CN212375070U - Water quality regeneration intelligent equipment - Google Patents

Water quality regeneration intelligent equipment Download PDF

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Publication number
CN212375070U
CN212375070U CN202021933329.0U CN202021933329U CN212375070U CN 212375070 U CN212375070 U CN 212375070U CN 202021933329 U CN202021933329 U CN 202021933329U CN 212375070 U CN212375070 U CN 212375070U
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chamber
regeneration
water
water quality
softening
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CN202021933329.0U
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徐峰
庞成毅
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Zhejiang Changben Intelligent Equipment Co ltd
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Zhejiang Changben Intelligent Equipment Co ltd
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  • Treatment Of Water By Ion Exchange (AREA)

Abstract

The utility model discloses a water quality regeneration intelligent device, which comprises a tank body, wherein a water distributor, a filter layer, a softening chamber and a regeneration chamber are sequentially arranged in the tank body from top to bottom; the top of the tank body is provided with a water inlet which is communicated with the water distributor; the softening chamber is of a conical body structure, a first partition plate is arranged at the bottom of the softening chamber, a first accommodating space is formed by the first partition plate, the softening chamber and the tank body in a surrounding mode, and a soft water outlet is formed in the first accommodating space; the regeneration chamber is a conical body structure, the top of the regeneration chamber is communicated with the bottom of the softening chamber, a second partition plate is arranged at the bottom of the regeneration chamber, a second accommodating space is formed by surrounding the second partition plate, the regeneration chamber and the tank body, and a heavy water outlet is formed in the second accommodating space. This quality of water regeneration smart machine carries out purification treatment through many times to the raw water, realizes filtering purification layer upon layer, ensures to produce high quality pure water.

Description

Water quality regeneration intelligent equipment
Technical Field
The utility model relates to a water treatment technical field especially relates to a quality of water regeneration smart machine.
Background
At present, water for daily production and daily use is usually tap water, well water, spring water, underground water and the like. The water that was not physically treated was hard water. Various substances in water are complex in components, various mineral substances and calcium and magnesium ions bring many adverse factors to human survival and life, surface water is seriously polluted by industry, softening treatment needs to be carried out on the surface water, the existing treatment equipment is complex in structure and overlarge in size, and parts of the equipment are complex to maintain and replace.
In the casting field, in order to improve the product qualification rate and accelerate the production efficiency of a die casting machine in the product production process, water cooling is carried out on the wall thickness part in the die so as to achieve the balance of the temperature of the thick part and the temperature of the thin part of the die in the same time, the raw water of the traditional die casting workshop contains a large amount of organic matters, heavy metals, bacteria, viruses, fine particles, cations insoluble in water, other macromolecular residues and the like, the raw water of the die casting workshop is introduced into a die water channel and flows back to a workshop water storage tank without any filter system for recycling, the quality of the raw water is seriously influenced, the pipeline water channel of the die casting equipment die is easily scaled and blocked to cause unbalanced cooling of the die, the product qualification rate is not favorable, the bacteria, the heavy metals and the cations insoluble in water contained in the workshop raw water channel are subjected to chemical reaction to form, the service life of the die is not prolonged favorably, the maintenance and replacement cost of the die is increased, the blockage in the water channel of the die cannot be detected, the water in the water channel of the die is not uniform, the heat balance effect of the die is influenced, the product percent of pass is reduced, and the quality of die-casting products is seriously influenced.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a quality of water regeneration smart machine to it is serious to solve prior art well water pollution, makes mould water route scale deposit, blocks up, and causes the mould cooling unbalanced, seriously influences the problem of die-casting product quality.
In order to achieve the above object, the technical scheme of the utility model provide a quality of water regeneration smart machine, smart machine includes:
the water distributor, the filter layer, the softening chamber and the regeneration chamber are sequentially arranged in the tank body from top to bottom;
the top of the tank body is provided with a water inlet which is communicated with the water distributor;
the softening chamber is of a conical body structure, a first partition plate is arranged at the bottom of the softening chamber, a first accommodating space is formed by the first partition plate, the softening chamber and the tank body in a surrounding manner, and a soft water outlet is formed in the first accommodating space;
the regeneration chamber is a conical body structure, the top of the regeneration chamber is communicated with the bottom of the softening chamber, a second partition plate is arranged at the bottom of the regeneration chamber, a second accommodating space is formed by surrounding the second partition plate, the regeneration chamber and the tank body, and a heavy water outlet is formed in the second accommodating space.
As a further improvement, the smart device further comprises:
a reverse osmosis chamber, the reverse osmosis chamber comprising:
an accommodating chamber communicating with the soft water outlet;
the first electromagnetic valve is arranged between the accommodating cavity and the soft water outlet;
the reverse osmosis film is transversely arranged in the accommodating cavity;
and the pressure applying assembly is arranged on the left side of the accommodating cavity and is used for applying pressure to drive water to pass through the reverse osmosis membrane.
As a further improvement, the pressing assembly comprises:
a chamber in communication with a left side of the receiving cavity;
a pushing portion disposed within the chamber;
the hydraulic cylinder is arranged on the outer side of the cavity, and a piston rod of the hydraulic cylinder is connected with the pushing part.
As a further improvement, a water outlet is arranged on the right side of the accommodating cavity, and the intelligent device further comprises:
the first water quality detector is arranged at the water inlet;
and the second water quality detector is arranged at the water outlet.
As a further improvement, the soft water outlet and the water inlet are communicated through a first pipeline, and the first pipeline is provided with a second electromagnetic valve.
As a further improvement, the top of the regeneration chamber communicates with the bottom of the softening chamber through a second line, and the second line is provided with a third solenoid valve.
As a further improvement, the top of the softening chamber is provided with an ion exchange resin inlet, and the ion exchange resin inlet is provided with a flow meter.
As a further improvement, the bottom of the regeneration chamber is communicated with the ion exchange resin inlet through a resin return pipeline, a lift pump is arranged on the resin return pipeline, and a fourth electromagnetic valve is arranged on the resin return pipeline between the lift pump and the regeneration chamber.
As a further improvement, the top of the regeneration chamber is provided with a regenerant inlet, and the regenerant inlet is provided with a fifth electromagnetic valve.
As a further improvement, the smart device further comprises:
the sixth electromagnetic valve is arranged at the water inlet;
a seventh solenoid valve installed at the heavy water outlet.
In conclusion, the application the utility model discloses quality of water regeneration smart machine's technical scheme has following beneficial effect at least: raw water flows into a water distributor in a tank body through a water inlet of water quality regeneration intelligent equipment, large-particle pollutants in the raw water are filtered through a filter layer, different colors, peculiar smell, nonferrous metals and the like in the raw water are adsorbed through active carbon arranged in the filter layer, then cations such as calcium, magnesium and the like in the raw water are absorbed through a cation exchange resin layer in a softening chamber to soften the raw water, soft water flows into a first accommodating space and flows into a reverse osmosis chamber through a first electromagnetic valve, then a piston rod of a hydraulic cylinder drives a pushing part to slide downwards in a chamber, and pressure larger than osmotic pressure of the soft water is applied to drive the water to pass through a reverse osmosis membrane, so that the soft water is separated, purified and purified by taking pressure difference as a driving force, in addition, impurities such as used residual resin, organic matters such as macromolecules and the like flow into a regeneration chamber through a second pipeline, and, so that the ion exchange resin is regenerated, and the regenerated ion exchange resin flows into the softening chamber again through the resin return pipeline for repeated cyclic utilization. This quality of water regeneration smart machine carries out purification treatment to the raw water through a lot of, realizes filtering purification layer upon layer, ensures output high quality pure water, and raw water makes mould water route scale deposit, jam when preventing to the inside wall thickness part of mould water cooling, has ensured effectively that the mould water route leads to water evenly, the cooling heat is balanced, and avoids influencing die-casting product quality to promote the qualification rate of die-casting product.
In order to make the present invention and other objects, advantages, features and functions thereof clearer and more understandable, preferred embodiments will be described in detail in the following detailed description, which is made with reference to the accompanying drawings.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings needed to be used in the description of the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings without creative efforts.
Fig. 1 is a schematic structural diagram of an intelligent water quality regeneration device provided by the utility model;
description of reference numerals: 1. an intelligent device; 2. a tank body; 3. a water distributor; 4. a filter layer; 5. a softening chamber; 6. a first separator; 7. a regeneration chamber; 8. a second separator; 9. a water inlet; 10. a first water quality detector; 11. a sixth electromagnetic valve; 12. a second solenoid valve; 13. the first pipeline is communicated; 14. a first solenoid valve; 15. a hydraulic cylinder; 16. a chamber; 17. a pushing part; 18. an accommodating chamber; 19. a reverse osmosis membrane; 20. a second water quality detector; 21. a water outlet; 22. a first accommodating space; 23. a fifth solenoid valve; 24. a regenerant inlet; 25. a second pipeline; 26. a third electromagnetic valve; 27. a second accommodating space; 28. a heavy water outlet; 29. a fourth solenoid valve; 30. a lift pump; 31. a resin return line; 32. an ion exchange resin inlet; 33. a flow meter.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
In the present invention, for the sake of clearer description, the following explanation is made: the terms "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," and the like, as used herein, are defined with reference to the orientation or positional relationship shown in the drawings, which are used for convenience in describing the invention and to simplify the description, and are not intended to indicate or imply that the device or element so referred to must have a particular orientation, be constructed and operated in a particular orientation, and are not to be construed as limiting the invention.
It is also noted that, unless expressly stated or limited otherwise, the terms "mounted," "connected," "secured," "disposed," and the like are intended to be inclusive and mean, for example, that they may be fixedly connected, detachably connected, or integrally formed; can be mechanically or electrically connected; either directly or indirectly through intervening media, either internally or in any other relationship. The specific meaning of the above terms in the present invention can be understood according to specific situations by those skilled in the art.
Furthermore, the terms "first," "second," "third," "fourth," "fifth," "sixth," "seventh" are used merely for purposes of clarity or simplicity of description and are not to be construed as indicating or implying a relative importance or quantity.
Referring to fig. 1, the embodiment provides a water quality regeneration intelligent device 1, where the intelligent device 1 includes a tank 2, and a water distributor 3, a filter layer 4, a softening chamber 5, and a regeneration chamber 7 are sequentially disposed in the tank 2 from top to bottom; wherein, the top of the tank body 2 is provided with a water inlet 9, and the water inlet 9 is communicated with the water distributor 3; the softening chamber 5 is of a conical structure, a first partition plate 6 is arranged at the bottom of the softening chamber 5, a first accommodating space 22 is formed by the first partition plate 6, the softening chamber 5 and the tank body 2 in a surrounding manner, and a soft water outlet is formed in the first accommodating space 22; the regeneration chamber 7 is of a conical body structure, the top of the regeneration chamber 7 is communicated with the bottom of the softening chamber 5, the bottom of the regeneration chamber 7 is provided with a second partition plate 8, a second accommodating space 27 is formed by surrounding the second partition plate 8, the regeneration chamber 7 and the tank body 2, and a heavy water outlet 28 is formed in the second accommodating space 27.
Wherein, the quality of water regeneration smart machine 1 of this embodiment can realize simultaneously that quality of water softens and resin regeneration, need not external other regeneration cleaning equipment, and structural design is reasonable, low in production cost, and area is little moreover, has avoided multiple equipment connection problem among the prior art, and later maintenance is simple and convenient.
In one embodiment, the smart device 1 further comprises a reverse osmosis chamber comprising a containing cavity 18, a first solenoid valve 14 and a pressure applying assembly, wherein the containing cavity 18 is communicated with the soft water outlet; the first solenoid valve 14 is arranged between the accommodating cavity 18 and the soft water outlet; the reverse osmosis membrane 19 is transversely arranged in the accommodating cavity 18; the pressurizing assembly is disposed at the left side of the receiving chamber 18, and serves to apply pressure to drive water through the reverse osmosis membrane 19.
Specifically, the pressing assembly includes a chamber 16, a pushing portion 17, and a hydraulic cylinder 15, wherein the chamber 16 communicates with the left side of the accommodating chamber 18; the pushing part 17 is arranged in the cavity 16; the hydraulic cylinder 15 is disposed outside the chamber 16, and a piston rod of the hydraulic cylinder 15 is connected to the pushing portion 17.
Further, a water outlet 21 is arranged on the right side of the accommodating cavity 18, the intelligent device 1 further comprises a first water quality detector 10 and a second water quality detector 20, wherein the first water quality detector 10 is arranged at the water inlet 9; the second water quality detector 20 is disposed at the water outlet 21.
In one embodiment the soft water outlet is in communication 13 with the water inlet 9 via a first line, and the first line is provided with a second solenoid valve 12.
Specifically, the top of said regeneration chamber 7 communicates with the bottom of the softening chamber 5 through a second conduit 25, and the second conduit 25 is provided with a third solenoid valve 26.
Further, an ion exchange resin inlet 32 is opened at the top of the softening chamber 5, and the ion exchange resin inlet 32 is provided with a flow meter 33.
In one embodiment, the bottom of the regeneration chamber 7 is communicated with the ion exchange resin inlet 32 through a resin return line 31, a lift pump 30 is disposed on the resin return line 31, and a fourth electromagnetic valve 29 is disposed on the resin return line 31 between the lift pump 30 and the regeneration chamber 7.
Specifically, the top of the regeneration chamber 7 is provided with a regenerant inlet 24, the regenerant inlet 24 is provided with a fifth electromagnetic valve 23, and the regenerant is brine.
Further, the intelligent device 1 further comprises a sixth electromagnetic valve 11 and a seventh electromagnetic valve, wherein the sixth electromagnetic valve 11 is installed at the water inlet 9; a seventh solenoid valve is installed at the heavy water outlet 28.
The utility model discloses quality of water regeneration smart machine 1's theory of operation as follows: raw water flows into a water distributor 3 in a tank body 2 through a water inlet 9 of a water quality regeneration intelligent device 1, large-particle pollutants in the raw water are filtered through a filter layer 4, activated carbon arranged in the filter layer 4 adsorbs heterochromous, peculiar smell, nonferrous metals and the like in the raw water, cations such as calcium, magnesium and the like in the raw water are absorbed through a cation exchange resin layer in a softening chamber 5 to soften the raw water, soft water flows into a first accommodating space 22 from the side edge of the softening chamber 5 and flows into a reverse osmosis chamber through a first electromagnetic valve 14, then a piston rod of a hydraulic cylinder 15 drives a pushing part 17 to slide downwards in a chamber 16, pressure larger than the osmotic pressure of the soft water is applied to drive the water to pass through a reverse osmosis film 19, so that the soft water is separated, purified and purified by taking pressure difference as a driving force, in addition, impurities such as used residual resin, macromolecular organic matters and the like flow into a regeneration, the regenerant flows into the regeneration chamber 7 through the regenerant inlet 24, so that the ion exchange resin is regenerated, and the regenerated ion exchange resin flows into the softening chamber 5 again through the resin return line 31 for recycling. This quality of water regeneration smart machine 1 realizes filtering purification layer upon layer through carrying out purification treatment to the raw water many times, ensures output high quality pure water, and raw water makes mould water route scale deposit, jam when preventing to the inside wall thickness part of mould water cooling, has ensured effectively that the mould water route leads to water evenly, the cooling heat is balanced, and avoids influencing die-casting product quality to promote the qualification rate of die-casting product.
The foregoing is a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of improvements and decorations can be made without departing from the principle of the present invention, and these improvements and decorations are also considered as the protection scope of the present invention.

Claims (10)

1. A water quality regeneration intelligent device is characterized by comprising:
the water distributor, the filter layer, the softening chamber and the regeneration chamber are sequentially arranged in the tank body from top to bottom;
the top of the tank body is provided with a water inlet which is communicated with the water distributor;
the softening chamber is of a conical body structure, a first partition plate is arranged at the bottom of the softening chamber, a first accommodating space is formed by the first partition plate, the softening chamber and the tank body in a surrounding manner, and a soft water outlet is formed in the first accommodating space;
the regeneration chamber is a conical body structure, the top of the regeneration chamber is communicated with the bottom of the softening chamber, a second partition plate is arranged at the bottom of the regeneration chamber, a second accommodating space is formed by surrounding the second partition plate, the regeneration chamber and the tank body, and a heavy water outlet is formed in the second accommodating space.
2. The intelligent water quality regeneration device of claim 1, wherein the intelligent device further comprises:
a reverse osmosis chamber, the reverse osmosis chamber comprising:
an accommodating chamber communicating with the soft water outlet;
the first electromagnetic valve is arranged between the accommodating cavity and the soft water outlet;
the reverse osmosis film is transversely arranged in the accommodating cavity;
and the pressure applying assembly is arranged on the left side of the accommodating cavity and is used for applying pressure to drive water to pass through the reverse osmosis membrane.
3. The intelligent water quality regeneration device of claim 2, wherein the pressure applying assembly comprises:
a chamber in communication with a left side of the receiving cavity;
a pushing portion disposed within the chamber;
the hydraulic cylinder is arranged on the outer side of the cavity, and a piston rod of the hydraulic cylinder is connected with the pushing part.
4. The intelligent water quality regeneration device is characterized in that a water outlet is formed in the right side of the accommodating cavity, and the intelligent water quality regeneration device further comprises:
the first water quality detector is arranged at the water inlet;
and the second water quality detector is arranged at the water outlet.
5. The intelligent water quality regeneration equipment according to claim 4, wherein the soft water outlet is communicated with the water inlet through a first pipeline, and the first pipeline is provided with a second electromagnetic valve.
6. The intelligent water quality regeneration equipment according to claim 5, wherein the top of the regeneration chamber is communicated with the bottom of the softening chamber through a second pipeline, and the second pipeline is provided with a third electromagnetic valve.
7. The intelligent water quality regeneration device according to claim 6, wherein an ion exchange resin inlet is formed in the top of the softening chamber, and a flow meter is arranged at the ion exchange resin inlet.
8. The intelligent water quality regeneration equipment according to claim 7, wherein the bottom of the regeneration chamber is communicated with the ion exchange resin inlet through a resin return pipeline, a lift pump is arranged on the resin return pipeline, and a fourth electromagnetic valve is arranged on the resin return pipeline between the lift pump and the regeneration chamber.
9. The intelligent water quality regeneration equipment according to claim 8, wherein a regenerant inlet is arranged at the top of the regeneration chamber, and a fifth electromagnetic valve is arranged at the regenerant inlet.
10. The intelligent water quality regeneration device of claim 9, wherein the intelligent device further comprises:
the sixth electromagnetic valve is arranged at the water inlet;
a seventh solenoid valve installed at the heavy water outlet.
CN202021933329.0U 2020-09-07 2020-09-07 Water quality regeneration intelligent equipment Active CN212375070U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021933329.0U CN212375070U (en) 2020-09-07 2020-09-07 Water quality regeneration intelligent equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021933329.0U CN212375070U (en) 2020-09-07 2020-09-07 Water quality regeneration intelligent equipment

Publications (1)

Publication Number Publication Date
CN212375070U true CN212375070U (en) 2021-01-19

Family

ID=74176208

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021933329.0U Active CN212375070U (en) 2020-09-07 2020-09-07 Water quality regeneration intelligent equipment

Country Status (1)

Country Link
CN (1) CN212375070U (en)

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