CN209828631U - Heatless regeneration adsorption dryer - Google Patents

Heatless regeneration adsorption dryer Download PDF

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Publication number
CN209828631U
CN209828631U CN201920218190.2U CN201920218190U CN209828631U CN 209828631 U CN209828631 U CN 209828631U CN 201920218190 U CN201920218190 U CN 201920218190U CN 209828631 U CN209828631 U CN 209828631U
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layer
tank
adsorption dryer
drying cylinder
regeneration adsorption
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CN201920218190.2U
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苏建国
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Jiaxing Zhong Ling Machinery Co Ltd
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Jiaxing Zhong Ling Machinery Co Ltd
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Abstract

The utility model discloses a no heat regeneration adsorption dryer, including drying cylinder, overhead tank and install bin, one side of drying cylinder inlays through the mounting groove and is equipped with temperature and humidity sensor, temperature and humidity sensor's lower extreme has the detection storehouse through the mounting screw, there is UV photodissociation clarifier at the interior top of drying cylinder through the mounting screw, the lower extreme of UV photodissociation clarifier is provided with the non-woven fabrics layer through spacing anchor clamps, and is provided with in the non-woven fabrics layer and adsorbs the cotton, the one end of drying cylinder is provided with the overhead tank, the barometer is installed through the mount pad to one side of overhead tank, the electric charge pump is installed through the mounting panel to the lower extreme of barometer, the extexine of drying cylinder and overhead tank is provided with resistant masonry layer, and is provided with the insulating layer between resistant masonry layer and drying cylinder and the overhead tank. This novel heatless regeneration adsorption dryer function is various, easy operation, and the production of being convenient for has satisfied the multiple demand in the use, is fit for extensively using widely.

Description

Heatless regeneration adsorption dryer
Technical Field
The utility model relates to a desiccator technical field, in particular to heatless regeneration adsorption dryer.
Background
The adsorption dryer uses advanced chemical technology, and the principle is that saturated compressed air is filtered by using a molecular sieve special for gas purification by utilizing the difference between moisture and air molecular volume, but the equipment has high cost and is complex in the production process and does not have the functions of heat insulation and masonry resistance. To this end, we propose a heatless regeneration adsorption dryer.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a no heat regeneration adsorption dryer, resistant masonry layer is for the modified coating of silicon fluoride, has good cold-resistant heat resistance, resistant stain nature, resistant scrubbing resistance, solvent resistance, can also waterproof anticreep, and the insulating layer is made for ceramic fiber material, and the heat preservation effect is showing, and the effectual heat of avoiding scatters and disappears, and this novel no heat regeneration adsorption dryer structure is comparatively simple, and the cost is low, and the production of being convenient for can effectively solve the problem in the background art.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
a heatless regeneration adsorption dryer comprises a drying tank, a pressure tank and an installation box, wherein a temperature and humidity sensor is embedded in one side of the drying tank through an installation groove, a detection bin is installed at the lower end of the temperature and humidity sensor through a screw, a UV photolysis purifier is installed at the inner top of the drying tank through a screw, a non-woven fabric layer is arranged at the lower end of the UV photolysis purifier through a limiting clamp, adsorption cotton is arranged in the non-woven fabric layer, the pressure tank is arranged at one end of the drying tank, a barometer is installed on one side of the pressure tank through an installation seat, an electric inflator pump is installed at the lower end of the barometer through an installation plate, masonry-resistant layers are arranged on the outer surface layers of the drying tank and the pressure tank, a heat insulation layer is arranged between the masonry-resistant layers and the drying tank and the pressure tank, the top ends of the drying tank and the, the installation box is installed through the mounting bracket in the bottom of communicating pipe, and the installation box bottom installs through the bolt and holds the electricity box, and holds the one end of electricity box and install machine controller through the installed part.
Further, temperature and humidity sensor's test probe is located and detects the storehouse, and one side that detects the storehouse is connected with the output tube, the test probe of barometer is located the overhead tank.
Furthermore, the number of the non-woven fabric layers is multiple, and the adsorption cotton is filled with the alumina adsorbent.
Further, the input of electronic pump is located the overhead tank, solenoid valve, electronic pump and UV photodissociation clarifier link to each other with the battery box electric property.
Further, the motor controller is electrically connected with the electric inflator pump, the masonry-resistant layer is a silicon fluoride modified coating, and the heat insulation layer is made of a ceramic fiber material.
Furthermore, a heat absorption layer is arranged on the inner surface layer of the installation box, and the heat absorption layer is a black chromium heat absorption coating.
Compared with the prior art, the utility model discloses following beneficial effect has:
1. can give solenoid valve, electronic pump and UV photodissociation clarifier power supply use through holding the electricity box, in electronic pump is blown into the overhead tank with external dry air that needs, the overhead tank internal gas pressure rises, utilizes the barometer to be convenient for detect the pressure value in the overhead tank, stops the pressurization when pressure is too big.
2. The electromagnetic valve is opened, air needing to be dried enters the drying tank through the communicating pipe under the action of air pressure, the adsorption cotton is filled with the alumina adsorbent along with downward flowing of air flow, moisture in the air is rapidly removed, and the alumina adsorbent is non-toxic, odorless and remarkable in environmental protection.
3. Temperature and humidity value of gas in being convenient for detect the inspection storehouse through temperature and humidity sensor, the staff of being convenient for looks over, and resistant dirt layer is the modified coating of silicon fluoride, has good cold-resistant heat resistance, stain resistance, scrub resistance, solvent resistance, can also waterproof anticreep, and the insulating layer is made for ceramic fiber material, and the heat preservation effect is showing, and the effectual heat of avoiding scatters and disappears.
4. Through the work of the electric pump of machine controller automatic control, change and inflate pressurization work efficiency and satisfy different user demands, be fit for extensive using widely, this novel heatless regeneration adsorption dryer structure is comparatively simple, and the cost is low, the production of being convenient for, and the UV ultraviolet ray beam who produces through UV photodissociation clarifier during operation shines gas, destroys the molecular bond, decomposes into nontoxic harmless gas, improves the air quality.
Drawings
Fig. 1 is a schematic view of the overall structure of the heatless regenerative adsorption dryer of the present invention.
Fig. 2 is a schematic structural view of a masonry-resistant layer and a heat-insulating layer of the adsorption dryer without heat regeneration of the present invention.
Fig. 3 is a schematic structural diagram of the filter cotton of the heatless regeneration adsorption dryer of the present invention.
In the figure: 1. a dirt-resistant course; 2. a thermal insulation layer; 4. an output pipe; 5. a detection bin; 6. a non-woven fabric layer; 7. a temperature and humidity sensor; 8. a drying tank; 9. a UV photolysis purifier; 10. an electricity storage box; 11. an electromagnetic valve; 12. a motor controller; 13. a communicating pipe; 14. installing a box; 15. a heat absorbing layer; 16. a pressure tank; 17. an electric inflator; 18 a barometer; 19. and (5) filtering cotton.
Detailed Description
In order to make the technical means, creation features, achievement purposes and functions of the present invention easy to understand, the present invention is further described below with reference to the following embodiments.
As shown in fig. 1-3, a heatless regeneration adsorption dryer comprises a drying tank 8, a pressure tank 16 and a mounting box 14, wherein a temperature and humidity sensor 7 is embedded in one side of the drying tank 8 through a mounting groove, a detection chamber 5 is mounted at the lower end of the temperature and humidity sensor 7 through a screw, a UV photolysis purifier 9 is mounted at the inner top of the drying tank 8 through a screw, a non-woven fabric layer 6 is disposed at the lower end of the UV photolysis purifier 9 through a limiting clamp, absorbent cotton 19 is disposed in the non-woven fabric layer 6, the pressure tank 16 is disposed at one end of the drying tank 8, a barometer 18 is mounted at one side of the pressure tank 16 through a mounting seat, an electric inflator pump 17 is mounted at the lower end of the barometer 18 through a mounting plate, a masonry-resistant layer 1 is disposed on the outer surface layers of the drying tank 8 and the pressure tank 16, and a heat insulation layer 2 is disposed between the masonry-resistant layer, drying cylinder 8 and 16 tops of overhead tank link to each other through communicating pipe 13, and are provided with solenoid valve 11 on communicating pipe 13, install box 14 through the mounting bracket in the bottom of communicating pipe 13, and install the electricity storage box 10 through the bolt in the install box 14, and the one end of electricity storage box 10 installs motor controller 12 through the installed part.
Wherein, temperature and humidity sensor 7's test probe is located and detects storehouse 5, and detects one side in storehouse 5 and be connected with output tube 4, barometer 18's test probe is located overhead tank 16.
In this embodiment, as shown in fig. 1, the temperature and humidity sensor 7 is convenient for detecting the temperature and humidity of the gas discharged into the detection chamber 5, and is convenient for the staff to check.
Wherein, the number of the non-woven fabrics layer 6 is a plurality, and the adsorption cotton 19 is filled with alumina adsorbent.
In this embodiment, as shown in fig. 3, the adsorption cotton 19 is filled with an alumina adsorbent to rapidly remove moisture in the air, and the alumina adsorbent is non-toxic, odorless, and environmentally friendly.
The input end of the electric inflator pump 17 is located in the pressure tank 16, and the electromagnetic valve 11, the electric inflator pump 17 and the UV photolysis purifier 9 are electrically connected with the electric storage box 10.
In this embodiment, as shown in fig. 1, the electric storage box 10 supplies power to the electromagnetic valve 11, the electric inflator 17, and the UV photolysis purifier 9, and the electric equipment is normally operated.
The motor controller 12 is electrically connected with the electric inflator pump 17, the masonry-resistant layer 1 is a silicon fluoride modified coating, and the heat insulation layer 2 is made of a ceramic fiber material.
The inner surface layer of the installation box 14 is provided with a heat absorption layer 15, and the heat absorption layer 15 is a black chromium heat absorption coating.
In this embodiment, as shown in fig. 1, the black chromium heat absorption coating has a significant heat absorption effect, and the heat dissipation rate is improved.
It should be noted that, the utility model relates to a heatless regeneration adsorption dryer, during operation, the electric inflator pump 17 is started to blow the air to be dried into the pressure tank 16, the pressure in the pressure tank 16 rises, the barometer 18 is used to detect the pressure value in the pressure tank 16 conveniently, and the pressurization is stopped when the pressure is too high; the electromagnetic valve 11 (product of Yongchuang electromagnetic valve Limited in Yuyao city) is opened, air to be dried enters the drying tank 8 through the communicating pipe 13 under the action of air pressure, and the adsorption cotton 19 is filled with the alumina adsorbent along with downward flowing of air flow, so that the moisture in the air is quickly removed, and the alumina adsorbent is nontoxic, odorless and remarkable in environmental protection; the temperature and humidity sensor 7 is convenient for detecting the temperature value and the humidity value of the gas discharged into the detection bin 5 and is convenient for a worker to check, the masonry-resistant layer 1 is a silicon fluoride modified coating (a product of Zhongfu science and technology limited company), has good cold resistance, heat resistance, stain resistance, scrub resistance and solvent resistance, and can also prevent water and electric leakage, the heat insulation layer 2 is made of ceramic fiber materials, the heat insulation effect is obvious, and heat dissipation is effectively avoided; motor controller 12 (Fuzhou Xin lianda electron technology limited product) automatic control electric inflator pump 17 work, change and aerify pressurization work efficiency and satisfy different user demands, be fit for extensive using widely, this novel heatless regeneration adsorption dryer structure is comparatively simple, the cost is low, the production of being convenient for, open the UV ultraviolet ray beam who produces of UV photodissociation clarifier 9 (the green new millet environmental protection technology limited in Dongguan) during operation and shine gas, destroy the molecular bond, decompose into nontoxic harmless gas, improve the air quality.
The basic principles and the main features of the invention and the advantages of the invention have been shown and described above. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the foregoing embodiments and descriptions are provided only to illustrate the principles of the present invention without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (6)

1. The utility model provides a no heat regeneration adsorption dryer, includes drying cylinder (8), overhead tank (16) and install bin (14), its characterized in that: one side of the drying tank (8) is embedded with a temperature and humidity sensor (7) through a mounting groove, the lower end of the temperature and humidity sensor (7) is provided with a detection bin (5) through a screw, the inner top of the drying tank (8) is provided with a UV photolysis purifier (9) through a screw, the lower end of the UV photolysis purifier (9) is provided with a non-woven fabric layer (6) through a limiting clamp, adsorption cotton (19) is arranged in the non-woven fabric layer (6), one end of the drying tank (8) is provided with a pressure tank (16), one side of the pressure tank (16) is provided with a barometer (18) through a mounting seat, the lower end of the barometer (18) is provided with an electric inflator pump (17) through a mounting plate, the outer surface layers of the drying tank (8) and the pressure tank (16) are provided with a masonry-resistant layer (1), and a heat insulation layer (2) is arranged between the masonry-resistant layer (, drying cylinder (8) and overhead tank (16) top are passed through communicating pipe (13) and are linked to each other, and are provided with solenoid valve (11) on communicating pipe (13), install bin (14) through the mounting bracket in the bottom of communicating pipe (13), and install through the bolt in install bin (14) and hold electric box (10), and hold the one end of electric box (10) and install motor controller (12) through the installed part.
2. The non-thermal regeneration adsorption dryer of claim 1, wherein: the detection probe of temperature and humidity sensor (7) is located and detects storehouse (5), and one side that detects storehouse (5) is connected with output tube (4), the detection probe of barometer (18) is located overhead tank (16).
3. The non-thermal regeneration adsorption dryer of claim 1, wherein: the number of the non-woven fabric layers (6) is multiple, and the adsorption cotton (19) is filled with alumina adsorbent.
4. The non-thermal regeneration adsorption dryer of claim 1, wherein: the input of electronic pump (17) is located overhead tank (16), solenoid valve (11), electronic pump (17) and UV photodissociation clarifier (9) and electric power storage box (10) electric connection.
5. The non-thermal regeneration adsorption dryer of claim 1, wherein: the motor controller (12) is electrically connected with the electric inflator pump (17), the masonry-resistant layer (1) is a silicon fluoride modified coating, and the heat insulation layer (2) is made of a ceramic fiber material.
6. The non-thermal regeneration adsorption dryer of claim 1, wherein: the inner surface layer of the installation box (14) is provided with a heat absorption layer (15), and the heat absorption layer (15) is a black chromium heat absorption coating.
CN201920218190.2U 2019-02-21 2019-02-21 Heatless regeneration adsorption dryer Active CN209828631U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920218190.2U CN209828631U (en) 2019-02-21 2019-02-21 Heatless regeneration adsorption dryer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920218190.2U CN209828631U (en) 2019-02-21 2019-02-21 Heatless regeneration adsorption dryer

Publications (1)

Publication Number Publication Date
CN209828631U true CN209828631U (en) 2019-12-24

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ID=68904155

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920218190.2U Active CN209828631U (en) 2019-02-21 2019-02-21 Heatless regeneration adsorption dryer

Country Status (1)

Country Link
CN (1) CN209828631U (en)

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