CN219797519U - High-temperature heat pump suitable for special industry - Google Patents

High-temperature heat pump suitable for special industry Download PDF

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Publication number
CN219797519U
CN219797519U CN202320979383.6U CN202320979383U CN219797519U CN 219797519 U CN219797519 U CN 219797519U CN 202320979383 U CN202320979383 U CN 202320979383U CN 219797519 U CN219797519 U CN 219797519U
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China
Prior art keywords
heat pump
temperature heat
temperature
cover plate
upper cover
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CN202320979383.6U
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Chinese (zh)
Inventor
谢刚
侯元武
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Dongguan Xusheng Energy Saving Technology Co ltd
Sichuan Jinaobo New Energy Technology Co ltd
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Dongguan Xusheng Energy Saving Technology Co ltd
Sichuan Jinaobo New Energy Technology Co ltd
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Abstract

The utility model discloses a high-temperature heat pump suitable for special industries, which comprises an upper cover plate and a cleaning assembly, wherein one side of one end of the upper cover plate is provided with a fan frame, the cleaning assembly is arranged at the upper end of the fan frame, and the cleaning assembly comprises a brush plate, a long rod, a sliding block, a threaded rod and a motor. Compared with the existing high-temperature heat pump, the high-temperature heat pump suitable for the special industry cleans an insect-proof net on a fan frame by driving a brush plate through a motor, so that flocculent sundries are cleaned, excessive flocculent sundries are avoided, the radiating effect of the fan is influenced, a compressor compresses and transports refrigerant gas to circulate in a system, an exchanger is used as main heat exchange equipment of the refrigerant, water or air is utilized to release heat, the high-temperature and high-pressure refrigerant gas from the compressor is cooled to be condensed into supercooled liquid, the superheat degree is effectively controlled by throttling controlled by an electric control system, and the capability of an evaporator is furthest exerted to heat the hot water.

Description

High-temperature heat pump suitable for special industry
Technical Field
The utility model relates to the technical field of high-temperature heat pumps, in particular to a high-temperature heat pump suitable for special industries.
Background
The high-temperature heat pump is used for collecting heat in waste water and waste gas with medium and low temperature discharged and wasted by industrial enterprises through the high-temperature heat pump, converting the heat into water or high-temperature steam with the temperature less than or equal to 150 ℃, and can be used for industrial process or heating, can directly replace the traditional coal-fired boiler, and is the best choice for realizing industrial energy conservation, consumption reduction and efficiency improvement.
At present, high temperature heat pump equipment is provided with a fan, a fan is framed by a general fan with an insect-proof net cover, when the fan operates to drive air to circulate through the insect-proof net, flocculent sundries can be left on the insect-proof net for a long time, the insect-proof net is easy to be blocked, the wind dispersing effect of the fan is affected, and technical innovation is carried out on the basis of the existing high temperature heat pump according to the conditions.
Disclosure of Invention
The utility model aims to provide a high-temperature heat pump suitable for the special industry so as to solve the problems in the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a high temperature heat pump suitable for special trade, includes the upper cover plate and cleans the subassembly, upper end one side of upper cover plate all is provided with the fan frame, clean the subassembly setting in the upper end of fan frame, and clean the subassembly and including brush board, stock, slider, threaded rod and motor, the upper end of brush board is provided with the stock, and one end one side of stock all is provided with the slider, the inside of slider is run through there is the threaded rod, and the front end of threaded rod is provided with the motor.
Further, the lower extreme of upper cover plate is provided with the frame, and the inside of frame is provided with the evaporimeter.
Further, a partition plate is arranged at the lower end of the evaporator, and an inner chamber is arranged at the lower end of the partition plate.
Further, an electric control system is arranged on the left side of the inner part of the inner chamber, and a compressor is arranged below the inner part of the inner chamber.
Further, a copper pipe is arranged at the right end of the inner part of the inner chamber, and an exchanger is arranged at the lower end of the copper pipe.
Further, the inside left and right sides of upper cover plate all runs through and just tears subassembly open, and just tear subassembly open including sleeve pipe and screw open, sheathed tube inside is provided with the screw.
Further, just, tear subassembly open still includes spanner, support briquetting and ball, the upper end of screw is provided with the spanner, and the lower extreme of screw is provided with supports the briquetting, one end one side of supporting the briquetting all is provided with the ball.
Compared with the prior art, the utility model has the beneficial effects that: the motor drives the brush plate to clean the insect-proof net on the fan frame, so that flocculent sundries are cleaned, the excessive flocculent sundries are avoided, the heat dissipation effect of the fan is influenced, the compressor compresses and transports refrigerant gas to circulate in the system, the exchanger is used as main heat exchange equipment of the refrigerant, water or air is utilized to release heat, the refrigerant gas with high temperature and high pressure from the compressor is cooled to be condensed into supercooled liquid, and the superheat degree is effectively controlled through throttling controlled by the electric control system, so that the capability of the evaporator is furthest exerted to heat the hot water.
1. According to the utility model, the fan frame, the brush plate, the long rod, the sliding block, the threaded rod and the motor are arranged, the motor operates to drive the threaded rod to rotate, the threaded rod rotates to drive the sliding block to move back and forth, the sliding block moves to drive the long rod to move, and the long rod moves to drive the brush plate to move, so that the brush plate cleans an insect-proof net on the fan frame, flocculent sundries are cleaned, and excessive flocculent sundries are prevented from affecting the heat dissipation effect of the fan.
2. The utility model is provided with an electric control system, a compressor and an exchanger, wherein the compressor compresses and transports refrigerant gas to circulate in the system, the exchanger is used as a main heat exchange device of the refrigerant, the heat release of water or air is utilized to cool the high-temperature and high-pressure refrigerant gas from the compressor so as to be condensed into supercooled liquid, and the superheat degree is effectively controlled by the throttling controlled by the electric control system, so that the capability of the evaporator is furthest exerted to heat the hot water.
Drawings
FIG. 1 is a schematic diagram of a front cross-sectional structure of a high temperature heat pump suitable for use in the specialty industry of the present utility model;
FIG. 2 is a schematic top cross-sectional view of a high temperature heat pump suitable for use in the specialty industry of the present utility model;
FIG. 3 is an enlarged schematic view of the structure of the high temperature heat pump of FIG. 1A, which is suitable for the special industry;
FIG. 4 is a schematic perspective view of a sleeve and wrench suitable for use in a high temperature heat pump in the specialty industry, in accordance with the present utility model;
fig. 5 is a schematic perspective view of a threaded rod and a sliding block of a high-temperature heat pump suitable for the special industry.
In the figure: 1. an upper cover plate; 2. a fan frame; 3. a cleaning assembly; 301. brushing a plate; 302. a long rod; 303. a slide block; 304. a threaded rod; 305. a motor; 4. an outer frame; 5. an evaporator; 6. a partition plate; 7. an inner chamber; 8. an electric control system; 9. a compressor; 10. an exchanger; 11. copper pipe; 12. the assembly is convenient to disassemble; 1201. a sleeve; 1202. a screw; 1203. a wrench; 1204. pressing blocks; 1205. and (5) a ball.
Detailed Description
As shown in fig. 2, 3, 4 and 5, a high-temperature heat pump suitable for special industry comprises an upper cover plate 1 and a cleaning component 3, wherein one side of one end of the upper cover plate 1 is provided with a fan frame 2, the cleaning component 3 is arranged at the upper end of the fan frame 2, the cleaning component 3 comprises a brush plate 301, a long rod 302, a sliding block 303, a threaded rod 304 and a motor 305, the upper end of the brush plate 301 is provided with the long rod 302, one side of one end of the long rod 302 is provided with the sliding block 303, the threaded rod 304 penetrates through the inside of the sliding block 303, the front end of the threaded rod 304 is provided with the motor 305, the motor 305 operates to drive the threaded rod 304 to rotate, the threaded rod 304 rotates to drive the sliding block 303 to move back and forth, the sliding block 303 moves to drive the long rod 302 to move, the long rod 302 moves to drive the brush plate 301 to clean insect-preventing flocculent sundries on the fan frame 2, the heat dissipation effect of the blower is affected, the assembly 12 is conveniently disassembled through the left and right sides of the inside of the upper cover plate 1, the assembly 12 comprises a sleeve 1201 and a screw 1202, the screw 1202 is arranged in the sleeve 1201, the assembly 12 also comprises a wrench 1203, a pressing block 1204 and a ball 1205, the wrench 1203 is arranged at the upper end of the screw 1202, the pressing block 1204 is arranged at the lower end of the screw 1202, the ball 1205 is arranged at one side of one end of the pressing block 1204, the wrench 1203 is rotated by an operator, the screw 1202 is driven to rotate by the wrench 1203, the pressing block 1204 is driven to move upwards by the rotating screw 1202, the ball 1205 is enabled to move upwards, the ball 1205 is not pressed against the ball 1205 any more, the ball 1205 is not pressed against a notch in the outer frame 4 any more, then the sleeve 1201 is taken out from the upper cover plate 1 by the operator holding the sleeve 1201, the ball 1205 is retracted into the sleeve 1201 under the extrusion of the inner wall of the groove hole of the upper cover plate 1 at the moment, then operating personnel take down upper cover plate 1, overhaul equipment, and be convenient for overhaul equipment under emergency, just can pull down upper cover plate 1 under the instrument condition such as need not wrench, be convenient for overhaul equipment.
As shown in fig. 1, the lower end of the upper cover plate 1 is provided with an outer frame 4, the inside of the outer frame 4 is provided with an evaporator 5, the lower end of the evaporator 5 is provided with a baffle 6, the lower end of the baffle 6 is provided with an inner chamber 7, the left side of the inner chamber 7 is provided with an electric control system 8, the lower part of the inner chamber 7 is provided with a compressor 9, the right end of the inner chamber 7 is provided with a copper pipe 11, the lower end of the copper pipe 11 is provided with an exchanger 10, the device operates, the low-temperature low-pressure refrigerant gas is compressed into high-temperature high-pressure gas by the compressor 9 by utilizing the principle of reverse carnot cycle, at the moment, the work done by the compressor 9 is converted into the internal energy of the refrigerant gas, the temperature of the refrigerant gas is increased, the pressure of the refrigerant gas is increased, then the high-temperature high-pressure refrigerant gas coming out of the compressor 9 flows through a condenser, heat is continuously released to the outside by wind or water, the refrigerant liquid is condensed into high-temperature high-pressure refrigerant liquid, the high temperature and high pressure refrigerant liquid from the condenser becomes low temperature and low pressure refrigerant liquid through the throttling of the throttling device, then the low temperature and low pressure refrigerant liquid from the throttling device flows through the evaporator 5, the air or water continuously absorbs heat indoors and evaporates into low temperature and low pressure refrigerant gas, the absorbed heat becomes latent heat of the refrigerant, the energy can be increased but the pressure change is not large, the heat can be absorbed in the environment with lower temperature, the frost is avoided, the heat energy is reused for heating the high temperature hot water needed by the heat energy, the heat exchanger 10 is used as a main heat exchange device of the refrigerant, the heat of the water or the air is utilized to cool the high temperature and high pressure refrigerant gas from the compressor 9 so as to condense into supercooled liquid, the heat degree is effectively controlled in the throttling controlled by the electric control system 8, the capacity of the evaporator 5 is exerted to heat the hot water to the maximum extent, compared with a coal-fired boiler, the high-temperature heat pump is completely pollution-free, emission-free and safe; the full-automatic constant temperature reduces the cost by about 50% in operation. Compared with the traditional electric boiler high-temperature hot water, the electric boiler high-temperature hot water heating device can save 50% of electric consumption, reduces the defect of frequent replacement of electric heating tubes, and is mainly applied to factories such as workshops, electroplating factories, hardware factories, slaughter factories, printing and dyeing factories, explosive factories, chemical factories and other places needing high-temperature hot water or drying by high-temperature hot air.
Working principle: when the high-temperature heat pump suitable for the special industry is used, firstly, an operator turns on a power supply to enable equipment to operate, the low-temperature low-pressure refrigerant gas is compressed into high-temperature high-pressure gas by the compressor 9 by utilizing the principle of reverse Carnot cycle, at the moment, work done by the compressor 9 is converted into the internal energy of the refrigerant gas to enable the temperature and the pressure to be increased, then the high-temperature high-pressure refrigerant gas coming out of the compressor 9 flows through a condenser to continuously release heat to the outside by wind or water, is condensed into high-temperature high-pressure refrigerant liquid, the high-temperature high-pressure refrigerant liquid coming out of the condenser is throttled by a throttling device to become low-temperature low-pressure refrigerant liquid, then the low-temperature low-pressure refrigerant liquid coming out of the throttling device flows through the evaporator 5 to continuously absorb heat indoors by wind or water and is evaporated into low-temperature low-pressure refrigerant gas, the absorbed heat becomes latent heat of the refrigerant, the energy can be increased, but the pressure change is not large, the heat can be absorbed in an environment with lower temperature, frost is not formed, the high-temperature hot water required by heating by utilizing the heat energy is utilized, the compressor 9 compresses and transports the refrigerant gas to circulate in the system, the exchanger 10 is used as main heat exchange equipment of the refrigerant, the heat of the water or the air is utilized to cool the high-temperature and high-pressure refrigerant gas coming out of the compressor 9 so as to be condensed into supercooled liquid, when the equipment is used for a long time, when floccules on the fan frame 2 are more, the motor 305 is operated, the threaded rod 304 is driven to rotate, the threaded rod 304 rotates to drive the sliding block 303 to move back and forth, the sliding block 303 moves to drive the long rod 302 to move, the long rod 302 moves to drive the brush plate 301 to clean the insect-proof net on the fan frame 2, so that the floccules are cleaned, the heat dissipation effect of the fan is prevented from being influenced by excessive flocculent sundries, when the fan or the evaporator 5 is damaged, an operator rotates the wrench 1203, the wrench 1203 rotates to drive the screw 1202 to rotate, the rotating screw 1202 moves upwards to drive the pressing block 1204 to move upwards, the pressing block 1204 is enabled to not press the ball 1205, the ball 1205 is enabled to be loosened, the ball 1205 is not limited against a notch in the outer frame 4, then the operator holds the sleeve 1201 to take out the sleeve 1201 from the upper cover plate 1, at the moment, the ball 1205 is retracted into the sleeve 1201 under the extrusion of the inner wall of the slotted hole of the upper cover plate 1, and then the operator takes down the upper cover plate 1 to overhaul equipment.

Claims (7)

1. The utility model provides a high temperature heat pump suitable for special trade, includes upper cover plate (1) and cleans subassembly (3), its characterized in that, upper end one side of upper cover plate (1) all is provided with fan frame (2), clean subassembly (3) and set up the upper end at fan frame (2), and clean subassembly (3) including brush board (301), stock (302), slider (303), threaded rod (304) and motor (305), the upper end of brush board (301) is provided with stock (302), and one end one side of stock (302) all is provided with slider (303), the inside of slider (303) is run through there is threaded rod (304), and the front end of threaded rod (304) is provided with motor (305).
2. The high-temperature heat pump suitable for the special industry according to claim 1, wherein an outer frame (4) is arranged at the lower end of the upper cover plate (1), and an evaporator (5) is arranged inside the outer frame (4).
3. A high temperature heat pump according to claim 2, characterized in that the lower end of the evaporator (5) is provided with a partition (6), and the lower end of the partition (6) is provided with an inner chamber (7).
4. A high temperature heat pump according to claim 3, characterized in that the inner left side of the inner chamber (7) is provided with an electric control system (8), and the inner lower part of the inner chamber (7) is provided with a compressor (9).
5. A high temperature heat pump according to claim 3, characterized in that the inner right end of the inner chamber (7) is provided with a copper tube (11), and the lower end of the copper tube (11) is provided with an exchanger (10).
6. The high-temperature heat pump suitable for the special industry according to claim 1, wherein the left side and the right side of the inside of the upper cover plate (1) are respectively penetrated with a convenient disassembly component (12), the convenient disassembly component (12) comprises a sleeve (1201) and a screw (1202), and the screw (1202) is arranged inside the sleeve (1201).
7. The high-temperature heat pump applicable to the special industry according to claim 6, wherein the easy-to-detach assembly (12) further comprises a wrench (1203), a pressing block (1204) and a ball (1205), the wrench (1203) is arranged at the upper end of the screw (1202), the pressing block (1204) is arranged at the lower end of the screw (1202), and the ball (1205) is arranged at one side of one end of the pressing block (1204).
CN202320979383.6U 2023-04-26 2023-04-26 High-temperature heat pump suitable for special industry Active CN219797519U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320979383.6U CN219797519U (en) 2023-04-26 2023-04-26 High-temperature heat pump suitable for special industry

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320979383.6U CN219797519U (en) 2023-04-26 2023-04-26 High-temperature heat pump suitable for special industry

Publications (1)

Publication Number Publication Date
CN219797519U true CN219797519U (en) 2023-10-03

Family

ID=88186921

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320979383.6U Active CN219797519U (en) 2023-04-26 2023-04-26 High-temperature heat pump suitable for special industry

Country Status (1)

Country Link
CN (1) CN219797519U (en)

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