent and the water body in the grinding tank 11, and the water body enters the mixing tank through the drain holes, so that the scale inhibition dispersing agent which is blocked by water gradually subsides along the flowing direction of the mixed solution, and then the stirring rods 121 grind the blocked and settled scale inhibition dispersing agent under the action of the protruding blocks 111 and the grinding grooves 112, so that the blocked scale inhibition dispersing agent is ground to be fully mixed with the water body;
S10, in the process that the stirring rod 121 rotates around the axis of the main shaft 125, the guide wheel 33 slides along the spiral groove, then the moving ring 31 drives the stirring paddle 122 to slide linearly and reciprocally along the key groove, then the mixed solution in the grinding tank 11, which is stirred together by the water body and the scale inhibition and dispersion agent, enters the mixing tank through the water outlet hole, and then the mixed solution is quantitatively discharged from the liquid outlet tank 21 by opening the valve.
The different technical features presented in the different embodiments may be combined to advantage. Other variations to the disclosed embodiments can be understood and effected by those skilled in the art in view of the drawings, the description, and the claims. In the claims, the term "comprising" does not exclude other means or steps; the indefinite article "a" does not exclude a plurality; the terms "first," "second," and the like, are used for designating a name and not for indicating any particular order. Any reference signs in the claims shall not be construed as limiting the scope. The functions of the various elements presented in the claims may be implemented by means of a single hardware or software module. The presence of certain features in different dependent claims does not imply that these features cannot be combined to advantage.

Claims (10)

1. The utility model provides a water treatment scale inhibition dispersant compatibility equipment, includes compatibility body, its characterized in that: the compatibility body consists of a mixing component (1) and a filtering component (2) arranged on the mixing component (1);
The mixing component (1) comprises a grinding tank (11), a driving component (12) arranged on the grinding tank (11), the driving component (12) comprises a stirring rod (121), a stirring paddle (122) arranged on the stirring rod (121), a telescopic component (3) arranged on the stirring rod (121), the stirring paddle (122) is used for stirring a solution in the grinding tank (11), and the telescopic component (3) linearly reciprocates along the stirring rod (121) by driving the stirring paddle (122);
The utility model discloses a grinding tank, including grinding tank (11), stirring rod (121), drive subassembly (12), lug (111) are provided with in the middle part area of grinding tank (11), lug (111) and grinding tank (11) inboard lateral wall constitute grinding ditch (112), the array set up in the discharge port of grinding ditch (112) lower extreme, drive stirring rod (121) along grinding ditch (112) removal through drive subassembly (12), cause stirring rod (121) grinds the caking's that subsides to grinding ditch (112) out scale inhibition dispersing agent.
2. The water treatment scale inhibition and dispersion agent compatibility apparatus according to claim 1, characterized in that: the driving assembly (12) further comprises a mounting plate (123), a first mounting seat (124) arranged on the mounting plate (123), a main shaft (125) arranged on the first mounting seat (124), and an inclined seat (126) arranged on the main shaft (125).
3. The water treatment scale inhibition and dispersion agent compatibility apparatus according to claim 2, characterized in that: the array set up in mount pad two (127) on mounting panel (123), set up in universal piece (128) in mount pad two (127), set up in two pendulum tooth (129) between universal piece (128), stirring rod (121) run through two universal pieces (128) and pendulum tooth (129).
4. The water treatment scale inhibition and dispersion agent compatibility apparatus according to claim 3, characterized in that: a support (1271) arranged on the second mounting seat (127), a rotating shaft (1272) arranged on the support (1271), and a gear (1273) arranged on the rotating shaft (1272).
5. The water treatment scale inhibition and dispersion agent compatibility apparatus according to claim 1, characterized in that: the telescopic component (3) comprises a movable ring (31), an extension rod (32) arranged on the movable ring (31), a guide wheel (33) arranged on the extension rod (32) and a telescopic block (34) arranged in the grinding tank (11).
6. The water treatment scale inhibition and dispersion agent compatibility apparatus according to claim 1, characterized in that: the filtering component (2) comprises a liquid outlet tank (21), a filtering tank (22) arranged in the liquid outlet tank (21), and a centrifugal impeller (23) arranged in the filtering tank (22).
7. The water treatment scale inhibition and dispersion agent compatibility apparatus according to claim 6, characterized in that: a limiting rod (24) arranged on the centrifugal impeller (23), a guide plate (241) arranged on the limiting rod (24), a guide cylinder (25) arranged in the filter tank (22), an air cylinder (26) arranged in the guide cylinder (25), and an opening and closing plate (27) arranged in the air cylinder (26).
8. The water treatment scale inhibition and dispersion agent compatibility apparatus according to claim 7, characterized in that: the device is characterized in that a movable plate (271) is symmetrically arranged in the opening and closing plate (27), clamping grooves (272) are formed in the movable plate (271), contact columns (273) are symmetrically arranged on the opening and closing plate (27), ejector rods (274) are arranged in the contact columns (273), trigger rods (275) are arranged in the contact columns (273), and clamping blocks (276) are arranged on the contact columns (273).
9. The water treatment scale inhibition and dispersion agent compatibility apparatus according to claim 1, characterized in that: the filter component (2) further comprises a gas hood (28), a trigger cylinder (29) arranged in the gas hood (28), trigger plates (291) symmetrically arranged in the trigger cylinder (29), and a lifting plate (292) arranged in the trigger cylinder (29).
10. A mixing method of a water treatment scale inhibition and dispersion agent compatible device according to any one of claims 1 to 9, comprising the following mixing method:
Firstly, starting a water pump and a motor to enable the water pump to convey water with proper proportion into a filtering tank (22) from the water tank through a water inlet pipeline, enabling the motor to drive a rotating shaft (1272) to rotate through a first synchronous wheel and a second synchronous wheel, and enabling water entering the filtering tank (22) to leak into a liquid outlet tank (21) through a filtering hole;
The centrifugal paddles (23) are driven by the rotating shaft (1272) to rotate, so that the centrifugal paddles (23) agitate water bodies in the filter tank (22) which are not oozed out by the filter holes, and at the moment, the water bodies generate centrifugal force under the agitation of the centrifugal paddles (23), so that the oozing of the water bodies in the filter tank (22) is accelerated, and meanwhile, sediment in the water bodies can be separated from the water bodies by the filter holes;
Simultaneously, the rotating shaft (1272) drives the guide plate (241) to rotate, so that the guide block slides along the guide groove, the through groove I and the through groove II are staggered, then the opening and closing plate (27) compresses the air cylinder (26) in the air cavity into the pressure cavity through the one-way valve, when the opening and closing plate (27) moves until the contact column (273) contacts with the bottom of the air cylinder (26), the contact column (273) drives the clamping block (276) to move to be meshed with the clamping groove (272), and meanwhile, in the moving process of the contact column (273), the clamping block (276) pushes the moving plate (271) to force the moving plate (271) to slide along the moving groove, and the through hole I and the through hole II coincide;
At this time, the guide block slides to the limit position of the guide groove, at this time, the spring I pushes the guide plate (241) to be far away from the air cylinder (26), at this time, the opening and closing plate (27) starts to be far away from the air cylinder (26), air in the filter cavity enters the air cavity through the first through hole and the second through hole, then when the guide plate (241) moves to the limit position, at this time, the push plate at the opening of the air cylinder (26) pushes the trigger rod (275), so that the trigger rod (275) moves towards the inside of the pressure groove, at this time, the air pressure in the pressure groove increases, the ejector rod (274) stretches out and draws back and pushes the top plate, at this time, the clamping block (276) rotates around the hinge part with the contact column (273) under the pushing of the ejector rod (274), then the roller is separated from the clamping groove (272), under the acting force of the torsion spring, the clamping block (276) resets, then the top plate pushes the ejector rod (274) and the trigger rod (275) resets, at this time, under the effect of the spring III, the action of the moving plate (271) resets under the action of the third spring, the first through hole and the second through hole misplaced, the guide plate (241) drives the air cylinder (27) to move towards the direction of the air cylinder again, and then the air cavity is compressed again;
along with the gradual increase of the gas pressure in the pressure cavity, the lifting plate (292) gradually rises along the trigger cylinder (29), at the moment, the trigger plate (291) seals the groove, then the lifting plate (292) rises to be in contact with a baffle plate far away from one end of the closed groove, at the moment, under the pushing of the lifting plate (292), the trigger plate (291) slides along the sliding groove, at the moment, the trigger plate (291) is gradually separated from the closed groove, then the high-pressure gas in the pressure cavity can enter the air outlet cavity, then the high-pressure gas enters the water outlet cavity through the air outlet cavity and the circulation groove, then the gas in the water outlet cavity can enter the filter tank (22) through the filter holes, and at the moment, the sediment sealing the filter holes of the column can be pushed out of the filter holes;
the second spring pushes the lifting plate (292) to reset at the moment due to the fact that high-pressure gas in the pressure cavity is discharged, then the lifting plate (292) contacts with the baffle plate close to the closed groove and pushes the trigger plate (291) to slide along the sliding groove, and then the trigger plate (291) can block the closed groove again;
the water body entering the water outlet cavity enters the grinding tank (11) through a water pipe, at the moment, the valve is closed, the water body is accumulated in the grinding tank (11) and continuously leaks into the mixing tank, at the moment, the cover plate is opened, and the powdery scale inhibition and dispersion agent with proper proportion is put into the grinding tank (11) through the feed inlet;
The inclined seat (126) drives the stirring rod (121) to rotate around the main shaft (125) as the axis, the movement of the stirring rod (121) is limited by the rotation of the universal block (128) in the universal groove, meanwhile, the rotating shaft (1272) drives the swinging teeth (129) to rotate through the gear (1273), so that the stirring rod (121) is self-conveyed in the inclined seat (126), and at the moment, the stirring rod (121) drives the stirring paddle (122) to stir in the grinding tank (11), and the stirring paddle (122) can also rotate;
The stirring rod (121) drives the stirring paddle (122) to stir the powdery scale inhibition dispersing agent and the water body in the grinding tank (11), and the water body enters the mixing tank through the drain hole, so that the scale inhibition dispersing agent which is agglomerated when meeting water gradually subsides along the flowing direction of the mixed solution, and then the stirring rod (121) grinds the agglomerated and subsided scale inhibition dispersing agent under the action of the convex block (111) and the grinding groove (112);
During the rotation of the stirring rod (121) around the axis of the main shaft (125), the guide wheel (33) slides along the spiral groove, then the moving ring (31) drives the stirring paddle (122) to slide linearly and reciprocally along the key groove, then the mixed solution in the grinding tank (11) stirred by the water body and the scale inhibition and dispersion agent enters the mixing tank through the water outlet, and then the mixed solution is quantitatively discharged from the liquid outlet tank (21) by opening the valve.
CN202411426170.6A 2024-10-14 2024-10-14 A water treatment scale inhibitor dispersant mixing device and mixing method thereof Active CN118949799B (en)

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CN108686550A (en) * 2018-07-27 2018-10-23 泰州携创农业装备有限公司 A kind of industrial machine mixing stirring device
CN212017415U (en) * 2020-02-24 2020-11-27 辽宁恒泰实业有限责任公司 A agitating unit for producing slowly-releasing antisludging agent
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CN220276857U (en) * 2023-07-10 2024-01-02 涧纳(上海)环保科技有限公司 Water treatment agent mixing arrangement for environmental pollution
CN220310161U (en) * 2023-06-05 2024-01-09 郑州奥尔威科技有限公司 Automatic filling equipment for dissolving chemicals
WO2024045921A1 (en) * 2023-07-18 2024-03-07 湖北鸿大粮油股份有限公司 Cereal dust removal device used in grain processing
CN220589599U (en) * 2023-06-30 2024-03-15 四川正牧生物药业有限公司 A uniform batching and mixing device for veterinary drug production
CN220634067U (en) * 2023-05-26 2024-03-22 安徽精高水处理有限公司 Stirring tank for preparing efficient scale inhibition dispersing agent

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108686550A (en) * 2018-07-27 2018-10-23 泰州携创农业装备有限公司 A kind of industrial machine mixing stirring device
CN212017415U (en) * 2020-02-24 2020-11-27 辽宁恒泰实业有限责任公司 A agitating unit for producing slowly-releasing antisludging agent
CN219507738U (en) * 2022-12-29 2023-08-11 无锡开迪环保科技有限公司 Organic wastewater pretreatment device
CN220634067U (en) * 2023-05-26 2024-03-22 安徽精高水处理有限公司 Stirring tank for preparing efficient scale inhibition dispersing agent
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CN220589599U (en) * 2023-06-30 2024-03-15 四川正牧生物药业有限公司 A uniform batching and mixing device for veterinary drug production
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