WO2022198802A1 - 加湿设备 - Google Patents

加湿设备 Download PDF

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Publication number
WO2022198802A1
WO2022198802A1 PCT/CN2021/098916 CN2021098916W WO2022198802A1 WO 2022198802 A1 WO2022198802 A1 WO 2022198802A1 CN 2021098916 W CN2021098916 W CN 2021098916W WO 2022198802 A1 WO2022198802 A1 WO 2022198802A1
Authority
WO
WIPO (PCT)
Prior art keywords
water
water tank
wet film
film assembly
module
Prior art date
Application number
PCT/CN2021/098916
Other languages
English (en)
French (fr)
Inventor
于德彤
杜永
刘传勇
李川
孟庆好
Original Assignee
青岛海信日立空调系统有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN202110314355.8A external-priority patent/CN113028541B/zh
Priority claimed from CN202110314159.0A external-priority patent/CN113266905B/zh
Application filed by 青岛海信日立空调系统有限公司 filed Critical 青岛海信日立空调系统有限公司
Priority to CN202180064344.7A priority Critical patent/CN116261644A/zh
Priority to CN202310639938.7A priority patent/CN116817384A/zh
Publication of WO2022198802A1 publication Critical patent/WO2022198802A1/zh
Priority to US18/468,152 priority patent/US20240003557A1/en

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F6/00Air-humidification, e.g. cooling by humidification
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F6/00Air-humidification, e.g. cooling by humidification
    • F24F6/02Air-humidification, e.g. cooling by humidification by evaporation of water in the air
    • F24F6/04Air-humidification, e.g. cooling by humidification by evaporation of water in the air using stationary unheated wet elements
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/08Air-flow control members, e.g. louvres, grilles, flaps or guide plates
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/20Casings or covers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F6/00Air-humidification, e.g. cooling by humidification
    • F24F2006/006Air-humidification, e.g. cooling by humidification with water treatment
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F6/00Air-humidification, e.g. cooling by humidification
    • F24F2006/008Air-humidifier with water reservoir
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2110/00Control inputs relating to air properties
    • F24F2110/20Humidity

Definitions

  • the present application relates to the technical field of household appliances, and in particular, to a humidification device.
  • Humidifiers are household appliances commonly used in people's daily life, and central humidifiers installed on the ceiling are widely popularized and used because of their strong humidifying ability.
  • the central humidifier is usually installed hidden on the ceiling, supplying water through tap water, and supplying air to various areas of the house through air ducts to achieve one-stop humidification of the whole house.
  • the humidification device includes:
  • the casing is provided with an air inlet and an air outlet, and an installation socket is also arranged on the casing;
  • the humidification module includes a water tank and a wet film assembly, and the wet film assembly is arranged in the water tank;
  • the water tank is pluggably installed in the installation socket, the wet film assembly is located in the housing, the wet film assembly is used for humidifying the air entering from the air inlet, and the air passes through After being humidified by the wet film assembly, it is output from the air outlet.
  • a central humidification device including:
  • the casing is provided with an air inlet and an air outlet, and an air passage is formed between the air inlet and the air outlet;
  • the humidification module is used for humidifying the air flowing through the air passage;
  • the drying module is used to heat the air entering into the housing;
  • the humidifying module is arranged in the casing, and the drying module is arranged on the casing and is close to the air inlet.
  • FIG. 5 is a schematic structural diagram of some embodiments of the present application in a disassembled state
  • Fig. 6 is one of the structural schematic diagrams of the casing of some embodiments of the present application.
  • Fig. 7 is the second structural schematic diagram of the casing of some embodiments of the present application.
  • FIG. 8 is the third schematic diagram of the structure of the casing according to some embodiments of the present application.
  • FIG. 9 is a schematic structural diagram of an end plate according to some embodiments of the present application.
  • FIG. 10 is a schematic structural diagram of a separator according to some embodiments of the present application.
  • FIG. 11 is one of the schematic structural diagrams of the water tank according to some embodiments of the present application.
  • FIG. 12 is the second structural schematic diagram of the water tank according to some embodiments of the present application.
  • FIG. 13 is a schematic structural diagram of a locking portion of some embodiments of the present application.
  • FIG. 14 is a schematic structural diagram of a wet film assembly according to some embodiments of the present application.
  • 15 is an assembly diagram of a wet film module and a water tank according to some embodiments of the present application.
  • Fig. 16 is the partial enlarged schematic diagram of A area in Fig. 15;
  • Fig. 17 is a partial enlarged schematic view of region B in Fig. 15;
  • FIG. 18 is a schematic structural diagram of a water shower module according to some embodiments of the present application.
  • the housing 100 The housing 100 , the front panel 101 , the rear panel 102 , the top panel 103 , the end panel 104 , the support panel 105 , the partition panel 106 , the gasket 107 , the air guide plate 108 , the inlet air humidity sensor 110 , and the outlet air humidity sensor 120 .
  • Water tank 200 decorative plate 201, sliding fitting part 202, limit part 203, side panel 204, main tank body 210, auxiliary tank body 220, drain port 230, partition 240, drain pump 250, slow release box 260, plug-in part 270.
  • Water shower module 500 Water shower plate 510, water shower hole 511, water shower cover 520, water inlet pipe 521, hanger 530, electric control valve 540, retaining ring 501;
  • drying module 600
  • Ultraviolet sterilization module 700 mounting bracket 701 , and LED lamp 702 .
  • some embodiments of the present application provide a humidification apparatus including a housing 100 , a water tank 200 and a humidification component 300 .
  • the humidifying component 300 is a wet film assembly.
  • the sliding fitting portion 202 is a flange.
  • the housing 100 is provided with an air inlet 1001 and an air outlet 1002 , and the upper part of the housing 100 is further provided with hanging connection parts 1003 at four corners of the housing 100 to meet the requirements of hanging installation.
  • the outside air can enter the casing 100 through the air inlet 1001 and finally be output from the air outlet 1002.
  • the humidifying device When the humidifying device is installed, it is hung and installed on the top of the room through the hanging connection part 1003, wherein the hanging connection part 1003
  • the representation entity may be structures such as lifting lugs, hooks, etc., which will not be limited or described here.
  • the water tank 200 and the wet film assembly 300 are assembled together to form a humidification module.
  • the housing 100 is also provided with an installation socket 1004; the water tank 200 is pluggable and installed in the installation socket 1004, the wet film assembly 300 is located in the housing 100, and the wet film module 300 is used for humidifying the air entering from the air inlet 1001 , and the air passes through the wet film module 300 to be humidified and then is output from the air outlet 1002 .
  • the humidifying device is suspended and installed on the top of the house through the hanging connection part 1003 configured on the casing 100, the air enters the casing 100 through the air inlet 1001, and after the air is humidified by the wet film assembly 300, the humidified Air is output from the air outlet 1002 to the outside of the housing 100 to adjust the indoor humidity.
  • the wet membrane assembly 300 disposed in the water tank 200 needs to be disassembled, cleaned or replaced. At this time, the operator only needs to pull out the water tank 200 from the installation socket 1004, so that the wet membrane module 300 can be taken out from the housing 100 together.
  • the water tank 200 is used as a water supply source for the wet film module 300 to take water and humidify. Take it out, it is more convenient for the operator to operate in the top space of the room, and the operation convenience is improved.
  • the housing 100 is provided with a first connecting portion on the outer side of the installation socket 1004 , and the water tank 200 is provided with a first connecting portion that cooperates with the first connecting portion.
  • the second connecting part is detachably connected with the first connecting part.
  • first connection portion and the second connection portion are connected together in a detachable manner, so that the water tank 200 can be detachably installed on the housing 100 .
  • first connecting portion and the second connecting portion are connected together in a detachable manner, so that the water tank 200 can be detachably installed on the housing 100 .
  • first connecting portion and the second connecting portion are snapped together, for example, the first connecting portion and the second connecting portion may be connected in a conventional snapping manner.
  • first connecting part and the second connecting part are screwed together.
  • a plurality of threaded holes 1005 may be provided on the housing 100 around the installation socket 1004, and a through hole 2002 may be provided on the water tank 200. Bolts (not labeled) pass through through holes 2002 and are threaded in threaded holes 1005 .
  • the installation socket 1004 is arranged at one end of the housing 100 , and the water tank 200 can be installed in the installation socket 1004 by pulling sideways.
  • the water tank 200 can adopt a drawer structure as a whole, and a handle 2001 is disposed on one side of the water tank 200 .
  • a handle 2001 is disposed on one side of the water tank 200 .
  • the humidification device further includes an electric control box 400, and an electric control board (not marked) is configured in the electric control box 400; the electric control board is electrically connected to the relevant electrical components in the humidification device. connected to control the operation of electrical components.
  • the electric control box 400 is rotatably installed on the end of the casing 100; the end of the water tank 200 is provided with a first locking part 2003, and the first locking part 2003 is used to connect the electric control The box 400 is locked on the end of the sink 200 .
  • the electric control box 400 rotates and abuts against the end of the water tank 200 . In this way, on the one hand, the position of the electric control box 400 can be positioned and fixed;
  • the limit locking of the electric control box 400 by the first locking part 2003 is released, and the electric control box 400 is rotated to the side of the water tank 200;
  • the water tank 200 can be removed from the casing 100 by connecting the wet membrane module 300 with the water tank 200 .
  • the housing 100 includes a front panel 101, a rear panel 102, a top panel 103 and an end panel 104.
  • the front panel 101 is provided with an air outlet 1002
  • the rear panel 102 is provided with an air inlet 1001
  • the top panel 103 is provided with a suspension connection Section 1003.
  • a support plate 105 can be provided at the lower end of the end plate 104; wherein, the front plate 101 and the rear plate 102 are arranged oppositely, and one side of the end plate 104 is opposite to the end plate 104.
  • the side of the front panel 101 is connected, the other side of the end panel 104 is connected to the side of the rear panel 102, and the support plate 105 extends along the length direction of the casing 100 and is respectively connected with the bottom edge of the front panel 101 and the bottom edge of the rear panel 102.
  • the top plate 103 is respectively connected to the top of the front panel 101 , the rear panel 102 and the end plate 104 , and the end of the housing 100 away from the end plate 104 forms a mounting socket 1004 .
  • the humidification module includes a water tank 200 and a wet film assembly 300, the wet film assembly is disposed on the water tank 200, and a decorative plate 201 is disposed at the bottom of the water tank 200;
  • the humidification module is inserted into the housing 100 through the installation socket 1004 , the support plate 105 is supported on the bottom of the water tank 200 , and the decorative plate 201 and the support plate 105 are spliced together.
  • the water tank 200 communicates with the wet film module 300 and is inserted into the housing 100 through the installation socket 1004. During the insertion of the water tank 200, the decorative plate 201 and the support plate 105 are butted together, so that the water tank 200 is assembled in place.
  • the operator pulls the handle 2001 disposed at the end of the water tank 200 , so that the water tank 200 with the wet membrane module 300 is pulled out of the casing 100 .
  • the water tank 200 can be pulled out completely after moving to the outer edge of the support plate 105. In this way, the moving distance of the water tank 200 during the disassembly and assembly process can be effectively shortened, and the The overall pulling stroke of the humidification module reduces the space required for maintenance and reduces the difficulty of maintenance.
  • the support plate 105 is provided with two vertical plates 1051, and the vertical plates 1051 are provided with sliding rails 1052; the two sides of the water tank 200 are provided with sliding fitting parts 202, and the sliding fitting parts 202 are slidably arranged on the corresponding on the slide rail 1052.
  • the sliding fitting parts 202 formed on both sides of the water tank 200 are used to cooperate with the sliding rails 1052 provided on the support plate 105 to support the sliding of the water tank 200 relative to the casing 100, thereby facilitating the on-site disassembly and assembly of the operator. repair.
  • the end of the slide rail 1052 away from the end plate 104 is provided with a guide portion 1053 extending obliquely downward.
  • the sliding fitting parts 202 on both sides of the water tank 200 can slide upward through the inclined guide parts 1053 until they slide to the flat surface of the sliding rail 1052 . Under the guidance of the guide portion 1053, it is more convenient for the operator to assemble quickly and accurately on site.
  • a limiting portion 203 is provided on the sliding fitting portion 202, and a limiting portion 1054 is provided on the sliding rail 1052; After 100 is installed, the limit plate is connected with the limit matching portion 1054 .
  • the positioning operation of the sliding position of the water tank 200 is realized by the positioning cooperation of the limiting portion 203 and the limiting matching portion 1054.
  • the limiting portion 203 may be a positioning protrusion protruding downward on the sliding matching portion 202
  • the limiting matching portion 1054 is a positioning groove formed on the slide rail 1052 , and the positioning protrusion is located in the positioning groove.
  • one end of the water tank 200 is overlapped on the support plate 105 .
  • one end of the water tank 200 can be overlapped with the support plate 105 to support the water tank 200 by the support plate 105 .
  • the edge of the trim panel 201 overlaps the free end of the support panel 105 .
  • the decorative board 201 and the support board 105 are spliced together, and the edge of the support board 105 is used to support the edge of the decorative board 201, on the one hand, the support board 105 is used to support the water tank 200. , on the other hand, it can ensure that the overall bottom surface of the housing 100 has a flat appearance.
  • a bending edge 1055 may be provided at the free end of the support plate 105 , and the edge of the decorative board 201 is overlapped on the bending edge 1055 .
  • the free end of the support plate 105 is provided with a downwardly bent edge 1055 , the bent edge 1055 will form a stepped surface, and the edge of the decorative board 201 is overlapped on the stepped surface formed by the bent edge 1055 .
  • the ends of the front panel 101 and the rear panel 102 away from the end plate 104 are respectively provided with inner folds 1000, and the end of the water tank 200 is provided with a side panel 204.
  • Panel 204 is joined with inner hem 1000 .
  • the side panel 204 is connected with the inner folded edge 1000 , so that the water tank 200 can be firmly and reliably installed on the casing 100 .
  • threaded holes are provided on the inner folded edge 1000 , and through holes are provided on the side panel 204 .
  • the threaded hole will form the first connection part arranged on the housing 100
  • the hand-tightened bolt inserted in the through hole will form the second connection part provided on the water tank 200 .
  • a partition 106 may also be configured in the housing 100 .
  • the air inlet 1001 and the air outlet 1002 are located above the partition plate 106 , the water tank 200 is located below the partition plate 106 , and the wet film assembly penetrates the partition plate 106 and is located between the air outlet 1002 and the air inlet 1001 .
  • the external air flow enters the housing 100 through the air inlet 1001 and blows toward the wet film module, and the air flow is blocked by the bottom partition 106 and will not flow to the bottom water tank 200, so that it can effectively
  • the phenomenon of splashing water caused by the impact of the airflow on the water in the water tank 200 is reduced or avoided, thereby improving the reliability of use and user experience.
  • a through hole 1061 is provided on the partition plate 106 , and the wet film assembly passes through the through hole 1061 .
  • one end of the housing 100 is provided with an installation socket 1004, and the water tank 200 is installed in the installation socket 1004 by means of a drawer structure in a plug-and-pull manner. After the water tank 200 is inserted into the installation socket 1004, the water tank 200 is installed on The wet film assembly 300 will enter into the housing 100 from the installation socket 1004 together, and the wet film assembly 300 will pass through the through hole 1061 to be exposed between the air inlet 1001 and the air outlet 1002 .
  • the through hole 1061 is a notch structure formed on the partition plate 106 , and the opening of the notch structure faces the installation socket 1004 . Specifically, the through hole 1061 is a gap formed on the end of the partition plate 106 close to the installation socket 1004 .
  • sliding rails 1052 are provided in the casing 100, and at the same time, the two sides of the water tank 200 are provided with sliding fitting parts 202, so as to be slidably installed on the sliding rails through the sliding fitting parts 202 1052 on.
  • the sliding fitting portion 202 and the partition plate 106 are used to form an overlapping area in the vertical direction, which can more effectively block the airflow from entering the water tank 200 and avoid the occurrence of splashing.
  • the partition plate 106 is further provided with a first rib 1062 extending upward, and the first rib 1062 is located at an edge of the through hole 1061 close to the air inlet 1001 .
  • the first rib 1062 extends upward to block the airflow from flowing downward, which is more beneficial to prevent splashing of water.
  • the partition plate 106 is also provided with a second rib plate 1063 extending upward, and the second rib plate 1063 is located at the edge of the through hole 1061 close to the air outlet 1002 .
  • the second rib 1063 is arranged to extend upward to block the water in the bottom water tank 200 at the air outlet, wherein the distance between the windward surface of the wet film assembly and the first rib 1062 is smaller than that of the wet film assembly The distance between the leeward surface and the second rib 1063.
  • first rib plate 1062 and the second rib plate 1063 respectively include a plurality of sections of ribs, and an interval is formed between two adjacent sections of the ribs.
  • first rib plate 1062 and the second rib plate 1063 are of segmented design. When water drops on the partition plate 106, the water can flow into the lower part through the interval formed between the two adjacent segments of the ribs. in the sink 200.
  • a wind shield is provided in the casing 100; wherein the water tank 200 is located at the bottom of the casing 100, and the wet film assembly 300 is vertically arranged in the casing 100,
  • the wind shielding portion is disposed on the outside of the wet film assembly 300 and is used to block the airflow input from the air inlet 1001 from being output to the air outlet 1002 from the outside of the wet film assembly 300 .
  • the air flow cannot bypass the bottom of the wet film assembly 300, and the two sides and the top of the wet film assembly 300 are shielded by the windshield, so , so that the airflow entering the housing 100 can pass through the wet film module 300 to the greatest extent for humidification, so as to effectively improve the humidification efficiency.
  • the high pressure area formed on the windward side of the wet film module 300 will form a relatively dry area, and the low pressure area formed by the leeward side of the wet film module 300 will form a relatively wet area, so that when the equipment is subjected to anti-corrosion treatment, it can be Targeted processing is more conducive to reducing manufacturing costs.
  • the wind shields are arranged on the top and both sides of the wet film assembly, so as to effectively shield the exposed part of the wet film assembly 300 outside the water tank 200 .
  • various structural forms may be adopted for the specific representation entity of the wind shield, which will be described with examples below.
  • the wind shield includes a baffle ring 501 arranged on the top of the housing 100 , the baffle ring 501 is arranged along the length direction of the casing 100 , and the baffle ring 501 surrounds the outer periphery of the top of the wet film assembly.
  • the baffle ring 501 arranged on the top of the wet film assembly 300 can shield the top area of the wet film assembly 300 to reduce the output of airflow bypassing the top of the wet film assembly 300 .
  • the casing 100 is provided with an installation socket 1004 at the first end, and the water tank 200 is designed as a drawer structure to be inserted from the installation socket 1004, then correspondingly, the wind shield further includes a sealing gasket 107, and the sealing gasket 107 Vertically arranged on the second end of the housing 100, the wet film assembly abuts on the gasket 107; wherein the first and second ends of the housing 100 are arranged opposite to each other.
  • the wet film assembly 300 After inserting the water tank 200 into the mounting socket 1004 , the wet film assembly 300 will rest against the gasket 107 . While the sealing gasket 107 is arranged vertically, the sealing gasket 107 can seal the end face of the wet film module 300 close to the second end of the housing 100 , thereby reducing the output of airflow bypassing the end of the wet film module 300 .
  • the wind shield further includes a wind deflector 108 , which is vertically arranged in the casing 100 and close to the first end of the casing 100 .
  • a wind deflector 108 At one end, one end of the wind deflector 108 is disposed on the housing 100 and is located outside the air inlet 1001 , and the other end of the wind deflector 108 extends to the wet film module 300 .
  • the airflow will be guided to the wet film module 300 through the air deflector 108 , thereby reducing the output of the airflow bypassing the end of the wet membrane module 300 .
  • an overlapping area is formed between the end of the wet film assembly 300 close to the installation socket 1004 and the wind deflector 108.
  • the overlapping area can effectively reduce the overflow of air flow, and the wind deflector 108 can be used to guide the airflow to the greatest extent.
  • the middle region in the wet film module 300 flows.
  • the housing 100 is provided with a partition 106 to cover the water tank 200, and at the same time, the sliding fitting parts 202 arranged on both sides of the water tank 200, on the one hand, cooperate with the sliding rails 1052 in the housing 100 to realize sliding,
  • the sliding fitting portion 202 and the partition plate 106 also form an overlapping area in the vertical direction, so as to prevent the airflow from bypassing the bottom of the water tank 200 to deflate.
  • the wind shield By arranging the wind shield in the casing 100, the wind shield is arranged outside the wet film assembly, and the wind shield can block the airflow entering the casing 100 from the outside of the wet film assembly by the wind shield. output to ensure that the airflow output from the air outlet 1002 is effectively humidified by the wet film assembly, thereby improving humidification efficiency and user experience.
  • the windward surface and the leeward surface of the wet film module are formed into two parts, a high pressure area and a low pressure area, respectively. Separate area settings can greatly facilitate the adoption of different anti-corrosion, moisture-proof and waterproof measures and requirements for components in different areas, effectively reducing design complexity and material and model selection costs.
  • the water tank 200 for the water tank 200 , on the one hand, it is used to hold water, and on the other hand, it is also used to install and fix the wet film assembly 300 .
  • the following structural improvements are made to the water tank 200 .
  • the water tank 200 is provided with two independent main tank bodies 210 and auxiliary tank bodies 220.
  • the water tank 200 is provided with a water inlet (not marked) for supplying water to the main tank body 210, and the water tank 200 is also provided with an auxiliary tank for discharging water.
  • two independent main tank bodies 210 and auxiliary tank bodies 220 are formed in the water tank 200 , wherein the wet film module 300 is installed in the main tank body 210 .
  • the wet film module 300 is installed in the main tank body 210 .
  • the water in the main tank body 210 will overflow into the auxiliary tank body 220, and the water entering the auxiliary tank body 220 will be directly discharged from the drain port 230 to the outside of the housing 100.
  • the drain port 230 is connected with a drain during installation. A pipe (not shown), the drain pipe is inclined downwards, so that the water is guided to flow to a set area for discharge.
  • a partition 240 may be provided in the water tank 200, and the partition 240 separates the water tank 200 into the main tank body 210 and the auxiliary tank body 220.
  • Tank body 220 for the overflow area formed between the main tank body 210 and the auxiliary tank body 220, a partition 240 may be provided in the water tank 200, and the partition 240 separates the water tank 200 into the main tank body 210 and the auxiliary tank body 220.
  • Tank body 220 for the overflow area formed between the main tank body 210 and the auxiliary tank body 220.
  • the water in the main tank body 210 can overflow into the auxiliary tank body 220 through the partition 240 .
  • the height of the upper edge of the partition 240 is lower than the height of the side wall of the water tank 200, and the upper edge of the partition 240 forms the overflow area.
  • the partition 240 is provided with an overflow port, and the overflow port forms the overflow area.
  • the main tank body 210 in order to accurately detect the water level of the main tank body 210 to control the water injection amount of the main tank body 210, the main tank body 210 is provided with a first water level detector 2101 and a second water level detector 2102, The water level detection height of the first water level detector 2101 is higher than the water level detection height of the second water level detector 2102 .
  • the second water level detector 2102 is used to detect the lowest water level in the main tank 210 to trigger the external water supply source to supply water
  • the first water level detector 2101 is used to detect the main tank The highest water level in the body 210 to trigger the water cut off of the external water supply.
  • the auxiliary tank body 220 is provided with a third water level detector 2201 .
  • the third water level detector 2201 is arranged in the auxiliary tank body 220 and is used to detect the water level in the auxiliary tank body 220. In this way, when the drain port 230 in the auxiliary tank body 220 is blocked by dirt, the third water level detector 2201 can pass through the third water level detector 220. When the water level detector 2201 detects that the water level in the auxiliary tank body 220 is higher than the set water level, it triggers the water cut off of the external water supply source.
  • the specific representation entities of the first water level detector 2101, the second water level detector 2102 and the third water level detector 2201 can be liquid level detection devices such as water level sensors and water floats in the conventional technology, which are not limited here. Repeat.
  • the main tank body 210 is provided with a drain pump 250 , and the drain pump 250 is used to drain the water in the main tank body 210 .
  • the humidifying device when the humidifying device is not used for a long time, in order to prevent the water in the water tank 200 from deteriorating, the water in the main tank body 210 is discharged to the outside through the drain pump 250 to reduce excessive accumulation in the main tank body 210. Water quality deterioration occurs.
  • the main tank body 210 may further be provided with a slow release box 260 filled with antibacterial materials.
  • the antibacterial material in the slow-release box 260 can play a slow-release antibacterial function for the water in the main tank 210, thereby improving the quality of water quality during the humidification process.
  • the silver ion bacteriostatic material in the conventional technology can be used, which will not be limited or repeated here.
  • the maintenance process is simplified.
  • the inside of the water tank 200 is used for water storage, and one end of the water tank 200 is provided with a plug portion 270, and the water tank 200 is also provided with a second rotatable locking portion 280; one end of the wet film assembly 300 is provided with There is a plug-fit portion 301, and the other end of the wet film assembly 300 is provided with a locking hole 302;
  • the wet film assembly is disposed in the water tank 200 , the plug portion 270 and the plug-fit portion 301 are plugged together, and the second locking portion 280 is used to rotate and be locked in the locking hole 302 .
  • the plug-fit part 301 of the wet film module 300 is first inserted into the plug-in part 270 provided at one end of the water tank 200 to achieve pre-positioning;
  • the membrane module 300 is put into the water tank 200 , and then the second locking part 280 is rotated to be locked in the locking hole 302 , so that the wet membrane module 300 is firmly and reliably installed in the water tank 200 .
  • the second locking portion 280 is first rotated to disengage from the locking hole 302 , and then the operator can pull up the wet film assembly 300 to disassemble the wet film assembly 300 from the water tank 200 .
  • the entire disassembly and assembly process does not require the use of tools, thereby facilitating on-site maintenance operations by the operator.
  • plug-in portion 270 and the plug-in matching portion 301 there may be various structural forms for the specific representation entities of the plug-in portion 270 and the plug-in matching portion 301 .
  • the plug-in portion 270 is the first slot provided in the water tank 200
  • the plug-fit portion 301 is the first plug-in tongue provided on the wet film assembly 300, and the first plug-in tongue is inserted into the first plug-in plug. in the slot.
  • the wet film assembly 300 is put into the water tank 200 obliquely, and the first insertion tongue is inserted into the first slot, so as to complete the pre-installation of the wet film assembly 300 into the water tank 200 . middle.
  • the plug-in portion 270 is a second plug tongue provided in the water tank 200
  • the plug-fit portion 301 is a second slot provided on the wet film assembly
  • the second plug tongue is inserted into the second plug-in tongue. in the slot.
  • the locking part can be in the form of a knob, and the locking can be achieved by turning the knob.
  • a support frame (not marked) is provided in the water tank 200 , a knob is used for the second locking part 280 , and one end of the knob is rotatably arranged on the support frame, and the support frame is set in the water tank 200 , the knob is used for rotation and is stuck in the locking hole 302 .
  • the knob is provided with a locking piece 2801 extending toward the outside, and the locking piece 2801 is inserted into the locking hole 302 . Specifically, by rotating the knob, the locking piece 2801 is rotated and inserted into the locking hole 302 , so that the knob is locked and fixed to the wet film assembly 300 .
  • the side portion of the knob is further provided with an arc-shaped guide surface 2802 , and the arc-shaped guide surface 2802 abuts on the wet film assembly 300 .
  • the arc-shaped guide surface 2802 guides the knob to rotate outside the wet film assembly 300 , and finally makes the knob tightly abut against the end of the wet film assembly 300 .
  • the arc-shaped guide surfaces 2802 are distributed on one side and corner of the knob.
  • the knob is provided with arc guide surfaces 2802 on the upper and lower sides of the locking piece 2801 respectively, and the arc guide surfaces 2802 arranged at the upper and lower positions of the locking piece 2801 can closely abut on the wet film assembly 300 to ensure the locking Stable and reliable.
  • the first locking portion 2003 described above can also be in the form of a knob, which is not limited or described here.
  • the humidification apparatus in order to reduce the frequency of disassembling and maintaining the humidification module, so as to reduce the maintenance cost, the humidification apparatus further includes a water shower module 500 .
  • the water shower module 500 is configured with a plurality of water shower holes 511 for downward water discharge.
  • the water shower module 500 is arranged on the upper part of the casing 100 and is located above the wet film module 300, and the water output from the water shower holes 511 is sprayed on the onto the wet film module and flow into the water tank 200 at the bottom.
  • the wet film module 300 is used for a period of time, a lot of dust and dirt will adhere to its surface.
  • the top of the assembly 300 is showered with water.
  • the water output from the shower module 500 flows onto the wet film 320 assembly 300 to clean the wet film assembly 300 .
  • the water shower module 500 can be used to additionally increase the water supply at the top, so as to increase the water content on the surface of the wet film module 300, thereby improving the humidification ability of the airflow, which is more conducive to improving the Humidification performance of the device.
  • the structural form of the water shower module 500 is specifically introduced as follows.
  • the shower module 500 includes:
  • Water shower plate 510 Water shower holes 511511 are arranged on the water shower plate 510;
  • the water shower cover 520 is provided with a water inlet pipe 521 on the water shower cover 520;
  • the water shower cover 520 is sealed on the water shower plate 510 and covers the forest water hole, and a water storage cavity is formed between the water shower plate 510 and the water shower cover 520 .
  • the water from the external water supply source is introduced into the water storage cavity through the water inlet pipe 521, and the water in the water storage cavity Then, a plurality of the forest water holes are formed on the surface of the water shower plate 510 to flow out and shower on the wet film module 300 , so as to perform water shower treatment on the wet film module 300 .
  • the shower module 500 further includes: a hanger 530 , the hanger 530 is arranged on the top of the housing 100 , and the shower plate 510 is arranged on the hanger 530 .
  • the shower module 500 it is installed and fixed on the top of the housing 100 through the hanger 530, the water shower plate 510 is fixed on the bottom of the hanger 530, and the water shower cover 520 is located between the water shower plate 510 and the hanger 530, so as to securely install the shower module 500 in the housing 100.
  • the water shower module 500 may further include: a retaining ring 501 , and the retaining ring 501 surrounds the periphery of the water shower plate 510 .
  • the baffle ring 501 is a part of the water shower module 500.
  • the baffle ring 501 can block the top of the wet film assembly 300 to prevent airflow from bypassing the top of the wet film assembly 300.
  • the baffle ring 501 also The water spilled out from the water shower plate 510 can be shielded, so as to avoid the occurrence of water leakage caused by the water spilling out everywhere during the water showering process.
  • the retaining ring 501 also surrounds the top periphery of the wet film assembly 300 to more effectively block the airflow to bypass the top of the wet film assembly 300.
  • the water output from the water spraying plate 510 can Spray directly on top of the wet film module 300.
  • an electric control valve 540 is also connected to the water inlet pipe 521.
  • the water inlet pipe 521 is connected to the external water supply source through the electric control valve, and then the electric control valve 540 is used to control the water inlet of the water inlet pipe 521. water operation.
  • the specific structure of the wet film assembly 300 may take the following forms.
  • the wet film assembly 300 includes:
  • the box body 310 a mounting cavity is formed in the box body 310, the surfaces of the box body 310 opposite to the air inlet 1001 and the air outlet 1002 are hollow structures respectively, the top of the box body 310 is an open structure, and the box body 310 is arranged in the water tank 200 middle;
  • wet film 320 the wet film 320 is located in the installation cavity.
  • the box body 310 is used for installing the wet film 320 , and the box body 310 is installed in the water tank 200 so that the bottom of the wet film 320 is immersed in the water in the water tank 200 .
  • the wet film 320 utilizes its own water absorption property to absorb the water in the water tank 200 and diffuse the water to the entire wet film 320, and then use the wet film 320 to humidify the air flowing therethrough.
  • the wet film assembly 300 further includes a water receiving tray 330 , the water receiving tray 330 is provided with a water permeable hole 331 , and the water receiving tray 330 is disposed on the top of the box body 310 .
  • the water output from the water shower module 500 is received by the water receiving tray 330, and the water permeable holes 331 arranged on the water receiving tray 330 are used to shower the bottom wet film 320 with water. It is more beneficial to avoid the serious splashing phenomenon caused by the water outputted by the water shower module 500 being directly showered on the wet film 320 .
  • the water receiving tray 330 can effectively receive the water of the water shower module 500 and disperse the distribution area of the water, so as to evenly shower the wet film 320 with water.
  • the water permeable holes 331 can be strip-shaped holes, and the strip-shaped holes extend along the length direction of the wet film 320 and are arranged at intervals, which is more conducive to evenly dispersing water; in addition, the bottom of the water receiving tray 330 is arranged side by side along the width of the wet film 320 There are multiple rows of water permeation holes 331 .
  • the humidification device In order to effectively reduce the occurrence of mildew inside the humidification device during use, so as to improve the air quality and user experience during use, the humidification device is improved as follows.
  • the drying module is activated to generate hot air, and the hot air can be used to dry the humidification module.
  • Most of the components in the equipment are kept in a dry state to effectively inhibit the growth of harmful microorganisms inside, and the air path of the central humidification device is air-dried to reduce the mold inside the central humidification device, improve the anti-mold effect, and improve the air quality. quality and user experience.
  • the humidification module includes:
  • a drainage pump is arranged in the water tank;
  • a humidification assembly is provided in the water tank and used for humidifying the air flowing through the air passage with the water in the water tank.
  • an inlet air humidity sensor and an outlet air humidity sensor are further provided in the housing, wherein the inlet air humidity sensor is arranged at the air inlet and is used to detect the air inlet humidity of the air inlet , the outlet air humidity sensor is arranged at the air outlet and used to detect the outlet air humidity of the air outlet.
  • the central humidifying device when the central humidifying device performs the anti-mildew operation, after the drain pump drains the water in the water tank, the drain pump is turned off, and the drying module is energized to prevent the water from the inlet and outlet.
  • the air entering the housing by the tuyere is heated, and the hot air is dried and passed through the humidification assembly to dry the humidification assembly and the air passage.
  • the humidity value detected by the outlet air humidity sensor is pw1
  • the humidity value detected by the inlet air humidity sensor is pw2
  • the water tank is further provided with a sustained-release box, and the sustained-release box is filled with bacteriostatic materials.
  • it further includes: an ultraviolet sterilization module, the ultraviolet sterilization module is disposed in the housing and is used to generate ultraviolet light to irradiate the humidification module and the air passage.
  • the ultraviolet sterilization module is close to the air outlet.
  • the ultraviolet sterilization module includes:
  • the installation bracket is provided with a plurality of installation holes
  • the LED lamp is arranged in the mounting hole and used to generate ultraviolet light.
  • the mounting bracket is provided on the upper part of the housing, an installation panel is provided on the mounting bracket obliquely, the mounting hole is provided on the mounting panel, and the LED light faces the humidification
  • the module is irradiated with UV light.
  • the humidification device includes a conventional housing 100 and the humidification module, the housing 100 is provided with an air inlet and an air outlet, and an air passage is formed between the air inlet 1001 and the air outlet 1002; the humidification device also includes a drying The drying module 600 is used to heat the air entering the housing 100 .
  • the humidification module is arranged in the casing 100
  • the drying module 600 is arranged on the casing 100 and is close to the air inlet 1001 .
  • the humidification module uses water to humidify the air flowing through it, and the water stored in the humidification module may deteriorate the water quality and cause moldy parts in the equipment.
  • the drying module 600 can be activated to dry the humidifying device, so as to ensure that most parts in the device are in a dry state, so as to effectively inhibit the growth of harmful microorganisms inside. .
  • the humidification module includes a water tank 200 and a wet film assembly 300 disposed on the water tank 200.
  • the water tank 200 contains water.
  • the drying module 600 is activated to heat the airflow entering the housing 100, and the hot air will quickly and effectively dry the components in the housing 100, avoiding the need for
  • the inside of the humidifier is kept in a humid state for a long time, which eliminates the favorable environment for the growth of microorganisms.
  • an inlet air humidity sensor 110 and an outlet air humidity sensor 120 are also provided in the housing 100, wherein the inlet air humidity sensor 110 is arranged at the air inlet 1001 and used together
  • the outlet air humidity sensor 120 is arranged at the air outlet 1002 and is used to detect the air outlet humidity of the air outlet 1002 .
  • the inlet air humidity sensor 110 and the outlet air humidity sensor 120 are used to detect the inlet air humidity and the outlet air humidity to control the wind speed.
  • the drying module 600 is controlled to start and stop with reference to the humidity values of the inlet air humidity sensor 110 and the outlet air humidity sensor 120 .
  • the central humidifying device When the central humidifying device performs the anti-mildew operation, after the drain pump 250 drains the water in the water tank 200, the drain pump 250 is turned off, and the drying module 600 is powered on to heat the air entering the housing 100 from the air inlet 1001, and the hot air Drying passes through the humidification assembly to dry the humidification assembly and the air passage.
  • the humidity value detected by the outlet air humidity sensor 120 is PW1, and the humidity value detected by the inlet air humidity sensor 110 is PW2; while the drying module 600 is energized for heating and drying, when PW2-PW1 ⁇ A, the drying is turned off Module 600.
  • the value of A may be less than 4% as required.
  • the antibacterial material filled in the slow-release box 260 can follow the water in the water tank 200 to be dispersed on the wet film assembly 300, and then use the antibacterial material in the water tank 200.
  • the bacterial material can inhibit the growth of harmful microorganisms on the wet film assembly 300 .
  • the silver ion antibacterial agent set in the water tank 200 can be continuously released to ensure that there is a sufficient concentration of silver ions in the waterway at all times. , continue to prevent the growth of microorganisms on the wading parts.
  • the drying module 600 is a conventional electric heating component such as an electric heating tube, an electric heating wire, and an electric heating plate disposed near the air inlet 1001 , which is not limited or described here.
  • the humidifying device in order to more effectively sterilize the air passage on the side of the air outlet 1002 of the housing 100, the humidifying device further includes:
  • the ultraviolet sterilization module 700 is arranged in the casing 100 and is used to generate ultraviolet light to irradiate the humidification module and the air passage.
  • the ultraviolet sterilization module 700 can be energized to generate ultraviolet rays, and the principle of ultraviolet sterilization can be used to comprehensively irradiate and sterilize the air passage and related components of the humidification equipment, so as to more effectively achieve bacteriostasis, kill air and Microorganisms on the inner surface of the air duct.
  • the ultraviolet sterilization module 700 can be arranged at a position close to the air outlet 1002 . Since the drying module 600 is arranged at the air inlet 1001, it can effectively ensure that the air path on the air inlet side of the windward side of the wet film module 300 can be completely dried during the drying process, and for the leeward side of the wet film module 300, There may be incomplete drying due to the short drying time and the limitation of the airflow path.
  • the ultraviolet sterilization module 700 near the air outlet 1002 is used to irradiate the leeward side of the wet film assembly 300 to achieve comprehensive and effective bacteriostasis.
  • the specific structure of the ultraviolet sterilization module 700 can be in the following form, and the ultraviolet sterilization module 700 includes:
  • Mounting bracket 701 the mounting bracket 701 is provided with a plurality of mounting holes (not marked);
  • LED lights 702 are provided in the mounting holes and used to generate ultraviolet light.
  • the LED lamp adopts a UVC germicidal lamp group, which can generate deep ultraviolet rays to achieve sterilization.
  • the ultraviolet light emitted by the LED lamp 702 should be arranged opposite to the direction of the airflow output, so as to reduce the ultraviolet radiation from the air outlet 1002 to the outside.
  • a mounting bracket 701 can be arranged on the upper part of the housing 100, a mounting panel (not marked) is obliquely provided on the mounting bracket 701, the mounting hole is provided on the mounting panel, and the LED light 702 illuminates toward the humidifying module. UV light.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Air Humidification (AREA)

Abstract

本申请公开了一种加湿设备,包括:外壳,所述外壳设置有进风口和出风口,所述外壳上还设置有安装插口;加湿模块,所述加湿模块包括水槽和湿膜组件,所述湿膜组件设置在所述水槽中;其中,所述水槽可插拔的安装在所述安装插口中,所述湿膜组件位于所述外壳中,所述湿膜组件用于对从所述进风口进入的空气进行加湿、且空气穿过所述湿膜组件加湿后从所述出风口输出。

Description

加湿设备
相关申请的交叉引用
本申请要求在2021年03月24日提交中国专利局、申请号为202110314159.0、发明名称为“中央加湿装置”,以及2021年03月24日提交中国专利局、申请号为202110314355.8、发明名称为“加湿设备”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及家用电器技术领域,尤其涉及一种加湿设备。
背景技术
加湿器是人们日常生活中常用的家用电器,而采用吊顶悬挂安装的中央加湿器因其加湿能力强,被广泛的推广使用。中央加湿器通常方案为吊顶暗藏安装,通过自来水供水,通过风管送风至房屋各个区域,一站式实现全屋加湿。
发明内容
本申请的一些实施例中,加湿设备,包括:
外壳,所述外壳设置有进风口和出风口,所述外壳上还设置有安装插口;
加湿模块,所述加湿模块包括水槽和湿膜组件,所述湿膜组件设置在所述水槽中;
其中,所述水槽可插拔的安装在所述安装插口中,所述湿膜组件位于所述外壳中,所述湿膜组件用于对从所述进风口进入的空气进行加湿、且空气穿过所述湿膜组件加湿后从所述出风口输出。
本申请的一些实施例中提供了中央加湿装置,包括:
外壳,所述外壳设置有进风口和出风口,所述进风口和所述出风口之间形成风路;
加湿模块,所述加湿模块用于加湿流经所述风路的空气;
烘干模块,所述烘干模块用于加热进入到所述外壳中的空气;
其中,所述加湿模块设置在所述外壳中,所述烘干模块设置在所述外壳上并靠近所述进风口。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例中所需 要使用的附图作简单地介绍,显而易见地,下面描述中的附图是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本申请一些实施例的结构示意图之一;
图2是本申请一些实施例的结构示意图之二;
图3是本申请一些实施例的爆炸图;
图4是本申请一些实施例的剖视图;
图5是本申请一些实施例的处于拆卸状态的结构示意图;
图6是本申请一些实施例的外壳的结构示意图之一;
图7是本申请一些实施例的外壳的结构示意图之二;
图8是本申请一些实施例的外壳的结构示意图之三;
图9是本申请一些实施例的端板的结构示意图;
图10是本申请一些实施例的隔板的结构示意图;
图11是本申请一些实施例的水槽的结构示意图之一;
图12是本申请一些实施例的水槽的结构示意图之二;
图13是本申请一些实施例的锁紧部的结构示意图;
图14是本申请一些实施例的湿膜组件的结构示意图;
图15是本申请一些实施例的湿膜组件与水槽的组装图;
图16是图15中A区域的局部放大示意图;
图17是图15中B区域的局部放大示意图;
图18是本申请一些实施例的淋水模块的结构示意图。
附图标记:
外壳100、前面板101、后面板102、顶板103、端板104、支撑板105、隔板106、密封垫107、导风板108、进风湿度传感器110、出风湿度传感器120。
内折边1000、进风口1001、出风口1002、悬挂连接部1003、安装插口1004、螺纹孔1005、立板1051、滑轨1052、引导部1053、限位配合部1054、弯折边1055、贯通口1061、第一筋板1062、第二筋板1063;
水槽200、装饰板201、滑动配合部202、限位部203、侧面板204、主槽体210、副槽体220、排水口230、隔断240、排水泵250、缓释盒260、插接部270、第二锁紧部280;
拉手2001、通孔2002、第一锁紧部2003、第一水位检测器2101、第二水位检测器2102、第三水位检测器2201、锁片2801、弧形导向面2802;
加湿部件300、插接配合部301、锁紧孔302、盒体310、湿膜320、接水盘330、透水孔331;
电控盒400;
淋水模块500、淋水板510、淋水孔511、淋水罩520、进水管521、挂架530、电控阀540、挡圈501;
烘干模块600;
紫外杀菌模块700、安装支架701、LED灯702。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。
如图1-图18所示,本申请的一些实施例提供一种加湿设备,包括外壳100、水槽200和加湿部件300。
本申请的一些实施例中,加湿部件300为湿膜组件。
本申请的一些实施例中,滑动配合部202为翻边。
本申请的一些实施例中,外壳100设置有进风口1001和出风口1002,而外壳100的上部为了满足吊挂安装的要求,外壳100的四角位置还设置有悬挂连接部1003。
外界的空气能够经由进风口1001进入到外壳100内,并最终从出风口1002输出,而加湿设备在安装时,则通过悬挂连接部1003吊挂安装在房间的顶部,其中,悬挂连接部1003的表现实体可以为吊耳、吊钩等结构,在此不做限制和赘述。
本申请的一些实施例中,为了方便操作人员现场拆装进行维护,则水槽200和湿膜组件300组装在一起形成加湿模块。同时,外壳100上还设置有安装插口1004;水槽200可插拔的安装在安装插口1004中,湿膜组件300位于外壳100中,湿膜组件300用于对从进风口1001进入的空气进行加湿、且空气穿过湿膜组件300加湿后从出风口1002输出。
在实际使用过程中,加湿设备通过外壳100上配置的悬挂连接部1003悬挂安装在房屋的顶部上,空气经由进风口1001进入到外壳100中,空气被湿膜组件300加湿处理后,加湿后的空气从出风口1002输出至外壳100的外部以调节室内的湿度。
而在使用一段时间后,对于水槽200中设置的湿膜组件300则需要进行拆卸清洗或更换。此时,操作人员仅需要将水槽200从安装插口1004中拉出,便可以使得湿膜组件300一同从外壳100中取出。
水槽200一方面作为供水源供湿膜组件300取水加湿,另一方面,水槽200还充当湿膜组件300,采用插拔的方式将水槽200连通湿膜组件300从外壳100上的安装插口1004中取出,更方便操作人员在房间的顶部空间进行操作,提高操作便利性。
本申请的一些实施例中,为了方便水槽200与外壳100之间连接和拆卸,外壳100位于安装插口1004的外侧设置有第一连接部,水槽200上设置有与所述第一连接部配合的所述第二连接部,所述第二连接部与所述第一连接部可拆卸的连接在一起。
具体的,所述第一连接部与所述第二连接部采用可拆卸的方式连接在一起,进而满足水槽200可拆卸的安装在外壳100上。其中,针对所述第一连接部与所述第二连接部的具体表现实体有多种结构形式。
例如:所述第一连接部和所述第二连接部卡装在一起,如所述第一连接部和第二连接部可以采用常规卡扣的方式进行连接。或者,所述第一连接部和所述第二连接部螺纹连接在一起,例如:可以在外壳100上围绕安装插口1004设置有多个螺纹孔1005,水槽200上设置有通孔2002,手拧螺栓(未标记)穿过通孔2002并螺纹连接在螺纹孔1005中。
本申请的一些实施例中,为了方便操作人员插拔安装水槽200,则将安装插口1004布置在外壳100的一端部,水槽200可侧向抽拉的安装在安装插口1004中。
具体的,通过将安装插口1004布置在外壳100的端部,水槽200则整体可以采用抽屉式结构,并在水槽200的一侧配置有拉手2001。这样,在组装货拆卸时,方便操作人员通过拉手2001来推拉水槽200,以实现水槽200的插拔组装,进而更方便操作人员进行操作。
本申请的一些实施例中,所述加湿设备还包括电控盒400,电控盒400中配置有电控板(未标记);所述电控板与所述加湿设备中的相关电器部件电连接,以控制电器部件的运行。
其中,为了提高连接使用可靠性,则电控盒400可转动的安装在外壳100的端部;水槽200的端部设置有第一锁紧部2003,第一锁紧部2003用于将电控盒400锁紧在水槽200的端部上。
具体的,在加湿设备正常使用过程中,电控盒400转动并贴靠在水槽200的端部,同时,利用第一锁紧部2003将电控盒400锁紧在水槽200的端部。这样,一方面可以对电控盒400的位置进行定位固定,另一方面,利用电控盒400限制水槽200从安装插口1004中脱离出。
同时,当需要拆卸维修加湿模块时,则解除第一锁紧部2003对电控盒400的限位锁止,并将电控盒400转动到水槽200的一侧;然后,拆开水槽200与外壳100之间的连接结构,便可以将水槽200连通湿膜组件300从外壳100中拆卸下。
本申请的一些实施例中,针对外壳100、水槽200、湿膜组件300的具体结构形式,具有多种结构形式,以下针对各个部件进行举例说明。
针对外壳100而言,其包括前面板101、后面板102、顶板103和端板104, 前面板101上设置有出风口1002,后面板102上设置有进风口1001,顶板103上设置有悬挂连接部1003。
其中,为了缩短拆卸过程中,水槽200的插拔距离,则可以在端板104的下端部设置有支撑板105;其中,前面板101和后面板102相对布置,端板104的一侧边与前面板101的侧边连接,端板104的另一侧边与后面板102的侧边连接,支撑板105沿外壳100长度方向延伸并分别与前面板101的底边和后面板102的底边连接,顶板103分别连接在前面板101、后面板102和端板104的顶部,外壳100远离端板104的端部形成安装插口1004。
相对应的,所述加湿模块包括水槽200和湿膜组件300,所述湿膜组件设置在水槽200上,水槽200的底部设置有装饰板201;
其中,所述加湿模块穿过安装插口1004插装到外壳100中,支撑板105支撑在水槽200的底部,且装饰板201与支撑板105拼接在一起。
在实际使用过程中,水槽200连通湿膜组件300经由安装插口1004插入到外壳100中,在水槽200插入过程中,直至装饰板201与支撑板105对接在一起,以使得水槽200组装到位。
而在拆卸过程中,操作人员拉动水槽200端部配置的拉手2001,以使得水槽200来带湿膜组件300从外壳100中拉出。而在拉出水槽200的过程中,水槽200移动至支撑板105的外边缘处即可全部拉出,这样,便可以有效的缩短水槽200在拆装过程中的移动距离,有效的减小了加湿模块整体的抽拉行程,减小维护所需空间以降低维护难度。
本申请的一些实施例中,支撑板105上设置有两个立板1051,立板1051上设置有滑轨1052;水槽200的两侧设置有滑动配合部202,滑动配合部202滑动设置在对应的滑轨1052上。
具体的,在拆装过程中,利用水槽200两侧形成的滑动配合部202与支撑板105上设置的滑轨1052相配合,以支撑水槽200相对于外壳100滑动,进而方便操作人员现场拆装维修。
本申请的一些实施例中,滑轨1052远离端板104的端部设置有倾斜朝下延伸的用引导部1053。
具体的,在装配水槽200的过程中,水槽200两侧的滑动配合部202能够经由倾斜布置的引导部1053向上滑动直至滑动到滑轨1052的平直面上。在引导部1053的引导作用下,更方便操作人员现场快速准确的组装。
而为了在水槽200滑动组装时,实现对水槽200的滑动位置进行预定位,滑动配合部202上设置有限位部203,滑轨1052上设置有限位配合部1054;在所述加湿模块安装到外壳100上后,所述限位板与限位配合部1054连接。
具体的,在水槽200的滑动配合部202沿着滑轨1052滑动过程中,利用限位部203和限位配合部1054的定位配合来实现对水槽200滑动位置的定位 操作。其中,限位部203可以为滑动配合部202上向下突出的定位凸起,限位配合部1054为滑轨1052上形成的定位凹槽,所述定位凸起位于所述定位凹槽中。
本申请的一些实施例中,为了更为有效的支撑水槽200,水槽200的一端部搭接在支撑板105上。具体的,在水槽200安装到位后,水槽200的一端部可以搭接在支撑板105,以通过支撑板105对水槽200进行支撑。
或者,装饰板201的边缘搭接在支撑板105的自由端部上。具体的,在水槽200安装到位后,装饰板201与支撑板105拼接在一起,并且,利用支撑板105的边缘来支撑装饰板201的边缘,一方面起到利用支撑板105对水槽200进行支撑,另一方面可以确保外壳100的整体底面外观平整。
其中,可以在支撑板105的自由端部设置有弯折边1055,装饰板201的边缘搭接在弯折边1055上。具体的,支撑板105的自由端部设置有朝下弯折边1055,弯折边1055将形成台阶面,而装饰板201的边缘则搭接在弯折边1055形成的台阶面上。
本申请的一些实施例中,为了方便牢固固定安装水槽200,前面板101和后面板102远离端板104的端部分别设置有内折边1000,水槽200的端部设置有侧面板204,侧面板204与内折边1000连接在一起。
具体的,在水槽200装入到外壳100中后,侧面板204与内折边1000连接在一起,以实现将水槽200牢固可靠的固定安装在外壳100上。
而为了方便后期操作人员拆装,内折边1000上开设有螺纹孔,侧面板204上设置有通孔,手拧螺栓穿过通孔2002并螺纹连接在螺纹孔1005中。具体的,螺纹孔将形成外壳100上布置的第一连接部,而插在通孔中的手拧螺栓则形成水槽200上设置的第二连接部。
本申请的一些实施例中,为了在使用过程中,减少水槽200中的水因气流影响而发生飞溅的情况,则还可以在外壳100中配置有隔板106。
具体的,进风口1001和出风口1002位于隔板106的上方,水槽200位于隔板106的下方,所述湿膜组件贯穿隔板106并位于出风口1002和进风口1001之间。
在实际使用过程中,外部气流经由进风口1001进入到外壳100中并吹向所述湿膜组件,而气流受底部隔板106的阻挡而不会流向底部的水槽200,这样,便可以有效的减少或避免因气流对水槽200中的水产生冲击而出现水花飞溅的现象,进而提高使用可靠性和用户体验性。
本申请的一些实施例中,为了方便湿膜组件300的安装,隔板106上设置有贯通口1061,所述湿膜组件穿过贯通口1061。
具体的,外壳100的一端部设置有安装插口1004,水槽200则采用抽屉式结构以插拔的方式安装在安装插口1004中,而在水槽200插装在安装插口 1004中后,水槽200上安装的湿膜组件300将从安装插口1004一同进入到外壳100中,湿膜组件300将穿过贯通口1061以露在进风口1001和出风口1002之间。
其中,贯通口1061为形成在隔板106上的缺口结构,所述缺口结构的开口朝向安装插口1004。具体的,贯通口1061为隔板106靠近安装插口1004端部上形成的缺口,在组装时,水槽200和湿膜组件300插入到安装插口1004中,湿膜组件300将插入到贯通口1061内,以方便操作人员将水槽200和湿膜组件300侧向滑动装入到外壳100中。
另外,由于为了方便滑动安装所述水箱,则在外壳100中设置有横向布置的滑轨1052,同时,水槽200的两侧设置有滑动配合部202,以通过滑动配合部202滑动安装在滑轨1052上。相对应的,利用滑动配合部202与隔板106在竖向方向上形成重叠区,更有效的阻挡气流进入到水槽200中,以避免产生水花飞溅的情况发生。
本申请的一些实施例中,隔板106上还设置有朝上延伸的第一筋板1062,第一筋板1062位于贯通口1061的靠近进风口1001的边缘。第一筋板1062朝上延伸以阻挡气流朝下流动,更有利于防止出现水花飞溅。
同时,隔板106上还设置有朝上延伸的第二筋板1063,第二筋板1063位于贯通口1061的靠近出风口1002的边缘。具体的,第二筋板1063朝上延伸布置,在出风口对底部水槽200中的水进行阻挡,其中,所述湿膜组件的迎风面与第一筋板1062的距离小于所述湿膜组件的背风面与第二筋板1063的距离。
另外,第一筋板1062和第二筋板1063分别包括多段筋条,相邻两段所述筋条之间形成间隔。具体的,第一筋板1062和第二筋板1063采用分段式设计,当有水滴落到隔板106上后,水能够经由相邻两段所述筋条之间形成的间隔流入到下方的水槽200中。
本申请的一些实施例中,为了提高加湿效率以提高用户体验性,则在外壳100中设置有挡风部;其中,水槽200位于外壳100的底部,湿膜组件300竖立布置在外壳100中,所述挡风部设置在湿膜组件300的外侧并用于阻挡由进风口1001输入的气流从湿膜组件300的外侧输出至出风口1002。
具体的,在使用过程中,由于湿膜组件300插在水槽200中,气流无法绕过湿膜组件300的底部,而湿膜组件300的两侧部和顶部则通过挡风部进行遮挡,这样,便可以使得进入到外壳100中的气流最大程度的穿过湿膜组件300进行加湿,以有效的提高加湿效率。
与此同时,由于从进风口1001进入到外壳100中的气流经过湿膜组件300加湿后并从出风口1002输出的过程中,对于进风口1001与湿膜组件300之间形成的高压区,并且,在出风口1002和湿膜组件300之间形成低压区。
湿膜组件300的迎风侧所形成的高压区将形成相对干燥的区域,而湿膜组件300的背风侧所形成的低压区形成相对湿润的区域,这样,在设备进行防腐处理时,便可以进行针对性的处理,更有利于降低制造成本。
其中,所述挡风部布置在所述湿膜组件的顶部和两侧部,以有效的对湿膜组件300外露在水槽200外部的部分进行有效的遮挡。在一些实施例中,对于所述挡风部的具体表现实体,可以采用多种结构形式,以下举例进行说明。
所述挡风部包括布置在外壳100顶部的挡圈501,挡圈501沿外壳100的长度方向布置,挡圈501围绕所述湿膜组件的顶部外周。
具体的,布置在湿膜组件300顶部的挡圈501能够对湿膜组件300的顶部区域进行遮挡,以减少气流绕过湿膜组件300的顶部输出。
另外,外壳100在第一端部设置有安装插口1004,并将水槽200设计为抽屉式结构从安装插口1004中插入,则相对应的,所述挡风部还包括密封垫107,密封垫107竖向布置在外壳100的第二端部上,所述湿膜组件抵靠在密封垫107上;其中,外壳100的第一端部与第二端部相对布置。
在将水槽200插入到安装插口1004中后,湿膜组件300将抵靠在密封垫107上。而密封垫107竖向布置,密封垫107可以对湿膜组件300靠近外壳100的第二端部的端面进行密封处理,进而减少气流绕过湿膜组件300的端部输出。
而为了减少气流绕过湿膜组件300靠近外壳100的第一端部的端面,所述挡风部还包括导风板108,导风板108竖向布置在外壳100中并靠近外壳100的第一端部,导风板108的一端部设置在外壳100上并位于进风口1001的外侧,导风板108的另一端部延伸至湿膜组件300处。
具体的,气流经由进风口1001进入到外壳100中后,气流将经由导风板108导向至湿膜组件300上,进而减少气流绕过湿膜组件300的端部输出。其中,沿气流流动方向,湿膜组件300靠近安装插口1004的端部与导风板108之间形成重叠区,重叠区能够有效的减少气流外溢,并利用导风板108最大程度的引导气流朝向湿膜组件300中的中间区域流动。
本申请的一些实施例中,外壳100中设置有隔板106来遮盖住水槽200,同时,水槽200两侧配置的滑动配合部202,一方面与外壳100中的滑轨1052配合的实现滑动,另一方面,滑动配合部202与隔板106在竖向方向上也形成重叠区,以阻挡气流绕过水槽200的底部泄气。
通过在外壳100中设置所述挡风部,所述挡风部布置在所述湿膜组件的外侧,利用所述挡风部能够阻挡进入到外壳100中的气流从所述湿膜组件的外侧输出,以确保从出风口1002输出的气流被所述湿膜组件有效的加湿处理,进而提高加湿效率和用户体验性。另外,在所述挡风部的遮挡作用下,使得所述湿膜组件的迎风面和背风面形成分别高压区和低压区两部分,同时,高 压区和低压区相对应的实现了干/湿分离的区域设置,可以极大地方便对不同区域部件采取不同的防腐、防潮、防水措施和要求,有效地降低设计复杂度和选材、选型成本。
本申请的一些实施例中,对于水槽200而言,其一方面用于盛水,另一方面还用于安装固定湿膜组件300。而在给水槽200供水过程中,为了减少出现水槽200中的水溢流至外壳100中的现象发生,则针对水槽200进行如下结构改进。
水槽200中设置有两个相互独立的主槽体210和副槽体220,水槽200上设置有用于向主槽体210供水的进水口(未标记),水槽200上还设置有用于排放副槽体220储水的排水口230,主槽体210与副槽体220之间还设置有溢流区,所述溢流区的高度低于水槽200的侧壁高度。
具体的,水槽200中形成两个独立的主槽体210和副槽体220,其中,湿膜组件300安装在主槽体210中。而在使用过程中,当因故障等原因导致进水口一直向主槽体210中注入水时,主槽体210中的水位逐渐上涨并超过溢流区的上部边缘。
主槽体210中的水将溢流到副槽体220中,而进入到副槽体220中的水将直接从排水口230排出至外壳100的外部,排水口230上在安装时连接有排水管(未图示),排水管倾斜朝下延伸,以使得水引导流到设定的区域外排。
这样,便可以有效的避免因主槽体210中的水位过高而出现水溢流至外壳100中的情况发生,可以有效的提高设备的整体使用可靠性,并优化用户体验性。
本申请的一些实施例中,针对主槽体210与副槽体220之间形成的溢流区,则可以在水槽200中设置有隔断240,隔断240将水槽200分隔为主槽体210和副槽体220。
具体的,在主槽体210的水位过高时,主槽体210中的水能够漫过隔断240溢流到副槽体220中。其中,隔断240的上部边缘的高度低于水槽200的侧壁高度,隔断240的上部边缘形成所述溢流区。或者,隔断240上开设有溢流口,所述溢流口形成所述溢流区。
本申请的一些实施例中,为了准确的检测主槽体210的水位,以控制主槽体210的注水量,主槽体210中设置有第一水位检测器2101和第二水位检测器2102,第一水位检测器2101的水位检测高度高于第二水位检测器2102的水位检测高度。
具体的,在向主槽体210注水过程中,第二水位检测器2102用于检测主槽体210中的最低水位以触发外部供水源供水,而第一水位检测器2101则用于检测主槽体210中的最高水位,以触发外部供水源断水。
另外,为了提高使用可靠性,副槽体220中设置有第三水位检测器2201。
具体的,当第一水位检测器2101发生故障导致外部水源一直给主槽体210注水,主槽体210中的水溢流到副槽体220中。而第三水位检测器2201设置在副槽体220中并用于检测副槽体220内的水位高度,这样,当副槽体220中的排水口230因污物被堵塞时,则可以通过第三水位检测器2201检测副槽体220中的水位高于设定水位时,触发外部供水源断水。
其中,第一水位检测器2101、第二水位检测器2102和第三水位检测器2201的具体表现实体,可以采用常规技术中的水位传感器、水浮子等液位检测器件,在此不做限制和赘述。
本申请的一些实施例中,主槽体210中设置有排水泵250,排水泵250用于排出主槽体210中的水。
具体的,在长时间不使用加湿设备的情况下,为了避免水槽200中的水变质,通过排水泵250将主槽体210中的水向外排出,以减少主槽体210中积存过多的水而发生水质变质的情况发生。
与此同时,为了提高水槽200在使用过程中的抑菌能力,还可以在主槽体210中还设置有缓释盒260,缓释盒260中填充有抑菌材料。
具体的,在使用过程中,缓释盒260中的抑菌材料能够对主槽体210中的水起到缓释抑菌的功能,进而提高加湿过程中水质的质量。
另外,对于抑菌材料的使用,则可以采用常规技术中的银离子抑菌材料,在此不做限制和赘述。
本申请的一些实施例中,对于水槽200和湿膜组件300形成的加湿模块而言,为了方便两者快速拆装,以简化维护的过程。
对于水槽200而言,水槽200内部用于储水,并且,水槽200的一端设置有插接部270,水槽200中还设置有可转动的第二锁紧部280;湿膜组件300的一端设置有插接配合部301,湿膜组件300的另一端部设置有锁紧孔302;
其中,所述湿膜组件设置在水槽200中,插接部270与插接配合部301插装在一起,第二锁紧部280用于转动并卡在锁紧孔302中。
具体的,在实际组装拆卸加湿模块过程中,先以组装为例,湿膜组件300的插接配合部301先插入到水槽200的一端设置的插接部270中,以实现预定位;将湿膜组件300放入到水槽200中,然后,再转动第二锁紧部280以卡在锁紧孔302中,以使得湿膜组件300牢固可靠的安装在水槽200中。
而在拆卸过程中,则先转动第二锁紧部280以脱离出锁紧孔302,然后,操作人员向上拉起湿膜组件300,便可以将湿膜组件300从水槽200中拆卸下。整个拆装过程无需利用工具,进而方便操作人员现场维修操作。
其中,对于插接部270和插接配合部301的具体表现实体,可以有多种结构形式。
例如:插接部270为设置在水槽200中的第一插槽,插接配合部301为设 置在湿膜组件300上的第一插舌,所述第一插舌插在所述第一插槽中。
具体的,在实际操作过程中,湿膜组件300倾斜放入到水槽200中,并使得所述第一插舌插在所述第一插槽中,以完成湿膜组件300预装到水槽200中。
或者,插接部270为设置在水槽200中的第二插舌,插接配合部301为设置在所述湿膜组件上的第二插槽,所述第二插舌插在所述第二插槽中。
本申请的一些实施例中,针对上述锁紧部的具体表现实体,可以采用多种结构形式,以下举例说明。
为了方便操作,锁紧部可以采用旋钮的方式,通过转动旋钮以实现锁紧。例如:在水槽200中设置有支撑架(未标记),第二锁紧部280采用旋钮,所述旋钮的一端部可转动的设置在所述支撑架上,所述支撑架设置在水槽200中,所述旋钮用于转动并卡在锁紧孔302中。
其中,为了提高操作便利性,所述旋钮设置有朝向外侧延伸的锁片2801,锁片2801插入到锁紧孔302中。具体的,通过转动旋钮,以使得锁片2801旋转插入到锁紧孔302中,以使得旋钮锁紧固定湿膜组件300。
本申请的一些实施例中,所述旋钮的侧部还设置有弧形导向面2802,弧形导向面2802抵靠在湿膜组件300上。具体的,在装配时,转动旋钮的过程中,弧形导向面2802将引导旋钮在湿膜组件300的外侧转动,并最终使得旋钮紧密的贴靠在湿膜组件300的端部。其中,弧形导向面2802则分布在旋钮的一侧边角位置。
同时,对于锁片2801而言,其垂直于弧形导向面2802向外延伸。并且,所述旋钮在锁片2801的上下分别布置有弧形导向面2802,布置在锁片2801的上下位置处的弧形导向面2802能够紧密的贴靠在湿膜组件300上,以确保锁止稳固可靠。
而上述记载的第一锁紧部2003,也可以采用旋钮的方式,在此不做限制和赘述。
本申请的一些实施例中,为了减少拆卸维护加湿模块的频率,以降低维护成本,则加湿设备还包括淋水模块500。
淋水模块500配置有多个用于向下出水的淋水孔511,淋水模块500设置在外壳100的上部并位于湿膜组件300的上方,淋水孔511输出的水淋洒在所述湿膜组件上并流入到底部的水槽200中。
具体的,在实际使用过程中,湿膜组件300在使用一段时间后,其表面上会粘附较多的灰尘污物,加湿设备则定期启动淋水模块500,利用淋水模块500在湿膜组件300的顶部进行淋水操作。淋水模块500输出的水流淌至湿膜320组件300上,以对湿膜组件300进行清洗。
另外,在用户需要加大室内湿度的情况下,还可以利用淋水模块500额外 在顶部增加供水,以增大湿膜组件300表面的含水量,进而提升对气流的加湿能力,更有利于提高设备的加湿性能。
其中,对于淋水模块500的结构形式,具体介绍如下。淋水模块500包括:
淋水板510,淋水板510上布置有淋水孔511511;
淋水罩520,淋水罩520上设置有进水管521;
其中,淋水罩520密封设置在淋水板510上并遮盖住所述林水孔,淋水板510与淋水罩520之间形成储水腔体。
具体的,当需要通过淋水模块500对底部的湿膜组件300进行淋水操作时,则通过进水管521将外部供水源的水引入到储水腔体中,而储水腔体中的水则经由淋水板510表面形成若干所述林水孔流出并淋洒在湿膜组件300上,以实现对湿膜组件300进行淋水处理。
本申请的一些实施例中,淋水模块500还包括:挂架530,挂架530设置在外壳100的顶部,淋水板510设置在挂架530上。
具体的,对于淋水模块500而言,其通过挂架530安装固定在外壳100的顶部,而淋水板510固定在挂架530的底部,淋水罩520则位于淋水板510和挂架530之间的位置,以实现将淋水模块500牢固的安装在外壳100中。
另外,对于淋水模块500还可以包括:挡圈501,挡圈501围绕在淋水板510的外围。
具体的,挡圈501作为淋水模块500的一部分,一方面挡圈501能够对湿膜组件300的顶部进行遮挡,以阻挡气流绕过湿膜组件300的顶部流出,另一方面挡圈501还能对淋水板510淋散出的水进行遮挡,以避免淋水过程中,水淋散到各处而出现漏水的情况发生。
其中,挡圈501还围绕湿膜组件300的顶部外周,以更有效的阻挡气流绕过湿膜组件300的顶部流过,同时,在淋水过程中,从淋水板510上输出的水能够直接淋洒在湿膜组件300的顶部。
另外,为了控制进水管521的通断,进水管521上还连接有电控阀540,进水管521通过电控阀与外界的供水源连接,进而利用电控阀540来控制进水管521的进水操作。
本申请的一些实施例中,对于湿膜组件300而且,其具体结构可以采用如下形式。具体的,湿膜组件300包括:
盒体310,盒体310中形成有安装腔体,盒体310与进风口1001和出风口1002相对的表面分别为镂空结构,盒体310的顶部为敞开式结构,盒体310设置在水槽200中;
湿膜320,湿膜320位于所述安装腔体中。
具体的,盒体310用于安装湿膜320,盒体310安装在水槽200中,以使得湿膜320的底部浸没在水槽200的水中。湿膜320利用自身吸水特性,吸 收水槽200中的水并使得水扩散至整个湿膜320,进而利用湿膜320对流经的气流进行加湿。
本申请的一些实施例中,湿膜组件300还包括接水盘330,接水盘330上设置有透水孔331,接水盘330设置在盒体310的顶部。
在使用过程中,在需要进行淋水处理时,从淋水模块500输出的水被接水盘330接收,并利用接水盘330上布置的透水孔331向底部的湿膜320进行淋水。更有利于避免淋水模块500输出的水直接淋到湿膜320上而出现交严重的水花飞溅现象。同时,利用接水盘330能够有效的接收淋水模块500的水,并分散水的分布区域,以均匀的向湿膜320淋水。
其中,透水孔331可以采用条形孔,条形孔沿湿膜320的长度方向延伸并间隔布置,更有利于均匀的分散水;另外,接水盘330的底部沿湿膜320的宽度并排布置有多排透水孔331。
为了在使用过程中,有效的减少加湿设备内部出现发霉,以提高使用过程中的空气质量和用户体验性,对加湿设备进行如下改进。
本申请的一些实施例中,通过增加烘干模块,在加湿结束后,启动烘干模块以产生热风,利用热风能够将加湿模块吹干,同时,还可以将外壳中的其他部件吹干,以使得设备中的大多数部件处于干燥的状态,以有效的抑制内部滋生有害微生物,实现对中央加湿装置的风路进行风干处理,以减少中央加湿装置内部发霉,提高了防霉效果,以提高空气质量和用户体验性。
本申请一些实施例中,所述加湿模块包括:
水槽,所述水槽中设置有排水泵;
加湿组件,所述加湿组件设置在所述水槽中并用于利用所述水槽中的水加湿流经所述风路的空气。
本申请一些实施例中,所述外壳中还设置有进风湿度传感器和出风湿度传感器,其中,所述进风湿度传感器布置在所述进风口处并用于检测所述进风口的进风湿度,所述出风湿度传感器布置在所述出风口处并用于检测所述出风口的出风湿度。
本申请一些实施例中,在所述中央加湿装置执行防霉操作时,所述排水泵排干所述水槽中的水后,关闭所述排水泵,所述烘干模块通电对从所述进风口进入到所述外壳中的空气加热,热空气烘干穿过所述加湿组件以烘干所述加湿组件和所述风路。
本申请一些实施例中,所述出风湿度传感器检测的湿度值为pw1,所述进风湿度传感器检测的湿度值为pw2;
在所述中央加湿装置执行防霉操作过程中,当pw2-pw1≤a时,关闭所述烘干模块。
本申请一些实施例中,所述水槽中还设置有缓释盒,所述缓释盒中填充有抑菌材料。
本申请一些实施例中,还包括:紫外杀菌模块,所述紫外杀菌模块设置在所述外壳中并用于产生紫外光照射所述加湿模块和所述风路。
本申请一些实施例中,所述紫外杀菌模块靠近所述出风口。
本申请一些实施例中,所述紫外杀菌模块包括:
安装支架,所述安装支架上设置有多个安装孔;
LED灯,所述LED灯设置在所述安装孔中并用于产生紫外光。
本申请一些实施例中,所述安装支架设置在所述外壳的上部,所述安装支架上倾斜设置有安装面板,所述安装面板上设置有所述安装孔,所述LED灯朝向所述加湿模块方向照射紫外光。
如图1-图4所示,加湿设备包括常规的外壳100和所述加湿模块,外壳100设置有进风口和出风口,进风口1001和出风口1002之间形成风路;加湿设备还包括烘干模块600,烘干模块600用于加热进入到外壳100中的空气。其中,所述加湿模块设置在外壳100中,烘干模块600设置在外壳100上并靠近进风口1001。
具体的,在实际使用过程中,加湿模块利用水来加湿流经的空气,而加湿模块中存水则会出现水质变坏而导致设备中的部件发霉。而通过增加烘干模块600,在加湿设备运行过程中,可以启动烘干模块600对加湿设备进行烘干处理,以确保设备中的大多数部件处于干燥的状态,以有效的抑制内部滋生有害微生物。
其中,加湿模块包括水槽200和设置在水槽200上的湿膜组件300,在加湿过程中,水槽200中盛有水。而在加湿结束后,则先将水槽200中的水排掉,然后,启动烘干模块600对进入到外壳100中的气流加热,热风将快速有效的将外壳100中的部件吹干,避免了加湿设备内部长期处于潮湿状态,消除了微生物滋生的有利环境。
其中,在使用过程中,为了精确的控制出风的湿度,则在外壳100中还设置有进风湿度传感器110和出风湿度传感器120,其中,进风湿度传感器110布置在进风口1001处并用于检测进风口1001的进风湿度,出风湿度传感器120布置在出风口1002处并用于检测出风口1002的出风湿度。
具体的,在加湿设备运行过程中,利用进风湿度传感器110和出风湿度传感器120来检测进风湿度和出风湿度,以控制风速大小。与此同时,在烘干防霉操作时,参考进风湿度传感器110和出风湿度传感器120的湿度值来控制烘干模块600启停。
在所述中央加湿装置执行防霉操作时,排水泵250排干水槽200中的水后, 关闭排水泵250,烘干模块600通电对从进风口1001进入到外壳100中的空气加热,热空气烘干穿过所述加湿组件以烘干所述加湿组件和所述风路。
其中,出风湿度传感器120检测的湿度值为PW1,进风湿度传感器110检测的湿度值为PW2;而在烘干模块600通电加热烘干过程中,当PW2-PW1≤A时,关闭烘干模块600。其中,根据需要,A的取值可以小于4%。
本申请的一些实施例中,当在水槽200中配置缓释盒260的情况下,缓释盒260中填充的抑菌材料能够跟随水槽200中的水分散到湿膜组件300上,进而利用抑菌材料可以抑制湿膜组件300上滋生有害微生物。
并且,对于水槽200中配置缓释盒260后,以缓释盒260内填充银离子抗菌剂为例,水槽200中设置的银离子抗菌剂可持续释放,保证水路中时刻有足够浓度的银离子,持续阻止涉水部件上微生物的滋生。
对于烘干模块600的具体表现实体,可以有多种形式。例如:烘干模块600为设置在进风口1001附近的电加热管、电加热丝、电加热板等常规的电加热部件,在此不做限制和赘述。
本申请的一些实施例中,为了对外壳100的出风口1002侧的风路进行更有效的杀菌,则加湿设备还包括:
紫外杀菌模块700,紫外杀菌模块700设置在外壳100中并用于产生紫外光照射所述加湿模块和所述风路。
具体的,在使用过程中,紫外杀菌模块700通电能够产生紫外线,利用紫外线杀菌的原理来对加湿设备的风路以及相关部件进行全面的照射杀菌,以更有效的实现抑菌,杀灭空气及风道内表面的微生物。
其中,对于紫外杀菌模块700的安装位置,可以将紫外杀菌模块700布置在靠近出风口1002的位置。由于进风口1001处布置有烘干模块600,进而可以有效的确保风路在湿膜组件300迎风面的进风侧在烘干过程实现全面彻底的干燥处理,而对于湿膜组件300背风侧,有可能因烘干时间较短以及气流流动路径的限制而出现烘干不彻底,利用出风口1002附近紫外杀菌模块700对湿膜组件300背风侧进行照射,以实现全面有效的抑菌。
本申请的一些实施例中,对于紫外杀菌模块700的具体结构,可以采用如下形式,紫外杀菌模块700包括:
安装支架701,安装支架701上设置有多个安装孔(未标记);
LED灯702,LED灯702设置在所述安装孔中并用于产生紫外光。
具体的,LED灯采用UVC杀菌灯组,能够产生深紫外线来实现杀菌,而LED灯702则通过安装支架701固定安装在外壳100内部,并使得LED灯702靠近出风口1002布置。
其中,LED灯702发出的紫外光要与气流输出的方向相对布置,以减少紫外线从出风口1002照射到外部。为此,可以安装支架701设置在外壳100 的上部,安装支架701上倾斜设置有安装面板(未标记),所述安装面板上设置有所述安装孔,LED灯702朝向所述加湿模块方向照射紫外光。
以上实施例仅用以说明本申请的技术方案,而非对其进行限制;尽管参照前述实施例对本申请进行了详细的说明,对于本领域的普通技术人员来说,依然可以对前述实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或替换,并不使相应技术方案的本质脱离本申请所要求保护的技术方案的精神和范围。

Claims (10)

  1. 一种加湿设备,其特征在于,包括:
    外壳,所述外壳设置有进风口和出风口,所述外壳上还设置有安装插口;
    加湿模块,所述加湿模块包括水槽和湿膜组件,所述湿膜组件设置在所述水槽中;
    其中,所述水槽可插拔的安装在所述安装插口中,所述湿膜组件位于所述外壳中,所述湿膜组件用于对从所述进风口进入的空气进行加湿、且空气穿过所述湿膜组件加湿后从所述出风口输出。
  2. 根据权利要求1所述的加湿设备,其特征在于,所述外壳位于所述安装插口的外侧设置有第一连接部,所述水槽上设置有与所述第一连接部配合的所述第二连接部,所述第二连接部与所述第一连接部可拆卸的连接在一起。
  3. 根据权利要求2所述的加湿设备,其特征在于,所述第一连接部和所述第二连接部卡装在一起;或者,所述第一连接部和所述第二连接部螺纹连接在一起。
  4. 根据权利要求1所述的加湿设备,其特征在于,所述安装插口布置在所述外壳的一端部,所述水槽可侧向抽拉的安装在所述安装插口中。
  5. 根据权利要求4所述的加湿设备,其特征在于,所述水槽上还设置有排水泵,所述排水泵用于排出所述水槽中的水;
    所述加湿设备还包括:
    电控盒,所述电控盒中配置有电控板;其中,所述电控板与所述排水泵电连接。
  6. 根据权利要求5所述的加湿设备,其特征在于,所述电控盒可转动的安装在所述外壳的端部;所述水槽的端部设置有锁紧部,所述锁紧部用于将所述电控盒锁紧在所述水槽的端部上。
  7. 根据权利要求4所述的加湿设备,其特征在于,所述外壳中设置有横向布置的滑轨,所述水槽的两侧设置有滑动配合部,所述滑动配合部滑动设置在对应的所述滑轨上。
  8. 根据权利要求1所述的加湿设备,其特征在于,所述湿膜组件包括:
    盒体,所述盒体中形成有安装腔体,所述盒体与所述进风口和所述出风口相对的表面分别为镂空结构,所述盒体设置在所述水槽中;
    湿膜,所述湿膜位于所述安装腔体中。
  9. 根据权利要求1所述的加湿设备,其特征在于,所述进风口与所述出风口相对布置,所述湿膜组件位于所述进风口与所述出风口之间。
  10. 根据权利要求1-9任一项所述的加湿设备,其特征在于,还包括:
    淋水模块,所述淋水模块配置有多个用于向下出水的淋水孔,所述淋水模 块设置在所述外壳的上部并位于所述湿膜组件的上方。
PCT/CN2021/098916 2021-03-24 2021-06-08 加湿设备 WO2022198802A1 (zh)

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