Pure water production equipment for cleaning conductive powder
By employing distillation and solar power generation at the front end of the pure water equipment, the problems of high equipment wear and energy waste have been solved, thereby extending equipment life and optimizing energy utilization.
Patent Information
- Application Number
- CN202520072620.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-13
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-01-13
AI Technical Summary
Existing pure water equipment for cleaning conductive powder suffers from high equipment wear and tear, high production costs, and serious energy waste due to inconsistent water source standards, and fails to effectively utilize renewable energy sources.
Distillation is used to purify water at the front end of the pure water equipment, combined with solar power generation. The power generation unit supplies power to the distillation unit, reducing the burden on subsequent purification, extending the equipment life, and reducing energy consumption by utilizing renewable energy.
By using distillation for preliminary purification and solar power generation, the purification burden on the equipment is reduced, the service life of high-value equipment is extended, and energy consumption and environmental pollution are reduced.
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Figure CN223722986U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to pure water production technical field, concretely is pure water production equipment for conductive powder cleaning. BACKGROUND
[0002] The pure water production equipment for conductive powder cleaning is a kind of equipment for producing water meeting the purity required by conductive powder cleaning.This equipment mainly adopts advanced pure water preparation technologies such as reverse osmosis membrane technology and EDI (electronic deionization) technology to remove ions, colloidal substances, gases and organic matter and other impurities in water, thereby producing high-purity water.
[0003] The existing pure water equipment for conductive powder cleaning has different water source standards, resulting in large wear and tear of high-value equipment such as reverse osmosis membranes and ion exchangers in the equipment, increasing production costs.Energy consumption during production is also very high, and new renewable energy is not used, so we need to propose a pure water production equipment for conductive powder cleaning. UTILITY MODEL CONTENTS
[0004] The utility model aims to provide a kind of pure water production equipment for conductive powder cleaning, with the advantages of purifying water in the front section of pure water equipment using distillation method, reducing the purification load of pure water machine equipment and using renewable energy, to solve the problems raised in the above background technology.
[0005] To achieve the above purpose, the utility model provides the following technical scheme: a kind of pure water production equipment for conductive powder cleaning, including water injection port for injecting raw water, water injection port is provided with water supply mechanism for storing raw water and distributing raw water below, water supply mechanism is connected with distillation mechanism for purifying water quality, one side of distillation mechanism is provided with condensing mechanism for condensing water vapor after condensation distillation;
[0006] One side of the condensing mechanism is provided with a water collection tank for storing distilled water, one side of the water collection tank is provided with a water outlet for use by a pure water machine, the inside of the water outlet is provided with a second valve, one side of the water supply mechanism is provided with a power generation mechanism for supplying power to the distillation mechanism by solar power generation.
[0007] Preferably, the water supply mechanism includes a raw water tank, the raw water tank is arranged at the bottom of the water injection port and the water injection port communicates with the inside of the raw water tank, the bottom of the raw water tank is provided with a first pipeline and communicates with the inside of the raw water tank, one end of the first pipeline is connected to a first water pump and located at the input end of the first water pump, the output end of the first water pump is provided with a second pipeline, the bottom of the second pipeline is provided with a third pipeline and communicates with the inside of the second pipeline.
[0008] Preferably, the distillation mechanism comprises a distillation barrel, the distillation barrel is connected at one end away from the second pipeline of the third pipeline, the third pipeline is communicated with the inside of the distillation barrel, the top of the distillation barrel is connected with the fourth pipeline and is communicated with the inside of the distillation barrel, and the bottom of the distillation barrel is provided with a heating mechanism.
[0009] Preferably, the heating mechanism comprises an asbestos net, the asbestos net is arranged at the bottom of the distillation barrel, the bottom of the asbestos net is provided with a heating box, and the inside of the heating box is provided with an electric heating wire.
[0010] Preferably, the condensing mechanism comprises a condensing pipe, the condensing pipe is connected at one end away from the distillation barrel of the fourth pipeline, the outside of the condensing pipe is provided with a condensing box, one side of the condensing box is connected with the fifth pipeline, the fifth pipeline is connected with the second water pump and is connected with the output end of the second water pump, the input end of the second water pump is connected with the sixth pipeline, the lower portion of the second water pump is provided with a condensate tank, the sixth pipeline extends into the inside of the condensate tank, one side of the condensing box away from the fifth pipeline is provided with the seventh pipeline, the seventh pipeline is communicated with the inside of the condensing box, one end of the seventh pipeline away from the condensing box extends into the inside of the condensate tank, the top of the condensate tank is provided with a liquid adding hole, one side of the condensate tank is provided with a drain pipe, the drain pipe is communicated with the inside of the condensate tank, and the inside of the drain pipe is provided with a first valve.
[0011] Preferably, the power generation mechanism comprises a solar panel, the bottom of the solar panel is detachably provided with a support, the output end of the solar panel is connected with a wire, the wire passes through the inside of the support, the wire is sequentially connected with a busbar, an inverter, a first controller and reaches a storage battery, the storage battery is connected with the input end of an air switch through an electric wire, and the output end of the air switch is connected with the heating box through an electric wire.
[0012] Preferably, the upper portion of the water collecting tank is provided with a third water pump, the input end of the third water pump is connected with an eighth pipeline, one end of the eighth pipeline away from the third water pump is connected with one end of the condensing pipe away from the distillation barrel, and the output end of the third water pump is connected with a ninth pipeline and extends into the inside of the water collecting tank.
[0013] Compared with the prior art, the utility model has the advantages that:
[0014] 1. The utility model discloses a water supply mechanism is arranged to the distillation mechanism automatically and gives water, and the distillation mechanism is arranged in the front section of the existing pure water equipment and carries out preliminary purification, reduces the burden of subsequent pure water equipment to purify water, prolongs the service life of high -value equipment such as reverse osmosis membrane, ion exchanger in the equipment.
[0015] 2. The utility model discloses a power generation mechanism is set up, uses solar energy to generate electricity. Effectively utilize new energy to produce and give heating mechanism as emergency power supply and power supply. Reduce emission and pollution and the maximum utilization of energy. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is the structural schematic diagram of the utility model;
[0017] Figure 2 It is the sectional view of distillation bucket of the utility model;
[0018] Figure 3 It is the sectional view of solar panel of the utility model;
[0019] Figure 4 It is the sectional view of heating box of the utility model.
[0020] In the drawing: 1, water collecting tank;2, water outlet;3, second valve;4, raw water tank;5, water inlet;6, first pipeline;7, first water pump;8, second pipeline;9, third pipeline;10, distillation bucket;11, fourth pipeline;12, asbestos net;13, heating box;14, electric heating wire;15, condenser pipe;16, condensing box;17, fifth pipeline;18, second water pump;19, sixth pipeline;20, condensate tank;21, seventh pipeline;22, liquid adding hole;23, drain pipe;24, first valve;25, solar panel;26, support;27, wire;28, busbar box;29, inverter;30, first controller;31, battery;32, air switch;33, third water pump;34, eighth pipeline;35, ninth pipeline. DETAILED DESCRIPTION
[0021] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the ordinary skilled in the art without creative labor are within the protection scope of the utility model.
[0022] Please refer to Figures 1-4The utility model provides a technical scheme: a kind of pure water production equipment for electrically conductive powder cleaning, for injecting water inlet 5 of raw water, water inlet 5 is provided with the water supply mechanism of storing raw water and distributing raw water below.The water supply mechanism includes raw water tank 4, raw water tank 4 is arranged at the bottom of water inlet 5 and water inlet 5 is connected with the inside of raw water tank 4, the bottom of raw water tank 4 is provided with first pipeline 6 and is communicated with the inside of raw water tank 4, one end of first pipeline 6 is connected with first water pump 7 and is located at the input end of first water pump 7, the output end of first water pump 7 is installed with second pipeline 8, the bottom of second pipeline 8 is installed with third pipeline 9 and is communicated with the inside of second pipeline 8.Through water inlet 5, use pipeline to connect raw water source, the inside of raw water tank 4 is provided with liquid level sensor, liquid level sensor sends electric signal to controller after reaching specified liquid level, and controller controls the valve closure inside water inlet 5 to prevent water from overflowing.First water pump 7 is powered so that the water in raw water tank 4 reaches the input end of first water pump 7 through first pipeline 6, and after pressurization, it flows out along the direction of second pipeline 8 from the output end of first water pump 7 and is delivered to third pipeline 9.It can realize automatic water supply, and improve the efficiency of raw water supply.
[0023] The water supply mechanism is connected with distillation mechanism for purifying water quality, and the distillation mechanism includes a distillation barrel 10 connected to one end of the third pipeline 9 away from the second pipeline 8, the third pipeline 9 being communicated with the inside of the distillation barrel 10, and the distillation barrel 10 being connected with a fourth pipeline 11 at the top thereof and being communicated with the inside of the distillation barrel 10, and the distillation barrel 10 being provided with a heating mechanism at the bottom thereof. The heating mechanism includes an asbestos net 12 arranged at the bottom of the distillation barrel 10, a heating box 13 arranged at the bottom of the asbestos net 12, and an electric heating wire 14 arranged in the heating box 13. A high-temperature-resistant liquid level meter and a temperature sensor are arranged in the distillation barrel 10. When raw water flows into the distillation barrel 10 through the third pipeline 9 and the water level reaches the water level set by the liquid level sensor in the barrel, the sensor sends an electric signal to the controller, the controller controls the first water pump 7 to stop, and at the same time, the electric heating wire 14 in the heating box 13 is powered on to generate heat to heat the distillation barrel 10 above. The asbestos net 12 is arranged to uniformly heat the bottom of the distillation barrel 10 through heat conduction. The bottom of the distillation barrel 10 is enlarged to improve the distillation effect and speed up the distillation speed.
[0024] The distillation mechanism is provided with a condensation mechanism for condensing the condensed water vapor after distillation. The condensation mechanism comprises a condensation pipe 15 connected to the fourth pipe 11 away from one side of the distillation barrel 10, and the outside of the condensation pipe 15 is provided with a condensation box 16, one side of the condensation box 16 is connected with a fifth pipe 17, the fifth pipe 17 is connected with a second water pump 18 and connected with the output end of the second water pump 18, the input end of the second water pump 18 is connected with a sixth pipe 19, and the lower part of the second water pump 18 is provided with a condensate tank 20, the sixth pipe 19 extends into the inside of the condensate tank 20, the side of the condensation box 16 away from the fifth pipe 17 is provided with a seventh pipe 21, the seventh pipe 21 is in communication with the inside of the condensation box 16, and the end of the seventh pipe 21 away from the condensation box 16 extends into the inside of the condensate tank 20, the top of the condensate tank 20 is provided with a liquid inlet hole 22, and the side of the condensate tank 20 is provided with a drain pipe 23, the drain pipe 23 is in communication with the inside of the condensate tank 20, and the inside of the drain pipe 23 is provided with a first valve 24. The second water pump 18 is powered, the condensate is pumped into the condensate tank 20 through the sixth pipe 19 at the input end of the second water pump 18, and is transported to the inside of the condensation box 16 through the fifth pipe 17 by the second water pump 18, and then flows back to the condensate tank 20 through the seventh pipe 21 in the condensation box 16. The condensate in the condensation box 16 is always flowing, maintaining a relatively low temperature, and having a better condensation effect.
[0025] The condensation mechanism is provided with a condensate tank 1 for storing water after distillation, and the condensate tank 1 is provided with a water outlet 2 for the use of a water purifier, the inside of the water outlet 2 is provided with a second valve 3, the upper part of the condensate tank 1 is provided with a third water pump 33, the input end of the third water pump 33 is connected with an eighth pipe 34, the end of the eighth pipe 34 away from the third water pump 33 is connected with the end of the condensation pipe 15 away from the distillation barrel 10, and the output end of the third water pump 33 is connected with a ninth pipe 35 and extends into the inside of the condensate tank 1. The water outlet 2 is connected with the water inlet of the water purifier to deliver water to the water purifier. The distilled water has less impurities and higher purity than the original water. The filtration load of the high-value filtration equipment inside the water purifier is reduced, and the service life of the equipment is improved.
[0026] The side of the water supply mechanism is provided with a power generation mechanism for supplying power to the distillation mechanism by solar power generation. The power generation mechanism comprises a solar panel 25 arranged on one side of the raw water tank 4, a support 26 detachably mounted at the bottom of the solar panel 25, a wire 27 connected to the output end of the solar panel 25, the wire 27 penetrating through the inside of the support 26, the wire 27 being sequentially connected to a busbar box 28, an inverter 29, a first controller 30 and a storage battery 31, the storage battery 31 being connected to the input end of an air switch 32 through a wire, and the output end of the air switch 32 being connected to the heating tank 13 through a wire. The solar power generation can be used for heating in the off-season of factory production, thereby saving the expenditure of factory electricity. The storage battery 31 can also store electricity in ordinary times, so that the emergency use can be realized when the factory is powered off, without affecting the normal production task requirement. The environment-friendly energy is adopted to reduce emission and pollution to the environment.
[0027] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A pure water production apparatus for cleaning of conductive powder, comprising a water injection port (5) for injecting raw water, characterized by: The water inlet (5) is provided with a water supply mechanism for storing raw water and distributing raw water, the water supply mechanism is connected with a distillation mechanism for purifying water quality, one side of the distillation mechanism is provided with a condensing mechanism for condensing water vapor after distillation. One side of the condensing mechanism is provided with a water collecting tank (1) for storing water after distillation, one side of the water collecting tank (1) is provided with a water outlet (2) for water purifier, the inside of the water outlet (2) is provided with a second valve (3), one side of the water supply mechanism is provided with a power generation mechanism for supplying power to the distillation mechanism by solar power generation.
2. The apparatus for producing pure water for cleaning conductive powder according to claim 1, characterized by: The water supply mechanism includes a raw water tank (4), the raw water tank (4) is arranged at the bottom of the water inlet (5) and the water inlet (5) is communicated with the inside of the raw water tank (4), the bottom of the raw water tank (4) is provided with a first pipeline (6) and communicated with the inside of the raw water tank (4), one end of the first pipeline (6) is connected with a first water pump (7) and located at the input end of the first water pump (7), the output end of the first water pump (7) is provided with a second pipeline (8), the bottom of the second pipeline (8) is provided with a third pipeline (9) and communicated with the inside of the second pipeline (8).
3. The apparatus according to claim 2, wherein: The distillation mechanism includes a distillation barrel (10), the distillation barrel (10) is connected at the end of the third pipeline (9) away from the second pipeline (8), the third pipeline (9) is communicated with the inside of the distillation barrel (10), the top of the distillation barrel (10) is connected with a fourth pipeline (11) and communicated with the inside of the distillation barrel (10), the bottom of the distillation barrel (10) is provided with a heating mechanism.
4. The apparatus according to claim 3, wherein: The heating mechanism includes an asbestos net (12), the asbestos net (12) is arranged at the bottom of the distillation barrel (10), the bottom of the asbestos net (12) is provided with a heating box (13), the inside of the heating box (13) is provided with an electric heating wire (14).
5. The apparatus according to claim 4, wherein: The condensing mechanism includes a condensing pipe (15), the condensing pipe (15) is connected at the side of the fourth pipeline (11) away from the distillation barrel (10), the outside of the condensing pipe (15) is provided with a condensing box (16), one side of the condensing box (16) is connected with a fifth pipeline (17), the fifth pipeline (17) is connected with a second water pump (18) and connected with the output end of the second water pump (18), the input end of the second water pump (18) is connected with a sixth pipeline (19), the second water pump (18) is provided with a condensate tank (20) below, the sixth pipeline (19) extends to the inside of the condensate tank (20), one side of the condensing box (16) away from the fifth pipeline (17) is provided with a seventh pipeline (21), the seventh pipeline (21) is communicated with the inside of the condensing box (16), one end of the seventh pipeline (21) away from the condensing box (16) extends to the inside of the condensate tank (20), the top of the condensate tank (20) is provided with a liquid adding hole (22), one side of the condensate tank (20) is provided with a drain pipe (23), the drain pipe (23) is communicated with the inside of the condensate tank (20), the inside of the drain pipe (23) is provided with a first valve (24).
6. The apparatus according to claim 5, wherein: The power generation mechanism includes a solar panel (25), the solar panel (25) is arranged in one side of raw water tank (4), the bottom of solar panel (25) is detachably installed with support (26), the output of solar panel (25) is connected with wire (27), wire (27) passes through the inside of support (26), wire (27) is connected in turn with the input of air switch (32) through wire, the output of air switch (32) is connected with heating tank (13) through wire.
7. The apparatus according to claim 6, wherein: The upper portion of the water collecting tank (1) is provided with a third water pump (33), the input end of the third water pump (33) is connected with an eighth pipeline (34), the eighth pipeline (34) is connected with the end of the condenser pipe (15) away from the distillation barrel (10), the output end of the third water pump (33) is connected with a ninth pipeline (35) and extends to the inside of the water collecting tank (1).