CN218722008U - High-pressure micro-mist humidifier - Google Patents
High-pressure micro-mist humidifier Download PDFInfo
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- CN218722008U CN218722008U CN202222775021.3U CN202222775021U CN218722008U CN 218722008 U CN218722008 U CN 218722008U CN 202222775021 U CN202222775021 U CN 202222775021U CN 218722008 U CN218722008 U CN 218722008U
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- tobacco
- filter
- plunger pump
- tobacco leaf
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Abstract
The utility model belongs to tobacco industry machinery, in particular to little fog humidifier of high pressure. The water pump, the motor and the plunger pump are fixedly arranged on the bottom surface of the outer shell from left to right in sequence, the output shaft of the motor is connected with the power end of the plunger pump, the plunger pump is connected with the input end of the electromagnetic valve through a pipeline provided with a pressure gauge, the high-pressure micro-mist humidifier is connected through a pipeline, and one sprayer can be used for spraying by hundreds of sprayers, so that tobacco leaves are uniformly remoistened and are high in speed. The tobacco leaf is humidified, cooled and dusted in a specialized tobacco leaf grading site, so that the tobacco leaf cannot be broken in grading, packaging and transportation of the tobacco leaf, grading work is smoothly and quickly completed, and economic benefits of tobacco growers are greatly guaranteed. The high-pressure micro-mist humidifier can be applied to places with 0 to 2000 square meters. The humidifying process has no water dripping phenomenon, and the whole process is convenient to control, safe and reliable.
Description
Technical Field
The utility model belongs to tobacco industry machinery, in particular to little fog humidifier of high pressure.
Background
In the tobacco leaf purchasing process of the tobacco industry, tobacco leaves are firstly required to be graded and graded, and then are packaged and transported after grading, the influence of the humidity of air on the tobacco leaves in the tobacco leaf grading and grading process is particularly large, and perennial drought occurs in parts of China along with the appearance of extreme weather in recent years, so that the tobacco leaves are particularly serious in the tobacco leaf purchasing grading and packing process, the quality of the tobacco leaves is reduced in the tobacco leaf selling process of tobacco farmers, the tobacco leaf grade is reduced, the yield is not increased, the tobacco leaves are unfortunately sold, the tobacco leaf purchasing progress is seriously lagged, and the development of the whole industry is influenced. The existing method for humidifying the tobacco leaves only adopts a manual water spraying method, and the operation process of the method is time-consuming and labor-consuming and has poor effect.
Disclosure of Invention
An object of the utility model is to overcome above-mentioned technique not enough, provide a simple structure, be favorable to the tobacco leaf grading, the little fog humidifier of high pressure that work efficiency is high.
The utility model provides a technical scheme that technical problem adopted is: the high-pressure micro-mist humidifier comprises an outer shell, a middle transverse partition plate, a side vertical partition plate, a water storage tank, a pressure gauge, a control panel, a water storage tank output pipeline, a filter pipeline, a switching tank input pipeline, a switching tank output pipeline, a first valve, a second valve and a motor.
The utility model has the advantages that: the high-pressure micro-mist humidifiers are connected through pipelines, and one humidifier can be used for spraying by hundreds of spray heads, so that tobacco leaves are uniformly dampened and the speed is high. The tobacco leaf is humidified, cooled and dusted in a specialized tobacco leaf grading site, so that the tobacco leaf cannot be broken in grading, packaging and transportation of the tobacco leaf, grading work is smoothly and quickly completed, and economic benefits of tobacco growers are greatly guaranteed. The high-pressure micro-mist humidifier can be applied to places with 0 to 2000 square meters. The humidifying process has no water dripping phenomenon, and the whole process is convenient to control, safe and reliable.
Drawings
The following description is made in detail by way of example with reference to the accompanying drawings.
Fig. 1 is a front view of the structure of the high-pressure micro-mist humidifier.
Fig. 2 is a left side view of the outer housing of fig. 1.
In the figure: 1-an outer shell; 1-1-side vertical partition plate; 1-2-middle diaphragm plate; 1-3-heat dissipation holes; 1-4-air exhaust holes; 2-a control panel; 2-1-indicator light; 2-2-a controller; 2-3-switch button; 3-valve one; 4-exchange tank output pipeline; 5-ion exchange tank; 6-exchange tank input pipeline; 7-a first filter; 7-1-filter two; 8-a pressure gauge; 9-an electromagnetic valve; 10-a plunger pump; 11-a motor; 12-a water pump; 13-filter line; 14-water storage tank output pipeline; 15-a fan; 16-valve two; 17-nozzle connecting pipeline; and 18-a water storage tank.
Detailed Description
In the embodiment, referring to fig. 1 and 2, the high-pressure micro-mist humidifier is provided with an openable door outside the upper, lower and side vertical clapboards 1-1 of the middle horizontal clapboard 1-2 at the front of the outer shell 1. A control panel 2 is fixed in the space above the middle diaphragm plate 1-2 in the outer shell 1. Four indicator lamps 2-1 are arranged above the control panel 2 and respectively indicate an electric appliance, a work indicator, a water pump indicator and a water shortage alarm from left to right. The controller 2-2 is arranged on the control panel 2 in the middle of the lower part of the indicator lamp 2-1, and the controller is a humidity controller, a time controller and a cumulative timer from left to right. Three switch buttons 2-3 are arranged below the control panel 2, which are respectively an on button, an off button and an emergency stop button from left to right, and the power of the control panel 2 is connected with a motor 11 through a lead. Two parallel filters I7 and II 7-1 are fixed in the middle of the middle diaphragm plate 1-2 in the outer shell 1, and the upper parts of the two filters 7 and 7-1 are connected through a pipeline. A pressure gauge 8 is fixed below the front side surface of the middle diaphragm plate 1-2, and an electromagnetic valve 9 is fixed below the left side of the pressure gauge 8. A water pump 12, a motor 11 and a plunger pump 10 are fixedly arranged on the bottom surface of the outer shell 1 from left to right in sequence, an output shaft of the motor 11 is connected with a power mechanism of the plunger pump 10, and an input end of the plunger pump 10 is connected with an output end of the ion exchange tank 5 through an exchange tank output pipeline 4 and a valve I3. The input end of the ion exchange tank 5 is connected with the output end of the second filter 7-1 through an exchange tank input pipeline 6, and the ion exchange tank 5 is fixed in the right space of the vertical partition plate 1-1 on the inner side of the outer shell 1. The output end of the plunger pump 10 is connected with the input end of the electromagnetic valve 9 through a pipeline provided with a pressure gauge 8, and the output end of the electromagnetic valve 9 is connected with two parallel spray head connecting pipelines 17 on the left side surface of the outer shell 1 through a pipeline and a valve II 16. A water storage tank 18 is fixedly arranged on the left side of the outer shell 1, the lower portion of the water storage tank 18 is connected with a water pump 12 through a water storage tank output pipeline 14, and the output end of the water pump 12 is connected with the input end of a first filter 7 through a filter pipeline 13. Heat dissipation holes 1-3 are arranged above the left side surface of the outer casing 1, air exhaust holes 1-4 are arranged below the outer casing 1, and a fan 15 is fixedly arranged on the left side surface wall of the outer casing 1.
The utility model discloses a working process is: the working pressure of the high-pressure micro-mist humidifier can reach 4 to 6MPa, and the working pressure of the whole system can be adjusted. The humidifying area can reach 0 to 2000m 2 A table. The controller 2-2 on the control panel 2 can display the control function, and the single machine humidification amount is 0 to 900Kg/h. When the humidifier works, the motor 11 is started first, and the humidifier is started through the switch buttons 2-3 on the control panel 2. The water pump 12 pumps out the water from the water storage tank 18, the water is filtered by the first filter 7 and the second filter 7-1 and then enters the ion exchange tank 5 for ion exchange, the deionized water after ion exchange enters the plunger pump 10 for pressurization, then the pressure is displayed by the pressure gauge 8, and the water meeting the pressure is input into the nozzle connecting pipeline 17 with the valve through the electromagnetic valve 9 and the second valve 16. The nozzle connecting pipeline 17 sprays mist water vapor from the nozzles through stainless steel or copper pipes with 1 to 100 nozzles above the site. Tobacco leaves to be remoistened and humidified are stacked on the ground on site, and mist steam can be uniformly sprayed on the tobacco leaves to reach the humidity required by classification. The spraying time and the humidity are controlled by the controller 2-2. The control program can be remotely controlled and recorded through an internet cloud platform.
Claims (1)
1. A high-pressure micro-mist humidifier comprises an outer shell (1), a middle transverse partition plate (1-2), a side vertical partition plate (1-1), a water storage tank (18), a pressure gauge (8), a control panel (2), a water storage tank output pipeline (14), a filter pipeline (13), an exchange tank input pipeline (6), an exchange tank output pipeline (4), a valve I (3), a valve II (16) and a motor (11), and is characterized in that a water pump (12), the motor (11) and a plunger pump (10) are fixedly arranged on the bottom surface of the outer shell (1) from left to right in sequence, the output shaft of the motor (11) is connected with the power end of the plunger pump (10), the left end of the upper surface of the water pump (12) is connected with the water storage tank output pipeline (14), the right end of the upper surface of the water pump is connected with one end of the filter pipeline (13), the other end of the filter pipeline (13) is connected with the filter I (7), the filter I (7) is connected with the filter II (7-1) through a pipeline, the filter II (7-1) is connected with the lower part of an ion exchange tank (5) through the exchange tank input pipeline (6), the valve (5) is connected with the plunger pump (10) through the electromagnetic valve (9), and the plunger pump (10) is connected with the input end of the electromagnetic valve (9), the output end of the electromagnetic valve (9) is connected with two parallel spray head connecting pipelines (17) through pipelines, and a control panel (2) is arranged in the outer shell (1) above the middle diaphragm plate (1-2).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202222775021.3U CN218722008U (en) | 2022-10-21 | 2022-10-21 | High-pressure micro-mist humidifier |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202222775021.3U CN218722008U (en) | 2022-10-21 | 2022-10-21 | High-pressure micro-mist humidifier |
Publications (1)
Publication Number | Publication Date |
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CN218722008U true CN218722008U (en) | 2023-03-24 |
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Family Applications (1)
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CN202222775021.3U Active CN218722008U (en) | 2022-10-21 | 2022-10-21 | High-pressure micro-mist humidifier |
Country Status (1)
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CN (1) | CN218722008U (en) |
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2022
- 2022-10-21 CN CN202222775021.3U patent/CN218722008U/en active Active
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