Heating pipe assembly and dehumidification and humidification integrated intelligent humidity machine

By using heating pipe components and semiconductor refrigeration technology in humidification instruments, an intelligent humidity machine that integrates dehumidification and humidification is realized, solving the problems of mold and secondary pollution in the wet curtains of existing humidification instruments, and achieving a safe, reliable and energy-saving humidification effect.

CN222911829UActive Publication Date: 2025-05-27DONG GUAN SHANG ZHUN METAL CO LTD
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Patent Information

Application Number
CN202421687142.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-16
Publication Date
2025-05-27
Estimated Expiration
2034-07-16

AI Technical Summary

Technical Problem

Existing humidification instruments have problems such as wet curtains that are prone to mildew and breed bacteria, ultrasonic humidification and local humidification and prone to secondary pollution.

Method used

The heating pipe assembly is used for humidification, and the humidification process is carried out by evaporating water vapor, and dehumidification is combined with semiconductor refrigeration technology to realize an intelligent humidity machine that integrates dehumidification and humidification.

Benefits of technology

It realizes safe and reliable humidification treatment, high-temperature disinfection and sterilization of water vapor will not cause secondary pollution, there is no white powdery pollutant deposit, the product is small, beautiful and quiet, saving energy consumption.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a heating pipe assembly which comprises a heating pipe heating cavity, a heating pipe upper end cover covers the upper end of the heating pipe heating cavity, a heating pipe lower end cover covers the lower end of the heating pipe heating cavity, an overflow pipe is formed in the middle of the heating pipe lower end cover, the overflow pipe is located in the heating pipe heating cavity, and a drainage notch is formed in the upper end of the overflow pipe. A water pump water inlet is formed in one side of the heating pipe upper end cover, and a heating pipe water level pipe is connected between the water pump water inlet and the heating pipe lower end cover. The heating pipe assembly is used in a humidification treatment system of the intelligent humidity machine, the humidification process is carried out through evaporated water vapor, secondary pollution cannot be generated through high-temperature disinfection and sterilization of the water vapor, no white powdery pollutant is deposited, and safety and reliability are achieved. The utility model further discloses an intelligent humidity machine integrating dehumidification and humidification. A heating pipe assembly is adopted in the intelligent humidity machine for humidification treatment.
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Description

Technical Field

[0001] The utility model relates to the technical field of humidifying instruments, in particular to a heating tube assembly and an intelligent humidity machine with dehumidification and humidification functions integrated. Background Art

[0002] With the development of economy and the improvement of people's material living standards, people's requirements for the quality of life and health are also getting higher and higher. Humidifying instruments have gradually entered people's lives and become one of the indispensable products in dry areas. The existing dehumidifiers and humidifiers have single functions. The humidifying method is that a water pump pumps water from a water tank and sprays it on a wet curtain, and a fan blows air or sucks air to blow the water vapor on the wet curtain into the air. The wet curtain is prone to mildew and bacteria growth. Or the ultrasonic high-frequency vibration atomization method is used to blow the water mist into the air through a fan. The disadvantage of ultrasonic humidification is that the water mist droplets are relatively large, and only local humidification can be achieved. Water droplets are likely to accumulate around the product, resulting in relatively high local humidity. At the same time, pollutants, viruses, bacteria, etc. in the water are easily blown into the air during humidification, causing secondary pollution. At the same time, calcium and magnesium ions in the water are blown into the air with the water droplets and are likely to form white powdery pollutants around the product. Content of the Utility Model

[0003] An object of the utility model is to provide a heating tube assembly and an intelligent humidity machine with dehumidification and humidification functions integrated to solve the problems existing in the prior art.

[0004] To achieve the above object, the utility model adopts the following technical solutions:

[0005] A heating tube assembly includes a heating tube heating cavity, the upper end of the heating tube heating cavity is covered with a heating tube upper cover, the lower end of the heating tube heating cavity is covered with a heating tube lower cover, an overflow pipe is formed in the middle of the heating tube lower cover, the overflow pipe is inside the heating tube heating cavity, a water inlet gap is arranged at the upper end of the overflow pipe, an overflow port is arranged at the lower end of the overflow pipe, a water pump inlet is arranged on one side of the heating tube upper cover, and a heating tube water level pipe is connected between the water pump inlet and the heating tube lower cover.

[0006] As a preferred technical solution, a water vapor outlet is arranged in the middle of the heating tube upper cover.

[0007] As a preferred technical solution, heating tube rubber gaskets are provided between the heating tube upper cover and the heating tube heating cavity, and between the heating tube lower cover and the heating tube heating cavity.

[0008] As a preferred technical solution, heating tube heating parts are installed inside the side wall of the heating tube heating cavity.

[0009] As a preferred technical solution, a heating tube rubber plug is covered on the outer side of the lower end cover of the heating tube.

[0010] As a preferred technical solution, an upper end cover water baffle is formed at the inner end of the water inlet of the water pump.

[0011] As a preferred technical solution, air duct fixing screw holes are arranged around the upper end cover of the heating tube, and the upper end cover of the heating tube is fixed to the heating tube heating cavity through the air duct fixing screw holes.

[0012] As a preferred technical solution, a wire hanging hook is installed on the outer side of the upper end cover of the heating tube.

[0013] As a preferred technical solution, a heating tube temperature controller and a heating tube water temperature sensor are installed on the outer side of the heating tube heating cavity.

[0014] An intelligent humidity machine for dehumidification and humidification integration includes a heating tube assembly according to any one of the above.

[0015] The beneficial effects of the present utility model are as follows: A heating tube assembly is provided, which is used in the humidification treatment system of an intelligent humidity machine. The humidification process is carried out by evaporating water vapor. High-temperature disinfection and sterilization of water vapor will not cause secondary pollution, and there is no deposition of white powdery pollutants, which is safe and reliable; An intelligent humidity machine for dehumidification and humidification integration is also provided. The intelligent humidity machine uses the above-mentioned heating tube assembly for humidification treatment to meet the processing requirements of high-temperature disinfection and sterilization. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] The present utility model will be further described in detail below with reference to the drawings and embodiments.

[0017] Figure 1 FIG. is a schematic diagram of the first overall structure of an intelligent humidity machine for dehumidification and humidification integration according to the embodiment;

[0018] Figure 2 FIG. is a partial structure diagram (without a housing) of an intelligent humidity machine for dehumidification and humidification integration according to the embodiment;

[0019] Figure 3 FIG. is a schematic diagram of the second overall structure of an intelligent humidity machine for dehumidification and humidification integration according to the embodiment;

[0020] Figure 4 FIG. is a schematic diagram of the third overall structure of an intelligent humidity machine for dehumidification and humidification integration according to the embodiment (the water tank is inverted on the housing);

[0021] Figure 5 FIG. is a schematic diagram of the fourth overall structure of an intelligent humidity machine for dehumidification and humidification integration according to the embodiment (the water tank is inverted on the housing);

[0022] Figure 6 The first cross-sectional view of an intelligent humidity machine that combines dehumidification and humidification as described in the embodiment;

[0023] Figure 7 The second cross-sectional view of an intelligent humidity machine that combines dehumidification and humidification as described in the embodiment;

[0024] Figure 8 The schematic structural diagram on the housing base as described in the embodiment;

[0025] Figure 9 The schematic structural diagram of the water tank as described in the embodiment;

[0026] Figure 10 The three-dimensional structure diagram of the air duct assembly as described in the embodiment;

[0027] Figure 11 The first cross-sectional view of the air duct assembly as described in the embodiment;

[0028] Figure 12 The second cross-sectional view of the air duct assembly as described in the embodiment;

[0029] Figure 13 The three-dimensional structure diagram of the heating tube assembly as described in the embodiment;

[0030] Figure 14 The cross-sectional view of the heating tube assembly as described in the embodiment.

[0031] Figures 1 to 14 Among them:

[0032] 1. Water tank; 2. Housing; 3. Housing base; 4. Housing base buckle; 5. Water tank card slot; 6. Upper partition; 7. Control board; 8. Button; 9. Function indicator light; 10. Upper cover atmosphere light; 11. Power supply module; 12. Power board; 13. Power cord hole; 14. Water tank water level sensor; 15. Water pump; 16. Water level sensor floating ball; 17. Filter screen; 18. Water tank atmosphere light; 19. Condensate water outlet; 20. Air inlet hole; 21. Water tank overflow hole; 22. Water tank drain hole; 23. Water tank drain hole rubber plug; 24. Temperature and humidity sensor; 25. Speaker cover; 26. Diverting cover; 27. Water vapor mist outlet; 28. Hot air outlet; 29. Handle; 30. Water tank rubber pad;

[0033] 31. Air duct housing; 32. Heat sink; 33. Condensing sheet; 34. Semiconductor refrigeration sheet; 35. Air duct hot air outlet; 36. Cooling fan; 37. Water pump water pipe interface; 38. Negative ion generator;

[0034] 39. Heating tube heating cavity; 40. Upper end cover of heating tube; 41. Lower end cover of heating tube; 42. Overflow pipe; 43. Water drain notch; 44. Overflow port; 45. Water pump inlet; 46. Water level tube of heating tube; 47. Steam outlet; 48. Rubber gasket of heating tube; 49. Heating parts of heating tube; 50. Rubber plug of heating tube; 51. Water baffle of upper end cover; 52. Air duct fixing screw hole; 53. Wire hanging hook; 54. Temperature controller of heating tube; 55. Water temperature sensor of heating tube. Detailed implementation mode

[0035] The technical solution of the present utility model will be further described below in conjunction with the accompanying drawings and through specific implementation modes.

[0036] As Figures 1 to 14 shown, in this embodiment, an intelligent humidity machine integrating dehumidification and humidification includes a water tank 1, a housing 2, a housing base 3 and an air duct assembly. The air duct assembly is fixed in the middle of the housing base 3. The air duct assembly includes a heating tube assembly. The housing 2 covers the housing base 3. A housing base buckle 4 is formed on the outer edge of the housing base 3. A water tank slot 5 is arranged inside the water tank 1. The water tank 1 is selectively fixed on the housing base 3 by clamping the water tank slot 5 with the housing base buckle 4, or is inverted and covered on the housing 2.

[0037] Specifically, the air duct assembly further includes an air duct housing 31. The air duct housing 31 covers the outside of the heating tube assembly. Heat dissipation fins 32 are installed on the inner side wall of the air duct housing 31. Condensing fins 33 are installed on the outer side wall of the air duct housing 31. A semiconductor refrigeration sheet 34 is connected between the condensing fins 33 and the heat dissipation fins 32. The semiconductor refrigeration sheet 34 passes through the air duct housing 31. An air duct hot air outlet 35 is arranged upward on one side of the air duct housing 31. A heat dissipation fan 36 is fixed on the other side of the air duct housing 31. A water pump water pipe interface 37 is arranged on the air duct housing 31. The water pump water pipe interface 37 is on one side of the air duct hot air outlet 35. A negative ion generator 38 is fixed on the outside of the air duct housing 31.

[0038] The heating tube assembly includes a heating tube heating chamber 39. The upper end of the heating tube heating chamber 39 is covered with an upper heating tube cover 40, and the lower end of the heating tube heating chamber 39 is covered with a lower heating tube cover 41. In the middle of the lower heating tube cover 41, an overflow pipe 42 is formed. The overflow pipe 42 is inside the heating tube heating chamber 39. At the upper end of the overflow pipe 42, a water inlet notch 43 is provided, and at the lower end of the overflow pipe 42, an overflow port 44 is provided. On one side of the upper heating tube cover 40, a water pump inlet 45 is provided. A heating tube water level pipe 46 is connected between the water pump inlet 45 and the lower heating tube cover 41. In the middle of the upper heating tube cover 40, a steam outlet 47 is provided. Between the upper heating tube cover 40 and the heating tube heating chamber 39, and between the lower heating tube cover 41 and the heating tube heating chamber 39, there are heating tube rubber gaskets 48. Inside the side wall of the heating tube heating chamber 39, a heating tube heating part 49 is installed. Outside the lower heating tube cover 41, a heating tube rubber plug 50 is covered. At the inner end of the water pump inlet 45, an upper cover water baffle 51 is formed. Around the upper heating tube cover 40, air duct fixing screw holes 52 are provided. The upper heating tube cover 40 is fixed to the heating tube heating chamber 39 through the air duct fixing screw holes 52. Outside the upper heating tube cover 40, a wire hanging hook 53 is installed. Outside the heating tube heating chamber 39, a heating tube thermostat 54 and a heating tube water temperature sensor 55 are installed.

[0039] In terms of the overall structure, at the upper end of the air duct assembly, there is an upper partition board 6. On the upper partition board 6, a control board 7 is installed. On the control board 7, buttons 8 and function indicator lights 9 are distributed. Around the middle of the upper partition board 6, an upper cover ambient light 10 is arranged. On one side of the air duct assembly, there is a power supply module 11. Inside the power supply module 11, a power supply board 12 is installed. On the outer shell 2, a power cord hole 13 is provided, and the power cord hole 13 is communicated with the power supply board 12. The control board 7 is electrically connected to the power supply board 12. On the outer shell base 3, a water tank water level sensor 14 and a water pump 15 are installed. At the lower end of the water tank water level sensor 14, a water level sensor float ball 16 is connected. Along the vertical direction on the outer shell base 3, a filter net 17 is inserted. On the outer shell base 3, a water tank ambient light 18 is installed, and the water tank ambient light 18 shines downward. On the outer shell base 3, a condensate water outlet 19 is also provided. On one side of the outer shell 2, air inlet holes 20 are distributed. On one side of the water tank 1, a water tank overflow hole 21 is provided. On one side at the lower end of the water tank 1, a water tank drain hole 22 is provided. The outer end of the water tank drain hole 22 is plugged with a water tank drain hole rubber plug 23. On the outer shell base 3, a temperature and humidity sensor 24 is fixed. In the middle at the upper end of the outer shell 2, a speaker cover 25 is provided. The lower end of the speaker cover 25 is connected to the middle of the air duct assembly. In the middle of the speaker cover 25, a shunt cover 26 is provided. Between the speaker cover 25 and the shunt cover 26, a steam mist outlet 27 is formed. On the outer shell 2, a hot air outlet 28 is provided, and the hot air outlet 28 is located outside the speaker cover 25. On the outer shell 2, a handle 29 is provided. At the lower end of the water tank 1, a water tank rubber gasket 30 is fixed.

[0040] This product combines the traditional two separate large-volume dehumidification and humidification systems into an integrated system. It adopts the technology of semiconductor refrigeration for dehumidification and heating tube evaporative steam humidification. The product is a household appliance that intelligently controls the environmental humidity through a temperature and humidity sensor 24 and software algorithms. Compared with the traditional compression refrigeration technology for dehumidification, this machine is small, beautiful and quiet. The water tank 1 can be separately rotated out and sleeved on the outer shell 2, which can greatly reduce the packaging volume of the product. At the same time, it can increase the volume of the water tank 1, reduce the packing size, lower the transportation cost, facilitate movement and carrying, convenient for cleaning, use and storage, save energy consumption, safe and reliable. Moreover, the high-temperature disinfection and sterilization of water vapor will not produce secondary pollution, and there is no deposition of white powdery pollutants. Color-changing atmosphere lights are added around the water vapor outlet 27 on the upper part of the outer shell 2 and inside the water tank 1 to create a warm environment of smoke and light and shadow.

[0041] The semiconductor refrigeration technology is based on the temperature difference characteristics between the hot surface and the cold surface of the semiconductor refrigeration chip 34 after passing through direct current, and is combined with the heat sink 32 for dissipating heat from the hot surface of the refrigeration chip and the cooling fan 36, as well as the condensing sheet 33 for cooling the cold surface of the refrigeration chip. Since the temperature of the condensing sheet 33 is lower than the ambient temperature, the air flowing through the condensing sheet 33 liquefies into water droplets and flows into the water tank 1 to achieve the effect of dehumidification. The dehumidification mechanism of this machine adopts a modular structure design of two refrigeration chips. The two refrigeration modules are symmetrically installed. The heat sinks 32 of the two refrigeration modules share a duct. The heat sinks 32 of the two refrigeration modules are located inside the duct. The condensing sheets 33 of the two refrigeration modules are located outside the duct. A cooling fan 36 is also installed outside the duct. There is a hot air outlet 28 at the upper part of the duct. The hot air outlet 28 is opposite to the cooling fan 36. There is a heating tube steam outlet in the corresponding area between the upper part of the duct and the heating tube assembly, and a heating tube overflow port 44 in the corresponding area between the lower part of the duct and the heating tube assembly. A heating tube assembly module is installed in the middle of the duct. The two refrigeration modules and the heating tube assembly module are connected and installed through the duct to form a duct assembly. The modular structure design of the duct assembly is convenient for installation, improves production efficiency, reduces noise, saves energy consumption, and is safe and reliable.

[0042] The heating tube evaporative water vapor humidification is composed of a heating tube assembly by built-in heating elements on both sides or one side of the metal profile. An upper end cover is installed on the metal profile, and there is an opening for water vapor in the middle of the upper end cover. There is a water pump 15 water supply pipeline on the side of the upper end cover. A lower end cover is installed under the metal profile. There is an overflow pipe 42 in the middle of the lower end cover to prevent the heating tube from being full of water. There is a sealing pad between the upper / lower end cover and the metal profile, which is locked by screws to prevent water leakage inside the heating tube. There is a water level pipeline between the upper / lower end cover to observe the water level inside the heating tube. The water level pipeline and the heating tube form a communicating vessel. The water level sensor of the heating tube is installed at the bottom of the water level pipeline. A temperature control element for controlling the temperature of the heating tube is installed on the side of the metal profile. The water pump 15 pumps the water in the water tank 1 to the heating tube, and the heating tube then heats the water inside the heating tube to boil through the built-in heating element to generate water vapor, which then naturally rises and floats into the air through the mist outlet, thereby producing the effect of atomization humidification, and the high-temperature disinfection and sterilization of water vapor will not produce secondary pollution, and there is no white powdery pollutant deposition.

[0043] A grid of hot air outlet 28 is distributed in an annular manner on the upper part of the outer shell 2, a trumpet cover 25 is provided in the middle of the upper part of the outer shell 2, a diverter cover 26 is provided inside the trumpet cover 25, the gaps around the trumpet cover 25 and the diverter cover 26 are water vapor mist outlets 27, the water vapor mist outlet 27 is trumpet-shaped, the water inlet of the water tank 1 and the water vapor mist outlet share a channel, the trumpet cover 25 and the outer shell 2 are clamped by a rotating buckle, and the trumpet cover 25 can be screwed out for easy cleaning of the heating tube assembly.

[0044] There is an upper partition 6 between the outer shell 2 and the air duct assembly, and a hot air outlet cavity is formed between the upper partition 6 and the grid of the hot air outlet 28 of the outer shell 2. The upper partition 6 is mounted on the top of the air duct assembly, and the hot air outlet on the top of the air duct assembly corresponds to the opening of the upper partition 6. The control board 7 is located above the upper partition 6, and the air duct assembly is located above the base 3 of the outer shell. The upper partition 6 prevents hot air from flowing to the condensation sheet 33, thereby improving the dehumidification efficiency.

[0045] The water tank 1 and the outer shell base 3 are clamped by rotating the outer shell base buckle 4, and the water tank 1 can be separated from the product. When cleaning or storing the water tank 1, it can be screwed out separately and put on the outer shell 2 of the product. There are outer shell base buckles 4 that are rotated and locked around the inner side of the water tank 1 and the outer shell base 3. A water tank overflow hole 21 is provided on the upper part of the water tank 1 to prevent water from filling up and entering the product and damaging the product. A water tank drain hole 22 is provided at the bottom of the water tank 1, and a non-slip water tank drain hole rubber plug 23 is also provided at the bottom of the water tank 1.

[0046] A handle 29 is provided on the upper part of the product and can be rotated 90 degrees and unfolded. The handle 29 can be placed in the handle 29 groove on the upper part of the shell 2 after being folded.

[0047] There are function control buttons 8 and function display pattern symbols around the upper part of the product, and the buttons 8 and the function display area are placed opposite to the handle 29.

[0048] An air inlet hole 20 is provided at the rear of the housing 2, and a filtering device is provided in the air inlet hole 20. The filtering device can be taken out from the bottom of the housing base 3 for easy cleaning and replacement.

[0049] A water tank water level sensor 14 for detecting the full water level of the water tank 1 is provided in the housing base 3. There is a water level sensor float 16 directly below the water tank water level sensor 14. A magnet is installed on the upper part of the water level sensor float 16. The water tank water level sensor 14 judges whether the water tank 1 is full by detecting the magnetic field intensity of the water level sensor float 16.

[0050] It should be noted that the above specific embodiments are only the preferred embodiments of the present invention and the technical principles applied. Any changes or substitutions that are easily conceivable by those skilled in the art within the technical scope disclosed by the present invention should be covered by the protection scope of the present invention.

Claims

1. A heating pipe assembly, characterized in that: It comprises a heating chamber of a heating tube, the upper end cover of the heating chamber of the heating tube is provided with an upper end cover of the heating tube, the lower end cover of the heating chamber of the heating tube is provided with a lower end cover of the heating tube, an overflow pipe is formed in the middle of the lower end cover of the heating tube, the overflow pipe is located inside the heating chamber of the heating tube, a water discharge notch is provided at the upper end of the overflow pipe, an overflow port is provided at the lower end of the overflow pipe, a water inlet of a water pump is provided on one side of the upper end cover of the heating tube, and a water level pipe of the heating tube is connected between the water inlet of the water pump and the lower end cover of the heating tube.

2. A heating pipe assembly according to claim 1, characterized in that: A water vapor outlet is arranged in the middle of the upper end cover of the heating pipe.

3. The heating pipe assembly according to claim 1, characterized in that: A heating pipe rubber pad is provided between the upper end cover of the heating pipe and the heating chamber of the heating pipe, and between the lower end cover of the heating pipe and the heating chamber of the heating pipe.

4. The heating pipe assembly according to claim 1, characterized in that: A heating tube heating part is installed inside the side wall of the heating tube heating cavity.

5. The heating pipe assembly according to claim 1, characterized in that: The outer side of the lower end cover of the heating pipe is covered with a heating pipe rubber plug.

6. The heating pipe assembly according to claim 1, characterized in that: An upper end cover water baffle is formed at the inner end of the water inlet of the water pump.

7. The heating pipe assembly according to claim 1, characterized in that: Air duct fixing screw holes are arranged around the upper end cover of the heating pipe, and the upper end cover of the heating pipe is fixed to the heating cavity of the heating pipe through the air duct fixing screw holes.

8. The heating pipe assembly according to claim 1, characterized in that: A wire hanging hook is installed on the outer side of the upper end cover of the heating pipe.

9. The heating pipe assembly according to claim 1, characterized in that: A heating tube temperature controller and a heating tube water temperature sensor are installed on the outside of the heating tube heating cavity.

10. An intelligent humidity machine integrating dehumidification and humidification, characterized in that: The invention comprises the heating pipe assembly as described in any one of claims 1 to 9.