WO2024040740A1 - 空气调节设备 - Google Patents

空气调节设备 Download PDF

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Publication number
WO2024040740A1
WO2024040740A1 PCT/CN2022/127759 CN2022127759W WO2024040740A1 WO 2024040740 A1 WO2024040740 A1 WO 2024040740A1 CN 2022127759 W CN2022127759 W CN 2022127759W WO 2024040740 A1 WO2024040740 A1 WO 2024040740A1
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WO
WIPO (PCT)
Prior art keywords
section
housing section
positioning
housing
equipment module
Prior art date
Application number
PCT/CN2022/127759
Other languages
English (en)
French (fr)
Inventor
王云亮
张宝生
管志能
Original Assignee
芜湖美智空调设备有限公司
广东美的制冷设备有限公司
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 CN202211014045.5A external-priority patent/CN117663241A/zh
Priority claimed from CN202222228268.3U external-priority patent/CN218915104U/zh
Application filed by 芜湖美智空调设备有限公司, 广东美的制冷设备有限公司 filed Critical 芜湖美智空调设备有限公司
Publication of WO2024040740A1 publication Critical patent/WO2024040740A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/0003Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station characterised by a split arrangement, wherein parts of the air-conditioning system, e.g. evaporator and condenser, are in separately located units
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/02Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing
    • F24F1/028Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing characterised by air supply means, e.g. fan casings, internal dampers or ducts
    • F24F1/0287Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing characterised by air supply means, e.g. fan casings, internal dampers or ducts with vertically arranged fan axis
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/02Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing
    • F24F1/03Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing characterised by mounting arrangements
    • F24F1/0317Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing characterised by mounting arrangements suspended from the ceiling

Definitions

  • the present application relates to the field of air conditioning, and in particular to an air conditioning equipment.
  • fresh air fans are ceiling-mounted indoors.
  • the fresh air fans are all integral structures.
  • the integral structure is heavier. Due to the limitations of its own structure, the fresh air fans are very inconvenient to operate during production, transportation and installation.
  • one purpose of this application is to propose an air-conditioning equipment that facilitates the assembly of each equipment module during the production and assembly process, reduces the difficulty of the assembly process of the air-conditioning equipment, and improves the assembly efficiency; and facilitates transfer and transportation during the transportation process.
  • Each section of equipment module is placed to facilitate the transportation of air-conditioning equipment; during the installation process, multiple sections of equipment modules can be lifted to the top of the room multiple times to reduce the work intensity of the installer and facilitate the installer to install the air-conditioning equipment; during the maintenance process, It is not necessary to disassemble the air conditioning equipment as a whole, which facilitates the maintenance of the air conditioning equipment.
  • the air conditioning equipment according to the embodiment of the present application is suitable for ceiling-mounted installation indoors and includes: multiple sections of equipment modules connected in sequence along a first direction, the first direction being parallel to the horizontal direction, and two adjacent sections of equipment modules Modules are detachably connected.
  • the air conditioning equipment of the embodiment of the present application by arranging multiple sections of equipment modules connected in sequence, and setting two adjacent equipment modules to be detachably connected, it is convenient to turn over each section of equipment module during the production and assembly process, and facilitate the installation of each section of equipment.
  • Modules are assembled to reduce the difficulty of the assembly process of air-conditioning equipment and improve assembly efficiency; in the transportation process, it is convenient to transfer and place each section of equipment modules to facilitate the transportation of air-conditioning equipment; in the installation process, multiple sections of equipment modules can be divided into multiple sections It is hoisted to the top of the room to reduce the work intensity of the installer and facilitate the installer to install the air-conditioning equipment; during the maintenance process, it is not necessary to disassemble the entire air-conditioning equipment, which facilitates the maintenance of the air-conditioning equipment.
  • the multiple sections of equipment modules include a first section of equipment module and a second section of equipment module.
  • the first section of equipment module includes a first housing section and is disposed in the first housing section.
  • fan assembly the second section equipment module includes a second housing section and a heat pump system located in the second housing section, the first housing section and the second housing section are detachably connect.
  • the fan assembly is adapted to be installed into the first housing section from top to bottom when the first housing section is inverted
  • the heat pump system is adapted to be installed into the second housing section from top to bottom when the second housing section is in the upright position.
  • the first housing section includes a first main housing and a first maintenance plate
  • the bottom surface of the first main housing has a first maintenance opening
  • at least part of the fan assembly can
  • the first maintenance plate is detachably provided in the first main housing, and the first maintenance plate is detachably covered in the first maintenance opening.
  • the second housing section includes a second main housing and a second repair panel, and the side of the second main housing has one or more along the second main housing.
  • Second maintenance openings are arranged at circumferential intervals.
  • the number of the second maintenance plates is the same as the number of the second maintenance openings and corresponds one to one.
  • the second maintenance plates are detachably covered on the corresponding ones. Second maintenance port.
  • the upper and lower ends of the first housing section and the upper and lower ends of the second housing section are respectively positioned by a first positioning structure and a second positioning structure.
  • the lower section of the body section and the lower end of the second housing section are connected through a first fastener, and the outer side wall of the first housing section and the outer side wall of the second housing section are connected through a first connecting piece.
  • the first positioning structure includes a first positioning protrusion formed on the upper end of the first housing section and a first positioning groove formed on the upper end of the second housing section.
  • the first positioning groove has a first opening facing downwards, and the first positioning protrusion is adapted to be inserted upward into the first positioning groove through the first opening.
  • the second positioning structure includes a first positioning plate provided at the lower end of the first housing section and a second positioning plate provided at the lower end of the second housing section,
  • the first positioning plate and the second positioning plate are arranged oppositely, and the surface of the first positioning plate facing the second positioning plate includes a first positioning section, a first pulley, and a first positioning section connected in sequence from top to bottom.
  • the surface of the second positioning plate facing the first positioning plate includes a second positioning section, a second tensioning section and a second support section connected in sequence from top to bottom.
  • the first positioning section and the second positioning section are both perpendicular to the first direction and abutting each other, and the first tensioning section and the second tensioning section are both facing adjacent in the direction from top to bottom.
  • the direction of the second housing section extends obliquely and abuts against each other, the first support section and the second support section extend in the horizontal direction, and the second support section supports and abuts against the first support section; wherein , the first tensioning section and the second tensioning section are connected through the first fastener.
  • the first connection part includes a first connection part, a first clamping part and a second clamping part, and the first connection part is located between the first housing section and the second clamping part.
  • the outside of the housing section is connected to the first housing section and the second housing section through second fasteners, and a first clamping hole is formed on the outer wall of the first housing section, and the A second clamping hole is formed on the outer wall of the second housing section.
  • the first connecting part is parallel to the first direction.
  • the first clamping part and the first connecting part are arranged at an obtuse angle and inserted into the first connecting part.
  • the first clamping hole, the second clamping part and the first connecting part are arranged at a right angle and inserted into the second clamping hole.
  • the multiple-stage equipment modules further include a third-stage equipment module, and the second-stage equipment module is connected between the first-stage equipment module and the third-stage equipment module,
  • the third section equipment module includes a third housing section and a filter assembly disposed in the third housing section, and the third housing section is detachably connected to the second housing section.
  • the filter assembly is adapted to be installed to the third housing from top to bottom when the third housing section is inverted. within the body segment.
  • the third housing section includes a third main housing and a third maintenance plate, the bottom surface of the third main housing has a third maintenance port, and the filter assembly Detachably provided in the third main housing, the third maintenance plate detachably covers the third maintenance opening.
  • connection method between the first housing section and the second housing section is a first connection method
  • the third housing section and the second housing section are connected in a first connection method
  • the connection mode of the segments is a second connection mode
  • the second connection mode is the same as the first connection mode
  • each section of the equipment module has a mounting lifting eye.
  • each section of the equipment modules includes a first air duct section and a second air duct section arranged along the second direction and adapted to be isolated from each other.
  • the second direction is perpendicular to the first direction
  • the first air duct sections of the multiple equipment modules are connected in sequence to form a first air duct
  • the second air duct sections of the multiple equipment modules are connected in sequence. Communicated to form a second air duct
  • outdoor air is suitable to enter the room through the first air duct
  • indoor air is suitable to be discharged to the outdoors through the second air duct.
  • Figure 1 is a perspective view of an air conditioning device according to some embodiments of the present application.
  • Figure 2 is an enlarged view of point A in Figure 1;
  • Figure 3 is an enlarged view of B in Figure 1;
  • Figure 4 is an exploded view of the air conditioning equipment in Figure 1;
  • Figure 5 is a top view of the air conditioning equipment in Figure 1;
  • Figure 6 is a cross-sectional view along line C-C in Figure 5;
  • Figure 7 is an enlarged view of D in Figure 6;
  • Figure 8 is an enlarged view of E in Figure 6;
  • Figure 9 is an enlarged view of F in Figure 6;
  • Figure 10 is an enlarged view of G in Figure 6;
  • Figure 11 is a top view of the air conditioning device in Figure 1, in which the first top plate, the second top plate and the third top plate are all hidden;
  • Figure 12 is a perspective view of the air conditioning device in Figure 1 from another perspective, in which both the first bottom plate and the third bottom plate are hidden;
  • Figure 13 is an enlarged view of H in Figure 12;
  • Figure 14 is a perspective view of the air conditioning device in Figure 1 from another perspective, in which both the first bottom plate and the third bottom plate are hidden;
  • Figure 15 is an enlarged view of K in Figure 14;
  • Figure 16 is a perspective view of the first section of the equipment module in Figure 1;
  • Figure 17 is a perspective view of the first segment equipment module in Figure 1 from another perspective;
  • Figure 18 is a bottom view of the first section of the equipment module in Figure 1, in which the first base plate is hidden;
  • Figure 19 is a perspective view of the second section of the equipment module in Figure 1;
  • Figure 20 is a perspective view of the second stage equipment module in Figure 1 from another perspective;
  • Figure 21 is a bottom view of the second section of the equipment module in Figure 1, in which the second base plate is hidden;
  • Figure 22 is a perspective view of the second stage equipment module in Figure 1, in which the second main housing of the second stage equipment module is hidden;
  • Figure 23 is a perspective view of the second stage equipment module in Figure 22 from another perspective;
  • Figure 24 is a perspective view of the third section equipment module in Figure 1;
  • Figure 25 is a perspective view of the third section equipment module in Figure 1 from another perspective;
  • Figure 26 is a bottom view of the third section of the equipment module in Figure 1, in which the third base plate is hidden;
  • FIG. 27 is a perspective view of the first connecting member in FIG. 3 .
  • Air conditioning equipment 100. Air conditioning equipment;
  • First shell section 11. First main shell; 111. First top plate; 112. First bottom plate; 113. First side plate; 1131. First card hole; 1132. Second air inlet; 1133 , the first air outlet; 1134, the first matching hole; 114, the first installation port; 115, the first maintenance port; 116, the first air duct section; 117, the second air duct section; 118, sealed end; 119, open end;
  • the first positioning plate 141.
  • the first positioning section 142.
  • the first tensioning section 143.
  • the first support section 144.
  • Second positioning plate 361. Second positioning section; 362. Second tensioning section; 363. Second support section;
  • the fourth positioning plate 371. The fourth positioning section; 372. The fourth tensioning section; 373. The fourth support section;
  • First connecting piece 701. First connecting part; 7011. First connecting hole; 7012. Second connecting hole; 702. First clamping part; 703. Second clamping part;
  • the air conditioning device 100 according to the embodiment of the present application is described below with reference to the accompanying drawings.
  • the air-conditioning equipment 100 is suitable for ceiling-mounted installation indoors, and the air-conditioning equipment 100 includes multi-section equipment modules, and the multi-section equipment modules are along the first direction (refer to the accompanying drawings e1 direction in ) are connected in sequence, the first direction is parallel to the horizontal direction, and the two adjacent sections of equipment modules are detachably connected.
  • each section of equipment module can be independently assembled during the production and assembly process, because the multi-section equipment modules are connected sequentially along the first direction. , the size of each section of equipment module in the first direction is smaller, and the weight of each section of equipment module is lighter, which makes it easier to turn over each section of equipment module, facilitate the assembly of each section of equipment module, and improve the assembly efficiency.
  • each section of the module can be assembled independently, when assembling one section of the multi-section equipment module, it can avoid the need for other sections of equipment modules to be turned over during the assembly process, causing this section of equipment module to rotate multiple times, reducing the air conditioning equipment 100 reduce the difficulty of the assembly process and improve production efficiency.
  • each equipment module In the transportation process, multiple equipment modules can be packaged and transported separately. Since the size of each equipment module in the first direction is smaller, the weight of each equipment module is lighter, which facilitates transportation and placement of each equipment module, and facilitates air handling. Conditioning device 100 for transport.
  • this equipment module can be disassembled and then inspected; when the remaining equipment modules When one of the equipment modules fails, all the equipment modules between this equipment module and the equipment module at one end of the air conditioning equipment 100 in the first direction can be disassembled, and there is no need to remove this equipment module along the other side in the first direction. Remove the device module on the side. In this way, it is not necessary to disassemble the air conditioning equipment 100 as a whole, which facilitates the maintenance of the air conditioning equipment 100 .
  • the air conditioning equipment 100 of the embodiment of the present application by arranging multiple sections of equipment modules connected in sequence, and setting two adjacent equipment modules to be detachably connected, it is convenient to turn over each section of equipment module during the production and assembly process, and to facilitate the installation of each section.
  • the equipment module is assembled to reduce the difficulty of the assembly process of the air-conditioning equipment 100 and improve the assembly efficiency; in the transportation link, it is convenient to transfer and place each piece of equipment module to facilitate the transportation of the air-conditioning equipment 100; in the installation link, it can be divided into multiple parts
  • the multi-section equipment module is hoisted to the top of the room, reducing the work intensity of the installer and making it easier for the installer to install the air-conditioning equipment 100; during the maintenance process, it is not necessary to disassemble the air-conditioning equipment 100 as a whole, which facilitates the maintenance of the air-conditioning equipment 100.
  • each section of equipment module has a mounting lifting eye 90.
  • a mounting bracket can be provided between the ceiling and the air conditioning equipment 100.
  • the installation bracket and the installation lifting lugs 90 are connected through fasteners to fix each section of the equipment module relative to the ceiling.
  • Each section of equipment module can be hoisted indoors through its corresponding mounting lifting lugs 90 to achieve independent installation of each section of equipment module.
  • the mounting lifting lugs 90 can be in contact with the bottom of the mounting bracket, the fixing member can be a fastener, and the mounting lifting lugs 90 are detachably connected to the mounting bracket through the fixing parts.
  • the installation lifting lugs 90 can also be spaced apart from the installation bracket in the up and down direction.
  • the fixings can be hanging ropes. The installation lifting lugs 90 are suspended from the installation bracket through the fixing parts, and a certain maintenance space is reserved between the air conditioning equipment 100 and the ceiling. , where the hanging rope can be a steel cable or a steel bar.
  • the installation lifting lugs 90 can provide hanging points for the corresponding equipment modules.
  • the assembly personnel can hang the driving sling on the installation lifting lugs 90.
  • the corresponding equipment module can be suspended by lifting the installation lifting lugs 90, flipping this section of equipment module, or transporting this section of equipment module to a designated location.
  • the installation lifting lugs 90 can provide hanging points for the corresponding equipment modules, making it easy to flip and transport each section of equipment module, so that the assembly personnel can easily flip over each section of equipment module, so that Transport personnel can easily transport each section of equipment modules, improving the assembly efficiency of air handling modules and improving transportation efficiency.
  • each section of equipment modules includes a first air duct section 116 and a second air duct.
  • Section 117, the first air duct section 116 and the second air duct section 117 are arranged along the second direction (refer to the e2 direction in the drawing), and the first air duct section 116 and the second air duct section 117 are separated from each other.
  • the two directions are perpendicular to the first direction, the first air duct sections 116 of the multi-section equipment modules are connected in sequence to form the first air duct, and the second air duct sections 117 of the multi-section equipment modules are connected in sequence to form the second air duct 82.
  • the outdoor air is suitable for After entering the room through the first air duct, the indoor air is suitable to be discharged to the outdoors through the second air duct 82 .
  • the air-conditioning equipment 100 can drive the indoor air to flow through the first air duct sections 116 of the multi-section equipment module sequentially in the direction from indoor to outdoor, and discharge indoor stale air from the second air duct 82 to the outdoors.
  • the air conditioning device 100 can drive the outdoor fresh air to flow through the first air inlet 5133, the first air duct and the first air outlet 1133 in the direction from outdoor to indoor, and blow the outdoor fresh air into the room from the second air duct 82, thereby improving
  • the indoor air environment allows users to breathe fresh and healthy air indoors.
  • one of the two equipment modules located at opposite ends of the air conditioning equipment 100 in the first direction has A first air inlet 5133 and a second air outlet 5132
  • the other of the two equipment modules located at opposite ends of the air conditioning device 100 in the first direction has a first air inlet 1132 and a first air outlet 1133
  • the first The air duct is suitable for connecting the first air inlet 5133 and the first air outlet 1133
  • the second air duct 82 is suitable for connecting the first air inlet 1132 and the second air outlet 5132.
  • the first air inlet 5133 is connected with the outdoors, and the first air outlet 1133 is connected to the room, the first air inlet 1132 is connected to the room, and the second air outlet 5132 is connected to the outside.
  • the air conditioning equipment 100 when the air conditioning equipment 100 is a two-stage type, there are two equipment modules.
  • the two ends of the two equipment modules along the first direction are the sealed end 118 and the open end 119 respectively.
  • the open ends 119 of the two equipment modules are suitable for Butt together.
  • the first air duct sections 116 of the two equipment modules are connected to each other
  • the second air duct sections 117 of the two equipment modules are connected to each other
  • the air duct sections of one of the two equipment modules are connected to each other.
  • the sealed end 118 has a first air inlet 5133 and a second air outlet 5132
  • the sealed end 118 of the other one of the two equipment modules has a first air inlet 1132 and a first air outlet 1133.
  • the air-conditioning equipment 100 when the air-conditioning equipment 100 is a three-stage type, there are three equipment modules.
  • the equipment module located in the middle of the air-conditioning equipment 100 has open ends 119 at both ends along the first direction, and the remaining two equipment modules are open ends 119 along the first direction.
  • the two ends in one direction are the sealed end 118 and the open end 119 respectively.
  • the open end 119 of one of the remaining two equipment modules is butted with the open section 119 of one end of the middle equipment module, and the open end 119 of the other of the remaining two equipment modules is connected with the open section 119 of the other end of the middle equipment module.
  • Section 119 docking when the air-conditioning equipment 100 is a three-stage type, there are three equipment modules.
  • the equipment module located in the middle of the air-conditioning equipment 100 has open ends 119 at both ends along the first direction, and the remaining two equipment modules are open ends 119 along the first direction.
  • the two ends in one direction are the sealed end 118 and the
  • the sealed end 118 of one of the remaining two equipment modules has a first air inlet 5133 and a second air outlet 5132, and the sealed end 118 of the other of the remaining two equipment modules has a first air inlet 1132 and a first outlet. tuyere1133.
  • the air conditioning device 100 can drive the indoor air to flow through the first air inlet 1132, the second air duct 82 and the second air outlet 5132 in sequence, and discharge the indoor air from the second air outlet 5132 to the outdoors.
  • the air conditioning device 100 can drive the outdoor fresh air to flow through the first air inlet 5133, the first air duct and the first air outlet 1133 in sequence, and blow the outdoor fresh air into the room from the first air outlet 1133, thereby improving the indoor air environment and allowing users to You can breathe fresh, healthy air indoors.
  • the multi-section equipment module includes a first section equipment module 10 and a second section equipment module 20.
  • the first section equipment module 10 includes a first housing. Section 1 and fan assembly 2, the fan assembly 2 is located in the first housing section 1, the second section equipment module 20 includes the second housing section 3 and the heat pump system 4, the heat pump system 4 includes a compressor 41, the heat pump system 4 is equipped with In the second housing section 3, the compressor 41 is disposed in the second air duct section 117, and the first housing section 1 and the second housing section 3 are detachably connected.
  • the independent assembly of the fan assembly 2 and the heat pump system 4 can be achieved.
  • the installation of the fan assembly 2 The process can be independent of the installation process of the heat pump system 4 . This makes the installation method of the fan assembly 2 more flexible, facilitates the optimization of the installation process of the fan assembly 2, facilitates the installer to install the fan assembly 2, and improves the installation efficiency.
  • the fan assembly 2 when installing the fan assembly 2 to the first casing section 1, the fan assembly 2 can be installed into the first casing section 1 from top to bottom when the first casing section 1 is upright, or it can also be installed in the first casing section 1. When a casing section 1 is turned upside down, the fan assembly 2 is installed into the first casing section 1 from top to bottom, thereby making the installation method of the fan assembly 2 more flexible.
  • the second equipment module 20 can be placed flexibly according to the size of the transportation space.
  • the second equipment module 20 can be placed upright, upside down, or sideways.
  • the second-stage equipment module 20 facilitates the transportation of the second-stage equipment module 20.
  • the first section of equipment module 10 and the second section of equipment module 20 can be lifted respectively.
  • the second section of equipment module 20 is smaller in size and lighter in weight, making it easier for the installer to lift the second-stage equipment module 20, and to facilitate the installer to control the inclination angle of the second-stage equipment module 20 during the lifting process and level the second-stage housing module.
  • the installation difficulty is relatively simple, and the second stage shell module can be used to improve the installation efficiency.
  • the heat pump system 4 includes a compressor, a first heat exchanger assembly 42 and a second heat exchanger assembly 43.
  • the first heat exchanger assembly 42 is provided in the first air duct section 116 of the second section equipment module 20.
  • the second heat exchanger assembly 43 is disposed in the second air duct section 117 of the second section equipment module 20 to cool (or heat) the air flowing through the first air duct section 166, thereby cooling (or heating) ) is blown into the room to realize the adjustment of the indoor ambient temperature by the air conditioning device 100.
  • the second section equipment module 20 may also include a humidification component 8.
  • the humidification component 8 is provided in the first air duct section 116 and is located on the downstream side of the second heat exchanger component 43.
  • the humidification component 8 may include a wet film and a water tank. During the installation process, the humidification component 8 also needs to be leveled to ensure the normal use of the humidification component 8.
  • the humidification component 8 is installed in the second-stage equipment module 20. The installer can level the second-stage equipment module 20 once and move the heat pump The system 4 and the humidification component 8 are both leveled, which facilitates the installer to level the heat pump system 4 and the humidification component 8, thereby improving the installation efficiency of the air conditioning equipment 100.
  • the fan assembly 2 is adapted to be used when the first housing section 1 is inverted.
  • the heat pump system 4 is installed into the first housing section 1 from top to bottom, and the heat pump system 4 is suitable for being installed into the second housing section 3 from top to bottom when the second housing section 3 is in the upright position.
  • first housing section 1 When the first housing section 1 is inverted, install the fan assembly 2 into the first housing section 1 from top to bottom. This makes it easier to install the fan assembly 2 in the first housing section 1.
  • the production efficiency of the first section equipment module 10 can be improved.
  • the heat pump system 4 When the second housing section 3 is in the upright position, the heat pump system 4 is installed into the second housing section 3 from top to bottom. This facilitates the installation of the heat pump system 4 in the second housing section 3 and improves the height of the second section. Production efficiency of equipment module 20.
  • the air conditioning equipment 100 includes the first section equipment module 10 and the second section equipment module 20
  • the fan assembly 2 and the heat pump system 4 are respectively arranged in the first housing section 1 and the second housing section 3, so that the second section equipment module 10 and the second section equipment module 20 can be realized.
  • Independent assembly of one section of equipment module 10 and second section of equipment module 20 In the production process, the installation process of installing the fan assembly 2 is not affected by the installation process of installing the heat pump system 4, so that the fan assembly 2 can be installed from top to bottom to the first housing section 1 when the first housing section 1 is inverted. Inside.
  • the second housing section 3 includes a second top plate 311 and a second bottom plate 312.
  • the second top plate 311 and the second bottom plate 312 are opposite and spaced apart in the up and down direction.
  • the second housing section 3 is formed with a second installation opening 314.
  • the second installation opening 314 is opposite to the second bottom plate 312 , and the second top plate 311 covers the second installation opening 314 .
  • the first housing section 1 includes a first top plate 111 and a first bottom plate 112.
  • the first top plate 111 and the first bottom plate 112 are arranged oppositely in the up and down direction.
  • the first housing section 1 is formed with a first installation opening 114.
  • the first installation opening 114 is opposite to the first top plate 111 , and the first bottom plate 112 is sealed in the first installation opening 114 .
  • the maintenance personnel can disassemble the first bottom plate 112 from the bottom of the air conditioning equipment 100, and then observe the fan assembly 2 through the first installation port 114 and perform maintenance on the fan assembly 2. This facilitates the maintenance personnel to perform maintenance on the fan assembly 2. Overhaul. Moreover, during installation, it is not necessary to reserve additional inspection space above the first section of equipment module 10, thereby reducing the space occupied by the air conditioning equipment 100.
  • the upright position of the first housing section 1 means: the direction in which the first top cover and the first bottom plate 112 of the first housing section 1 are placed up and down are consistent with the installation of the air conditioning device 100.
  • the first top cover of the rear first housing section 1 is placed in the same direction as the first bottom plate 112 .
  • the inversion of the first housing section 1 means that the direction in which the first top cover and the first bottom plate 112 of the first housing section 1 are placed up and down is the same as the first top cover of the first housing section 1 after the air conditioning device 100 is installed. It is opposite to the direction in which the first bottom plate 112 is placed up and down.
  • the first housing section 1 includes a first main housing 11 and a first maintenance plate 12, and the bottom surface of the first main housing 11 has a The first maintenance opening 115 is detachably covered by the first maintenance plate 12 .
  • the first maintenance port 115 can be the first installation port 114
  • the first maintenance plate 12 can be the first bottom plate 112 .
  • the maintenance personnel can first remove the first maintenance plate 12 from the first main housing 11, observe the fan assembly 2 through the first maintenance opening 115, and inspect the fan assembly 2 through the first maintenance opening 115. Perform maintenance (such as cleaning dust, troubleshooting fan assembly 2). After the maintenance is completed, the removed part of the fan assembly 2 can be put back into the first main housing 11 through the maintenance opening, and the first maintenance plate 12 is covered with the first maintenance opening 115 .
  • the fan assembly 2 By providing the first maintenance port 115 and detachably disposing the first maintenance plate 12 at the first maintenance port 115, when the fan assembly 2 is being inspected, the fan assembly 2 can be inspected through the first maintenance opening 115, and there is no need to install the second maintenance port 115.
  • One section of the equipment module 10 can be disassembled as a whole, which is simple and convenient for maintenance personnel to repair the fan assembly 2 .
  • the fan assembly 2 is opposite to the first maintenance opening 115. At least part of the fan assembly 2 is detachably provided in the first main housing 11. At least part of the fan assembly 2 can be taken out from the first maintenance opening 115. At least part of the fan assembly 2 is Parts can be installed into the first main housing 11 from the first maintenance port 115 .
  • the fan assembly 2 is arranged opposite to the maintenance port, which facilitates maintenance personnel to disassemble the fan assembly 2 through the first maintenance opening 115 and facilitates maintenance personnel to inspect the fan.
  • the fan assembly 2 may include a fan and a volute.
  • the fan is detachably disposed in the volute.
  • the volute includes a first volute and a second volute.
  • the first volute is connected to the inner top wall of the first main housing 11 connected
  • the second volute is detachably connected to the lower side of the first volute
  • the fan is connected to the inner top wall of the first main housing 11; wherein both the second volute and the fan can be taken out from the first maintenance port 115 .
  • the maintenance personnel can first remove the first maintenance plate 12 from the first main housing 11, observe the fan assembly 2 through the first maintenance opening 115, and remove the fan assembly 2 through the first maintenance opening 115. At least part of it is taken out from the first maintenance port 115. For example, only the second volute can be removed from the first volute, or the second volute and the fan can be taken out from the first maintenance port 115, and the fan assembly 2 can be inspected. Maintenance (such as cleaning dust, troubleshooting fan assembly 2). This eliminates the need to take out the entire fan assembly 2 from the casing, making it easier for maintenance personnel to inspect the fan.
  • the second housing section 3 includes a second main housing 31 and a second maintenance panel 33.
  • the side of the second main housing 31 has one or more along the
  • the second maintenance openings 315 are arranged at circumferential intervals on the two main housings 31.
  • the number of the second maintenance plates 33 is the same as the number of the second maintenance openings 315 and corresponds one to one.
  • the second maintenance plates 33 are detachably covered.
  • the corresponding second maintenance port 315 can be detachably covered on the second maintenance opening 315 through fasteners, and the second maintenance plate 33 can be detachably covered on the second maintenance opening 315 through a buckle structure.
  • the side surfaces of the second main housing 31 refer to the surfaces on both sides of the second main housing 31 along the first direction and the surfaces on both sides of the second main housing 31 along the second direction.
  • both ends of the second-section main housing along the first direction are open ends 119.
  • the second-section main housing may also include an open end 119 along the first direction.
  • the second maintenance plate 33 When inspecting the heat pump system 4 , the second maintenance plate 33 can be detached from the second housing section 3 first, and then the heat pump system 4 can be observed through the second maintenance port 315 and the heat pump system 4 can be inspected.
  • the second maintenance port 315 is provided on the side of the second main housing 31. The maintenance personnel can remove the second maintenance plate 33 in the horizontal direction without occupying the top space of the second section equipment module 20 before installing the air conditioning equipment. 100 , there is no need to reserve additional maintenance space above the second stage equipment module 20 , thereby reducing the space occupied by the air conditioning equipment 100 .
  • the second housing section 3 may also include a frame 32, the second main housing 31 covers the outside of the frame 32, and the heat pump system 4 is fixed on the frame 32.
  • the second main housing 31 includes a second top plate 312, a second bottom plate 312 and two second side plates 313.
  • the second top plate 312 is covered above the frame 32, the second bottom plate 312 is located on the lower side of the frame 32, and the second The bottom plate 312 is connected to the frame 32 , and the two second side plates 313 are respectively provided at both ends of the frame 32 in the second direction, and the two second side plates 313 are both connected to the frame 32 .
  • the second maintenance plate 33 may be the second side plate 313 .
  • the heat pump system 4 is fixed on the frame 32.
  • the frame 32 provides support to the heat pump system 4.
  • the structure of the frame 32 is not affected and the second shell can not be damaged.
  • the overall mechanical structure of section 3 enables the second maintenance plate 33 to be detachable and has a simple structure.
  • the upper end of the first housing section 1 and the upper end of the second housing section 3 are positioned through the first positioning structure, and the lower end of the first housing section 1 and the second housing section 3 are positioned.
  • the lower end of the second housing section 3 is positioned through the second positioning structure, the lower end of the first housing section 1 and the lower end of the second housing section 3 are connected through a first fastener, and the outer side wall of the first housing section 1 and the second The outer side walls of the two housing sections 3 are connected through the first connecting piece 70 .
  • the second section equipment module 20 When installing the air conditioning equipment 100, the second section equipment module 20 can be hoisted and positioned relative to the ceiling first, and then the first section equipment module 10 can be lifted. With the second section equipment module 20 as a reference, the first positioning structure and the third section equipment module 20 can be used as a reference.
  • the two positioning structures position the first housing section 1 relative to the second housing section 3, position the first section equipment module 10 relative to the second section equipment module 20, and then use the first fastener to position the first section equipment module 10 relative to each other.
  • the second section equipment module 20 is fixed, and the first connecting piece 70 is used to connect the outer side walls of the first housing section 1 and the second housing section 3 together.
  • the installer when installing the air conditioning equipment 100, it is convenient for the installer to position the first housing section 1 relative to the second housing section 3, and to position the first section equipment module 10 relative to the second section.
  • the equipment module 20 is positioned to facilitate installation of the air conditioning equipment 100 by the installer.
  • first fastener to connect the first housing section 1 and the second housing section 3, and a first connecting piece 70 to connect the outer side wall of the first housing section 1 and the outer side wall of the second housing section 3, it is possible to Fix the first housing section 1 relative to the second housing section 3 at multiple positions in the up and down direction, and connect the first housing section 1 and the second housing section 3 together reliably and tightly along the first direction to prevent Air leakage occurs at the connection between the first housing section 1 and the second housing section 3, ensuring the overall performance of the air conditioning device 100.
  • the first positioning structure includes a first positioning protrusion 13 and a first positioning groove 34.
  • the first positioning protrusion 13 is formed on the upper end of the first housing section 1
  • the first positioning groove 34 is formed at the upper end of the second housing section 3.
  • the first positioning groove 34 has a first opening facing downwards, and the first positioning protrusion 13 is adapted to be inserted upward into the first positioning groove 34 through the first opening.
  • the air conditioning equipment 100 When installing the air conditioning equipment 100, you can first position the second section equipment module 20 relative to the ceiling, then lift the first section equipment module 10, and use the second section equipment module 20 as a reference to move the first positioning protrusion 13 in the up and down direction. Align the first positioning groove 34, then push the second segment equipment module 20 upward, push the first positioning protrusion 13 into the first positioning groove 34, and the first positioning groove 34 cooperates with the first positioning protrusion 13, that is The first housing section 1 is positioned relative to the second housing section 3, and the first section equipment module 10 is positioned relative to the second module.
  • the first positioning groove 34 is provided in the second housing section 3, and the first opening of the first positioning groove 34 is set downward. After the second section equipment module 20 is positioned relative to the ceiling, it is convenient for the installer to move the first positioning protrusion. Lift 13 is pushed into the first positioning slot from bottom to top from the first opening, which facilitates the installer to position the first section of equipment module 10 relative to the second module, making installation easy.
  • the first positioning protrusion 13 is located on the side of the first housing section 1 facing the second housing section 3
  • the first positioning groove 34 is located on the side of the second housing section 3 facing the first housing section. 1 side; a first guide surface 342 and a first positioning surface 343 are formed in the first positioning groove 34.
  • the first positioning surface 343 is opposite to the first guide surface 342 in the first direction.
  • the first guide surface 342 is in The first positioning surface 343 is a plane extending in the vertical direction.
  • the first positioning protrusion 13 is formed with a first positioning mating surface 131 and a first guide mating surface 132.
  • the first positioning mating surface 131 abuts the first positioning surface 343 in the first direction.
  • the first guide surface 342 is in the first direction.
  • the first guide matching surface 132 is in contact with the first guide matching surface 132 , and the first guide matching surface 132 is suitable for sliding along the first guide surface 342 .
  • the first guide surface 342 is inclined toward the second housing section 3.
  • the first guide surface 342 is tilted toward the second housing section 3.
  • the guide surface 342 can abut against the first guide surface 342 , and by continuing to push the first positioning protrusion 13 , the first positioning protrusion 13 can slide along the first guide surface 342 toward the first positioning groove 34 , and the first positioning protrusion 13 can be accurately inserted into the first positioning groove 34 .
  • the first positioning matching surface 131 is abutted against the first positioning surface 343, which has a simple structure and is easy to install.
  • the first guide surface 342 When the first guide surface 342 contacts the first guide mating surface 132 in the first direction, with the first guide surface 342 as a reference, the first guide surface 342 can exert a force perpendicular to the first guide mating surface 132 on the first guide mating surface 132 .
  • the guide surface 342 extends in a direction and faces the force of the first guide matching surface 132 .
  • first guide surface 342 is inclined toward the second housing section 3, and the first opening is larger.
  • the inclination angle ⁇ of the first guide surface 342 may range from 30° to 60°.
  • the inclination angle ⁇ of the first guide surface 342 may be 30°, 35°, 40°, 45°, 50°, 55°. or 60°.
  • the first guide surface 342 can provide a larger tightening force for the first guide mating surface 132, so that the first positioning mating surface 131 can be reliably and tightly moved along the first direction.
  • the first housing section 1 is positioned reliably and closely relative to the second housing section 3 along the first direction, and the first section equipment module 10 is reliably and closely positioned relative to the second section equipment module. 20 positioning.
  • both the first positioning protrusion 13 and the first positioning groove 34 are folded structures, which can make the forming process of the first positioning protrusion 13 and the first positioning groove 34 simpler, reduce the difficulty of the processing technology, and reduce production costs. cost.
  • the second positioning structure includes a first positioning plate 14 and a second positioning plate 36.
  • the first positioning plate 14 is provided at the lower end of the first housing section 1.
  • Two positioning plates 36 are provided at the lower end of the second housing section 3 , and the first positioning plate 14 and the second positioning plate 36 are arranged oppositely.
  • the first positioning plate 14 is provided on the side of the first housing section 1 facing the second housing section 3
  • the second positioning plate 36 is provided on the side of the second housing section 3 facing the first housing section 1 .
  • the surface of the first positioning plate 14 facing the second positioning plate 36 includes a first positioning section 141, a first tensioning section 142 and a first support section 143.
  • the first positioning section 141, the first tensioning section 142 and the first support section Sections 143 are connected in sequence from top to bottom.
  • the surface of the second positioning plate 36 facing the first positioning plate 14 includes a second positioning section 361, a second tensioning section 362 and a second support section 363.
  • the second positioning section 361, the second tensioning section 362 and the second support section Sections 363 are connected in sequence from top to bottom.
  • the first positioning section 141 and the second positioning section 361 are both perpendicular to the first direction, and the first positioning section 141 and the second positioning section 361 abut each other.
  • the first tensioning section 142 and the second tensioning section 362 both extend obliquely in the direction from top to bottom toward the direction adjacent to the second housing section 3 , and the first tensioning section 142 and the second tensioning section 362 are mutually opposite to each other.
  • the first support section 143 and the second support section 363 extend in the horizontal direction, and the second support section 363 is supported and abutted against the first support section 143; wherein, the first tension section 142 and the second tension section 362 connected via the first fastener.
  • the second positioning structure can be made to relatively position the first housing section 1 relative to the second housing section 3 in the first direction more accurately.
  • Section 3 is positioned relatively and is easy to install.
  • the second support section 363 is supported and abutted against the first support section 143 , the second support section 363 is located above the first support section 143 , and the second positioning plate 36 is located above the first positioning plate 14 .
  • the first positioning plate 14 is abutted against the second positioning plate 36 from top to bottom, the second housing section 3 is positioned relative to the first housing section 1, and the first section of equipment module 10 is positioned relative to The second section equipment module 20 is positioned.
  • the first equipment module can be installed and positioned in the top-down direction.
  • the installer does not need to install the first equipment module from the top of the air-conditioning equipment 100, and does not need to reserve additional installation space on the top of the air-conditioning equipment 100.
  • moving the first section of equipment module 10 from bottom to top also facilitates the installation personnel to install the first section of equipment module 10 and position the first section of equipment module 10 relative to the second section of equipment module 20, so that the installation of the first section of equipment module 10 More convenient.
  • the first support section 143 By arranging the first support section 143 and the second support section 363 arranged in the horizontal direction, and supporting the second support section 363 against the first support section 143, the first support section 143 can play a role in the first support section 143. It has a certain supporting effect, reducing the load of the fasteners that fix the second section equipment module 20 and extending the service life of the fasteners. At the same time, when the fasteners fixing the second-stage equipment module 20 fail, the first-stage equipment module 10 can also support the second-stage equipment module 20 through the first support section 143 to improve the safety of the air conditioning equipment 100 and reliability.
  • the second section equipment module 20 When installing the air conditioning equipment 100, after positioning the second section equipment module 20 relative to the ceiling, the second section equipment module 20 can be used as a reference to align the first support section 143 with the second support section 363 in the up and down direction, and then lift
  • the first equipment module 10 supports the first support section 143 from bottom to top against the second support section 363 , the second tension section 362 against the second tension section 362 , and the first positioning surface 343
  • the first positioning plate 14 can be positioned relative to the second positioning plate 36 by contacting the second positioning surface and then using the first fastener to fix the first tensioning section 142 and the second tensioning section 362 together.
  • the first tightening section 142 and the second tightening section 362 are connected by arranging a first fastener, and both the first tightening section 142 and the second tightening section 362 are arranged at an angle.
  • the first fastener can exert a force on the first tensioning section 142 perpendicular to the first tensioning section 142 extending direction and towards the tightening force of the second tightening section 362.
  • the tightening force of the two support sections 363 allows the first support section 143 to reliably and closely contact the second support section 363 along the up and down direction, and the first positioning section 141 to reliably and closely contact the second support section 363 along the first direction.
  • the second positioning section 361 secures the first housing section 1 reliably and tightly relative to the second housing section 3, and secures the first equipment module 10 reliably and tightly relative to the second equipment module 20.
  • the structure is simple.
  • the inclination angle ⁇ of the first tightening section 142 and the second tightening section 362 may range from 30° to 60°.
  • the inclination angle ⁇ of the first tightening section 142 and the second tightening section 362 may be 30°. °, 35°, 40°, 45°, 50°, 55° or 60°. In this tilt angle range, the tightening force from the first positioning section 141 toward the second positioning section 361 along the first direction is relatively large.
  • the tensile force from the first support section 143 to the second support section 363 in the up and down direction is relatively large, so that the first support section 143 can be reliably and closely abutted against the second support section 363 in the up and down direction, thereby positioning the first The section 141 reliably and closely abuts the second positioning section 361 along the first direction, fixing the first housing section 1 reliably and tightly relative to the second housing section 3 , and reliably and tightly fixing the first equipment module 10 Fixed relative to the second stage equipment module 20.
  • the first positioning plate 14 further includes a first connecting flange 144.
  • the first connecting flange 144 is L-shaped. One end of the first connecting flange 144 is connected to the first support section 143, and the other end of the first connecting flange 144 is connected to the first supporting section 143. One end is connected to the lower end of the first main housing section 11 to fix the first positioning plate 144 relative to the first main housing section 11.
  • a first escapement is formed on the first connecting flange 144 to avoid the first fastener. Hole 1441, the first escape hole 1441 is provided to facilitate the installation of the first fastener.
  • the first connector 70 includes a first connection part 701, a first clamping part 702 and a second clamping part 703, and the first connection part 701 is located at the The outside of the first housing section 1 and the second housing section 3, and the first connecting portion 701 is connected to the first housing section 1 and the second housing section 3 through second fasteners.
  • the first clamping hole 1131 is formed on the outer side wall of the first housing section 1
  • the second clamping hole 3131 is formed on the outer side wall of the second housing section 3
  • the first connecting part 701 is parallel to the first direction
  • the first clamping part 702 It is arranged at an obtuse angle with the first connecting part 701, and the first clamping part 702 is inserted into the first clamping hole 1131.
  • the second clamping part 703 is arranged at a right angle with the first connecting part 701, and the second clamping part 703 is inserted into the first clamping hole 1131.
  • Two card holes 3131 are formed on the outer side wall of the first housing section 1
  • the second clamping hole 3131 is formed on the outer side wall of the second housing section 3
  • the first connecting part 701 is parallel to the first direction
  • the first clamping part 702 It is arranged at an obtuse angle with the first connecting part 701, and the first clamping part 702 is inserted into the first clamping hole 1131.
  • the first clamping portion 702 of the first connector 70 can be inserted into the first clamping hole 1131, and the second clamping section 703 can be inserted into the second clamping hole.
  • the first connecting member 70 and the second housing section 3 are then connected together with a second fastener, and then the first connecting member 70 and the first housing section 1 are connected together with a second fastener. , at this time, the first housing section 1 can be fixed relative to the second housing section 3 through the first connecting piece 70 .
  • the first clamping portion 702 and the first connecting portion 701 are arranged at an obtuse angle, the surface of the second clamping portion 703 facing the first clamping portion 702 can contact the second clamping hole 3131 close to the inner wall of the second housing section 3 , when the first connector 70 is fixed to the second housing section 3 with the second fastener, and the first connector 70 is fixed to the first housing section 1 with the second fastener, the first connector 70 Moving toward the second housing section 3 , the first clamping portion 702 abuts the inner wall of the second clamping hole 3131 close to the second housing section 3 and slides relative to the inner wall of the second clamping hole 3131 close to the second housing section 3 , exert a force along the first direction toward the second housing segment 3 on the inner wall of the second clamping hole 3131 close to the second housing segment 3, and tighten the first housing segment 1 toward the second housing segment 3, The first housing sections 1 are fixed together tightly and reliably.
  • the installer can move the first housing section 1 toward the second housing section 3 by fixing the first connecting piece 70 to the first housing section 1 and the second housing section 3 Tighten to achieve a tight connection between the first housing section 1 and the second housing section 3. It is not necessary to push the first housing section 1 towards the second housing section 3. It is simple and labor-saving, and is convenient for the installer to install and position the first housing section.
  • Shell segment 1
  • the first connecting member 70 and the first housing section 1 are connected together with the second fastener, the first connecting member 70 can limit the first housing section 1 in the second direction, and the first connecting member 70 can limit the first housing section 1 in the second direction.
  • the housing section 1 is aligned with the second housing section 3 to further prevent air leakage and improve the overall performance of the air conditioning device 100 .
  • a first connection hole 7011 and a second connection hole 7012 are formed on the first connection part 701.
  • the first connection hole 7011 and the second connection hole 7012 are arranged at intervals along the first direction.
  • the first connection hole 7011 is a circular hole.
  • the second connection hole 7012 is a waist-shaped hole, the first connection hole 7011 extends along the first square, the first connection hole 7011 is close to the second clamping part 703 , and the second connection hole 7012 is close to the first clamping part 702 .
  • a first fitting hole 1134 is formed on the first side plate 113 , and the first fitting hole 1134 is opposite to the second connecting hole 7012 .
  • a second fitting hole 3133 is formed on the second side plate 313 , and the second fitting hole 3133 is connected to the first connecting hole 7012 .
  • the holes 7011 are opposite, and the first fitting hole 1134 and the second fitting hole 3133 are both circular holes.
  • the first fastener is suitable for passing through the first connection hole 7011 and the second matching hole 3133 to fix the first connecting member 70 and the second side plate 313.
  • the first fastener is suitable for passing through the second connection hole.
  • the hole 7012 and the first matching hole 1134 are used to fix the first connecting member 70 and the first side plate 113 .
  • the first connector 70 When installing the first connector 70, you can first use the first fastener to connect the first connector 70 and the second side plate 313 together, and then use the first fastener to penetrate the second connection hole 7012, The first connecting member 70 is connected with the first side plate 113 .
  • the first fastener and the second clamping portion 703 can form a limiting structure to accurately position the first connector 70 relative to the first main housing 11 , so that the first housing section 1 can be positioned relative to the second housing section 3 Positioning accuracy. Since the second connecting hole 7012 is a waist-shaped hole, the position accuracy requirement of the first matching hole 3134 is relatively low, which can reduce the difficulty of processing the first matching hole 3134 and reduce the production cost.
  • the multi-stage equipment module also includes a third-stage equipment module 30, and the second-stage equipment module 20 is connected to the first stage of equipment.
  • the third-stage equipment module 30 includes a third housing section 5 and a filter assembly 6.
  • the filter assembly 6 may include a filter screen or a purifier.
  • the filter assembly 6 is located in the third shell.
  • the third housing section 5 is detachably connected to the second housing section 3 .
  • the third housing section 5 can be detachably connected to the second housing section 3 through fasteners, and the third housing section 5 can also be detachably connected to the second housing section 3 through a buckle structure.
  • the outdoor wind blown into the room by the air conditioning device 100 can be made cleaner and healthier.
  • the filter assembly 6 can be disposed in the first air duct section 116 of the third equipment module, and the filter assembly 6 is close to the first air inlet 5133.
  • the filter assembly 6 can act on the outdoor air. It has a purification effect, making the outdoor air blown into the room from the first air outlet 1133 cleaner and healthier.
  • the filter assembly 6 needs to be cleaned or replaced frequently.
  • the third housing section 5 is detachably connected to the second housing section 3. When cleaning or replacing the filter assembly 6, the third housing section 5 can be removed from the second housing section. Remove the body section 3, and then take out the filter assembly 6 from the third housing section 5 to clean and replace the filter assembly 6. It is not necessary to disassemble the entire air conditioning device, which facilitates cleaning and replacement of the filter assembly 6. replace.
  • the filter assembly 6 is adapted to be inverted in the third housing section 5 When installed into the third housing section 5 from top to bottom.
  • the air conditioning equipment 100 includes the first section equipment module 10, the second section equipment module 20 and the third section equipment module 30, the fan assembly 2, the heat pump system 4 and the filter assembly 6 are respectively disposed in the first housing section 1 and the third section equipment module 30.
  • the first section equipment module 10 , the second section equipment module 20 and the third section equipment module 30 can be assembled independently.
  • the installation process of installing the filter assembly 6 is not affected by the installation process of installing the fan assembly 2 and the installation process of installing the heat pump system 4, so that the filter assembly 6 can be moved from top to bottom when the third housing section 5 is inverted. Installed into the third housing section 5.
  • the third housing section 5 may include a third bottom plate 512 and a third top plate 511.
  • the third top plate 511 and the third bottom plate 512 are arranged in the up and down direction.
  • the third housing section 5 is formed with a third installation opening 514.
  • the installation opening 514 is opposite to the third top plate 511 , and the third bottom plate 512 is sealed in the third installation opening 514 .
  • the maintenance personnel can disassemble the third bottom plate 512 from the bottom of the air conditioning equipment 100, and then observe the filter assembly 6 through the third installation port 514 and perform maintenance on the filter assembly 6. This facilitates the maintenance personnel to perform inspections on the filter assembly 6. Overhaul. Moreover, during installation, there is no need to reserve additional inspection space above the third section equipment module 30 , thereby reducing the space occupied by the air conditioning equipment 100 .
  • the third housing section 5 includes a third main housing 51 and a third maintenance plate 52.
  • the bottom surface of the main housing 51 has a third maintenance port 515.
  • the third maintenance port 515 can be formed on the third bottom plate 512.
  • the filter assembly 6 is detachably provided in the third main housing 51.
  • the third maintenance plate 52 can The disassembly floor cover is provided at the third maintenance port 515.
  • the third maintenance plate 52 can be detachably covered on the third maintenance opening 515 through fasteners, and the third maintenance plate 52 can be detachably covered on the third maintenance opening 515 through a buckle structure.
  • the third maintenance plate 52 can be disassembled from the third housing section 5 first, and then the filter assembly 6 can be observed through the third maintenance port 515 and the filter assembly 6 can be inspected.
  • the third maintenance port 515 is provided on the bottom surface of the third main housing 51. The maintenance personnel can remove the maintenance plate in the up and down direction without occupying the top space of the third section equipment module 30 and the edge of the third section equipment module 30 along the third section. In the space on both sides of the two directions, when installing the air-conditioning module, it is not necessary to reserve additional maintenance space above the second-stage equipment module 20, thereby reducing the space occupied by the air-conditioning equipment 100.
  • connection method between the first housing section 1 and the second housing section 3 is the first connection method
  • the connection mode of the housing section 3 is the second connection mode
  • the second connection mode is the same as the first connection mode. This can reduce the design difficulty of the second connection method, reduce the design difficulty of the processing technology of the connection structure involved in the second connection method, and reduce production costs.
  • the upper end of the third housing section 5 and the upper end of the second housing section 3 are positioned through the third positioning structure, and the lower end of the third housing section 5 and the second housing section 3 are positioned together.
  • the lower end of the second housing section 3 is positioned through the fourth positioning structure, the lower end of the third housing section 5 and the lower end of the second housing section 3 are connected through a third fastener, and the outer side wall of the third housing section 5 and the The outer side walls of the two housing sections 3 are connected through the first connecting piece 70 .
  • the second section equipment module 20 When installing the air conditioning equipment 100, the second section equipment module 20 can be hoisted and positioned relative to the ceiling first, and then the third section equipment module 30 can be lifted. With the second section equipment module 20 as a reference, the third positioning structure and the third section of equipment module 30 can be used as a reference.
  • the four positioning structures position the first housing section 1 relative to the second housing section 3, position the third section equipment module 30 relative to the second section equipment module 20, and then use third fasteners to position the third section equipment module 30 relative to each other.
  • the second section equipment module 20 is fixed, and the first connecting piece 70 is used to connect the outer side walls of the first housing section 1 and the second housing section 3 together.
  • the third positioning structure and the fourth positioning structure when installing the air conditioning equipment 100, it is convenient for the installer to position the third housing section 5 relative to the second housing section 3, and to position the third section equipment module 30 relative to the second section.
  • the equipment module 20 is positioned to facilitate installation of the air conditioning equipment 100 by the installer.
  • the third positioning structure includes a third positioning protrusion 53 and a third positioning groove 35.
  • the third positioning protrusion 53 is formed on the upper end of the third housing section 5.
  • a third positioning groove 35 is formed at the upper end of the second housing section 3, the third positioning groove 35 has a third opening facing downwards, and the third positioning protrusion 53 is adapted to be inserted upward into the third positioning groove 35 through the third opening.
  • the third positioning groove 35 is provided in the second housing section 3, and the third opening of the third positioning groove 35 is set downward. After the second section equipment module 20 is positioned relative to the ceiling, it is convenient for the installer to move the third positioning protrusion.
  • the lifter 53 is pushed into the third positioning groove 35 from the third opening from bottom to top, which facilitates the installation personnel to position the third-stage equipment module 30 relative to the second-stage equipment module 20 and facilitates installation.
  • the third positioning protrusion 53 is located on the side of the third housing section 5 facing the second housing section 3
  • the third positioning groove 35 is located on the side of the second housing section 3 facing the third housing section. 5; a third guide surface 352 and a third positioning surface 353 are formed in the third positioning groove 35.
  • the third positioning surface 353 is opposite to the third guide surface 352 in the first direction.
  • the third guide surface 352 is in The third positioning surface 353 is a plane extending in the vertical direction.
  • the third positioning protrusion 53 is formed with a third positioning mating surface 531 and a third guide mating surface 532.
  • the third positioning mating surface 531 abuts the third positioning surface 353 in the first direction.
  • the third guide surface 352 is in the first direction.
  • the third guide matching surface 532 is in contact with the third guide matching surface 532 , and the third guide matching surface 532 is suitable for sliding along the third guide surface 352 .
  • the third guide surface 352 is inclined toward the second housing section 3.
  • the third positioning protrusion 53 slides toward the third positioning groove 35
  • the third guide surface 352 is tilted toward the second housing section 3.
  • the guide surface 352 can contact the third guide surface 352 to continue to push the third section equipment module 30 .
  • the third positioning protrusion 53 can slide along the third guide surface 352 toward the third positioning groove 35 to position the third section of the equipment module 30 .
  • the protrusion 53 accurately snaps into the third positioning groove 35 and contacts the third positioning mating surface 531 with the third positioning surface 353.
  • the structure is simple and the installation is convenient.
  • the third guide surface 352 When the third guide surface 352 contacts the third guide mating surface 532 in the second direction, with the third guide surface 352 as a reference, the third guide surface 352 can exert a force perpendicular to the third guide mating surface 532 on the third guide mating surface 532 .
  • the guide surface 352 extends in a direction and faces the force of the third guide matching surface 532 .
  • a tightening force can be obtained along the first direction from the third guide surface 352 toward the third guide mating surface 532.
  • This tightening force can move the third positioning protrusion 53 toward The second housing section 3 is tightened, and the third housing section 5 is tightened toward the second housing section 3 , so that the third positioning mating surface 531 can be reliably and tightly abutted against the third positioning surface along the first direction. 353.
  • Position the third housing section 5 reliably and closely relative to the second housing section 3 along the first direction, and position the third section equipment module 30 reliably and closely relative to the second section equipment module 20, making installation more convenient. .
  • the third guide surface 352 is inclined toward the second housing section 3, and the third opening is larger.
  • the accurate third positioning groove 35 facilitates the installer to push the third positioning protrusion 53 from the third opening into the third positioning groove 35, making installation easy.
  • the inclination angle ⁇ of the third guide surface 352 may range from 30° to 60°.
  • the inclination angle ⁇ of the third guide surface 352 may be 30°, 35°, 40°, 45°, 50°, 55°. or 60°.
  • the third guide surface 352 can provide a larger tightening force for the third guide mating surface 532, so that the third positioning mating surface 531 can be reliably and tightly moved along the first direction.
  • the third housing section 5 is positioned reliably and closely relative to the second housing section 3 along the first direction, and the third section equipment module 30 is reliably and closely positioned relative to the second section equipment module. 20 positioning.
  • the third positioning protrusion 53 and the third positioning groove 35 are both folded structures, which can make the forming process of the third positioning protrusion 53 and the third positioning groove 35 simpler, reduce the difficulty of the processing technology, and reduce the production cost. cost.
  • the fourth positioning structure includes a third positioning plate 54 and a fourth positioning plate 37.
  • the third positioning plate 54 is provided at the lower end of the third housing section 5.
  • Four positioning plates 37 are provided at the lower end of the second housing section 3 , and the third positioning plate 54 and the fourth positioning plate 37 are arranged oppositely.
  • the fourth positioning plate 37 is provided on the side of the third housing section 5 facing the second housing section 3
  • the third positioning plate 54 is provided on the side of the second housing section 3 facing the third housing section 5 .
  • the surface of the third positioning plate 54 facing the fourth positioning plate 37 includes a third positioning section 541, a third tensioning section 542 and a third support section 543.
  • the third positioning section 541, the third tensioning section 542 and the third support section Sections 543 are connected in sequence from top to bottom.
  • the surface of the fourth positioning plate 37 facing the third positioning plate 54 includes a fourth positioning section 371, a fourth tensioning section 372 and a fourth support section 373.
  • the fourth positioning section 371, the fourth tensioning section 372 and the fourth support section Sections 373 are connected in sequence from top to bottom.
  • the third positioning section 541 and the fourth positioning section 371 are both perpendicular to the first direction, and the third positioning section 541 and the fourth positioning section 371 abut each other.
  • the third tensioning section 542 and the fourth tensioning section 372 both extend obliquely in the direction from top to bottom toward the direction adjacent to the second housing section 3 , and the third tensioning section 542 and the fourth tensioning section 372 are mutually opposite to each other.
  • the third support section 543 and the fourth support section 373 extend in the horizontal direction, and the fourth support section 373 is supported and abutted against the third support section 543; wherein, the third tension section 542 and the fourth tension section 372 Connected by a fourth fastener.
  • the fourth positioning structure can be used to more accurately position the third housing section 5 relative to the second housing section 3 in the first direction.
  • the fourth support section 373 is supported against the third support section 543 , the fourth support section 373 is located above the third support section 543 , and the fourth positioning plate 37 is located above the third positioning plate 54 .
  • the third positioning plate 54 is abutted against the fourth positioning plate 37 from top to bottom, the third housing section 5 is positioned relative to the second housing section 3, and the third section equipment module 30 is positioned relative to the second housing section 3.
  • the second section equipment module 20 is positioned.
  • the third equipment module can be installed and positioned in the direction from top to bottom.
  • the installer does not need to install the third section equipment module 30 from the top of the air-conditioning equipment 100, and does not need to reserve additional space on the top of the air-conditioning equipment 100. Installation space.
  • moving the third-stage equipment module 30 from bottom to top also facilitates the installer to install the third-stage equipment module 30 and position the third-stage equipment module 30 relative to the second-stage equipment module 20, so that the third-stage equipment module 30 can be installed More convenient.
  • the third support section 543 By arranging the third support section 543 and the fourth support section 373 arranged in the horizontal direction, and supporting the fourth support section 373 against the third support section 543 , the third support section 543 can play a role in the fourth support section 373 It has a certain supporting effect, reducing the load of the fasteners that fix the second section equipment module 20 and extending the service life of the fasteners.
  • the third-stage equipment module 30 can also support the second-stage equipment module 20 through the third support section 543 to improve the safety of the air conditioning equipment 100 and reliability.
  • the second section equipment module 20 When installing the air conditioning equipment 100, after positioning the second section equipment module 20 relative to the ceiling, the second section equipment module 20 can be used as a reference to align the third support section 543 with the fourth support section 373 in the up and down direction, and then lift
  • the third section of the equipment module 30 supports the third support section 543 from bottom to top against the fourth support section 373 , the third tension section 542 against the fourth tension section 372 , and the third positioning section 541
  • the third positioning plate 54 By contacting the fourth positioning section 371 and then using the fourth fastener to fix the third tensioning section 542 and the fourth tensioning section 372 together, the third positioning plate 54 can be positioned relative to the fourth positioning plate 37 .
  • the fourth fastener By arranging a fourth fastener to connect the third tightening section 542 and the fourth tightening section 372, and arranging the third tightening section 542 and the fourth tightening section 372 at an angle, the fourth fastener connects the third tightening section 542 to the fourth tightening section 372.
  • the fourth fastener can exert a force on the third tightening section 542 that is perpendicular to the third tightening section 542 extending direction and towards the tightening force of the fourth tightening section 372.
  • the tightening force of the four support sections 373 allows the third support section 543 to reliably and closely contact the fourth support section 373 along the up and down direction, and the third positioning section 541 to reliably and closely contact the fourth support section 373 along the first direction.
  • the fourth positioning section 371 secures the third housing section 5 reliably and tightly relative to the second housing section 3, and secures the third section equipment module 30 reliably and closely relative to the second section equipment module 20.
  • the structure is simple.
  • the inclination angle ⁇ of the third tensioning section 542 and the fourth tensioning section 372 may range from 30° to 60°.
  • the inclination angle ⁇ of the third tensioning section 542 and the fourth tensioning section 372 may be 30°. °, 35°, 40°, 45°, 50°, 55° or 60°, within the range of the tilt angle ⁇ , the tightening force along the first direction from the third positioning section 541 towards the fourth positioning section 371 is larger, the tensioning force from the third support section 543 to the fourth support section 373 in the up and down direction is relatively large, so that the third support section 543 can be reliably and closely abutted against the fourth support section 373 in the up and down direction.
  • the third positioning section 541 reliably and closely abuts the fourth positioning section 371 along the first direction, reliably and tightly fixing the third housing section 5 relative to the second housing section 3 , and reliably fixing the third section equipment module 30 , tightly fixed relative to the second section equipment module 20.
  • the third positioning plate 54 further includes a third connecting flange 544.
  • the third connecting flange 544 is L-shaped. One end of the third connecting flange 544 is connected to the third support section 543, and the other end of the third connecting flange 544 is connected to the third supporting section 543. One end is connected to the lower end of the third main housing section 31 to fix the third positioning plate 544 relative to the third main housing section 31.
  • a third escapement for avoiding the fourth fastener is formed on the third connecting flange 544.
  • hole 5441, the third escape hole 5441 is provided to facilitate the installation of the fourth fastener.
  • the first connection portion 701 is located outside the third housing section 5 and the second housing section 3, and the first connection portion 701 is connected to the third housing section 5.
  • the housing section 5 and the second housing section 3 are both connected by fifth fasteners.
  • a third clamping hole 5131 is formed on the outer side wall of the third housing section 5
  • a fourth clamping hole 3132 is formed on the outer side wall of the second housing section 3
  • the first clamping part 702 is inserted into the third clamping hole 5131
  • the second clamping part 702 is inserted into the third clamping hole 5131 .
  • 703 is inserted into the fourth card hole 3132.
  • the first clamping portion 702 of the first connector 70 can be inserted into the third clamping hole 5131, and the second clamping section 703 can be inserted into the fourth clamping hole.
  • the first connecting member 70 and the second housing section 3 are then connected together using a fifth fastener, and then the first connecting member 70 and the third housing section 5 are connected together using a fifth fastener.
  • the third housing section 5 can be fixed relative to the second housing section 3 through the first connecting piece 70 .
  • the surface of the first clamping portion 702 facing the second clamping portion 703 can contact the third clamping hole 5131 close to the inner wall of the second housing section 3 , when the first connecting member 70 is fixed to the second housing with the fifth fastener, and the first connecting member 70 is fixed to the third housing section 5 with the second fastener, the first connecting member 70 faces the third housing section 5 .
  • the first clamping portion 702 can contact the third clamping hole 5131 close to the inner wall of the second housing section 3 and slide relative to the third clamping hole 5131 close to the inner wall of the second housing section 3 , exert a force along the first direction toward the second housing segment 3 on the inner wall of the third clamping hole 5131 close to the second housing segment 3, and tighten the third housing segment 5 toward the second housing segment 3,
  • the third housing section 5 and the second housing section 3 are tightly and reliably fixed together.
  • the installer can move the third housing section 5 toward the second housing section 3 by fixing the first connecting piece 70 to the third housing section 5 and the second housing section 3 Tighten to achieve a tight connection between the third housing section 5 and the second housing section 3. It is not necessary to push the third housing section 5 towards the second housing section 3. It is simple and labor-saving, and is convenient for the installer to install and position the third housing section.
  • Shell section 5
  • the first connecting member 70 can limit the third housing section 5 in the second direction, and the third housing section 5 can be held in place by the first connecting member 70 .
  • the housing section 5 is aligned with the second housing section 3 to further prevent air leakage and improve the overall performance of the air conditioning module.
  • a third fitting hole 5134 is formed on the third side plate 513, and the third fitting hole 5134 is opposite to the second connection hole 7012.
  • a second fitting hole 3133 is formed on the second side plate 313.
  • the fitting hole 3133 is opposite to the first connecting hole 7011, and both the third fitting hole 5134 and the second fitting hole 3133 are circular holes.
  • the fifth fastener is suitable for passing through the first connection hole 7011 and the second matching hole 3133 to fix the first connecting member 70 and the second side plate 313.
  • the fifth fastener is suitable for passing through the second connection hole. hole 7012 and the third matching hole 5134 to fix the first connecting member 70 and the third side plate 513 .
  • the first connecting member 70 When installing the first connecting member 70 , you can first use a fifth fastener to connect the first connecting member 70 and the second side plate 313 together, and then use the fifth fastener to penetrate the second connecting hole 7012 to connect the first connecting member 70 to the second side plate 313 .
  • the first connecting member 70 is connected with the third side plate 513 .
  • the fifth fastener and the second clamping portion 703 can form a limiting structure to accurately position the first connector 70 relative to the second main housing 51 , so that the third housing section 5 can be positioned relative to the second housing section 3 Positioning accuracy. Since the second connecting hole 7012 is a waist-shaped hole, the position accuracy requirement of the third matching hole 5134 is relatively low, which can reduce the difficulty of processing the third matching hole 5134 and reduce the production cost.
  • the air conditioning device 100 according to a specific embodiment of the present application is described below with reference to FIGS. 1-27.
  • the air conditioning equipment 100 is a three-stage type.
  • the air conditioning equipment 100 includes a first stage equipment module 10, a second stage equipment module 20 and a third stage equipment module 30.
  • the first stage The equipment module 10, the second section equipment module 20 and the third section equipment module 30 are connected in sequence along the first direction, the first direction is parallel to the horizontal direction, two adjacent sections of equipment modules are detachably connected, and each section of equipment module has an installation crane. Ear 90.
  • each section of equipment module includes a first air duct section 116 and a second air duct section 117.
  • the first air duct section 116 and The second air duct section 117 is arranged along the second direction, and the first air duct section 116 and the second air duct section 117 are separated from each other.
  • the second direction is perpendicular to the first direction.
  • the first air duct sections 116 of the multi-section equipment module are sequentially are connected to form a first air duct, and the second air duct sections 117 of the multi-section equipment module are connected in sequence to form a second air duct 82.
  • Outdoor air is suitable for entering the room through the first air duct
  • indoor air is suitable for entering the room through the second air duct 82. Discharge to the outside.
  • Both ends of the second stage equipment module 20 along the first direction are open ends 119
  • both ends of the first stage equipment module 10 and the third stage equipment module 30 along the first direction are respectively sealed ends 118 and open ends 119 .
  • the open end 119 of the first section equipment module 10 is connected with the open section 119 at one end of the second section equipment module 20
  • the open end 119 of the third section equipment module 30 is connected with the open section 119 at the other end of the second section equipment module 20 .
  • the sealed end 118 of the third stage equipment module 30 has a first air inlet 5133 and a second air outlet 5132
  • the sealed end 118 of the first stage equipment module 10 has a first air inlet 1132 and a first air outlet 1133 .
  • the first equipment module 10 includes a first housing section 1, a humidification component 8 and a fan component 2.
  • the humidification component 8 and the fan component 2 are located in the first housing section 1
  • the second section equipment module 20 includes the second housing section 3 and the heat pump system 4.
  • the heat pump system 4 includes a compressor, a first heat exchanger assembly 42 and a second heat exchanger assembly 43.
  • the first heat exchanger assembly 42 Disposed in the first air duct section 116 of the second stage equipment module 20, the second heat exchanger assembly 43 is provided in the second air duct section 117 of the second stage equipment module 20, and the heat pump system 4 is provided in the second housing In section 3
  • first housing section 1 is detachably connected to second housing section 3 .
  • the second housing section 3 includes a second main housing 31 and a second maintenance plate 33.
  • the side of the second main housing 31 has a or A plurality of second maintenance openings 315 are arranged at intervals along the circumferential direction of the second main housing 31.
  • the number of the second maintenance plates 33 is the same as the number of the second maintenance openings 315 and corresponds one to one.
  • the second maintenance plates 33 are detachable.
  • the ground cover is provided at the corresponding second maintenance opening 315.
  • the second housing section 3 may also include a frame 32.
  • the second main housing 31 covers the outside of the frame 32, and the heat pump system 4 is fixed on the frame 32.
  • the second main housing 31 includes a second top plate 312, a second bottom plate 312 and two second side plates 313.
  • the second top plate 312 is covered above the frame 32, the second bottom plate 312 is located on the lower side of the frame 32, and the second The bottom plate 312 is connected to the frame 32 , and the two second side plates 313 are respectively provided at both ends of the frame 32 in the second direction, and the two second side plates 313 are both connected to the frame 32 .
  • the second maintenance plate 33 may be the second side plate 313 .
  • the second top plate 311 and the second bottom plate 312 are opposite and spaced in the up and down direction.
  • the second housing section 3 is formed with a second installation opening 314.
  • the second installation opening 314 is opposite to the second bottom plate 312.
  • the second top plate 311 is covered with The second installation port 314.
  • the heat pump system 4 is suitable for being placed upright in the second housing section 3 and installed into the second housing section 3 from top to bottom from the second installation opening 314 .
  • the first housing section 1 includes a first main housing 11 and a first maintenance plate 12.
  • the bottom surface of the first main housing 11 has a first maintenance opening 115.
  • the maintenance panel 12 is detachably covered on the first maintenance opening 115 .
  • the first maintenance port 115 can be the first installation port 114
  • the first maintenance plate 12 can be the first bottom plate 112 .
  • the first main housing 11 includes a first top plate 111 and a first bottom plate 112.
  • the first top plate 111 and the first bottom plate 112 are arranged oppositely in the up and down direction.
  • the first housing section 1 is formed with a first installation opening 114. 114 is opposite to the first top plate 111 , and the first bottom plate 112 is sealed in the first installation opening 114 .
  • the fan assembly 2 is suitable for being installed into the first housing section 1 from top to bottom from the first installation opening 114 when the first housing section 1 is inverted.
  • the fan assembly 2 is opposite to the first maintenance opening 115. At least part of the fan assembly 2 is detachably provided in the first main housing 11. At least part of the fan assembly 2 can be taken out from the first maintenance opening 115. At least part of the fan assembly 2 is Parts can be installed into the first main housing 11 from the first maintenance port 115 .
  • the upper end of the first housing section 1 and the upper end of the second housing section 3 are positioned through the first positioning structure, and the lower end of the first housing section 1 and the second housing section 3 are positioned.
  • the lower end of the second housing section 3 is positioned through the second positioning structure, the lower end of the first housing section 1 and the lower end of the second housing section 3 are connected through a first fastener, and the outer side wall of the first housing section 1 and the second The outer side walls of the two housing sections 3 are connected through the first connecting piece 70 .
  • the first positioning structure includes a first positioning protrusion 13 and a first positioning groove 34.
  • the first positioning protrusion 13 is formed on the upper end of the first housing section 1, and the first positioning groove 34 is formed on the upper end of the second housing section 3.
  • the first positioning groove 34 has a first opening facing downward, and the first positioning protrusion 13 is adapted to be inserted upward into the first positioning groove 34 through the first opening.
  • the first positioning protrusion 13 is located on the side of the first housing section 1 facing the second housing section 3, and the first positioning groove 34 is located on the side of the second housing section 3 facing the first housing section 1;
  • a first guide surface 342 and a first positioning surface 343 are formed in a positioning groove 34.
  • the first positioning surface 343 is opposite to the first guide surface 342 in the first direction.
  • the first guide surface 342 is in the direction from bottom to top.
  • the first positioning surface 343 is a plane extending in the vertical direction toward the inclined surface extending obliquely toward the second housing section 3 .
  • the inclination angle ⁇ of the first guide surface 342 may range from 30° to 60°.
  • both the first positioning protrusion 13 and the first positioning groove 34 are flanged structures.
  • the first positioning protrusion 13 is formed with a first positioning mating surface 131 and a first guide mating surface 132.
  • the first positioning mating surface 131 abuts the first positioning surface 343 in the first direction.
  • the first guide surface 342 is in the first direction.
  • the first guide matching surface 132 is in contact with the first guide matching surface 132 , and the first guide matching surface 132 is suitable for sliding along the first guide surface 342 .
  • the second positioning structure includes a first positioning plate 14 and a second positioning plate 36.
  • the first positioning plate 14 is provided at the lower end of the first housing section 1, and the second positioning plate 36 is provided at the second housing section.
  • the first positioning plate 14 and the second positioning plate 36 are arranged oppositely.
  • the first positioning plate 14 is provided on the side of the first housing section 1 facing the second housing section 3
  • the second positioning plate 36 is provided on the side of the second housing section 3 facing the first housing section 1 .
  • the surface of the first positioning plate 14 facing the second positioning plate 36 includes a first positioning section 141, a first tensioning section 142 and a first support section 143.
  • the first positioning section 141, the first tensioning section 142 and the first support section Sections 143 are connected in sequence from top to bottom.
  • the surface of the second positioning plate 36 facing the first positioning plate 14 includes a second positioning section 361, a second tensioning section 362 and a second support section 363.
  • the second positioning section 361, the second tensioning section 362 and the second support section Sections 363 are connected in sequence from top to bottom.
  • the first positioning section 141 and the second positioning section 361 are both perpendicular to the first direction, and the first positioning section 141 and the second positioning section 361 abut each other.
  • the first tensioning section 142 and the second tensioning section 362 both extend obliquely in the direction from top to bottom toward the direction adjacent to the second housing section 3 , and the first tensioning section 142 and the second tensioning section 362 are mutually opposite to each other.
  • the first support section 143 and the second support section 363 extend in the horizontal direction, and the second support section 363 is supported and abutted against the first support section 143; wherein, the first tension section 142 and the second tension section 362 connected via the first fastener.
  • the first positioning plate 14 also includes a first connecting flange 144.
  • the first connecting flange 144 is L-shaped. One end of the first connecting flange 144 is connected to the first support section 143, and the other end of the first connecting flange 144 is connected to the first support section 143. The lower end of the first main housing section 11 is connected to fix the first positioning plate 144 relative to the first main housing section 11 .
  • a first escape hole 1441 is formed on the first connecting flange 144 for avoiding the first fastener. .
  • the first connection part 70 includes a first connection part 701, a first clamping part 702 and a second clamping part 703.
  • the first connection part 701 is located between the first shell section 1 and the second shell. The outside of the body section 3, and the first connecting portion 701 is connected to the first housing section 1 and the second housing section 3 through second fasteners.
  • the first clamping hole 1131 is formed on the outer side wall of the first housing section 1
  • the second clamping hole 3131 is formed on the outer side wall of the second housing section 3
  • the first connecting part 701 is parallel to the first direction
  • the first clamping part 702 It is arranged at an obtuse angle to the first connecting part 701, and the first clamping part 702 is inserted into the first clamping hole 1131.
  • the second clamping part 703 is arranged at a right angle to the first connecting part 701, and the second clamping part 703 is inserted into the first clamping hole 1131.
  • a first connection hole 7011 and a second connection hole 7012 are formed on the first connection part 701.
  • the first connection hole 7011 and the second connection hole 7012 are arranged at intervals along the first direction.
  • the first connection hole 7011 is a circular hole
  • the second connection hole 7011 is a circular hole.
  • the connecting hole 7012 is a waist-shaped hole, the first connecting hole 7011 extends along the first square, the first connecting hole 7011 is close to the second clamping part 703 , and the second connecting hole 7012 is close to the first clamping part 702 .
  • a first fitting hole 1134 is formed on the first side plate 113 , and the first fitting hole 1134 is opposite to the second connecting hole 7012 .
  • a second fitting hole 3133 is formed on the second side plate 313 , and the second fitting hole 3133 is connected to the first connecting hole 7012 .
  • the holes 7011 are opposite, and the first fitting hole 1134 and the second fitting hole 3133 are both circular holes.
  • the first fastener is suitable for passing through the first connection hole 7011 and the second matching hole 3133 to fix the first connecting member 70 and the second side plate 313.
  • the first fastener is suitable for passing through the second connection hole.
  • the hole 7012 and the first matching hole 1134 are used to fix the first connecting member 70 and the first side plate 113 .
  • the third section equipment module 30 includes a third housing section 5 and a filter assembly 6.
  • the filter assembly 6 may include a filter screen or a purifier.
  • the filter assembly 6 is configured Inside the third housing section 5 , the third housing section 5 is detachably connected to the second housing section 3 .
  • the third housing section 5 can be detachably connected to the second housing section 3 through fasteners, and the third housing section 5 can also be detachably connected to the second housing section 3 through a buckle structure.
  • the third housing section 5 includes a third main housing 51 and a third maintenance plate 52.
  • the bottom surface of the third main housing 51 has a third maintenance opening 515.
  • the third maintenance port 515 can be formed on the third bottom plate 512
  • the filter assembly 6 is detachably provided in the third main housing 51
  • the third maintenance plate 52 is detachably covered on the third maintenance port 515.
  • the third maintenance plate 52 can be detachably covered with the third maintenance opening 515 through fasteners, and the third maintenance plate 52 can be detachably covered with the third maintenance opening 515 with a buckle structure.
  • the third main housing 51 includes a third bottom plate 512 and a third top plate 511.
  • the third top plate 511 and the third bottom plate 512 are arranged in the up and down direction.
  • the third housing section 5 is formed with a third installation opening 514.
  • the third installation opening 514 Opposite to the third top plate 511 , the third bottom plate 512 is enclosed in the third installation opening 514 .
  • the filter assembly 6 is suitable for being installed into the third housing section 5 from top to bottom from the third installation opening 514 when the third housing section 5 is inverted.
  • the upper end of the third housing section 5 and the upper end of the second housing section 3 are positioned through the third positioning structure, and the lower end of the third housing section 5 and the lower end of the second housing section 3 are positioned through the third positioning structure.
  • Four positioning structures are used for positioning.
  • the lower end of the third housing section 5 and the lower end of the second housing section 3 are connected through a third fastener.
  • the outer side walls of the third housing section 5 and the outer side walls of the second housing section 3 pass through The first connecting piece 70 is connected.
  • the third positioning structure includes a third positioning protrusion 53 and a third positioning groove 35.
  • the third positioning protrusion 53 is formed on the upper end of the third housing section 5.
  • the third positioning groove 35 is formed on the upper end of the second housing section 3. , the third positioning groove 35 has a third opening facing downward, and the third positioning protrusion 53 is adapted to be inserted upward into the third positioning groove 35 through the third opening.
  • the third positioning protrusion 53 is located on the side of the third housing section 5 facing the second housing section 3
  • the third positioning groove 35 is located on the side of the second housing section 3 facing the third housing section 5 .
  • a third guide surface 352 and a third positioning surface 353 are formed in the third positioning groove 35.
  • the third positioning surface 353 is opposite to the third guide surface 352 in the first direction.
  • the third guide surface 352 is formed from below.
  • the third positioning surface 353 is an inclined plane extending obliquely toward the second housing section 3 in the upward direction, and is a plane extending in the vertical direction.
  • the third positioning protrusion 53 is formed with a third positioning mating surface 531 and a third guide mating surface 532.
  • the third positioning mating surface 531 abuts the third positioning surface 353 in the first direction.
  • the third guide surface 352 is in the first direction.
  • the third guide matching surface 532 is in contact with the third guide matching surface 532 , and the third guide matching surface 532 is suitable for sliding along the third guide surface 352 .
  • the inclination angle ⁇ of the third guide surface 352 can range from 30° to 60°.
  • the third positioning protrusion 53 and the third positioning groove 35 are both flanged structures, and the third positioning plate 54 also includes a third The connecting flange 544, the third connecting flange 544 is L-shaped, one end of the third connecting flange 544 is connected to the third support section 543, and the other end of the third connecting flange 544 is connected to the lower end of the third main housing section 31 Connected to fix the third positioning plate 544 relative to the third main housing section 31 , a third escape hole 5441 is formed on the third connection flange 544 for avoiding the fourth fastener.
  • the third housing section 5 and the second housing section 3 are connected through the first connection part 701.
  • the first connection part 701 is located outside the third housing section 5 and the second housing section 3, and the first connection part 701 is connected to the third housing section 5 and the second housing section 3.
  • the third housing section 5 and the second housing section 3 are both connected by fifth fasteners.
  • a third clamping hole 5131 is formed on the outer side wall of the third housing section 5
  • a fourth clamping hole 3132 is formed on the outer side wall of the second housing section 3
  • the first clamping part 702 is inserted into the third clamping hole 5131
  • the second clamping part 702 is inserted into the third clamping hole 5131 .
  • 703 is inserted into the fourth card hole 3132.
  • references to the terms “one embodiment,” “some embodiments,” “an example,” “specific examples,” or “some examples” or the like means that specific features are described in connection with the embodiment or example. , structures, materials or features are included in at least one embodiment or example of the present application. In this specification, the schematic expressions of the above terms are not necessarily directed to the same embodiment or example. Furthermore, the specific features, structures, materials or characteristics described may be combined in any suitable manner in any one or more embodiments or examples. Furthermore, those skilled in the art may combine and combine different embodiments or examples and features of different embodiments or examples described in this specification unless they are inconsistent with each other.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Air Filters, Heat-Exchange Apparatuses, And Housings Of Air-Conditioning Units (AREA)

Abstract

一种空气调节设备(100),适于吊顶式安装于室内且包括沿第一方向依次连接的多段设备模块,第一方向平行于水平方向,相邻两段设备模块可拆卸连接。根据本申请实施例的空气调节设备(100),在生产装配环节,可以降低装配工艺难度,提高装配效率;在运输环节,便于对空气调节设备(100)进行运输;在安装环节,可以降低安装人员的工作强度,便于安装人员安装空气调节设备(100);在检修环节,可以不必将空气调节设备(100)整体拆卸下来,便于对空气调节设备(100)进行检修。

Description

空气调节设备
相关申请的交叉引用
本申请基于申请号为202211014045.5和202222228268.3,申请日为2022年08月23日的中国专利申请提出,并要求该中国专利申请的优先权,该中国专利申请的全部内容在此引入本申请作为参考。
技术领域
本申请涉及空气调节领域,尤其是涉及一种空气调节设备。
背景技术
相关技术中,新风机吊顶式安装于室内,新风机均为整体式结构,整体式结构重量较重,受自身结构的限制,新风机在生产、运输及安装时操作十分不便。
发明内容
本申请旨在至少解决现有技术中存在的技术问题之一。为此,本申请的一个目的在于提出一种空气调节设备,在生产装配环节,便于对每段设备模块进行装配,降低空气调节设备的装配工艺难度,提高装配效率;在运输环节,便于转运、放置每段设备模块,便于对空气调节设备进行运输;在安装环节,可以分多次将多段设备模块吊至室内顶部,降低安装人员的工作强度,便于安装人员安装空气调节设备;在检修环节,可以不必将空气调节设备整体拆卸下来,便于对空气调节设备进行检修。
根据本申请实施例的空气调节设备,适于吊顶式安装于室内且包括:沿第一方向依次连接的多段设备模块,所述第一方向平行于所述水平方向,相邻两段所述设备模块可拆卸连接。
根据本申请实施例的空气调节设备,通过设置多段依次连接的设备模块,并将相邻两个设备模块设置为可拆卸连接,在生产装配环节,便于翻转每段设备模块,便于对每段设备模块进行装配,降低空气调节设备的装配工艺难度,提高装配效率;在运输环节,便于转运、放置每段设备模块,便于对空气调节设备进行运输;在安装环节,可以分多次将多段设备模块吊至室内顶部,降低安装人员的工作强度,便于安装人员安装空气调节设备;在检修环节,可以不必将空气调节设备整体拆卸下来,便于对空气调节设备进行检修。
根据本申请的一些实施例,多段所述设备模块包括第一段设备模块和第二段设备模块,所述第一段设备模块包括第一壳体段和设于所述第一壳体段内的风机组件,所述第二段设备模块包括第二壳体段和设于所述第二壳体段内的热泵系统,所述第一壳体段与所述第二壳体段可拆卸地连接。
根据本申请的一些实施例,在生产装配所述设备模块的过程中,所述风机组件适于在所述第一壳体段倒置时由上向下安装至所述第一壳体段内,所述热泵系统适于在所述第二壳体段正置时由上向下安装至所述第二壳体段内。
根据本申请的一些实施例,所述第一壳体段包括第一主壳体和第一维修板,所述第一主壳体的底面具有第一维修口,所述风机组件的至少部分可拆卸地设于所述第一主壳体内,所述第一维修板可拆卸地盖设于所述第一维修口。
根据本申请的一些实施例,所述第二壳体段包括第二主壳体和第二维修板,所述第二主壳体的侧面具有一个或多个沿所述第二主壳体的周向间隔排布的第二维修口,所述第二维修板的数量与所述第二维修口的数量相同且一一对应,所述第二维修板可拆卸地盖设于对应的所述第二维修口。
在本申请的一些实施例中,所述第一壳体段的上下两端与所述第二壳体段的上下两端分别通过第一定位结构、第二定位结构定位,所述第一壳体段的下段和所述第二壳体段的下端通过第一紧固件相连,所述第一壳体段的外侧壁和所述第二壳体段的外侧壁通过第一连接件相连。
在本申请的一些实施例中,所述第一定位结构包括形成于所述第一壳体段的上端的第一定位凸起以及形成于所述第二壳体段的上端的第一定位槽,所述第一定位槽具有朝向下的第一开口,所述第一定位凸起适于经所述第一开口向上插入至所述第一定位槽内。
在本申请的一些实施例中,所述第二定位结构包括设于所述第一壳体段的下端的第一定位板以及设于所述第二壳体段的下端的第二定位板,所述第一定位板和所述第二定位板相对设置,所述第一定位板的朝向所述第二定位板的表面所述包括由上向下依次连接的第一定位段、第一拉紧段和第一支撑段,所述第二定位板的朝向所述第一定位板的表面包括由上向下依次连接的第二定位段、第二拉紧段和第二支撑段,所述第一定位段和所述第二定位段均垂直于所述第一方向且相互抵接,所述第一拉紧段和所述第二拉紧段均在由上向下的方向上朝向邻近第二壳体段的方向倾斜延伸且相互抵接,所述第一支撑段和所述第二支撑段沿水平方向延伸且所述第二支撑段支撑抵接于所述第一支撑段;其中,所述第一拉紧段和所述第二拉紧段通过所述第一紧固件相连。
在本申请的一些实施例中,所述第一连接件包括第一连接部、第一卡部和第二卡部,所述第一连接部位于所述第一壳体段和所述第二壳体段的外部且与所述第一壳体段和所述第二壳体段均通过第二紧固件相连,所述第一壳体段的外侧壁形成有第一卡孔,所述第二壳体段的外侧壁形成有第二卡孔,所述第一连接部平行于所述第一方向,所述第一卡部与所述第一连接部之间呈钝角设置且插入所述第一卡孔,所述第二卡部与所述第一连接部之间呈直角设置且插入所述第二卡孔。
根据本申请一些可选地实施例,多段所述设备模块还包括第三段设备模块,所述第二段设备模块连接在所述第一段设备模块和所述第三段设备模块之间,所述第三段设备模块包括第三壳体段和设于所述第三壳体段内的过滤组件,所述第三壳体段与所述第二壳体段可拆卸地连接。
在本申请的一些可选地实施例中,在生产装配所述设备模块的过程中,所述过滤组件适于在所述第三壳体段倒置时由上向下安装至所述第三壳体段内。
在本申请的一些可选地实施例中,所述第三壳体段包括第三主壳体和第三维修板,所述第三主壳体的底面具有第三维修口,所述过滤组件可拆卸地设于所述第三主壳体内,所述第三维修板可拆卸地盖设于所述第三维修口。
在本申请的一些可选地实施例中,所述第一壳体段与所述第二壳体段的连接方式为第一连接方式,所述第三壳体段与所述第二壳体段的连接方式为第二连接方式,所述第二连接方式与所述第一连接方式相同。
根据本申请的一些实施例,每段所述设备模块均具有安装吊耳。
根据本申请的一些实施例,多段所述设备模块沿第一方向排布,每段所述设备模块包括沿第二方向排布且适于相互隔断的第一风道段和第二风道段,所述第二方向垂直于所述第一方向,多段所述设备模块的所述第一风道段依次连通以构成第一风道,多段所述设备模块的所述第二风道段依次连通以构成第二风道,室外空气适于经所述第一风道进入室内,室内空气适于经所述第二风道排出至室外。
本申请的附加方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本申请的实践了解到。
附图说明
本申请的上述和/或附加的方面和优点从结合下面附图对实施例的描述中将变得明显和容易理解,其中:
图1是根据本申请一些实施例的空气调节设备的立体图;
图2是图1中的A处的放大图;
图3是图1中的B处的放大图;
图4是图1中的空气调节设备的分解图;
图5是图1中的空气调节设备的俯视图;
图6是沿图5中的C-C线的剖视图;
图7是图6中的D处的放大图;
图8是图6中的E处的放大图;
图9是图6中的F处的放大图;
图10是图6中的G处的放大图;
图11是图1中的空气调节设备的俯视图,其中第一顶板、第二顶板和第三顶板均被隐藏;
图12是图1中的空气调节设备的另一视角的立体图,其中第一底板和第三底板均被隐藏;
图13是图12中的H处的放大图;
图14是图1中的空气调节设备的又一视角的立体图,其中第一底板和第三底板均被隐藏;
图15是图14中的K处的放大图;
图16是图1中的第一段设备模块的立体图;
图17是图1中的第一段设备模块的另一视角的立体图;
图18是图1中的第一段设备模块的仰视图,其中第一底板被隐藏;
图19是图1中的第二段设备模块的立体图;
图20是图1中的第二段设备模块的另一视角的立体图;
图21是图1中的第二段设备模块的仰视图,其中第二底板被隐藏;
图22是图1中的第二段设备模块的立体图,其中第二段设备模块的第二主壳体被隐藏;
图23是图22中的第二段设备模块的另一视角的立体图;
图24是图1中的第三段设备模块的立体图;
图25是图1中的第三段设备模块的另一视角的立体图;
图26是图1中的第三段设备模块的仰视图,其中第三底板被隐藏;
图27是图3中的第一连接件的立体图。
附图标记:
100、空气调节设备;
10、第一段设备模块;
1、第一壳体段;11、第一主壳体;111、第一顶板;112、第一底板;113、第一侧板;1131、第一卡孔;1132、第二进风口;1133、第一出风口;1134、第一配合孔;114、第一安装口;115、第一维修口;116、第一风道段;117、第二风道段;118、密封端;119、敞开端;
12、第一维修板;
13、第一定位凸起;131、第一定位配合面;132、第一导向配合面;
14、第一定位板;141、第一定位段;142、第一拉紧段;143、第一支撑段;144、第一连接折边;1441、第一避让孔;
2、风机组件;
20、第二段设备模块;
3、第二壳体段;31、第二主壳体;311、第二顶板;312、第二底板;313、第二侧板;3131、第二卡孔;3132、第四卡孔;3133、第二配合孔;314、第二安装口;315、第二维修口;
32、框架;
33、第二维修板;
34、第一定位槽;342、第一导向面;343、第一定位面;
35、第三定位槽;352、第三导向面;353、第三定位面;
36、第二定位板;361、第二定位段;362、第二拉紧段;363、第二支撑段;
37、第四定位板;371、第四定位段;372、第四拉紧段;373、第四支撑段;
4、热泵系统;41、压缩机;42、第一换热器组件;43、第二换热器组件;
8、加湿组件;
30、第三段设备模块;
5、第三壳体段;51、第三主壳体;511、第三顶板;512、第三底板;513、第三侧板;5131、第三卡孔;5132、第二出风口;5133、第一进风口;5134、第三配合孔;514、第三安装口;515、第三维修口;
52、第三维修板;
53、第三定位凸起;531、第三定位配合面;532、第三导向配合面;
54、第三定位板;541、第三定位段;542、第三拉紧段;543、第三支撑段;544、第三连接折边;5441、第三避让孔;
6、过滤组件;
70、第一连接件;701、第一连接部;7011、第一连接孔;7012、第二连接孔;702、第一卡部;703、第二卡部;
90、安装吊耳。
具体实施方式
下面详细描述本申请的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,旨在用于解释本申请,而不能理解为对本申请的限制。
下面参考附图描述根据本申请实施例的空气调节设备100。
参照图1、图4-图6,根据本申请实施例的空气调节设备100,适于吊顶式安装于室内,且空气调节设备100包括多段设备模块,多段设备模块沿第一方向(参照附图中的e1方向)依次连接,第一方向平行于水平方向,相邻两段设备模块可拆卸连接。
需要解释的是,在本申请的描述中,“多段”的含义是两段或两段以上。
通过将空气调节设备100设置为多段,并将相邻的两段设备模块设置为可拆卸连接,在生产装配环节,可以对每段设备模块进行独立装配,由于多段设备模块沿第一方向依次连接,每段设备模块在第一方向上的尺寸较小,每段设备模块的重量较轻,这样便于翻转每段设备模块,便于对每段设备模块进行装配,可以提高装配效率。
由于每段模块可以进行独立装配,在对多段设备模块的其中一段进行装配时,可以避免其他段的设备模块在装配过程中的翻转需求而导致这一段设备模块旋转多次,降低空气调节设备100的装配工艺难度,提高生产效率。
在运输环节,可以将多段设备模块分别打包运输,由于每段设备模块在第一方向上的尺寸较小,每段设备模块的重量较轻,这样便于转运、放置每段设备模块,便于对空气调节设备100进行运输。
在安装环节,可以分多次将多段设备模块吊至室内顶部,每次可以只吊装一段设备模块,这样每次吊装的设备模块的重量较轻,便于安装人员对每段设备模块进行吊装,并将多段设备模块拼接在一起,将空气调节设备100装配到位,可以降低安装人员的工作强度,便于安装人员安装空气调节设备100。
在检修环节,当位于空气调节设备100的在第一方向上相对两端的两个设备模块中的一个出现故障时,可以将这个设备模块拆解下来,然后对其进行检修;当其余的设备模块中的一个出现故障时,可以将这一个设备模块与空气调节设备100的在第一方向上一端的设备模块之间的所有的设备模块拆卸下来,可以不必将这个设备模块沿第一方向另一侧的设备模块拆卸下来。这样可以不必将空气调节设备100整体拆卸下来,便于对空气调节设备100进行检修。
根据本申请实施例的空气调节设备100,通过设置多段依次连接的设备模块,并将相邻两个设备模块设置为可拆卸连接,在生产装配环节,便于翻转每段设备模块,便于对每段设备模块进行装配,降低空气调节设备100的装配工艺难度,提高装配效率;在运输环节,便于转运、放置每段设备模块,便于对空气调节设备100进行运输;在安装环节,可以分多次将多段设备模块吊至室内顶部,降低安装人员的工作强度,便于安装人员安装空气调节设备100;在检修环节,可以不必将空气调节设备100整体拆卸下来,便于对空气调节设备100进行检修。
参照图1、图4、图5、图12和图14,根据本申请的一些实施例,每段设备模块均具有安装吊耳90,例如天花板与空气调节设备100之间可以设有安装支架,安装支架与安装吊耳90通过固定件相连,以将每段设备模块相对天花板固定。每段设备模块可以通过与其对应的安装吊耳90吊装于室内,实现每段设备模块的独立安装。
例如,安装吊耳90可以抵接于安装支架的下方,固定件可以为紧固件,安装吊耳90通过固定件可拆卸地与安装支架相连。安装吊耳90也可以在上下方向与安装支架间隔设置,固定件可以为吊绳,安装吊耳90通过固定件悬吊于安装支架,在空气调节设备100与天花板之间预留一定的维修空间,其中吊绳可以为钢索或钢条。
在生产装配环节和运输环节,安装吊耳90可以为与其对应的设备模块提供挂点,当某一段的设备模块较重时,组装人员可以将行车的吊绳挂设于安装吊耳90上,可以通过起吊安装吊耳90将其对应的设备模块悬吊起来,将这段设备模块翻转,或将这段设备模块运输至指定位置。
通过在每段设备模块均设置安装吊耳90,安装吊耳90可以为与其对应的设备模块提供挂点,便于 翻转和运输每段设备模块,使得组装人员可以轻松地翻转每段设备模块,使得运输人员可以轻松地运送每段设备模块,提高空气处理模块的组装效率,提高运输效率。
参照图6、图7、图18、图21和图26,根据本申请的一些实施例,多段设备模块沿第一方向排布,每段设备模块包括第一风道段116和第二风道段117,第一风道段116和第二风道段117沿第二方向(参照附图中的e2方向)排布,且第一风道段116和第二风道段117相互隔断,第二方向垂直于第一方向,多段设备模块的第一风道段116依次连通以构成第一风道,多段设备模块的第二风道段117依次连通以构成第二风道82,室外空气适于经第一风道进入室内,室内空气适于经第二风道82排出至室外。
空气调节设备100在工作时,空气调节设备100可以驱动室内风沿室内至室外的方向依次流经多段设备模块的第一风道段116,将室内浊气从第二风道82排出至室外,空气调节设备100可以驱动室外新风依沿室外至室内的方向次流经第一进风口5133、第一风道和第一出风口1133,将室外新风从第二风道82吹入室内,从而改善室内的空气环境,使得用户可以在室内到呼吸新鲜、健康的空气。
例如,参照图6、图7、图18、图21和图26,根据本申请的一些具体地实施例中,位于空气调节设备100的在第一方向上相对两端的两个设备模块中一个具有第一进风口5133和第二出风口5132,且位于空气调节设备100的在第一方向上相对两端的两个设备模块中另一个具有第一进风口1132和第一出风口1133,其中第一风道适于连通第一进风口5133和第一出风口1133,第二风道82适于连通第一进风口1132和第二出风口5132,第一进风口5133与室外连通,第一出风口1133与室内连通,第一进风口1132与室内连通,第二出风口5132与室外连通。
例如,当空气调节设备100为两段式时,设备模块为两个,两个设备模块沿第一方向的两端分别为密封端118和敞开端119,两个设备模块的敞开端119适于对接在一起。当两个设备模块的敞开端119对接在一起时,两个设备模块的第一风道段116相互连通,两个设备模块的第二风道段117相互连通,两个设备模块中的一个的密封端118具有第一进风口5133和第二出风口5132,两个设备模块中的另一个的密封端118具有第一进风口1132和第一出风口1133。
例如,当空气调节设备100为三段式时,设备模块为三个,位于空气调节设备100的中间的设备模块沿第一方向的两端均为敞开端119,其余的两个设备模块沿第一方向的两端分别为密封端118和敞开端119。其余的两个设备模块中的一个的敞开端119与中间的设备模块的一端的敞开段119对接,其余的两个设备模块中的另一个的敞开端119与中间的设备模块的另一端的敞开段119对接。其余的两个设备模块中的一个的密封端118具有第一进风口5133和第二出风口5132,其余的两个设备模块中的另一个的密封端118具有第一进风口1132和第一出风口1133。
空气调节设备100在工作时,空气调节设备100可以驱动室内风依次流经第一进风口1132、第二风道82和第二出风口5132,从第二出风口5132将室内风排至室外,空气调节设备100可以驱动室外新风依次流经第一进风口5133、第一风道和第一出风口1133,从第一出风口1133将室外新风吹入室内,从而改善室内的空气环境,使得用户可以在室内到呼吸新鲜、健康的空气。
参照图1、图2、图4-图8,根据本申请的一些实施例,多段设备模块包括第一段设备模块10和第二段设备模块20,第一段设备模块10包括第一壳体段1和风机组件2,风机组件2设于第一壳体段1内,第二段设备模块20包括第二壳体段3和热泵系统4,热泵系统4包括压缩机41,热泵系统4设于第二壳体段3内,压缩机41设于第二风道段117内,第一壳体段1与第二壳体段3可拆卸地连接。
倒置压缩机41或将压缩机41倾斜较大的角度,均可以导致压缩机41发生故障。在生产装配环节,将热泵系统4安装至第二壳体段3时,需要先将第二壳体段3正置,然后压缩机41由上至下安装至第二壳体段3,将热泵系统4由上至下安装至第二壳体段3;在运输环节和安装环节,均需要将第二段设备模块20正置,且在安装环节还需要将第二段设备模块20调平,以保证压缩机41可以正常的使用。
将风机组件2和热泵系统4分别设于第一壳体段1内和第二壳体段3内,可以实现风机组件2和热泵系统4的独立组装,在生产环节,安装风机组件2的安装工艺可以不受热泵系统4的安装工艺的影响。这样使得风机组件2的安装方式更为灵活,便于优化风机组件2的安装工艺,便于安装人员安装风机组件2,提高安装效率。
例如,在将风机组件2安装至第一壳体段1时,可以在第一壳体段1正置时将风机组件2由上至下安装至第一壳体段1内,也可以在第一壳体段1倒置时将风机组件2由上至下安装至第一壳体段1内,从而使得风机组件2的安装方式更为灵活。
将风机组件2和热泵系统4分别设于第一壳体段1内和第二壳体段3内,还可以实现第一段设备模块10和第二段设备模块20的独立运输,在运输过程中可以根据运输空间的大小,灵活的放置第二段设备模块20,例如可以正置摆放第二段设备模块20,也可以倒置摆放第二段设备模块20,也可以侧置摆放第二段设备模块20,便于第二段设备模块20的运输。
在安装环节,将空气调节设备100吊设于室内时,可以分别起吊第一段设备模块10和第二段设备模 块20,在起吊第二段设备模块20的过程中,由于第二段设备模块20的尺寸较小且重量较轻,便于安装人员起吊第二段设备模块20,并且便于安装人员在起吊过程中控制第二段设备模块20的倾斜角度,将第二段壳体模块调平,安装难度较为简单,可以第二段壳体模块提高安装效率。
例如,热泵系统4包括压缩机、第一换热器组件42和第二换热器组件43,第一换热器组件42设于第二段设备模块20的第一风道段116中,第二换热器组件43设于第二段设备模块20的第二风道段117中,以将流经第一风道段166内的空气制冷(或制热),从而将制冷(或制热)后的空气吹入室内,实现空气调节设备100对室内环境温度的调节。
例如,第二段设备模块20还可以包括加湿组件8,加湿组件8设于第一风道段116且位于第二换热器组件43的下游侧,加湿组件8可以包括湿膜和水箱,在安装环节,也需要将加湿组件8调平,以保证加湿组件8的正常使用,将加湿组件8设于第二段设备模块20,安装人员可以对第二段设备模块20调平一次,将热泵系统4和加湿组件8均调平,便于安装人员调平热泵系统4和加湿组件8,提高空气调节设备100的安装效率。
参照图6、图11、图12、图14、图16-图23,根据本申请的一些实施例,在生产装配设备模块的过程中,风机组件2适于在第一壳体段1倒置时由上向下安装至第一壳体段1内,热泵系统4适于在第二壳体段3正置时由上向下安装至第二壳体段3内。
由上至下安装零件的方式,更为方便,在第一壳体段1倒置时,将风机组件2由上向下安装至第一壳体段1内,这样便于将风机组件2安装于第一壳体段1内,可以提高第一段设备模块10的生产效率。在第二壳体段3正置时,将热泵系统4由上向下安装至第二壳体段3内,这样便于将热泵系统4安装于第二壳体段3内,可以提高第二段设备模块20的生产效率。
由于空气调节设备100包括第一段设备模块10和第二段设备模块20,将风机组件2和热泵系统4分别设于第一壳体段1内和第二壳体段3内,可以实现第一段设备模块10和第二段设备模块20的独立组装。在生产环节,安装风机组件2的安装工序不受安装热泵系统4的安装工序的影响,从而可以实现风机组件2在第一壳体段1倒置时由上向下安装至第一壳体段1内。
例如,第二壳体段3包括第二顶板311和第二底板312,第二顶板311与第二底板312沿上下方向相对且间隔设置,第二壳体段3形成有第二安装口314,第二安装口314与第二底板312相对,第二顶板311盖设于第二安装口314。
在生产装配环节,组装第二段设备模块20时,可以先将第二壳体段3正置,将第二安装口314朝向上方敞开,然后从第二安装口314将热泵系统4由上向下安装至第二壳体段3内,例如将过滤组件6安装于第二底板312的内壁上,接着将第三顶板511由上至下盖设于第二安装口314,即可将第二段设备模块20组装完成,实现第二段设备模块20由上至下的安装顺序。
第一壳体段1包括第一顶板111和第一底板112,第一顶板111与第一底板112沿上下方向相对设置,第一壳体段1形成有第一安装口114,第一安装口114与第一顶板111相对,第一底板112封设于第一安装口114。
在生产装配环节,组装第一段设备模块10时,可以先将第一壳体段1倒置,将第一安装口114朝向上方敞开,然后从第一安装口114将风机组件2由上向下安装至第一壳体段1内,例如将风机组件2安装于第一顶板111的内壁上,接着将第一底板112由上至下盖设于第一安装口114,即可将第一段设备模块10组装完成,实现第一段设备模块10由上至下的安装顺序。
在检修环节,检修人员可以从空气调节设备100的底部将第一底板112拆卸下来,然后通过第一安装口114观察风机组件2、对风机组件2进行检修,这样便于检修人员对风机组件2进行检修。而且,在安装时,可以不必在第一段设备模块10的上方预留额外的检修空间,减少空气调节设备100占用的空间。
需要解释的是,在本申请的描述中,第一壳体段1正置是指:第一壳体段1的第一顶盖与第一底板112上下放置的方向与空气调节设备100安装完成后的第一壳体段1的第一顶盖与第一底板112上下放置的方向一致。第一壳体段1倒置是指:第一壳体段1的第一顶盖与第一底板112上下放置的方向与空气调节设备100安装完成后的第一壳体段1的第一顶盖与第一底板112上下放置的方向相反。
参照图12、图14、图16-图18,根据本申请的一些实施例,第一壳体段1包括第一主壳体11和第一维修板12,第一主壳体11的底面具有第一维修口115,第一维修板12可拆卸地盖设于第一维修口115。例如,第一维修口115可以为第一安装口114,第一维修板12可以为第一底板112。
在检修风机组件2时,检修人员可以先将第一维修板12从第一主壳体11上拆下,通过第一维修口115观察风机组件2,并通过第一维修口115对风机组件2进行检修(例如清理灰尘、排除风机组件2故障)。在检修完毕后,可以将风机组件2的被取出部分从维修口装回第一主壳体11,将第一维修板12盖设于第一维修口115。
通过设置第一维修口115并将第一维修板12可拆卸地设于第一维修口115,在检修风机组件2时,可以通过第一维修口115对风机组件2进行检修,可以不必将第一段设备模块10整体拆下,简单方便,便于检修人员对风机组件2进行维修。
风机组件2与第一维修口115相对,风机组件2的至少部分可拆卸地设于第一主壳体11内,风机组件2的至少部分可从第一维修口115取出,风机组件2的至少部分可从第一维修口115装入第一主壳体11。将风机组件2与维修口相对设置,便于检修人员通过第一维修口115拆卸风机组件2,便于检修人员对风机进行检修。
例如,风机组件2可以包括风机和蜗壳,风机可拆卸地设于蜗壳内,蜗壳包括第一蜗壳和第二蜗壳,第一蜗壳与第一主壳体11的内顶壁相连,第二蜗壳可拆卸地连接于第一蜗壳的下侧,风机与第一主壳体11的内顶壁相连;其中,第二蜗壳和风机均可从第一维修口115取出。
在检修风机组件2时,检修人员可以先将第一维修板12从第一主壳体11上拆下,通过第一维修口115观察风机组件2,并通过第一维修口115将风机组件2的至少部分从第一维修口115取出,例如可以仅将第二蜗壳从第一蜗壳上取下,也可以将第二蜗壳和风机从第一维修口115取出,对风机组件2进行检修(例如清理灰尘、排除风机组件2故障)。这样可以不必将风机组件2整体从机壳内取出,便于检修人员对风机进行检修。
参照图19-图21,根据本申请的一些实施例,第二壳体段3包括第二主壳体31和第二维修板33,第二主壳体31的侧面具有一个或多个沿第二主壳体31的周向间隔排布的第二维修口315,第二维修板33的数量与第二维修口315的数量相同且一一对应,第二维修板33可拆卸地盖设于对应的第二维修口315。例如第二维修板33可以通过紧固件可拆卸地盖设于第二维修口315,第二维修板33可以通过卡扣结构可拆卸地盖设于第二维修口315。
第二主壳体31的侧面是指第二主壳体31沿第一方向两侧的面和沿第二方向两侧的面。例如当空气调节设备100为三段式,第二段主壳体位于中间时,第二段主壳体沿第一方向的两端均为敞开端119,第二段主壳体还可以包括沿第二方向相对且间隔设置的两个第二侧板313,此时,第二主壳体31的侧面是指第二主壳体31的这两个侧板所在的面。
在检修热泵系统4时,可以先将第二维修板33从第二壳体段3上拆卸下来,然后通过第二维修口315观察热泵系统4,并对热泵系统4进行检修。将第二维修口315设于第二主壳体31的侧面,检修人员可以沿水平方向将第二维修板33板拆下,不占用第二段设备模块20的顶部空间,在安装空气调节设备100时,可以不必在第二段设备模块20的上方预留额外的检修空间,减少空气调节设备100占用的空间。
例如,第二壳体段3还可以包括框架32,第二主壳体31包覆于框架32的外侧,热泵系统4固定于框架32上。第二主壳体31包括第二顶板312、第二底板312和两个第二侧板313,第二顶板312盖设于框架32上方,第二底板312位于框架32的下侧,且第二底板312与框架32相连,两个第二侧板313分别设于框架32的第二方向的两端,且两个第二侧板313均与框架32相连。例如,第二维修板33可以为第二侧板313。
通过设置框架32结构,将热泵系统4固定于框架32上,框架32对热泵系统4提供支撑力,在拆卸第二维修板33时,框架32的结构不受影响,可以不破坏第二壳体段3的整体力学结构,实现第二维修板33的可拆装,结构简单。
参照图1-图10,在本申请的一些实施例中,第一壳体段1的上端与第二壳体段3的上端通过第一定位结构定位,第一壳体段1的下端与第二壳体段3的下端通过第二定位结构定位,第一壳体段1的下端和第二壳体段3的下端通过第一紧固件相连,第一壳体段1的外侧壁和第二壳体段3的外侧壁通过第一连接件70相连。
在安装空气调节设备100时,可以先将第二段设备模块20相对天花板吊设定位,然后起吊第一段设备模块10,以第二段设备模块20为基准,利用第一定位结构和第二定位结构将第一壳体段1相对第二壳体段3定位,将第一段设备模块10相对第二段设备模块20定位,接着利用第一紧固件将第一段设备模块10相对第二段设备模块20固定,利用第一连接件70将第一壳体段1的外侧壁和第二壳体段3的外侧壁连接在一起。
通过设置第一定位结构和第二定位结构,在安装空气调节设备100时,便于安装人员将第一壳体段1相对第二壳体段3定位,将第一段设备模块10相对第二段设备模块20定位,便于安装人员安装空气调节设备100。
通过设置第一紧固件连接第一壳体段1和第二壳体段3,设置第一连接件70连接第一壳体段1的外侧壁和第二壳体段3的外侧壁,可以在上下方向的多个位置将第一壳体段1相对第二壳体段3固定,将第一壳体段1和第二壳体段3沿第一方向可靠、紧密地连接在一起,防止第一壳体段1与第二壳体段3 的连接处漏气,保证空气调节设备100的整体性能。
参照图4-图10,在本申请的一些实施例中,第一定位结构包括第一定位凸起13和第一定位槽34,第一定位凸起13形成于第一壳体段1的上端,第一定位槽34形成于第二壳体段3的上端,第一定位槽34具有朝向下的第一开口,第一定位凸起13适于经第一开口向上插入至第一定位槽34内。
在安装空气调节设备100时,可以先将第二段设备模块20相对天花板定位,然后起吊第一段设备模块10,以第二段设备模块20为基准,将第一定位凸起13在上下方向对准第一定位槽34,然后向上推动第二段设备模块20,将第一定位凸起13推入第一定位槽34中,第一定位槽34与第一定位凸起13配合,即可将第一壳体段1相对第二壳体段3定位,将第一段设备模块10相对第二模块定位。
将第一定位槽34设于第二壳体段3,并将第一定位槽34的第一开口朝下设置,在第二段设备模块20相对天花板定位后,便于安装人员将第一定位凸起13由下至上从第一开口推入第一定位卡槽中,便于安装人员将第一段设备模块10相对第二模块定位,安装方便。
例如,参照图7,第一定位凸起13位于第一壳体段1的朝向第二壳体段3的一侧,第一定位槽34位于第二壳体段3的朝向第一壳体段1的一侧;第一定位槽34内形成有第一导向面342和第一定位面343,第一定位面343在第一方向上与第一导向面342相对,第一导向面342是在由下向上的方向上朝向第二壳体段3倾斜延伸的斜面,第一定位面343是沿竖直方向沿竖直方向延伸的平面。
第一定位凸起13形成有第一定位配合面131和第一导向配合面132,第一定位配合面131在第一方向上与第一定位面343抵接,第一导向面342在第一方向上与第一导向配合面132抵接,且第一导向配合面132适于沿第一导向面342滑动。
通过设置第一导向面342和第一导向配合面132,将第一导向面342朝向第二壳体段3倾斜设置,在第一定位凸起13向第一定位槽34内滑动时,第一导向面342可以抵接于第一导向面342上,继续推动第一定位凸起13可以沿着第一导向面342朝向第一定位槽34内滑动,将第一定位凸起13精准地卡入第一定位槽34中,将第一定位配合面131抵接与第一定位面343上,结构简单,安装方便。
在第一导向面342在第一方向上与第一导向配合面132抵接时,以第一导向面342为基准,第一导向面342可以对第一导向配合面132施加一个垂直于第一导向面342延伸方向且朝向第一导向配合面132的力。
将这个力沿第一方向和上下方向分解,可以得到一个沿第一方向从第一导向面342朝向第一导向配合面132的拉紧力,这个拉紧力可以将第一定位凸起13朝向第二壳体段3拉紧,将第一壳体段1朝向第二壳体段3拉紧,从而可以将第一定位配合面131沿第一方向可靠、紧密地抵接于第一定位面343,将第一壳体段1沿第一方向可靠、紧密地相对第二壳体段3定位,将第一段设备模块10可靠、紧密地相对第二段设备模块20定位,安装更为方便。
而且,将第一导向面342朝向第二壳体段3倾斜设置,第一开口较大,安装人员在向上推动第一段设备模块10时,可以不必将第一定位凸起13过于精准的对准第一定位槽34,便于安装人员将第一定位凸起13从第一开口推入第一定位槽34中,安装方便。
例如,第一导向面342的倾斜角度α的范围可以为30°-60°,例如第一导向面342的倾斜角度α可以为30°、35°、40°、45°、50°、55°或60°,在此倾倾斜角度范围,第一导向面342可以为第一导向配合面132提供一个较大的拉紧力,从而可以将第一定位配合面131沿第一方向可靠、紧密地抵接于第一定位面343,将第一壳体段1沿第一方向可靠、紧密地相对第二壳体段3定位,将第一段设备模块10可靠、紧密地相对第二段设备模块20定位。
例如,第一定位凸起13和第一定位槽34均是折边结构,这样可以使得第一定位凸起13和第一定位槽34的成型工艺更为简单,可以降低加工工艺难度,降低生产成本。
参照图4-图10,在本申请的一些实施例中,第二定位结构包括第一定位板14和第二定位板36,第一定位板14设于第一壳体段1的下端,第二定位板36设于第二壳体段3的下端,第一定位板14和第二定位板36相对设置。第一定位板14设于第一壳体段1的朝向第二壳体段3的一侧,第二定位板36设于第二壳体段3的朝向第一壳体段1的一侧。
第一定位板14的朝向第二定位板36的表面包括第一定位段141、第一拉紧段142和第一支撑段143,第一定位段141、第一拉紧段142和第一支撑段143由上向下依次连接。第二定位板36的朝向第一定位板14的表面包括第二定位段361、第二拉紧段362和第二支撑段363,第二定位段361、第二拉紧段362和第二支撑段363由上向下依次连接。
第一定位段141和第二定位段361均垂直于第一方向,且第一定位段141和第二定位段361相互抵接。第一拉紧段142和第二拉紧段362均在由上向下的方向上朝向邻近第二壳体段3的方向倾斜延伸,且第一拉紧段142和第二拉紧段362相互抵接,第一支撑段143和第二支撑段363沿水平方向延伸,且第二支撑段363支撑抵接于第一支撑段143;其中,第一拉紧段142和第二拉紧段362通过第一紧固件 相连。
通过设置垂直于第一方向的第一定位段141和第二定位段361,并将第一定位段141抵接于第二定位段361,第一定位段141与第二定位段361相互配合,可以使得第二定位结构更为精准地在第一方向上将第一壳体段1相对第二壳体段3相对定位。在安装第一壳体段1和第二壳体段3时,也便于用户将第一定位段141抵接与第二定位段361上,便于用户将第一壳体段1相对第二壳体段3相对定位,安装方便。
将第二支撑段363支撑抵接于第一支撑段143,第二支撑段363位于第一支撑段143的上方,第二定位板36位于第一定位板14的上方。在安装空气调节设备100时,可以先将第二段设备模块20相对天花板定位,以第二段设备模块20为基准,在上下方向将第一定位板14对准第二定位板36,起吊第一段设备模块10,将第一定位板14由上至下抵接于第二定位板36上,将第二壳体段3相对第一壳体段1定位,将第一段设备模块10相对第二段设备模块20定位。
这样可以实现第一设备模块可沿由上至下的方向安装定位,安装人员可以不必从空气调节设备100的顶部安装第一设备模块,可以不必在空气调节设备100的顶部预留额外的安装空间。而且,由下至上将第一段设备模块10,也便于安装人员安装第一段设备模块10并将第一段设备模块10相对第二段设备模块20定位,使得第一段设备模块10的安装更为方便。
通过设置沿水平方向设置的第一支撑段143和第二支撑段363,并将第二支撑段363支撑抵接于第一支撑段143,第一支撑段143可以对第一支撑段143起到一定的支撑作用,减轻固定第二段设备模块20的固定件的负荷,延长固定件的使用寿命。同时,在固定第二段设备模块20的固定件失效时,第一段设备模块10也可以通过第一支撑段143对第二段设备模块20起到支撑作用,提高空气调节设备100的安全性与可靠性。
在安装空气调节设备100时,可以在将第二段设备模块20相对天花板定位后,以第二段设备模块20为基准,在上下方向将第一支撑段143对准第二支撑段363,起吊第一段设备模块10,由下至上将第一支撑段143支撑抵接于第二支撑段363,将第二拉紧段362抵接支撑于第二拉紧段362,将第一定位面343抵接于第二定位面,然后利用第一紧固件将第一拉紧段142和第二拉紧段362固定在一起,即可将第一定位板14相对第二定位板36定位。
通过设置第一紧固件连接第一拉紧段142和第二拉紧段362,并将第一拉紧段142和第二拉紧段362均倾斜设置,在第一紧固件将第一拉紧段142和第二拉紧段362紧固在一起时,以第二拉紧段362为基准,第一紧固件可以对第一拉紧段142施加一个垂直于第一拉紧段142延伸方向且朝向第二拉紧段362的紧固力。
将这个紧固力沿第一方向和上下方向分解,可以得到一个沿第一方向从第一定位段141朝向第二定位段361的拉紧力和一个沿上下方向从第一支撑段143朝向第二支撑段363的拉紧力,从而可以将第一支撑段143沿上下方向可靠、紧密地抵接于第二支撑段363,将第一定位段141沿第一方向可靠、紧密地抵接于第二定位段361,将第一壳体段1可靠、紧密地相对第二壳体段3固定,将第一段设备模块10可靠、紧密地相对第二段设备模块20固定,结构简单。
例如,第一拉紧段142和第二拉紧段362的倾斜角度β的范围可以为30°-60°,例如第一拉紧段142和第二拉紧段362的倾斜角度β可以为30°、35°、40°、45°、50°、55°或60°,在此倾倾斜角度范围,沿第一方向从第一定位段141朝向第二定位段361的拉紧力较大,沿上下方向从第一支撑段143朝向第二支撑段363的拉紧力较大,从而可以将第一支撑段143沿上下方向可靠、紧密地抵接于第二支撑段363,将第一定位段141沿第一方向可靠、紧密地抵接于第二定位段361,将第一壳体段1可靠、紧密地相对第二壳体段3固定,将第一段设备模块10可靠、紧密地相对第二段设备模块20固定。
例如,第一定位板14还包括第一连接折边144,第一连接折边144呈L形,第一连接折边144的一端与第一支撑段143相连,第一连接折边144的另一端与第一主壳体段11的下端相连,以将第一定位板144相对第一主壳体段11固定,第一连接折边144上形成有用于避让第一紧固件的第一避让孔1441,通过设置第一避让孔1441便于安装第一紧固件。
参照图2、图3和图27,在本申请的一些实施例中,第一连接件70包括第一连接部701、第一卡部702和第二卡部703,第一连接部701位于第一壳体段1和第二壳体段3的外部,且第一连接部701与第一壳体段1和第二壳体段3均通过第二紧固件相连。
第一壳体段1的外侧壁形成有第一卡孔1131,第二壳体段3的外侧壁形成有第二卡孔3131,第一连接部701平行于第一方向,第一卡部702与第一连接部701之间呈钝角设置,且第一卡部702插入第一卡孔1131,第二卡部703与第一连接部701之间呈直角设置,且第二卡部703插入第二卡孔3131。
在第一壳体段1相对第二壳体段3定位后,可以先将第一连接件70的第一卡部702插入第一卡孔1131中,将第二卡部703插入第二卡孔3131中,然后用第二紧固件将第一连接件70和第二壳体段3 连接在一起,接着用第二紧固件将第一连接件70和第一壳体段1连接在一起,此时,第一壳体段1可以通过第一连接件70相对第二壳体段3固定。
由于第一卡部702与第一连接部701之间呈钝角设置,第二卡部703朝向第一卡部702的面可以与第二卡孔3131靠近第二壳体段3的内侧壁抵接,在用第二紧固件将第一连接件70固定于第二壳体段3,用第二紧固件将第一连接件70固定于第一壳体段1时,第一连接件70朝向第二壳体段3移动,第一卡部702与第二卡孔3131靠近第二壳体段3的内侧壁抵接并相对第二卡孔3131靠近第二壳体段3的内侧壁滑动,对第二卡孔3131靠近第二壳体段3的内侧壁施加一个沿第一方向朝向第二壳体段3的力,将第一壳体段1朝向第二壳体段3拉紧,将第一壳体段1紧密、可靠地固定在一起。
在安装第一壳体段1时,安装人员可以通过将第一连接件70固定于第一壳体段1和第二壳体段3,将第一壳体段1朝向第二壳体段3拉紧,实现第一壳体段1与第二壳体段3的紧密连接,可以不必朝第二壳体段3推动第一壳体段1,简单、省力,便于安装人员安装、定位第一壳体段1。
用第二紧固件将第一连接件70和第一壳体段1连接在一起时,第一连接件70可以在第二方向上的对第一壳体段1进行限位,将第一壳体段1与第二壳体段3对齐,进一步地防止漏气,提高空气调节设备100的整体性能。
例如,第一连接部701上形成有第一连接孔7011和第二连接孔7012,第一连接孔7011和第二连接孔7012沿第一方向间隔排列,第一连接孔7011为圆形孔,第二连接孔7012为腰形孔,第一连接孔7011沿第一方形延伸,第一连接孔7011靠近第二卡部703,第二连接孔7012靠近第一卡部702。
第一侧板113上形成有第一配合孔1134,第一配合孔1134与第二连接孔7012相对,第二侧板313上形成有第二配合孔3133,第二配合孔3133与第一连接孔7011相对,第一配合孔1134和第二配合孔3133均为圆形孔。第一紧固件适于穿设于第一连接孔7011和第二配合孔3133,以将第一连接件70与第二侧板313固定,第一紧固件适于穿设于第二连接孔7012和第一配合孔1134,以将第一连接件70与第一侧板113固定。
在安装第一连接件70时,可以先用第一紧固件将第一连接件70与第二侧板313连接在一起,然后用第一紧固件穿设于第二连接孔7012,将第一连接件70与第一侧板113连接在一起。第一紧固件与第二卡部703可以构成限位结构,将第一连接件70准确地相对第一主壳体11定位,从而可以将第一壳体段1相对第二壳体段3定位准确。由于第二连接孔7012为腰形孔,对第一配合孔3134的位置精度要求较低,可以降低第一配合孔3134的加工工艺难度,降低生产成本。
参照图1、图4-图6、图24-图26,根据本申请一些可选地实施例,多段设备模块还包括第三段设备模块30,第二段设备模块20连接在第一段设备模块10和第三段设备模块30之间,第三段设备模块30包括第三壳体段5和过滤组件6,例如过滤组件6可以包括滤网或净化器,过滤组件6设于第三壳体段5内,第三壳体段5与第二壳体段3可拆卸地连接。例如第三壳体段5可以通过紧固件可拆卸地连接于第二壳体段3,第三壳体段5也可以通过卡扣结构可拆卸地连接于第二壳体段3。
通过设置过滤组件6,可以使得空气调节设备100吹入室内的室外风更为洁净、健康。例如,过滤组件6可以设于第三设备模块的第一风道段116内,且过滤组件6靠近第一进风口5133,室外空气流经第一风道时,过滤组件6可以对室外空气起到净化作用,使得从第一出风口1133吹向室内的室外空气更为洁净、健康。
过滤组件6需要经常清洗或更换,将第三壳体段5与第二壳体段3可拆卸地连接,在清洗、或更换过滤组件6时,可以将第三壳体段5从第二壳体段3上拆下,然后将过滤组件6从第三壳体段5内取出,实现对过滤组件6的清洗和更换,可以不必将空气调节装置整体拆卸下来,便于对过滤组件6进行清洗和更换。
参照图1、图4-图6、图24-图26,在本申请的一些可选地实施例中,在生产装配设备模块的过程中,过滤组件6适于在第三壳体段5倒置时由上向下安装至第三壳体段5内。
由上至下安装零件的方式,更为方便,在第三壳体段5倒置时,将过滤组件6由上向下安装至第三壳体段5内,这样便于将过滤组件6安装于第三壳体段5内,可以提高第三段设备模块30的生产效率。
由于空气调节设备100包括第一段设备模块10、第二段设备模块20和第三段设备模块30,风机组件2、热泵系统4和过滤组件6分别设于第一壳体段1内、第二壳体段3内和第三壳体段5内,可以实现第一段设备模块10、第二段设备模块20和第三段设备模块30的独立组装。在生产环节,安装过滤组件6的安装工序不受安装风机组件2的安装工序以及安装热泵系统4的安装工序的影响,从而可以实现过滤组件6在第三壳体段5倒置时由上向下安装至第三壳体段5内。
例如,第三壳体段5可以包括第三底板512和第三顶板511,第三顶板511与第三底板512沿上下方向设置,第三壳体段5形成有第三安装口514,第三安装口514与第三顶板511相对,第三底板512封设于第三安装口514。
在生产装配环节,组装第三段设备模块30时,可以先将第三壳体段5倒置,将第三安装口514朝向上方敞开,然后从第三安装口514将过滤组件6由上向下安装至第三壳体段5内,例如将过滤组件6安装于第三顶板511的内壁上,接着将第三底板512由上至下盖设于第三安装口514,即可将第三段设备模块30组装完成。由上至下安装零件的方式,更为方便,这样便于将过滤组件6安装于第二壳体段3内,可以提高第三段设备模块30的生产效率。
在检修环节,检修人员可以从空气调节设备100的底部将第三底板512拆卸下来,然后通过第三安装口514观察过滤组件6、对过滤组件6进行检修,这样便于检修人员对过滤组件6进行检修。而且,在安装时,可以不必在第三段设备模块30的上方预留额外的检修空间,减少空气调节设备100占用的空间。
参照图1、图4-图6、图24-图26,在本申请的一些可选地实施例中,第三壳体段5包括第三主壳体51和第三维修板52,第三主壳体51的底面具有第三维修口515,例如第三维修口515可以形成于第三底板512上,过滤组件6可拆卸地设于第三主壳体51内,第三维修板52可拆卸地盖设于第三维修口515。例如第三维修板52可以通过紧固件可拆卸地盖设于第三维修口515,第三维修板52可以通过卡扣结构可拆卸地盖设于第三维修口515。
在检修过滤组件6时,可以先将第三维修板52从第三壳体段5上拆卸下来,然后通过第三维修口515观察过滤组件6,并对过滤组件6进行检修。将第三维修口515设于第三主壳体51的底面,检修人员可以沿上下方向将维修板拆下,不占用第三段设备模块30的顶部空间以及第三段设备模块30的沿第二方向两侧的空间,在安装空气调节模块时,可以不必在第二段设备模块20的上方预留额外的检修空间,减少空气调节设备100占用的空间。
参照图1-图10,在本申请的一些可选地实施例中,第一壳体段1与第二壳体段3的连接方式为第一连接方式,第三壳体段5与第二壳体段3的连接方式为第二连接方式,第二连接方式与第一连接方式相同。这样可以降低第二连接方式的设计难度,降低第二连接方式所涉及到的连接结构的加工工艺的设计难度,降低生产成本。
参照图1-图10,在本申请的一些实施例中,第三壳体段5的上端与第二壳体段3的上端通过第三定位结构定位,第三壳体段5的下端与第二壳体段3的下端通过第四定位结构定位,第三壳体段5的下端和第二壳体段3的下端通过第三紧固件相连,第三壳体段5的外侧壁和第二壳体段3的外侧壁通过第一连接件70相连。
在安装空气调节设备100时,可以先将第二段设备模块20相对天花板吊设定位,然后起吊第三段设备模块30,以第二段设备模块20为基准,利用第三定位结构和第四定位结构将第一壳体段1相对第二壳体段3定位,将第三段设备模块30相对第二段设备模块20定位,接着利用第三紧固件将第三段设备模块30相对第二段设备模块20固定,利用第一连接件70将第一壳体段1的外侧壁和第二壳体段3的外侧壁连接在一起。
通过设置第三定位结构和第四定位结构,在安装空气调节设备100时,便于安装人员将第三壳体段5相对第二壳体段3定位,将第三段设备模块30相对第二段设备模块20定位,便于安装人员安装空气调节设备100。
通过设置第三紧固件连接第三壳体段5和第二壳体段3,设置第一连接件70连接第三壳体段5的外侧壁和第二壳体段3的外侧壁,可以在上下方向的多个位置将第三壳体段5相对第二壳体段3固定,将第三壳体段5和第二壳体段3沿第一方向可靠、紧密地连接在一起,防止第三壳体段5与第二壳体段3的连接处漏气,保证空气调节设备100的整体性能。
参照图4-图10,在本申请的一些实施例中,第三定位结构包括第三定位凸起53和第三定位槽35,第三定位凸起53形成于第三壳体段5的上端,第三定位槽35形成于第二壳体段3的上端,第三定位槽35具有朝向下的第三开口,第三定位凸起53适于经第三开口向上插入至第三定位槽35内。
在安装空气调节设备100时,可以先将第二段设备模块20相对天花板定位,然后起吊第三段设备模块30,以第二段设备模块20为基准,将第三定位凸起53在上下方向对准第三定位槽35,然后向上推动第三段设备模块30,将第三定位凸起53推入第三定位槽35中,第三定位槽35与第三定位凸起53配合,即可将第三壳体段5相对第二壳体段3定位,将第三段设备模块30相对第二模块定位。
将第三定位槽35设于第二壳体段3,并将第三定位槽35的第三开口朝下设置,在第二段设备模块20相对天花板定位后,便于安装人员将第三定位凸起53由下至上从第三开口推入第三定位槽35中,便于安装人员将第三段设备模块30相对第二段设备模块20定位,安装方便。
例如,参照图7,第三定位凸起53位于第三壳体段5的朝向第二壳体段3的一侧,第三定位槽35位于第二壳体段3的朝向第三壳体段5的一侧;第三定位槽35内形成有第三导向面352和第三定位面353,第三定位面353在第一方向上与第三导向面352相对,第三导向面352是在由下向上的方向上朝 向第二壳体段3倾斜延伸的斜面,第三定位面353是沿竖直方向沿竖直方向延伸的平面。
第三定位凸起53形成有第三定位配合面531和第三导向配合面532,第三定位配合面531在第一方向上与第三定位面353抵接,第三导向面352在第一方向上与第三导向配合面532抵接,且第三导向配合面532适于沿第三导向面352滑动。
通过设置第三导向面352和第三导向配合面532,将第三导向面352朝向第二壳体段3倾斜设置,在第三定位凸起53朝向第三定位槽35内滑动时,第三导向面352可以抵接于第三导向面352上,继续推动第三段设备模块30,第三定位凸起53可以沿着第三导向面352朝向第三定位槽35内滑动,将第三定位凸起53精准地卡入第三定位槽35中,将第三定位配合面531抵接与第三定位面353上,结构简单,安装方便。
在第三导向面352在第二方向上与第三导向配合面532抵接时,以第三导向面352为基准,第三导向面352可以对第三导向配合面532施加一个垂直于第三导向面352延伸方向且朝向第三导向配合面532的力。
将这个力沿第一方向和上下方向分解,可以得到一个沿第一方向从第三导向面352朝向第三导向配合面532的拉紧力,这个拉紧力可以将第三定位凸起53朝向第二壳体段3拉紧,将第三壳体段5朝向第二壳体段3拉紧,从而可以将第三定位配合面531沿第一方向可靠、紧密地抵接于第三定位面353,将第三壳体段5沿第一方向可靠、紧密地相对第二壳体段3定位,将第三段设备模块30可靠、紧密地相对第二段设备模块20定位,安装更为方便。
而且,将第三导向面352朝向第二壳体段3倾斜设置,第三开口较大,安装人员在向上推动第三段设备模块30时,可以不必将第三定位凸起53过于精准的对准第三定位槽35,便于安装人员将第三定位凸起53从第三开口推入第三定位槽35中,安装方便。
例如,第三导向面352的倾斜角度γ的范围可以为30°-60°,例如第三导向面352的倾斜角度γ可以为30°、35°、40°、45°、50°、55°或60°,在此倾倾斜角度范围,第三导向面352可以为第三导向配合面532提供一个较大的拉紧力,从而可以将第三定位配合面531沿第一方向可靠、紧密地抵接于第三定位面353,将第三壳体段5沿第一方向可靠、紧密地相对第二壳体段3定位,将第三段设备模块30可靠、紧密地相对第二段设备模块20定位。
例如,第三定位凸起53和第三定位槽35均是折边结构,这样可以使得第三定位凸起53和第三定位槽35的成型工艺更为简单,可以降低加工工艺难度,降低生产成本。
参照图4-图10,在本申请的一些实施例中,第四定位结构包括第三定位板54和第四定位板37,第三定位板54设于第三壳体段5的下端,第四定位板37设于第二壳体段3的下端,第三定位板54和第四定位板37相对设置。第四定位板37设于第三壳体段5的朝向第二壳体段3的一侧,第三定位板54设于第二壳体段3的朝向第三壳体段5的一侧。
第三定位板54的朝向第四定位板37的表面包括第三定位段541、第三拉紧段542和第三支撑段543,第三定位段541、第三拉紧段542和第三支撑段543由上向下依次连接。第四定位板37的朝向第三定位板54的表面包括第四定位段371、第四拉紧段372和第四支撑段373,第四定位段371、第四拉紧段372和第四支撑段373由上向下依次连接。
第三定位段541和第四定位段371均垂直于第一方向,且第三定位段541和第四定位段371相互抵接。第三拉紧段542和第四拉紧段372均在由上向下的方向上朝向邻近第二壳体段3的方向倾斜延伸,且第三拉紧段542和第四拉紧段372相互抵接,第三支撑段543和第四支撑段373沿水平方向延伸,且第四支撑段373支撑抵接于第三支撑段543;其中,第三拉紧段542和第四拉紧段372通过第四紧固件相连。
通过设置垂直于第一方向的第三定位段541和第四定位段371,并将第三定位段541抵接于第四定位段371,第三定位段541与第四定位段371相互配合,可以使得第四定位结构更为精准地在第一方向上将第三壳体段5相对第二壳体段3相对定位。在安装第三壳体段5和第二壳体段3时,便于用户将第三定位段541抵接与第四定位段371上,便于用户将第三壳体段5相对第二壳体段3相对定位,安装方便。
将第四支撑段373支撑抵接于第三支撑段543,第四支撑段373位于第三支撑段543的上方,第四定位板37位于第三定位板54的上方。在安装空气调节设备100时,可以先将第二段设备模块20相对天花板定位,以第二段设备模块20为基准,在上下方向将第三定位板54对准第四定位板37,起吊第三段设备模块30,将第三定位板54由上至下抵接于第四定位板37上,将第三壳体段5相对第二壳体段3定位,将第三段设备模块30相对第二段设备模块20定位。
这样可以实现第三设备模块可沿由上至下的方向安装定位,安装人员可以不必从空气调节设备100的顶部安装第三段设备模块30,可以不必在空气调节设备100的顶部预留额外的安装空间。而且,由下 至上将第三段设备模块30,也便于安装人员安装第三段设备模块30并将第三段设备模块30相对第二段设备模块20定位,使得第三段设备模块30的安装更为方便。
通过设置沿水平方向设置的第三支撑段543和第四支撑段373,并将第四支撑段373支撑抵接于第三支撑段543,第三支撑段543可以对第四支撑段373起到一定的支撑作用,减轻固定第二段设备模块20的固定件的负荷,延长固定件的使用寿命。同时,在固定第二段设备模块20的固定件失效时,第三段设备模块30也可以通过第三支撑段543对第二段设备模块20起到支撑作用,提高空气调节设备100的安全性与可靠性。
在安装空气调节设备100时,可以在将第二段设备模块20相对天花板定位后,以第二段设备模块20为基准,在上下方向将第三支撑段543对准第四支撑段373,起吊第三段设备模块30,由下至上将第三支撑段543支撑抵接于第四支撑段373,将第三拉紧段542抵接支撑于第四拉紧段372,将第三定位段541抵接于第四定位段371,然后利用第四紧固件将第三拉紧段542和第四拉紧段372固定在一起,即可将第三定位板54相对第四定位板37定位。
通过设置第四紧固件连接第三拉紧段542和第四拉紧段372,并将第三拉紧段542和第四拉紧段372均倾斜设置,在第四紧固件将第三拉紧段542和第四拉紧段372紧固在一起时,以第四拉紧段372为基准,第四紧固件可以对第三拉紧段542施加一个垂直于第三拉紧段542延伸方向且朝向第四拉紧段372的紧固力。
将这个紧固力沿第一方向和上下方向分解,可以得到一个沿第一方向从第三定位段541朝向第四定位段371的拉紧力和一个沿上下方向从第三支撑段543朝向第四支撑段373的拉紧力,从而可以将第三支撑段543沿上下方向可靠、紧密地抵接于第四支撑段373,将第三定位段541沿第一方向可靠、紧密地抵接于第四定位段371,将第三壳体段5可靠、紧密地相对第二壳体段3固定,将第三段设备模块30可靠、紧密地相对第二段设备模块20固定,结构简单。
例如,第三拉紧段542和第四拉紧段372的倾斜角度δ的范围可以为30°-60°,例如第三拉紧段542和第四拉紧段372的倾斜角度δ可以为30°、35°、40°、45°、50°、55°或60°,在此倾倾斜角度δ的范围内,沿第一方向从第三定位段541朝向第四定位段371的拉紧力较大,沿上下方向从第三支撑段543朝向第四支撑段373的拉紧力较大,从而可以将第三支撑段543沿上下方向可靠、紧密地抵接于第四支撑段373,将第三定位段541沿第一方向可靠、紧密地抵接于第四定位段371,将第三壳体段5可靠、紧密地相对第二壳体段3固定,将第三段设备模块30可靠、紧密地相对第二段设备模块20固定。
例如,第三定位板54还包括第三连接折边544,第三连接折边544呈L形,第三连接折边544的一端与第三支撑段543相连,第三连接折边544的另一端与第三主壳体段31的下端相连,以将第三定位板544相对第三主壳体段31固定,第三连接折边544上形成有用于避让第四紧固件的第三避让孔5441,通过设置第三避让孔5441便于安装第四紧固件。
参照图2、图3和图27,在本申请的一些实施例中,第一连接部701位于第三壳体段5和第二壳体段3的外部,且第一连接部701与第三壳体段5和第二壳体段3均通过第五紧固件相连。第三壳体段5的外侧壁形成有第三卡孔5131,第二壳体段3的外侧壁形成有第四卡孔3132,第一卡部702插入第三卡孔5131,第二卡部703插入第四卡孔3132。
在第三壳体段5相对第二壳体段3定位后,可以先将第一连接件70的第一卡部702插入第三卡孔5131中,将第二卡部703插入第四卡孔3132中,然后用第五紧固件将第一连接件70和第二壳体段3连接在一起,接着用第五紧固件将第一连接件70和第三壳体段5连接在一起,此时,第三壳体段5可以通过第一连接件70相对第二壳体段3固定。
由于第一卡部702与第一连接部701之间呈钝角设置,第一卡部702朝向第二卡部703的面可以与第三卡孔5131靠近第二壳体段3的内侧壁抵接,在用第五紧固件将第一连接件70固定于第二壳体,用第二紧固件将第一连接件70固定于第三壳体段5时,第一连接件70朝向第二壳体段3移动,第一卡部702可以抵接于第三卡孔5131靠近第二壳体段3的内侧壁,且相对第三卡孔5131靠近第二壳体段3的内侧壁滑动,对第三卡孔5131靠近第二壳体段3的内侧壁施加一个沿第一方向朝向第二壳体段3的力,将第三壳体段5朝向第二壳体段3拉紧,将第三壳体段5与第二壳体段3紧密、可靠地固定在一起。
在安装第三壳体段5时,安装人员可以通过将第一连接件70固定于第三壳体段5和第二壳体段3,将第三壳体段5朝向第二壳体段3拉紧,实现第三壳体段5与第二壳体段3的紧密连接,可以不必朝第二壳体段3推动第三壳体段5,简单、省力,便于安装人员安装、定位第三壳体段5。
用第五紧固件将第一连接件70和第三壳体段5连接在一起时,第一连接件70可以在第二方向上的对第三壳体段5进行限位,将第三壳体段5与第二壳体段3对齐,进一步地防止漏气,提高空气调节模块的整体性能。
参照图1-图3,第三侧板513上形成有第三配合孔5134,第三配合孔5134与第二连接孔7012相对, 第二侧板313上形成有第二配合孔3133,第二配合孔3133与第一连接孔7011相对,第三配合孔5134和第二配合孔3133均为圆形孔。第五紧固件适于穿设于第一连接孔7011和第二配合孔3133,以将第一连接件70与第二侧板313固定,第五紧固件适于穿设于第二连接孔7012和第三配合孔5134,以将第一连接件70与第三侧板513固定。
在安装第一连接件70时,可以先用第五紧固件将第一连接件70与第二侧板313连接在一起,然后用第五紧固件穿设于第二连接孔7012,将第一连接件70与第三侧板513连接在一起。第五紧固件与第二卡部703可以构成限位结构,将第一连接件70准确地相对第二主壳体51定位,从而可以将第三壳体段5相对第二壳体段3定位准确。由于第二连接孔7012为腰形孔,对第三配合孔5134的位置精度要求较低,可以降低第三配合孔5134的加工工艺难度,降低生产成本。
下面参照图1-图27描述根据本申请一个具体实施例的空气调节设备100。
参照1和图3,在本实施例中,空气调节设备100为三段式,空气调节设备100包括第一段设备模块10、第二段设备模块20和第三段设备模块30,第一段设备模块10、第二段设备模块20和第三段设备模块30沿第一方向依次连接,第一方向平行于水平方向,相邻两段设备模块可拆卸连接,每段设备模块均具有安装吊耳90。
参照图6、图7、图18、图21和图26,根据本申请的一些实施例,每段设备模块包括第一风道段116和第二风道段117,第一风道段116和第二风道段117沿第二方向排布,且第一风道段116和第二风道段117相互隔断,第二方向垂直于第一方向,多段设备模块的第一风道段116依次连通以构成第一风道,多段设备模块的第二风道段117依次连通以构成第二风道82,室外空气适于经第一风道进入室内,室内空气适于经第二风道82排出至室外。
第二段设备模块20沿第一方向的两端均为敞开端119,第一段设备模块10和第三段设备模块30沿第一方向的两端分别为密封端118和敞开端119。第一段设备模块10的敞开端119与第二段设备模块20的一端的敞开段119对接,第三段设备模块30的敞开端119与第二段设备模块20的另一端的敞开段119对接。第三段设备模块30的密封端118具有第一进风口5133和第二出风口5132,第一段设备模块10的密封端118具有第一进风口1132和第一出风口1133。
参照图1、图2、图4-图8,第一段设备模块10包括第一壳体段1、加湿组件8和风机组件2,加湿组件8和风机组件2设于第一壳体段1内,第二段设备模块20包括第二壳体段3和热泵系统4,热泵系统4包括压缩机、第一换热器组件42和第二换热器组件43,第一换热器组件42设于第二段设备模块20的第一风道段116中,第二换热器组件43设于第二段设备模块20的第二风道段117中,热泵系统4设于第二壳体段3内,第一壳体段1与第二壳体段3可拆卸地连接。
参照图6、图11、图12、图14、图16-图23,第二壳体段3包括第二主壳体31和第二维修板33,第二主壳体31的侧面具有一个或多个沿第二主壳体31的周向间隔排布的第二维修口315,第二维修板33的数量与第二维修口315的数量相同且一一对应,第二维修板33可拆卸地盖设于对应的第二维修口315。
第二壳体段3还可以包括框架32,第二主壳体31包覆于框架32的外侧,热泵系统4固定于框架32上。第二主壳体31包括第二顶板312、第二底板312和两个第二侧板313,第二顶板312盖设于框架32上方,第二底板312位于框架32的下侧,且第二底板312与框架32相连,两个第二侧板313分别设于框架32的第二方向的两端,且两个第二侧板313均与框架32相连。例如,第二维修板33可以为第二侧板313。
第二顶板311与第二底板312沿上下方向相对且间隔设置,第二壳体段3形成有第二安装口314,第二安装口314与第二底板312相对,第二顶板311盖设于第二安装口314。热泵系统4适于在第二壳体段3正置,从第二安装口314由上向下安装至第二壳体段3内。
参照图12、图14、图16-图18,第一壳体段1包括第一主壳体11和第一维修板12,第一主壳体11的底面具有第一维修口115,第一维修板12可拆卸地盖设于第一维修口115。例如,第一维修口115可以为第一安装口114,第一维修板12可以为第一底板112。
第一主壳体11包括第一顶板111和第一底板112,第一顶板111与第一底板112沿上下方向相对设置,第一壳体段1形成有第一安装口114,第一安装口114与第一顶板111相对,第一底板112封设于第一安装口114。风机组件2适于在第一壳体段1倒置时,从第一安装口114由上向下安装至第一壳体段1内。
风机组件2与第一维修口115相对,风机组件2的至少部分可拆卸地设于第一主壳体11内,风机组件2的至少部分可从第一维修口115取出,风机组件2的至少部分可从第一维修口115装入第一主壳体11。
参照图1-图10,在本申请的一些实施例中,第一壳体段1的上端与第二壳体段3的上端通过第一定位结构定位,第一壳体段1的下端与第二壳体段3的下端通过第二定位结构定位,第一壳体段1的下端和第二壳体段3的下端通过第一紧固件相连,第一壳体段1的外侧壁和第二壳体段3的外侧壁通过第一连接件70相连。
第一定位结构包括第一定位凸起13和第一定位槽34,第一定位凸起13形成于第一壳体段1的上端,第一定位槽34形成于第二壳体段3的上端,第一定位槽34具有朝向下的第一开口,第一定位凸起13适于经第一开口向上插入至第一定位槽34内。
第一定位凸起13位于第一壳体段1的朝向第二壳体段3的一侧,第一定位槽34位于第二壳体段3的朝向第一壳体段1的一侧;第一定位槽34内形成有第一导向面342和第一定位面343,第一定位面343在第一方向上与第一导向面342相对,第一导向面342是在由下向上的方向上朝向第二壳体段3倾斜延伸的斜面,第一定位面343是沿竖直方向沿竖直方向延伸的平面。例如,第一导向面342的倾斜角度α的范围可以为30°-60°。例如,第一定位凸起13和第一定位槽34均是折边结构。
第一定位凸起13形成有第一定位配合面131和第一导向配合面132,第一定位配合面131在第一方向上与第一定位面343抵接,第一导向面342在第一方向上与第一导向配合面132抵接,且第一导向配合面132适于沿第一导向面342滑动。
参照图4-图10,第二定位结构包括第一定位板14和第二定位板36,第一定位板14设于第一壳体段1的下端,第二定位板36设于第二壳体段3的下端,第一定位板14和第二定位板36相对设置。第一定位板14设于第一壳体段1的朝向第二壳体段3的一侧,第二定位板36设于第二壳体段3的朝向第一壳体段1的一侧。
第一定位板14的朝向第二定位板36的表面包括第一定位段141、第一拉紧段142和第一支撑段143,第一定位段141、第一拉紧段142和第一支撑段143由上向下依次连接。第二定位板36的朝向第一定位板14的表面包括第二定位段361、第二拉紧段362和第二支撑段363,第二定位段361、第二拉紧段362和第二支撑段363由上向下依次连接。
第一定位段141和第二定位段361均垂直于第一方向,且第一定位段141和第二定位段361相互抵接。第一拉紧段142和第二拉紧段362均在由上向下的方向上朝向邻近第二壳体段3的方向倾斜延伸,且第一拉紧段142和第二拉紧段362相互抵接,第一支撑段143和第二支撑段363沿水平方向延伸,且第二支撑段363支撑抵接于第一支撑段143;其中,第一拉紧段142和第二拉紧段362通过第一紧固件相连。
第一定位板14还包括第一连接折边144,第一连接折边144呈L形,第一连接折边144的一端与第一支撑段143相连,第一连接折边144的另一端与第一主壳体段11的下端相连,以将第一定位板144相对第一主壳体段11固定,第一连接折边144上形成有用于避让第一紧固件的第一避让孔1441。
参照图1-图3、图27,第一连接件70包括第一连接部701、第一卡部702和第二卡部703,第一连接部701位于第一壳体段1和第二壳体段3的外部,且第一连接部701与第一壳体段1和第二壳体段3均通过第二紧固件相连。
第一壳体段1的外侧壁形成有第一卡孔1131,第二壳体段3的外侧壁形成有第二卡孔3131,第一连接部701平行于第一方向,第一卡部702与第一连接部701之间呈钝角设置,且第一卡部702插入第一卡孔1131,第二卡部703与第一连接部701之间呈直角设置,且第二卡部703插入第二卡孔3131。
第一连接部701上形成有第一连接孔7011和第二连接孔7012,第一连接孔7011和第二连接孔7012沿第一方向间隔排列,第一连接孔7011为圆形孔,第二连接孔7012为腰形孔,第一连接孔7011沿第一方形延伸,第一连接孔7011靠近第二卡部703,第二连接孔7012靠近第一卡部702。
第一侧板113上形成有第一配合孔1134,第一配合孔1134与第二连接孔7012相对,第二侧板313上形成有第二配合孔3133,第二配合孔3133与第一连接孔7011相对,第一配合孔1134和第二配合孔3133均为圆形孔。第一紧固件适于穿设于第一连接孔7011和第二配合孔3133,以将第一连接件70与第二侧板313固定,第一紧固件适于穿设于第二连接孔7012和第一配合孔1134,以将第一连接件70与第一侧板113固定。
参照图1、图4-图6、图24-图26,第三段设备模块30包括第三壳体段5和过滤组件6,例如过滤组件6可以包括滤网或净化器,过滤组件6设于第三壳体段5内,第三壳体段5与第二壳体段3可拆卸地连接。例如第三壳体段5可以通过紧固件可拆卸地连接于第二壳体段3,第三壳体段5也可以通过卡扣结构可拆卸地连接于第二壳体段3。
参照图1、图4-图6、图24-图26,第三壳体段5包括第三主壳体51和第三维修板52,第三主壳体51的底面具有第三维修口515,例如第三维修口515可以形成于第三底板512上,过滤组件6可拆卸地设于第三主壳体51内,第三维修板52可拆卸地盖设于第三维修口515。例如第三维修板52可以通 过紧固件可拆卸地盖设于第三维修口515,第三维修板52可以通过卡扣结构可拆卸地盖设于第三维修口515。
第三主壳体51包括第三底板512和第三顶板511,第三顶板511与第三底板512沿上下方向设置,第三壳体段5形成有第三安装口514,第三安装口514与第三顶板511相对,第三底板512封设于第三安装口514。过滤组件6适于在第三壳体段5倒置时,从第三安装口514由上向下安装至第三壳体段5内。
参照图4-图10,第三壳体段5的上端与第二壳体段3的上端通过第三定位结构定位,第三壳体段5的下端与第二壳体段3的下端通过第四定位结构定位,第三壳体段5的下端和第二壳体段3的下端通过第三紧固件相连,第三壳体段5的外侧壁和第二壳体段3的外侧壁通过第一连接件70相连。
第三定位结构包括第三定位凸起53和第三定位槽35,第三定位凸起53形成于第三壳体段5的上端,第三定位槽35形成于第二壳体段3的上端,第三定位槽35具有朝向下的第三开口,第三定位凸起53适于经第三开口向上插入至第三定位槽35内。
参照图7,第三定位凸起53位于第三壳体段5的朝向第二壳体段3的一侧,第三定位槽35位于第二壳体段3的朝向第三壳体段5的一侧;第三定位槽35内形成有第三导向面352和第三定位面353,第三定位面353在第一方向上与第三导向面352相对,第三导向面352是在由下向上的方向上朝向第二壳体段3倾斜延伸的斜面,第三定位面353是沿竖直方向沿竖直方向延伸的平面。
第三定位凸起53形成有第三定位配合面531和第三导向配合面532,第三定位配合面531在第一方向上与第三定位面353抵接,第三导向面352在第一方向上与第三导向配合面532抵接,且第三导向配合面532适于沿第三导向面352滑动。
例如,第三导向面352的倾斜角度γ的范围可以为30°-60°,例如,第三定位凸起53和第三定位槽35均是折边结构,第三定位板54还包括第三连接折边544,第三连接折边544呈L形,第三连接折边544的一端与第三支撑段543相连,第三连接折边544的另一端与第三主壳体段31的下端相连,以将第三定位板544相对第三主壳体段31固定,第三连接折边544上形成有用于避让第四紧固件的第三避让孔5441。
第三壳体段5和第二壳体段3通过第一连接部701相连,第一连接部701位于第三壳体段5和第二壳体段3的外部,且第一连接部701与第三壳体段5和第二壳体段3均通过第五紧固件相连。第三壳体段5的外侧壁形成有第三卡孔5131,第二壳体段3的外侧壁形成有第四卡孔3132,第一卡部702插入第三卡孔5131,第二卡部703插入第四卡孔3132。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示例”、“具体示例”、或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本申请的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不必须针对的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任一个或多个实施例或示例中以合适的方式结合。此外,在不相互矛盾的情况下,本领域的技术人员可以将本说明书中描述的不同实施例或示例以及不同实施例或示例的特征进行结合和组合。
尽管已经示出和描述了本申请的实施例,本领域的普通技术人员可以理解:在不脱离本申请的原理和宗旨的情况下可以对这些实施例进行多种变化、修改、替换和变型,本申请的范围由权利要求及其等同物限定。

Claims (15)

  1. 一种空气调节设备,其中,适于吊顶式安装于室内且包括:
    沿第一方向依次连接的多段设备模块,所述第一方向平行于所述水平方向,相邻两段所述设备模块可拆卸连接。
  2. 根据权利要求1所述的空气调节设备,其中,多段所述设备模块包括第一段设备模块和第二段设备模块,所述第一段设备模块包括第一壳体段和设于所述第一壳体段内的风机组件,所述第二段设备模块包括第二壳体段和设于所述第二壳体段内的热泵系统,所述第一壳体段与所述第二壳体段可拆卸地连接。
  3. 根据权利要求2所述的空气调节设备,其中,在生产装配所述设备模块的过程中,所述风机组件适于在所述第一壳体段倒置时由上向下安装至所述第一壳体段内,所述热泵系统适于在所述第二壳体段正置时由上向下安装至所述第二壳体段内。
  4. 根据权利要求2所述的空气调节设备,其中,所述第一壳体段包括第一主壳体和第一维修板,所述第一主壳体的底面具有第一维修口,所述风机组件的至少部分可拆卸地设于所述第一主壳体内,所述第一维修板可拆卸地盖设于所述第一维修口。
  5. 根据权利要求2所述的空气调节设备,其中,所述第二壳体段包括第二主壳体和第二维修板,所述第二主壳体的侧面具有一个或多个沿所述第二主壳体的周向间隔排布的第二维修口,所述第二维修板的数量与所述第二维修口的数量相同且一一对应,所述第二维修板可拆卸地盖设于对应的所述第二维修口。
  6. 根据权利要求2所述的空气调节设备,其中,所述第一壳体段的上下两端与所述第二壳体段的上下两端分别通过第一定位结构、第二定位结构定位,所述第一壳体段的下段和所述第二壳体段的下端通过第一紧固件相连,所述第一壳体段的外侧壁和所述第二壳体段的外侧壁通过第一连接件相连。
  7. 根据权利要求6所述的空气调节设备,其中,所述第一定位结构包括形成于所述第一壳体段的上端的第一定位凸起以及形成于所述第二壳体段的上端的第一定位槽,所述第一定位槽具有朝向下的第一开口,所述第一定位凸起适于经所述第一开口向上插入至所述第一定位槽内。
  8. 根据权利要求6所述的空气调节设备,其中,所述第二定位结构包括设于所述第一壳体段的下端的第一定位板以及设于所述第二壳体段的下端的第二定位板,所述第一定位板和所述第二定位板相对设置,所述第一定位板的朝向所述第二定位板的表面所述包括由上向下依次连接的第一定位段、第一拉紧段和第一支撑段,所述第二定位板的朝向所述第一定位板的表面包括由上向下依次连接的第二定位段、第二拉紧段和第二支撑段,所述第一定位段和所述第二定位段均垂直于所述第一方向且相互抵接,所述第一拉紧段和所述第二拉紧段均在由上向下的方向上朝向邻近第二壳体段的方向倾斜延伸且相互抵接,所述第一支撑段和所述第二支撑段沿水平方向延伸且所述第二支撑段支撑抵接于所述第一支撑段;其中,所述第一拉紧段和所述第二拉紧段通过所述第一紧固件相连。
  9. 根据权利要求6所述的空气调节设备,其中,所述第一连接件包括第一连接部、第一卡部和第二卡部,所述第一连接部位于所述第一壳体段和所述第二壳体段的外部且与所述第一壳体段和所述第二壳体段均通过第二紧固件相连,所述第一壳体段的外侧壁形成有第一卡孔,所述第二壳体段的外侧壁形成有第二卡孔,所述第一连接部平行于所述第一方向,所述第一卡部与所述第一连接部之间呈钝角设置且插入所述第一卡孔,所述第二卡部与所述第一连接部之间呈直角设置且插入所述第二卡孔。
  10. 根据权利要求2-9中任一项所述的空气调节设备,其中,多段所述设备模块还包括第三段设备模块,所述第二段设备模块连接在所述第一段设备模块和所述第三段设备模块之间,所述第三段设备模块包括第三壳体段和设于所述第三壳体段内的过滤组件,所述第三壳体段与所述第二壳体段可拆卸地连接。
  11. 根据权利要求10所述的空气调节设备,其中,在生产装配所述设备模块的过程中,所述过滤组件适于在所述第三壳体段倒置时由上向下安装至所述第三壳体段内。
  12. 根据权利要求11所述的空气调节设备,其中,所述第三壳体段包括第三主壳体和第三维修板, 所述第三主壳体的底面具有第三维修口,所述过滤组件可拆卸地设于所述第三主壳体内,所述第三维修板可拆卸地盖设于所述第三维修口。
  13. 根据权利要求12所述的空气调节设备,其中,所述第一壳体段与所述第二壳体段的连接方式为第一连接方式,所述第三壳体段与所述第二壳体段的连接方式为第二连接方式,所述第二连接方式与所述第一连接方式相同。
  14. 根据权利要求1-13所述的空气调节设备,其中,每段所述设备模块均具有安装吊耳。
  15. 根据权利要求1-14所述的空气调节设备,其中,多段所述设备模块沿第一方向排布,每段所述设备模块包括沿第二方向排布且适于相互隔断的第一风道段和第二风道段,所述第二方向垂直于所述第一方向,多段所述设备模块的所述第一风道段依次连通以构成第一风道,多段所述设备模块的所述第二风道段依次连通以构成第二风道,室外空气适于经所述第一风道进入室内,室内空气适于经所述第二风道排出至室外。
PCT/CN2022/127759 2022-08-23 2022-10-26 空气调节设备 WO2024040740A1 (zh)

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CN204254792U (zh) * 2014-12-01 2015-04-08 博世热力技术(山东)有限公司 空气处理机组
CN105465940A (zh) * 2016-01-07 2016-04-06 顾建军 双向风道装置
CN107449053A (zh) * 2017-09-14 2017-12-08 北京晶海科技有限公司 一种吊顶式空调器室内机
CN210717839U (zh) * 2019-09-12 2020-06-09 广东爱美信电器有限公司 一种吊顶式新风空调机
CN213901269U (zh) * 2020-12-04 2021-08-06 海信(山东)空调有限公司 吊顶式空调室内机

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CN101603721A (zh) * 2009-07-09 2009-12-16 蔡仁 一种风管式空调的侧吹风室内机的吊装方法及其可拆的封装组件
CN204254792U (zh) * 2014-12-01 2015-04-08 博世热力技术(山东)有限公司 空气处理机组
CN105465940A (zh) * 2016-01-07 2016-04-06 顾建军 双向风道装置
CN107449053A (zh) * 2017-09-14 2017-12-08 北京晶海科技有限公司 一种吊顶式空调器室内机
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