WO2024016443A1 - 空气处理机组 - Google Patents

空气处理机组 Download PDF

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Publication number
WO2024016443A1
WO2024016443A1 PCT/CN2022/117672 CN2022117672W WO2024016443A1 WO 2024016443 A1 WO2024016443 A1 WO 2024016443A1 CN 2022117672 W CN2022117672 W CN 2022117672W WO 2024016443 A1 WO2024016443 A1 WO 2024016443A1
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WO
WIPO (PCT)
Prior art keywords
positioning
heat exchange
assembly
handling unit
air handling
Prior art date
Application number
PCT/CN2022/117672
Other languages
English (en)
French (fr)
Inventor
王星辰
刘雨
Original Assignee
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 CN202221868211.3U external-priority patent/CN217763875U/zh
Priority claimed from CN202210847448.1A external-priority patent/CN117469791A/zh
Application filed by 广东美的制冷设备有限公司 filed Critical 广东美的制冷设备有限公司
Publication of WO2024016443A1 publication Critical patent/WO2024016443A1/zh

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • 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
    • F24F1/0007Indoor units, e.g. fan coil units
    • F24F1/0018Indoor units, e.g. fan coil units characterised by fans
    • 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
    • F24F1/0007Indoor units, e.g. fan coil units
    • F24F1/0059Indoor units, e.g. fan coil units characterised by heat exchangers
    • F24F1/0063Indoor units, e.g. fan coil units characterised by heat exchangers by the mounting or arrangement of the heat exchangers
    • 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
    • F24F1/0007Indoor units, e.g. fan coil units
    • F24F1/0071Indoor units, e.g. fan coil units with means for purifying supplied air
    • F24F1/0073Indoor units, e.g. fan coil units with means for purifying supplied air characterised by the mounting or arrangement of filters
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/32Supports for air-conditioning, air-humidification or ventilation units
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/10Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering
    • F24F8/108Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering using dry filter elements
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2130/00Control inputs relating to environmental factors not covered by group F24F2110/00
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2130/00Control inputs relating to environmental factors not covered by group F24F2110/00
    • F24F2130/20Sunlight

Definitions

  • the present disclosure relates to the technical field of air conditioning equipment, and in particular to an air handling unit.
  • Air handling units are generally installed in attics or basements. Due to the complex installation environment and narrow installation space, they usually adopt a structure of multiple module boxes, and different installation directions need to be selected according to the on-site installation environment. Traditional air handling units can only support one or two installation directions and cannot be used in various complex installation environments. Moreover, it is difficult to align multiple module boxes in a narrow space, resulting in low assembly efficiency.
  • the present disclosure aims to at least partially solve one of the technical problems existing in the prior art. To this end, the present disclosure proposes an air handling unit that can adapt to different installation environments and achieve rapid assembly.
  • An air handling unit includes: a heat exchange box, with first assembling parts respectively provided at both ends along the height extension direction of the heat exchange box; and a fan box, along the direction of the height extension of the fan box.
  • One end in the height extension direction is provided with a second assembly part corresponding to the first assembly part;
  • the heat exchange box is configured to have two assembly states, wherein when in the first assembly state, the heat exchange box The first assembly part at one end is connected to the second assembly part of the fan box; when in the second assembly state, the first assembly part at the other end of the heat exchange box is connected to the fan box.
  • the second assembly part of the box body is connected.
  • the fan box By providing first assembly parts at both ends of the heat exchange box along the height extension direction, and providing a second assembly part corresponding to the first assembly part at one end of the fan box along the height extension direction, the fan box is connected to the heat exchanger.
  • the exchange box is detachably connected, so when the air handling unit is assembled, the heat exchange box has two assembly states. The installer can selectively connect the first assembly part of one end of the heat exchange box to the fan box according to the installation environment.
  • the second assembly part is connected, or the first assembly part at the other end of the heat exchange box is connected to the second assembly part of the fan box, so that the air handling unit can be quickly assembled and disassembled and adapted to different installation directions, effectively reducing the It reduces the assembly difficulty and improves the assembly efficiency; and when the air handling unit needs to change the installation direction, the installer does not need to take out the heat exchanger assembly in the heat exchange box and reverse it, and only needs to reversing the fan box and assemble it on the heat exchanger box. Just exchange the other end of the box, which simplifies the structure of the heat exchanger assembly and improves the assembly efficiency of the air handling unit.
  • the first assembly part includes a first positioning frame and a first connection mechanism
  • the second assembly part includes a second positioning frame and a second connection mechanism; when the heat exchange box is located In the first assembly state or in the second assembly state, the first positioning frame and the second positioning frame are positioned cooperatively, and the first connection mechanism and the second connection mechanism are detachably connected.
  • the first positioning frame is formed with one of the positioning protrusions and the positioning recesses for positioning fit
  • the second positioning frame is formed with one of the positioning protrusions and the positioning recesses. another.
  • the positioning protrusion is provided with a first mating surface
  • the positioning recess is provided with a second mating surface
  • the second mating surface is in contact with the first mating surface
  • the third mating surface is A matching surface and the second matching surface are matching inclined surfaces or arc surfaces.
  • the heat exchange box includes a first enclosure.
  • the first enclosure is a sheet metal part and extends along the circumferential direction of the heat exchange box.
  • the two first enclosures are
  • the positioning frame is a plastic part and is fixedly connected to both ends of the first hoarding.
  • a first positioning portion is formed on an end of the first enclosure plate, and a first mounting portion is connected to the first positioning portion, and the first positioning portion is surrounded by the first positioning portion.
  • the outer peripheral wall of the first positioning frame is provided with a first positioning groove, and the first positioning portion is provided in the first positioning groove.
  • one of the first connection mechanism and the second connection mechanism is a buckle seat, and the buckle seat is provided with a first buckle portion;
  • the first connection mechanism and Another of the second connection mechanisms includes: a base provided with a first connection part; a clamping cover provided with a second connection part and a third connection part, and the second connection part is provided on the clamping cover.
  • One end is hinged with the first connection part, so that the other end of the card cover can rotate closer to or away from the base, and the third connection part is spaced apart from the second connection part; cover,
  • One end is provided with a fourth connecting part that is hingedly connected to the third connecting part, and the other end is provided with a second buckling part that is buckled with the first buckling part.
  • the first connection mechanism is the buckle seat
  • the second connection mechanism further includes a first fixing bolt and a torsion spring, and the first connection part and the second connection part Connected by the first fixing bolt, the torsion spring is sleeved on the first fixing bolt, the first torsion arm of the torsion spring is in contact with the base, and the second torsion arm of the torsion spring is in contact with the base.
  • the card cover abuts to apply an elastic force to the card cover to rotate toward the base.
  • the first connection part includes two first lugs arranged at intervals, and both first lugs are provided with first through holes;
  • the card cover includes a panel and a On the two side panels on both sides of the panel, the second connecting portion is a second through hole provided on the two side panels respectively, and the first fixing bolt passes through the first through hole and the second through hole.
  • two sides of the panel are respectively provided with escape grooves for avoiding the two first lugs, and the two first lugs are provided between the two side plates.
  • the first connection mechanism is the snap seat, and the base is provided with a first locking piece;
  • the second connection mechanism further includes a locking mechanism, and the locking mechanism includes a second Locking piece, connecting piece and handle, the second locking piece is located on the side of the card cover facing the base, one end of the connecting piece is connected to the second locking piece, and the other end passes through the The cover is clamped and connected to the handle, and the handle can drive the second locking piece to lock or unlock the first locking piece.
  • the connecting member is a rotating shaft
  • two ends of the rotating shaft are respectively connected to the second locking member and the handle
  • the first connecting part and the first locking member are respectively provided on
  • the upper and lower ends of the base, the second locking piece and the handle are all elongated structures with the same length direction.
  • one of the first connection mechanism and the second connection mechanism is a connecting arm, and the other is an assembly hole.
  • the connecting arm extends toward the assembly hole and passes through the fastener. Connected to the mounting hole.
  • the air handling unit further includes a filter plate that is detachably connected to the first positioning frame near the air inlet side of the heat exchange box.
  • the first positioning frame is provided with a plurality of magnets along the circumferential direction, and the filter plate is adsorbed and connected to the plurality of magnets.
  • Figure 1 is a schematic structural diagram of an air handling unit according to an embodiment of the present disclosure
  • FIG 2 is an exploded schematic diagram of the heat exchange box in Figure 1;
  • Figure 3 is a cross-sectional view of the air handling unit shown in Figure 1;
  • Figure 4 is a schematic diagram of an air handling unit in a fully installed state according to an embodiment of the present disclosure
  • Figure 5 is a schematic diagram of an air handling unit in an inverted state according to an embodiment of the present disclosure
  • Figure 6 is a schematic diagram of an air handling unit in a left-lying state according to an embodiment of the present disclosure
  • Figure 7 is a schematic diagram of an air handling unit in a right-lying state according to an embodiment of the present disclosure
  • Figure 8 is an enlarged view of point A in Figure 3;
  • Figure 9 is an enlarged three-dimensional view of position A in Figure 3;
  • Figure 10 is a schematic structural diagram of an air handling unit according to another embodiment of the present disclosure.
  • FIG 11 is an exploded schematic diagram of the heat exchange box in Figure 10;
  • Figure 12 is a schematic structural diagram of an embodiment of the connection component in Figure 1;
  • Figure 13 is an exploded view of the connection assembly shown in Figure 12;
  • Figure 14 is a cross-sectional view of an air handling unit according to another embodiment of the present disclosure.
  • Figure 15 is an enlarged view of B in Figure 14, in which the connecting component is in an unlocked state;
  • Figure 16 is an enlarged view of position C in Figure 14, in which the connecting component is in a locked state;
  • Figure 17 is a schematic structural diagram of another embodiment of the connection assembly in Figure 1;
  • Figure 18 is an exploded view of the connection assembly shown in Figure 17;
  • Figure 19 is a partial cross-sectional view of an air handling unit according to another embodiment of the present disclosure.
  • Figure 20 is an enlarged view of D in Figure 19, in which the connecting component is in a locked state;
  • Figure 21 is an enlarged view of D in Figure 19, in which the connecting component is in an unlocked state;
  • Figure 22 is a schematic structural diagram of an air handling unit according to another embodiment of the present disclosure.
  • Figure 23 is an exploded view of the air handling unit shown in Figure 22.
  • Heat exchange module 1000 door 1100; fan module 2000; filter module 3000;
  • Heat exchange box 100 first positioning frame 110; positioning recess 111; second mating surface 112; first mounting hole 113; first positioning groove 114; first positioning edge 115; magnet 116; first connection mechanism 120; assembly Hole 121; first enclosure 130; first positioning part 140; first mounting part 150; second mounting hole 151; thermal insulation cotton 160;
  • Fan box 200 second positioning frame 210; positioning protrusion 211; first mating surface 212; second positioning groove 213; second connecting mechanism 220; connecting arm 221; second enclosure 230; second positioning portion 240; second mounting part 250;
  • Heat exchanger assembly 300 heat exchanger 310; main water receiving pan 320; auxiliary water receiving pan 330;
  • connection component 600
  • Base 610 First connecting portion 611; first lug 6111; first through hole 6112; first flange 612; second flange 613; recessed portion 614; first locking piece 615;
  • Snap seat 620 first snap portion 621; chamfer 6211;
  • Card cover 630 second connecting part 631; third connecting part 632; third through hole 6321; panel 633; avoidance groove 6331; side plate 634; second through hole 6341; first engaging groove 635; flange 636;
  • Cover 640 fourth connecting part 641; second lug 6411; fourth through hole 6412; second slot 6413; second buckling part 642;
  • Torsion spring 660 first torsion arm 661; second torsion arm 662;
  • Locking mechanism 680 second locking piece 681; connecting piece 682; rotating shaft 6821; handle 683; grip portion 6831; sleeve portion 6832; fixing pin 6833;
  • a plurality means two or more. If there is a description of first and second, it is only for the purpose of distinguishing technical features, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of indicated technical features or implicitly indicating the order of indicated technical features. relation.
  • an air handling unit in order to facilitate installation and transportation in a narrow space, adopts a structure in which multiple module boxes can be detachably installed.
  • the air handling unit in the embodiment of the present disclosure includes a fan module 2000 and a heat exchange module 1000.
  • a through-flow airflow channel (not shown in the figure) is formed in the fan module 2000 and the heat exchange module 1000.
  • the airflow entering from the air inlet passes through the fan module 2000 and the heat exchange module 1000 respectively. After cooling or heating, the airflow is blown out from the air outlet (not shown in the figure) of the air handling unit.
  • the fan module 2000 and the heat exchange module 1000 are both configured in a square columnar structure to facilitate vertical or horizontal installation of the air handling unit.
  • the fan module 2000 and the heat exchange module 1000 can also be configured in a cylindrical or other polygonal columnar shape, such as a hexagonal columnar structure, which is not specifically limited here.
  • the heat exchange module 1000 includes a heat exchange box 100 , a heat exchanger assembly 300 and other components installed in the heat exchange box 100 .
  • the heat exchanger assembly 300 includes a heat exchanger 310, a main water receiving pan 320 and an auxiliary water receiving pan 330.
  • the main water receiving pan 320 is located at one end of the heat exchanger 310, and the main water receiving pan 320 is fixedly connected to the heat exchanger 310;
  • the auxiliary water receiving pan 330 is connected to the main water receiving pan 320 .
  • the auxiliary water receiving pan 330 is located on one side of the heat exchanger 310 .
  • the auxiliary water receiving pan 330 is opposite to one of the side walls of the heat exchange box 100 .
  • the fan module 2000 includes a fan box 200 , a fan assembly 400 , an electric heating assembly 500 , an electric control box (not shown in the figure) and other components installed in the fan box 200 .
  • a negative pressure is formed in the fan assembly 400, thereby driving the air flow in the air flow channel.
  • the electric heating component 500 is used to heat the air flow in the air flow channel.
  • the electric control box is used to control the operation of the fan assembly 400 and the electric heating assembly 500 .
  • the fan module 2000 and the heat exchange module 1000 can be quickly assembled and disassembled through the connecting assembly 600 to improve the assembly and maintenance efficiency of the air handling unit.
  • the air handling unit of the embodiment of the present disclosure may also include a filter module 3000, and a filter element (not shown in the figure), such as a high-efficiency filter, may be provided in the filter module 3000.
  • the assembly between the filter module 3000 and the fan module 2000 or the heat exchange module 1000 can also be implemented using the connection assembly 600 of the embodiment of the present disclosure.
  • a fan box 200 , a heat exchange box 100 and a filter module 3000 are connected in sequence along the up and down direction.
  • the heat exchange box 100 is provided with a first assembly portion (not shown in the figure) at both ends along the height direction of the heat exchange box 100
  • the fan box 200 is provided with a second assembly portion at one end along the height direction of the fan box 200 .
  • Assembling part (not shown in the figure), the second assembling part is provided correspondingly to the first assembling part.
  • the heat exchange box 100 has a first assembly state and a second assembly state.
  • the first assembly part at one end of the heat exchange box 100 is connected to the second assembly part of the fan box 200; when it is in the first assembly state, When in the second assembly state, the first assembly portion at the other end of the heat exchange box 100 is connected to the second assembly portion of the fan box 200 .
  • the first assembly part includes a first positioning frame 110 and a first connection mechanism 120
  • the second assembly part includes a second positioning frame 210 and a second connection mechanism 220 .
  • a first positioning frame 110 is provided at both the upper and lower ends of the heat exchange box 100.
  • a second positioning frame 210 is provided at one end of the fan box 200 and the heat exchange box 100.
  • the two first positioning frames 110 respectively located at both ends of the heat exchange box 100 can adopt the same structure, and the two first positioning frames 110 can both be positioned in conjunction with the second positioning frame 210, so that the fan box can be Both ends of the body 200 and the heat exchange box 100 can be aligned.
  • the two first positioning frames 110 respectively located at both ends of the heat exchange box 100 can also adopt different structures.
  • the second positioning frame 210 has a structure that can be aligned with the two first positioning frames 110 respectively. The connection structure enables alignment when the two ends of the fan box 200 and the heat exchange box 100 are respectively connected.
  • first connection mechanisms 120 are provided at both ends of the heat exchange box 100.
  • the first connection mechanisms 120 are provided on the side walls of the heat exchange box 100.
  • the first connection mechanisms 120 are provided on the side walls of the fan box 200.
  • the side wall is provided with a second connection mechanism 220.
  • the second connection mechanism 220 can be combined with the first connection mechanism 120 located at one end of the heat exchange box 100 to form a connection assembly 600, so that the fan box 200 and the heat exchange box 100 can be connected. Disassemble the connection.
  • the installer can selectively install the fan box 200 on one end of the heat exchange box 100 according to the installation environment, so that the air handling unit can be quickly assembled and disassembled and adapted to different conditions.
  • the installation direction effectively reduces the difficulty of assembly and improves assembly efficiency.
  • the installer does not need to take out the heat exchanger assembly 300 in the heat exchange box 100 and change its direction. He only needs to change the direction of the fan box 200 and assemble it in the heat exchange box 100 The other end is sufficient, which simplifies the structure of the heat exchanger assembly 300, reduces the assembly difficulty of the air handling unit, and improves the assembly efficiency of the air handling unit.
  • FIG. 4 is a schematic diagram of the air handling unit in a fully installed state according to an embodiment of the present disclosure
  • the air flow direction is from bottom to top.
  • the heat exchange module 1000 in the embodiment of the present disclosure is installed below the fan module 2000.
  • the first positioning frame 110 at the upper end of the heat exchange module 1000 is aligned with the second positioning frame 210 of the fan module 2000.
  • the first connection mechanism 120 is connected with the second connection mechanism 220 of the fan module 2000 .
  • the air handling unit in the embodiment of the present disclosure can meet the installation environment that requires vertical installation and adopts lower air inlet and upper air outlet. At this time, the heat exchanger 310 drains water through the main water tray 320.
  • FIG. 5 is a schematic diagram of the air handling unit in an inverted state according to an embodiment of the present disclosure
  • the air flow direction is from top to bottom.
  • the heat exchange module 1000 in the embodiment of the present disclosure is installed above the fan module 2000.
  • the first positioning frame 110 at the lower end of the heat exchange module 1000 is aligned with the second positioning frame 210 of the fan module 2000.
  • the first connection mechanism 120 is connected with the second connection mechanism 220 of the fan module 2000 .
  • the air handling unit in the embodiment of the present disclosure can meet the installation environment that requires vertical installation and adopts upper air inlet and lower air outlet. At this time, the heat exchanger 310 drains water through the main water tray 320.
  • FIG. 6 is a schematic diagram of the air handling unit in a left-lying installation state according to an embodiment of the present disclosure
  • the air flow direction is from right to left.
  • the heat exchange module 1000 in the embodiment of the present disclosure is installed on the right side of the fan module 2000.
  • the first positioning frame 110 on the left side of the heat exchange module 1000 is aligned with the second positioning frame 210 of the fan module 2000.
  • the first connecting mechanism 120 on the left side is connected to the second connecting mechanism 220 of the fan module 2000 .
  • the air handling unit in the embodiment of the present disclosure can meet the installation environment that requires horizontal installation and adopts right air inlet and left air outlet. At this time, the heat exchanger 310 drains water through the auxiliary water receiving pan 330.
  • FIG. 7 is a schematic diagram of the air handling unit in a right-lying position according to the embodiment of the present disclosure
  • the air flow direction is from left to right.
  • the heat exchange module 1000 in the embodiment of the present disclosure is installed on the left side of the fan module 2000.
  • the first positioning frame 110 on the right side of the heat exchange module 1000 is aligned with the second positioning frame 210 of the fan module 2000.
  • the first connecting mechanism 120 on the right side is connected to the second connecting mechanism 220 of the fan module 2000 .
  • the air handling unit in the embodiment of the present disclosure can meet the installation environment that requires horizontal installation and adopts left air inlet and right air outlet. In this case, the heat exchanger 310 drains water through the auxiliary water receiving pan 330.
  • the air handling unit can easily achieve multiple installation directions.
  • the heat exchanger assembly 300 does not need to be taken out for reversal, so that Reduce assembly steps and improve assembly efficiency; there is no need to add an additional auxiliary water receiving pan 330, thereby reducing wind resistance and lowering production costs; and there is no need to add an additional rear water receiving pan (located away from the main water receiving pan 320 on the heat exchanger 310 one end), thereby reducing production costs.
  • the first positioning frame 110 is a structure extending along the periphery of the heat exchange box 100, or is a structure extending along the periphery of the heat exchange box 100. Partially extended structure.
  • the upper end of the fan box 200 is provided with a second positioning frame 210 .
  • the second positioning frame 210 is a structure extending along the circumference of the heat exchange box 100 , or a structure extending along part of the circumference of the fan box 200 .
  • the second positioning frame 210 is positioned and matched with the first positioning frame 110, so that the heat exchange box 100 and the fan box 200 are positioned.
  • the first positioning frame 110 forms a positioning recess 111
  • the positioning recess 111 may be formed in part of the structure of the first positioning frame 110, or in the entire structure of the first positioning frame 110.
  • the second positioning frame 210 forms positioning protrusions 211
  • the positioning protrusions 211 may be formed on part of the structure of the second positioning frame 210 , or on the entire structure of the second positioning frame 210 .
  • the positioning recess 111 is positioned and matched with the positioning protrusion 211 so that the installer can easily guide the heat exchange box 100 and the fan box 200 to the center when assembling the heat exchange box 100 and the fan box 200 .
  • the positioning protrusion 211 is provided with a first mating surface 212
  • the positioning recess 111 is provided with a second mating surface 112.
  • the heat exchange box 100 and the fan box 200 can be installed on the first mating surface 212 and the second mating surface during installation.
  • the alignment connection is realized under the abutting action of 112, making the connection between the two more stable, and improving the assembly efficiency and assembly accuracy of the heat exchange box 100 and the fan box 200.
  • the first positioning frame 110 of the heat exchange box 100 can also form a positioning protrusion 211
  • the second positioning frame 210 of the fan box 200 can be formed with the positioning protrusion 211 Fitting positioning recess 111.
  • first mating surface 212 and the second mating surface 112 are matching inclined surfaces or arc surfaces.
  • first mating surface 212 and the second mating surface 112 are inclined surfaces, the first mating surface 212 can be disposed at the positioning recess 111 toward the inside of the heat exchange box 100 , and the first mating surface 212 can be disposed at the positioning protrusion 211 toward the fan.
  • the second mating surface 112 can be provided on the side of the positioning recess 111 facing the center of the heat exchange box 100, so that the alignment of the first positioning frame 110 and the second positioning frame 210 is smoother and the heat exchanger can be realized.
  • the total contact area of the first inclined surface and the second inclined surface is larger, making the connection between the first positioning frame 110 and the second positioning frame 210 more stable, thereby improving the stability of the connection between the heat exchange box 100 and the fan box 200 .
  • the first mating surface 212 and the second mating surface 112 are arc surfaces, the first mating surface 212 can be provided at one end of the positioning protrusion 211 facing the first positioning frame 110 , and the second mating surface 112 can be provided at an end of the positioning recess 111 facing the first positioning frame 110 .
  • the arc design allows the positioning protrusion 211 to be introduced into the positioning recess 111 more smoothly, thereby realizing the alignment of the first positioning frame 110 and the second positioning frame 210, thereby making the heat exchange box 100 and the fan box 200 realize quick assembly and disassembly.
  • the heat exchange box 100 includes a first enclosure 130 and a first positioning frame 110 .
  • the first enclosure 130 extends along the circumferential direction of the heat exchange box 100 .
  • the first positioning frames 110 are respectively fixedly connected to both ends of the first enclosure 130 along the axial direction of the heat exchange box 100 .
  • the first enclosure 130 is a sheet metal part, and the first enclosure 130 can be processed by stamping, bending or other processes.
  • the first positioning frame 110 is a plastic part, and the first positioning frame 110 can be made by injection molding.
  • the heat exchange box 100 in the embodiment of the present disclosure adopts a structure composed of sheet metal and plastic, which can improve the strength while reducing the difficulty of processing.
  • the heat exchange box 100 in the embodiment of the present disclosure is made of sheet metal compared to the entire heat exchange box 100. Processing only the first enclosure 130 can reduce the processing difficulty and improve the processing efficiency; The entire exchange box 100 is made of plastic. Injection molding only the first positioning frame 110 can reduce processing difficulty, improve processing efficiency, and lower production costs.
  • the plastic first positioning frame 110 can wrap up the appearance defects of the sheet metal first hoarding 130, block the appearance defects of the first hoarding 130, and make the first positioning frame 110 and the first hoarding 130 is more reliable when assembled.
  • a first positioning part 140 is formed on the upper end of the first enclosure 130 , and the first positioning part 140 is surrounded by Part of the outer peripheral wall of the first positioning frame 110 allows the first positioning frame 110 to be embedded in the surrounding space of the first positioning portion 140 to achieve positioning connection between the first positioning frame 110 and the first enclosure 130 .
  • the first positioning part 140 is connected to a first mounting part 150 , and the first mounting part 150 extends toward the center of the heat exchange box 100 .
  • the frame 110 can be fixedly connected to the first mounting part 150 by riveting, screwing, snapping, bonding, etc.
  • the first positioning part 140 and the first mounting part 150 can be formed on the first enclosure 130 through a secondary bending process.
  • the first positioning portion 140 is formed by bending and folding the first enclosure 130 inward, that is, forming a U-shaped structure, thereby increasing the structural strength of the first positioning portion 140 .
  • the first mounting part 150 is formed by bending the first enclosure 130 again toward the center of the heat exchange box 100 , that is, forming an L shape with the first positioning part 140 . Therefore, when the first positioning frame 110 and the first enclosure 130 are installed, alignment can be achieved through the first positioning part 140 and stable connection can be achieved through the first mounting part 150, thereby improving the assembly efficiency of the heat exchange box 100.
  • the first positioning frame 110 is provided with a first mounting hole 113 at one end toward the first mounting part 150 , the first mounting part 150 is provided with a second mounting hole 151 , the first mounting hole 113 and the second mounting hole 151 is provided with fasteners, thereby achieving a stable connection between the first positioning frame 110 and the first enclosure 130, and making assembly more convenient.
  • the axial direction of the first positioning frame 110 needs to be limited, so the outer peripheral wall of the first positioning frame 110 is provided with a first positioning groove 114, and the first positioning portion 140 is disposed in the first positioning groove 114, and the first positioning portion 140 abuts and cooperates with the bottom wall of the first positioning groove 114.
  • the first positioning frame 110 extends toward the inside of the heat exchange box 100 and is provided with a first positioning edge 115.
  • the first positioning edge 115 is spaced apart from the first enclosure 130.
  • the cotton 160 is positioned and installed in the space between the first positioning edge 115 and the first enclosure 130 .
  • first positioning part 140 may also be formed at the lower end of the first enclosure 130.
  • the connection structure between the first positioning part 140 and the first positioning frame 110 located at the lower end of the first enclosure 130 is the same as the above embodiment. In order to avoid duplication, , which will not be described in detail here.
  • the fan box 200 includes a second enclosure 230 and a second positioning frame 210 .
  • the second enclosure 230 extends along the circumferential direction of the fan box 200 .
  • the frame 210 is fixedly connected to one end of the second enclosure 230 facing the heat exchange box 100 .
  • the second enclosure 230 is a sheet metal part, and the second enclosure 230 can be processed by stamping, bending or other processes.
  • the second positioning frame 210 is a plastic part, and the second positioning frame 210 can be made by injection molding.
  • the fan box 200 in the embodiment of the present disclosure adopts a structure composed of sheet metal and plastic, which can improve the strength while reducing the difficulty of processing.
  • the fan box 200 in the embodiment of the present disclosure is made of sheet metal relative to the entire fan box 200. Processing only the second hoarding 230 can reduce the processing difficulty and improve the processing efficiency; 200 is made of plastic as a whole. Injection molding only the second positioning frame 210 can reduce processing difficulty, improve processing efficiency, and lower production costs.
  • a second positioning part 240 is formed at the lower end of the second enclosure 230 , and the second positioning part 240 is surrounded by the second positioning part 240 .
  • Part of the outer peripheral wall of the second positioning frame 210 allows the second positioning frame 210 to be embedded in the surrounding space of the second positioning portion 240 to realize the positioning connection between the second positioning frame 210 and the second enclosure 230 .
  • the second positioning part 240 is connected to a second mounting part 250.
  • the second mounting part 250 extends toward the center of the fan box 200.
  • the second positioning frame 210 can be fixedly connected to the second mounting part 250 by riveting, screwing, snapping, bonding, etc.
  • the second positioning part 240 and the second mounting part 250 can be formed on the second enclosure 230 through a secondary bending process.
  • the second positioning portion 240 is formed by bending and folding the second enclosure 230 inward, that is, forming a U-shaped structure, thereby increasing the structural strength of the second positioning portion 240 .
  • the second mounting part 250 is formed by bending the second enclosure 230 again toward the center of the fan box 200 , that is, forming an L shape with the second positioning part 240 . Therefore, when the second positioning frame 210 and the second enclosure 230 are installed, alignment can be achieved through the second positioning part 240 and stable connection can be achieved through the second mounting part 250, thereby improving the assembly efficiency of the fan box 200.
  • the axial direction of the second positioning frame 210 needs to be limited, so the outer peripheral wall of the second positioning frame 210 is provided with a second positioning groove 213, and the second positioning portion 240 is disposed in the second positioning groove 213, and the second positioning portion 240 abuts and cooperates with the bottom wall of the second positioning groove 213.
  • an air handling unit includes a heat exchange module 1000 and a fan module 2000 . Since the air handling unit in the embodiment of the present disclosure does not have an independent filter module 3000, the heat exchange module 1000 is also provided with a filter plate 700.
  • the filter plate 700 is detachably connected to the first positioning frame 110. Specifically, it is installed on the first positioning frame 110.
  • the outer side of the positioning frame 110 that is, the end far away from the center of the heat exchange box 100, facilitates installation and disassembly.
  • the filter plate 700 can be detachably connected to the two first positioning frames 110, thereby ensuring that after one end of the heat exchange box 100 is connected to the fan box 200, the filter plate can also be installed on the other end. 700. It should be noted that the installation position of the filter plate 700 needs to be selected according to the installation direction of the air handling unit and the assembly state of the heat exchange module 1000. That is, the filter plate 700 is installed at the first position close to the air inlet side of the heat exchange box 100. Frame 110 is positioned to achieve effective filtration of the airflow entering the air handling unit.
  • the filter plate 700 and the first positioning frame 110 can be detachably connected through suction connection, screw connection, or snap connection.
  • the first positioning frame 110 is provided with a plurality of magnets 116 along the circumferential direction of the air flow channel, and the plurality of magnets 116 can be embedded in the bottom wall of the first positioning frame 110 .
  • the filter plate 700 is a metal piece, or the outer periphery of the filter plate 700 that cooperates with the first positioning frame 110 is provided with a metal rim, thereby realizing the adsorption connection between the filter plate 700 and the plurality of magnets 116 .
  • the heat exchange module 1000 also includes a box door 1100.
  • the box door 1100 is installed on the opening of the heat exchange box 100 to seal the opening.
  • the door 1100 is generally designed as an easily detachable component to facilitate after-sales maintenance of the heat exchange module 1000.
  • the door 1100 can be installed on the heat exchange box 100 through adsorption connection or other methods.
  • both the heat exchange box 100 and the fan box 200 are provided with handles 800.
  • the handles 800 are provided on opposite sides of the side walls of the heat exchange box 100 and the fan box 200, so that It is convenient for the installation personnel to carry the heat exchange module 1000 and the fan module 2000.
  • the handle 800 adopts a concave structure, that is, the heat exchange box 100 and the fan box 200 are recessed inwards.
  • connection assembly 600 is shown in an embodiment of the present disclosure.
  • the connection assembly 600 is used to realize detachable connection between the heat exchange box 100 and the fan box 200 .
  • the connection assembly 600 is installed at the connection between the heat exchange box 100 and the fan box 200 .
  • the connection assembly 600 includes a first connection mechanism 120 and a second connection mechanism 220 .
  • a plurality of first connection mechanisms 120 may be provided.
  • the plurality of first connection mechanisms 120 are divided into two groups.
  • the two groups of first connection mechanisms 120 are respectively provided at both ends of the heat exchange box 100.
  • Each group of first connection mechanisms 120 may be installed. Two side walls opposite to the heat exchange box 100, or three or four side walls installed on the heat exchange box 100.
  • a plurality of second connection mechanisms 220 may be provided.
  • the plurality of second connection mechanisms 220 are respectively provided at both ends of the heat exchange box 100 .
  • the plurality of first connection mechanisms 120 may be installed on opposite sides of the heat exchange box 100 .
  • Two side walls, or three or four side walls installed on the heat exchange box 100 are installed on the heat exchange box 100 .
  • each side wall of the air handling unit in the embodiment of the present disclosure may be provided with two connection assemblies 600, or three or more connection assemblies 600. This is no longer specifically limited.
  • the first connection mechanism 120 in the embodiment of the present disclosure is a snap seat 620
  • the snap seat 620 is fixedly connected to the heat exchange box 100 .
  • the second connection mechanism 220 includes a base 610, which is fixedly connected to the fan box 200.
  • the base 610 and the buckle seat 620 are spaced apart in the up and down direction. It can be understood that the base 610 can be connected to the fan box 200 using fasteners such as screws.
  • the corresponding positions of the base 610 and the side walls of the fan box 200 can be pre-processed with mounting holes and other installation structures to facilitate the fasteners. assembly.
  • the buckle seat 620 can also be connected to the heat exchange box 100 using fasteners such as screws.
  • the second connection mechanism 220 of the embodiment of the present disclosure also includes a card cover 630 and a cover 640 .
  • the base 610 is provided with a first connection part 611, and one end of the card cover 630 is provided with a second connection part 631.
  • the second connection part 631 is hingedly connected with the first connection part 611.
  • the card cover 630 is also provided with a third connection part 632 spaced apart from the second connection part 631.
  • One end of the cover 640 is provided with a fourth connection part 641, and the fourth connection part 641 is hinged with the third connection part 632.
  • the other end of the cover 640 is provided with a second fastening portion 642, and the buckling seat 620 is provided with a first fastening portion 621 at an end away from the base 610.
  • the first fastening portion 621 is fastened with the second fastening portion 642.
  • the snap cover 630 of the embodiment of the present disclosure can drive the cover 640 to move relative to the snap seat 620, for example, the cover 640 can be driven to buckle with the snap seat 620. And rotate to a position close to the base 610, so that the other end of the card cover 630 can be covered with the base 610 to realize the locking of the base 610 and the snap seat 620; or the card cover 630 can be moved away from the base 610 direction, so that the other end of the cover 630 can be separated from the base 610, and the cover 640 and the buckle seat 620 are unlocked.
  • connection assembly 600 of the embodiment of the present disclosure can realize the locking fit or unlocking fit of the second buckle part 642 and the first buckle part 621, thereby realizing the locking or unlocking of the base 610 and the buckle seat 620, thereby achieving thermal insulation.
  • the assembly and disassembly of the exchange box 100 and the fan box 200 are easy and quick to operate; and the structure of the connection assembly 600 is simple and stable.
  • the first buckling part 621 is a clamping platform
  • the clamping platform is formed by the buckling base 620 protruding upward
  • the second buckling part 642 is opposite to the clamping platform.
  • the second buckle portion 642 can also be a snap slot (not shown in the figure) that matches the clip base, and can also achieve a stable connection between the cover 640 and the snap seat 620 .
  • the first buckle part 621 can also be configured as a card slot
  • the second buckle part 642 can be configured as a card platform that cooperates with the card slot.
  • the end of the clamping platform away from the buckling seat 620 is provided with a chamfer 6211 to facilitate the locking or unlocking function of the cover 640 and the buckling seat 620, thereby improving the The connection assembly 600 is convenient in operation.
  • connection points of the heat exchange box 100 and the fan box 200 in the embodiment of the present disclosure are respectively provided with escape recesses 900, and the connection assembly 600 is accommodated in the two escape recesses 900. That is, the first connection mechanism 120 is provided in the heat exchanger. The second connection mechanism 220 is provided in the escape recess 900 of the box 100 and the fan box 200 .
  • the second connection mechanism 220 of the embodiment of the present disclosure also includes a first fixing bolt 650, and the first fixing bolt 650 can be fixedly connected to the first connecting portion 611, The second connecting part 631 is rotationally connected to the first fixing bolt 650, so that stable relative rotation can be achieved between the base 610 and the card cover 630.
  • the first fixing bolt 650 may also be fixedly connected to the second connecting part 631 , and the first connecting part 611 is rotationally connected to the first fixing bolt 650 .
  • the first connecting part 611 includes two first lugs 6111.
  • the two first lugs 6111 are spaced apart from the base 610 in the left and right directions.
  • the two first lugs 6111 are both provided with first through holes.
  • the card cover 630 includes a panel 633 and two side panels 634 respectively provided on both sides of the panel 633.
  • the panel 633 can be integrally processed with the two side panels 634.
  • the second connecting part 631 is two second through holes 6341 respectively provided on the two side plates 634.
  • the first fixing bolt 650 is passed through the two first through holes 6112 and the two second through holes 6341.
  • the bolt 650 is fixed to the two first lugs 6111, or fixed to the two side plates 634, thereby realizing the rotational connection between the base 610 and the card cover 630. It can be understood that the two side plates 634 may be disposed between the two first lugs 6111, or the two first lugs 6111 may be disposed between the two side plates 634.
  • escape grooves 6331 are respectively provided on both sides of the panel 633.
  • the positions of the two escape grooves 6331 match the two first lugs 6111.
  • the two first lugs 6111 are provided on Between the two side plates 634, the avoidance groove 6331 is used to avoid the first lug 6111, thereby avoiding interference with the first lug 6111 when the clamping cover 630 rotates relative to the base 610. Therefore, the thickness of the clamping cover 630 can be reduced.
  • the smaller size design makes the overall thickness of the connecting component 600 smaller when in the locked state, making it more convenient to use and conducive to saving the avoidance space of the air handling unit.
  • the two first lugs 6111 are respectively located close to the two side plates 634, and the two avoidance grooves 6331 are respectively located at The connection between the panel 633 and the two side panels 634.
  • the first fixing bolt 650 is fixedly connected to the card cover 630 , and the first lug 6111 is rotationally connected relative to the first fixing bolt 650 .
  • the card cover 630 is provided with two first card slots 635.
  • the two first card slots 635 are respectively provided on the two side plates 634 and are respectively formed on both sides.
  • first clamping posts 651 are provided at both ends of the first fixing bolt 650, and the two first clamping posts 651 are fixedly connected to the two first clamping grooves 635 respectively.
  • the first clamping pillar 651 can be interference-fitted with the first clamping groove 635, or can be fixedly connected by welding or other methods, which is not specifically limited here.
  • the second connection mechanism 220 also includes a torsion spring 660.
  • the torsion spring 660 is sleeved on the first fixing bolt 650 and is located at the torsion position.
  • the first torsion arm 661 at one end of the spring 660 is in contact with the base 610
  • the second torsion arm 662 at the other end of the torsion spring 660 is in contact with the card cover 630 .
  • the base 610 is provided with a first flange 612
  • the first twist arm 661 is in contact and fixed with the first flange 612.
  • the second torsion arm 662 is in contact with the end of the card cover 630 facing the first fixing bolt 650 , that is, the end of the panel 633 , or is in contact with the outside of the panel 633 , so that the card cover 630 can be elastically rotated toward the base 610 force, so that when the card cover 630 is opened to the outside of the base 610, there is a reaction force that hinders the opening, thereby effectively preventing the card cover 630 from rebounding, that is, preventing the connection assembly 600 from causing the card cover 630 to bounce up due to slight collisions in actual use. , which in turn causes the cover 640 to be detached from the buckle seat 620, causing the connection component 600 to be unlocked.
  • the middle part of the base 610 is recessed toward the fan case 200 to form a recessed portion 614 , and the recessed portion 614 is fixed to the side wall of the fan case 200 through fasteners such as screws.
  • Second flanges 613 are formed on the left and right sides of the base 610. The second flanges 613 are in contact with the side walls of the fan box 200, so that the base 610 has a larger force-bearing area, effectively preventing the base 610 from being stressed. The deformation occurs under the force state, thereby providing stable support for the entire connecting component 600 .
  • the second connection mechanism 220 also includes a second fixing bolt 670 , the second fixing bolt 670 can be fixedly connected to the third connecting part 632 , and the fourth connecting part 641 is rotatably connected to the second fixing bolt.
  • the bolt 670 enables stable relative rotation between the cover 640 and the clamping cover 630 .
  • the second fixing bolt 670 may also be fixedly connected to the fourth connecting part 641, and the third connecting part 632 is rotationally connected to the second fixing bolt 670.
  • the third connecting portion 632 is a third through hole 6321 respectively provided on the two side plates 634 of the card cover 630 , and the third through hole 6321 is spaced apart from the second through hole 6341 .
  • the fourth connecting part 641 includes two second lugs 6411.
  • the two second lugs 6411 are spaced apart from the cover 640 in the left and right directions.
  • the two second lugs 6411 are both provided with fourth through holes 6412.
  • the second fixing part 6411 is provided with a fourth through hole 6412.
  • the bolt 670 is passed through the two third through holes 6321 and the two fourth through holes 6412, and the second fixing bolt 670 is fixed to the two second ears 6411, or fixed to the two side plates 634, thereby realizing the cover 640 and the rotation connection of the card cover 630.
  • the two second lugs 6411 are disposed between the two side plates 634, or the two side plates 634 are disposed between the two second lugs 6411.
  • the second fixing bolt 670 is fixedly connected to the cover 640 , and the side plate 634 is rotationally connected relative to the second fixing bolt 670 .
  • the two second lugs 6411 are provided with second latching slots 6413.
  • the second latching slots 6413 are formed on the periphery of the fourth through hole 6412.
  • the second fixing bolt 670 is provided with second latching posts 671 at both ends.
  • the post 671 is fixedly connected to the second slot 6413.
  • the second clamping pillar 671 may be interference-fitted with the second clamping groove 6413, or may be fixedly connected by welding, etc., which is not specifically limited here.
  • the end of the card cover 630 away from the second connecting part 631 is provided with a flange 636 , and the flange 636 can be integrally manufactured with the card cover 630 .
  • the flange 636 can be used as a handle 800, which increases the torque when the card cover 630 is opened, making it easier to lift the card cover 630, thereby making it easier to unlock the connection assembly 600.
  • a connection component 600 of another embodiment of the present disclosure is similar to the connection component 600 of the previous embodiment, and can be understood with appropriate reference to the previous embodiment.
  • the difference is that the second connection mechanism 220 of the embodiment of the present disclosure is equipped with a locking mechanism 680.
  • the locking mechanism 680 includes a second locking part 681, a connecting part 682 and a handle 683.
  • the second locking part 681 is located inside the card cover 630. That is, the side of the cover 630 faces the base 610, and the base 610 is provided with a first locking piece 615 that matches the second locking piece 681.
  • the connecting member 682 passes through the card cover 630, and one end of the connecting member 682 located inside the card cover 630 is fixedly connected to the second locking member 681.
  • the connecting member 682 can be connected to the second locking member 681 using fasteners such as screws. connection to facilitate assembly.
  • the connecting piece 682 is located at an end outside the card cover 630 and is connected to the handle 683.
  • the handle 683 is connected to the second locking piece 681 through the connecting piece 682.
  • the handle 683 can drive the second locking piece 681 to move relative to the first locking piece 615, thereby Achieve locked state or unlocked state. Referring to Figures 12 and 13, the locking mechanism 680 is in a locked state.
  • the connection assembly 600 of the embodiment of the present disclosure adds a locking mechanism 680.
  • the locking mechanism 680 can control the second locking part 681 and the first locking part 615 to lock or unlock by sliding, swinging or rotating, thereby limiting the card cover 630 Rebounding causes the connection assembly 600 to unlock, making the assembly of the heat exchange box 100 and the fan box 200 more stable.
  • the connecting member 682 of the embodiment of the present disclosure is a rotating shaft 6821, and the two ends of the rotating shaft 6821 are respectively connected to the second locking member 681 and the handle 683.
  • the handle 683 rotates to drive the rotating shaft 6821 to rotate, which can drive the second locking member 681 to rotate relative to the first locking member 615, so that the second locking member 681 is locked to the first locking member 615, or the second locking member 681 is unlocked to the first locking member 615.
  • First locking piece 615 The locking mechanism 680 in the embodiment of the present disclosure adopts a rotational operation, which is more convenient to operate and simpler in structure.
  • the first connecting portion 611 is provided at the upper end of the base 610
  • the first locking member 615 is provided at the lower end of the base 610 .
  • the second locking member 681 realizes locking or unlocking by rotating relative to the first locking member 615 .
  • the first locking member 615 is a card slot
  • the second locking member 681 is a card capable of engaging with the card slot.
  • the second locking piece 681 and the handle 683 are both set in a long strip shape, and the length direction of the second locking piece 681 is set to be in line with the length direction of the handle 683.
  • the handle 683 can also be locked with the cover 640 and the card cover 630, that is, the handle 683 is placed in the vertical direction and abuts the cover 640 and the card cover 630 respectively. , thereby limiting the mutual rotation between the cover 640 and the card cover 630, and limiting the rebound of the card cover 630.
  • the handle 683 can help to assist in identifying the locked or unlocked state of the second locking member 681 and the first locking member 615. That is, when the handle 683 is rotated to be placed in the vertical direction, the second locking member 681 and the first locking member 615 are not locked or unlocked. The member 615 is in a locked state.
  • the connecting component 600 is also in a locked state.
  • the cover 640 and the snap seat 620 are locked.
  • the cover 640 and the snap cover 630 cannot rotate with each other, and the connecting component 600 cannot be unlocked; when the handle 683 rotates When placed in the horizontal direction, the second locking member 681 and the first locking member 615 are in an unlocked state.
  • the cover 640 and the card cover 630 can rotate each other, that is, the connection assembly 600 can be operated to unlock.
  • the disclosed embodiment adopts a handle 683 provided on the outside of the card cover 630 for higher recognition.
  • the handle 683 in order to reduce the overall thickness of the connection assembly 600, when the connection assembly 600 is in a locked state according to the embodiment of the present disclosure, the handle 683 needs to be configured to be able to swing and be close to the card cover 630 Structure. Therefore, the handle 683 is provided with a fixing pin 6833.
  • the fixing pin 6833 passes through the mounting hole of the rotating shaft 6821.
  • the outer diameter of the fixing pin 6833 is set to be slightly smaller than the mounting hole of the rotating shaft 6821.
  • the fixing pin 6833 is rotationally connected to the mounting hole of the rotating shaft 6821. inside, so that the handle 683 can rotate relative to the rotating shaft 6821, thereby realizing the folding of the handle 683.
  • the handle 683 in order to facilitate the assembly of the handle 683 and the connector 682, the handle 683 includes a handle portion 6831 and a sleeve portion 6832.
  • the handle portion 6831 is a plate-like structure, and the sleeve portion 6832 is provided at the end of the handle part 6831, and the sleeve part 6832 is connected to the fixing pin 6833.
  • the sleeve part 6832 can be connected to the fixing pin 6833 through an interference fit, or by welding, screwing, etc., which will not be detailed here. limited.
  • first connection mechanism 120 and the second connection mechanism 220 can be interchanged, that is, the second connection mechanism 220 is a buckle seat 620, and the fan box 200 and the heat exchanger can also be connected.
  • a stable connection of the exchange box 100 is provided.
  • an air handling unit includes a heat exchange module 1000, a fan module 2000 and a filter module 3000.
  • the first connection mechanism 120 of the heat exchange module 1000 is an assembly hole 121.
  • the assembly hole 121 is provided in the avoidance recesses 900 at both ends of the heat exchange box 100.
  • the second connection mechanism 220 of the fan module 2000 is a connecting arm 221.
  • the connecting arm 221 It extends to the assembly hole 121 in a direction away from the fan box 200, and is fixedly connected to the assembly hole 121 at the upper end of the heat exchange box 100 through fasteners such as screws, thereby achieving a stable connection between the fan box 200 and the heat exchange box 100.
  • the filter module 3000 is also provided with a connecting arm 221 and is fixedly connected to the assembly hole 121 at the other end of the heat exchange module 1000 through fasteners, thereby achieving a stable connection with the heat exchange module 1000 .
  • first connection mechanism 120 of the heat exchange module 1000 can also be a connecting arm 221.
  • second connection mechanism 220 of the fan module 2000 can be an assembly hole 121, and its connection method can be Please refer to the above embodiments for understanding. In order to avoid repetition, details will not be described again here.

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Abstract

本文公开了一种空气处理机组,涉及空调设备技术领域,包括热交换箱体(100)和风机箱体(200),热交换箱体(100)沿高度延伸方向的两端分别设有第一装配部;风机箱体(200)沿高度延伸方向的一端设有与第一装配部对应的第二装配部;热交换箱体(100)位于第一装配状态时,热交换箱体(100)其中一端的第一装配部与风机箱体(200)的第二装配部连接;位于第二装配状态时,热交换箱体(100)另外一端的第一装配部与风机箱体(200)的第二装配部连接。

Description

空气处理机组
相关申请的交叉引用
本申请要求于2022年07月19日提交的申请号为202210847448.1、名称为“空气处理机组”,以及于2022年07月19日提交的申请号为202221868211.3、名称为“空气处理机组”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本公开涉及空调设备技术领域,特别涉及一种空气处理机组。
背景技术
空气处理机组一般安装于阁楼或者地下室,由于其安装环境复杂且安装空间狭窄,因此通常采用多个模块箱体组合装配的结构,并且需要根据现场安装环境选用不同的安装方向。传统的空气处理机组只能支持一个或者两个安装方向,不能通用于各种复杂的安装环境,且在狭窄空间内进行多个模块箱体装配时对位难度较大,导致装配效率较低。
发明内容
本公开旨在至少部分解决现有技术中存在的技术问题之一。为此,本公开提出一种空气处理机组,能够适应不同的安装环境并实现快速装配。
根据本公开实施例的空气处理机组,包括:热交换箱体,沿所述热交换箱体的高度延伸方向的两端分别设有第一装配部;风机箱体,沿所述风机箱体的高度延伸方向的一端设有与所述第一装配部对应的第二装配部;所述热交换箱体被配置为具有两个装配状态,其中位于第一装配状态时,所述热交换箱体其中一端的所述第一装配部与所述风机箱体的所述第二装配部连接;位于第二装配状态时,所述热交换箱体另外一端的所述第一装配部与所述风机箱体的所述第二装配部连接。
根据本公开实施例的空气处理机组,至少具有如下有益效果:
通过在热交换箱体沿高度延伸方向的两端均设有第一装配部,风机箱体沿高度延伸方向的一端设有与第一装配部对应的第二装配部,实现风机箱体与热交换箱体可拆卸连接,因此空气处理机组装配时,热交换箱体具有两个装配状态,安装人员可以根据安装环境选择性地将热交换箱体的其中一端的第一装配部与风机箱体的第二装配部连接,或者将热交换箱体的另一端的第一装配部与风机箱体的第二装配部连接,从而使空气处理机组能够快速装拆并适应不同的安装方向,有效降低了装配难度,提高了装配效率;而且当空气处理机组需要更换安装方向时,安装人员不需要将热交换箱体内的换热器组件取出并换向,只需要将风机箱体换向装配于热交换箱体的另一端即可,简化了换热器组件的结构,提高了空气处理机组的装配效率。
根据本公开的一些实施例,所述第一装配部包括第一定位框和第一连接机构,所述第二装配部包括第二定位框和第二连接机构;当所述热交换箱体位于所述第一装配状态时或位于所述第二装配状态时,所述第一定位框和所述第二定位框配合定位,所述第一连接机构与所述第二连接机构可拆卸地连接。
根据本公开的一些实施例,所述第一定位框形成有定位配合的定位凸起和定位凹部中的其中一个,所述第二定位框形成有所述定位凸起和所述定位凹部中的另一个。
根据本公开的一些实施例,所述定位凸起设有第一配合面,所述定位凹部设有第二配合面,所述第二配合面与所述第一配合面抵接,所述第一配合面和所述第二配合面为相配合的斜面或弧面。
根据本公开的一些实施例,所述热交换箱体包括第一围板,所述第一围板为钣金件且沿所述热交换箱体的周向延伸形成,两个所述第一定位框为塑料件且分别固定连接于所述第一围板的两端。
根据本公开的一些实施例,所述第一围板的端部形成有第一定位部,以及连接所述第一定位部的第一安装部,所述第一定位部围设于所述第一定位框的部分外周壁,所述第一安装部朝向所述热交换箱体的中心延伸,所述第一定位框固定连接于所述第一安装部。
根据本公开的一些实施例,所述第一定位框的外周壁设有第一定位槽,所述第一定位部设于所述第一定位槽内。
根据本公开的一些实施例,所述第一连接机构和所述第二连接机构中的其中一个为卡扣座,所述卡扣座设有第一扣接部;所述第一连接机构和所述第二连接机构中的另一个包括:基座,设有第一连接部;卡盖,设有第二连接部和第三连接部,所述第二连接部设于所述卡盖的一端且与所述第一连接部铰接,以使所述卡盖的另一端能够转动靠近或远离于所述基座,所述第三连接部与所述第二连接部间隔设置;封盖,一端设有与所述第三连接部铰接的第四连接部,另一端设有与所述第一扣接部扣接的第二扣接部。
根据本公开的一些实施例,所述第一连接机构为所述卡扣座,所述第二连接机构还包括第一固定栓 和扭簧,所述第一连接部与所述第二连接部通过所述第一固定栓连接,所述扭簧套设于所述第一固定栓,所述扭簧的第一扭臂与所述基座抵接,所述扭簧的第二扭臂与所述卡盖抵接,以向所述卡盖施加朝向所述基座转动的弹性力。
根据本公开的一些实施例,所述第一连接部包括间隔设置的两个第一支耳,两个所述第一支耳均设有第一通孔;所述卡盖包括面板和分别设于所述面板两侧的两个侧板,所述第二连接部为分别设于两个所述侧板的第二通孔,所述第一固定栓穿设于所述第一通孔和所述第二通孔。
根据本公开的一些实施例,所述面板的两侧分别设有用于避让两个所述第一支耳的避让槽,两个所述第一支耳设于两个所述侧板之间。
根据本公开的一些实施例,所述第一连接机构为所述卡扣座,所述基座设有第一锁定件;所述第二连接机构还包括锁定机构,所述锁定机构包括第二锁定件、连接件和把手,所述第二锁定件位于所述卡盖朝向所述基座的一侧,所述连接件的一端与所述第二锁定件连接,另一端穿出于所述卡盖并与所述把手连接,所述把手能够带动所述第二锁定件与所述第一锁定件锁紧或解锁。
根据本公开的一些实施例,所述连接件为转轴,所述转轴的两端分别连接所述第二锁定件和所述把手,所述第一连接部和所述第一锁定件分别设于所述基座的上下两端,所述第二锁定件和所述把手均为长条状结构且长度方向一致。
根据本公开的一些实施例,所述第一连接机构和所述第二连接机构中的其中一个为连接臂,另一个为装配孔,所述连接臂朝向所述装配孔延伸并通过紧固件连接于所述装配孔。
根据本公开的一些实施例,所述空气处理机组还包括滤网板,所述滤网板可拆卸连接于靠近所述热交换箱体的进风侧的所述第一定位框。
根据本公开的一些实施例,所述第一定位框沿周向设有多个磁体,所述滤网板与多个所述磁体吸附连接。
本公开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,或通过本公开的实践了解到。
附图说明
下面结合附图和实施例对本公开做进一步的说明,其中:
图1为本公开一种实施例的空气处理机组的结构示意图;
图2为图1中热交换箱的爆炸示意图;
图3为图1所示的空气处理机组的剖视图;
图4为本公开一种实施例的空气处理机组处于正装状态的示意图;
图5为本公开一种实施例的空气处理机组处于倒装状态的示意图;
图6为本公开一种实施例的空气处理机组处于左卧装状态的示意图;
图7为本公开一种实施例的空气处理机组处于右卧装状态的示意图;
图8为图3中A处的放大图;
图9为图3中A处的立体放大图;
图10为本公开另一种实施例的空气处理机组的结构示意图;
图11为图10中热交换箱的爆炸示意图;
图12为图1中连接组件一种实施例的结构示意图;
图13为图12所示的连接组件的爆炸图;
图14为本公开另一种实施例的空气处理机组的剖视图;
图15为图14中B处的放大图,其中连接组件处于解锁状态;
图16为图14中C处的放大图,其中连接组件处于锁紧状态;
图17为图1中连接组件另一种实施例的结构示意图;
图18为图17所示的连接组件的爆炸图;
图19为本公开另一种实施例的空气处理机组的局部剖视图;
图20为图19中D处的放大图,其中连接组件处于锁紧状态;
图21为图19中D处的放大图,其中连接组件处于解锁状态;
图22为本公开另一种实施例的空气处理机组的结构示意图;以及
图23为图22中所示的空气处理机组的爆炸图。
附图标号:
热交换模块1000;箱门1100;风机模块2000;滤网模块3000;
热交换箱体100;第一定位框110;定位凹部111;第二配合面112;第一安装孔113;第一定位槽 114;第一定位边115;磁体116;第一连接机构120;装配孔121;第一围板130;第一定位部140;第一安装部150;第二安装孔151;保温棉160;
风机箱体200;第二定位框210;定位凸起211;第一配合面212;第二定位槽213;第二连接机构220;连接臂221;第二围板230;第二定位部240;第二安装部250;
换热器组件300;换热器310;主接水盘320;副接水盘330;
风机组件400;
电加热组件500;
连接组件600;
基座610;第一连接部611;第一支耳6111;第一通孔6112;第一折边612;第二折边613;凹陷部614;第一锁定件615;
卡扣座620;第一扣接部621;倒角6211;
卡盖630;第二连接部631;第三连接部632;第三通孔6321;面板633;避让槽6331;侧板634;第二通孔6341;第一卡槽635;翻边636;
封盖640;第四连接部641;第二支耳6411;第四通孔6412;第二卡槽6413;第二扣接部642;
第一固定栓650;第一卡柱651;
扭簧660;第一扭臂661;第二扭臂662;
第二固定栓670;第二卡柱671;
锁定机构680;第二锁定件681;连接件682;转轴6821;把手683;握把部6831;轴套部6832;固定销6833;
滤网板700;
提手800;
避让凹部900。
具体实施方式
下面详细描述本公开的实施例,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,仅用于解释本公开,而不能理解为对本公开的限制。
在本公开的描述中,需要理解的是,涉及到方位描述,例如上、下等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本公开和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本公开的限制。
在本公开的描述中,多个指的是两个以上。如果有描述到第一、第二只是用于区分技术特征为目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量或者隐含指明所指示的技术特征的先后关系。
本公开的描述中,除非另有明确的限定,设置、安装、连接等词语应做广义理解,所属技术领域技术人员可以结合技术方案的具体内容合理确定上述词语在本公开中的具体含义。
参照图1所示,为了便于在狭窄空间内进行安装和搬运,本公开一种实施例的空气处理机组采用多个模块箱体可拆卸安装的结构。举例来说,本公开实施例的空气处理机组包括风机模块2000和热交换模块1000,风机模块2000和热交换模块1000内均形成贯通的气流通道(图中未示出),从空气处理机组的进风口(图中未示出)进入的气流分别通过风机模块2000和热交换模块1000,气流实现制冷或制热后从空气处理机组的出风口(图中未示出)吹出。为了便于安装,风机模块2000和热交换模块1000均设置为方形柱状结构,便于实现空气处理机组的立式安装或卧式安装。当然,风机模块2000和热交换模块1000还可以设为圆柱状或者其他多边形柱状,例如六边形柱状结构,在此不再具体限定。
参照图2和图3所示,热交换模块1000包括热交换箱体100,以及安装于热交换箱体100内的换热器组件300等部件。换热器组件300包括换热器310、主接水盘320和副接水盘330,主接水盘320设于换热器310的一端,主接水盘320与换热器310固定连接;副接水盘330与主接水盘320连接,副接水盘330设于换热器310的其中一侧,副接水盘330与热交换箱体100的其中一个侧壁相对设置。
参照图3所示,风机模块2000包括风机箱体200,以及安装于风机箱体200内的风机组件400、电加热组件500和电控盒(图中未示出)等部件。风机组件400内形成负压,从而驱使气流在气流通道内流动。电加热组件500用于加热气流通道内的气流。电控盒用于控制风机组件400、电加热组件500的运行。
参照图1所示,风机模块2000和热交换模块1000可以通过连接组件600实现快速装拆,提高空气处理机组的装配和维修效率。可以理解的是,本公开实施例的空气处理机组还可以包括滤网模块3000, 滤网模块3000内可以设有过滤元件(图中未示出),例如高效过滤器。滤网模块3000与风机模块2000或者热交换模块1000之间的装配也可以采用本公开实施例的连接组件600实现。
参照图1所示,本公开一种实施例的空气处理机组,风机箱体200、热交换箱体100和滤网模块3000沿上下方向依次连接。热交换箱体100沿热交换箱体100的高度方向的两端分别设有第一装配部(图中未示出),风机箱体200沿风机箱体200的高度方向的一端设有第二装配部(图中未示出),第二装配部与第一装配部对应设置。热交换箱体100具有第一装配状态和第二装配状态,当位于第一装配状态时,热交换箱体100的其中一端的第一装配部与风机箱体200的第二装配部连接;当位于第二装配状态时,热交换箱体100的另一端的第一装配部与风机箱体200的第二装配部连接。
本公开实施例中,第一装配部包括第一定位框110和第一连接机构120,第二装配部包括第二定位框210和第二连接机构220。
参照图1和图2所示,热交换箱体100的上端和下端均设有第一定位框110,对应的,风机箱体200与热交换箱体100装配的一端设有第二定位框210。可以理解的是,分别位于热交换箱体100的两端的两个第一定位框110可以采用相同的结构,两个第一定位框110均能够与第二定位框210配合定位,从而使风机箱体200与热交换箱体100的两端均能够实现对位。可以理解的是,分别位于热交换箱体100的两端的两个第一定位框110也可以采用不相同的结构,此时第二定位框210具有能够分别与两个第一定位框110对位连接的结构,从而使风机箱体200与热交换箱体100的两端分别连接的时均能够实现对位。
参照图1和图2所示,热交换箱体100的两端均设有第一连接机构120,第一连接机构120设于热交换箱体100的侧壁,对应的,风机箱体200的侧壁设有第二连接机构220,第二连接机构220可以与位于热交换箱体100其中一端的第一连接机构120组合形成连接组件600,从而实现风机箱体200与热交换箱体100可拆卸连接。因此,本公开实施例的空气处理机组装配时,安装人员可以根据安装环境选择性地将风机箱体200安装于热交换箱体100的其中一端,从而使空气处理机组能够快速装拆并适应不同的安装方向,有效降低了装配难度,提高了装配效率。而且,当空气处理机组需要更换安装方向时,安装人员不需要将热交换箱体100内的换热器组件300取出并换向,只需要将风机箱体200换向装配于热交换箱体100的另一端即可,简化了换热器组件300的结构,降低了空气处理机组的装配难度,提高了空气处理机组的装配效率。
参照图4所示,为本公开实施例空气处理机组处于正装状态的示意图,气流方向为自下向上。本公开实施例的热交换模块1000安装于风机模块2000的下方,热交换模块1000的上端的第一定位框110与风机模块2000的第二定位框210对位连接,热交换模块1000的上端的第一连接机构120与风机模块2000的第二连接机构220连接。本公开实施例的空气处理机组能够满足需要立式安装且采用下进风上出风的安装环境,此时换热器310通过主接水盘320排水。
参照图5所示,为本公开实施例空气处理机组处于倒装状态的示意图,气流方向为自上向下。本公开实施例的热交换模块1000安装于风机模块2000的上方,热交换模块1000的下端的第一定位框110与风机模块2000的第二定位框210对位连接,热交换模块1000的下端的第一连接机构120与风机模块2000的第二连接机构220连接。本公开实施例的空气处理机组能够满足需要立式安装且采用上进风下出风的安装环境,此时换热器310通过主接水盘320排水。
参照图6所示,为本公开实施例空气处理机组处于左卧装状态的示意图,气流方向为自右向左。本公开实施例的热交换模块1000安装于风机模块2000的右侧,热交换模块1000的左侧的第一定位框110与风机模块2000的第二定位框210对位连接,热交换模块1000的左侧的第一连接机构120与风机模块2000的第二连接机构220连接。本公开实施例的空气处理机组能够满足需要卧式安装且采用右进风左出风的安装环境,此时换热器310通过副接水盘330排水。
参照图7所示,为本公开实施例空气处理机组处于右卧装状态的示意图,气流方向为自左向右。本公开实施例的热交换模块1000安装于风机模块2000的左侧,热交换模块1000的右侧的第一定位框110与风机模块2000的第二定位框210对位连接,热交换模块1000的右侧的第一连接机构120与风机模块2000的第二连接机构220连接。本公开实施例的空气处理机组能够满足需要卧式安装且采用左进风右出风的安装环境,此时换热器310通过副接水盘330排水。
参照图4至图7所示,可以理解的是,本公开实施例的空气处理机组能够方便地实现多种安装方向,相对于现有技术的方案,换热器组件300无需取出换向,从而减少装配步骤,提高装配效率;也不需要额外增加一个副接水盘330,从而减少风阻,降低生产成本;而且不需要额外增加一个后接水盘(位于换热器310背离主接水盘320的一端),从而降低生产成本。
参照图3、图8和图9所示,本公开实施例的空气处理机组中,第一定位框110为沿热交换箱体100 的周沿延伸的结构,或者为沿热交换箱体100的部分周沿延伸的结构。风机箱体200的上端部设有第二定位框210,第二定位框210为沿热交换箱体100的周沿延伸的结构,或者为沿风机箱体200的部分周沿延伸的结构。第二定位框210与第一定位框110定位配合,从而使热交换箱体100和风机箱体200实现定位。可以理解的是,第一定位框110形成定位凹部111,定位凹部111可以形成在第一定位框110的部分结构,或者第一定位框110的全部结构。第二定位框210形成定位凸起211,定位凸起211可以形成在第二定位框210的部分结构,或者第二定位框210的全部结构。定位凹部111与定位凸起211定位配合,使得安装人员对热交换箱体100和风机箱体200装配时,能够方便地将热交换箱体100和风机箱体200导向居中。而且,定位凸起211设有第一配合面212,定位凹部111设有第二配合面112,热交换箱体100和风机箱体200在安装时能够在第一配合面212和第二配合面112的抵接作用下实现对位连接,使得两者的连接更加稳定,并且提高了热交换箱体100和风机箱体200的装配效率和装配精度。作为另一种实施例,可以理解的是,热交换箱体100的第一定位框110还可以形成定位凸起211,对应的,风机箱体200的第二定位框210形成与定位凸起211配合的定位凹部111。
可以理解的是,第一配合面212和第二配合面112为相配合的斜面或弧面。当第一配合面212和第二配合面112为斜面时,第一配合面212可以设于定位凹部111朝向热交换箱体100的内侧,第一配合面212可以设于定位凸起211朝向风机箱体200中心的一侧,第二配合面112可以设于定位凹部111朝向热交换箱体100中心的一侧,使得第一定位框110和第二定位框210的对位更加顺畅,实现热交换箱体100和风机箱体200的快速装拆。第一倾斜面和第二倾斜面的总接触面积更大,使得第一定位框110和第二定位框210的连接更加稳定,进而提高了热交换箱体100和风机箱体200连接的稳定性。当第一配合面212和第二配合面112为弧面时,第一配合面212可以设于定位凸起211朝向第一定位框110的一端,第二配合面112可以设于定位凹部111朝向第二定位框210的一端,弧面的设计使得定位凸起211能够更顺畅地导入定位凹部111内,从而实现第一定位框110和第二定位框210的对位,进而使热交换箱体100和风机箱体200实现快速装拆。
参照图8和图9所示,可以理解的是,热交换箱体100包括第一围板130和第一定位框110,第一围板130沿热交换箱体100的周向延伸形成,两个第一定位框110分别固定连接于第一围板130沿热交换箱体100的轴向的两端。第一围板130为钣金件,第一围板130可以通过冲压、弯板等工艺加工而成。第一定位框110为塑料件,第一定位框110可以通过注塑加工而成。本公开实施例的热交换箱体100采用钣金和塑料组合的结构,能够在提升强度的同时降低加工难度。具体来说,本公开实施例的热交换箱体100相对于热交换箱体100整体采用钣金加工而成的方式,只加工第一围板130能够降低加工难度,提高加工效率;相对于热交换箱体100整体采用塑料加工而成的方式,只注塑第一定位框110能够降低加工难度,提高加工效率,而且生产成本也较低。
可以理解的是,塑料的第一定位框110能够对钣金的第一围板130的外观缺陷进行包裹,遮挡第一围板130的外观缺陷,并且使得第一定位框110与第一围板130装配时更加牢靠。
参照图8和图9所示,以热交换箱体100的上部为例进行说明,可以理解的是,第一围板130的上端形成有第一定位部140,第一定位部140围设于第一定位框110的部分外周壁,从而使第一定位框110嵌设于第一定位部140的围设空间内,实现第一定位框110与第一围板130的定位连接。为了进一步提高第一定位框110和第一围板130的连接稳定性,第一定位部140连接有第一安装部150,第一安装部150朝向热交换箱体100的中心延伸,第一定位框110可以通过铆接、螺接、卡接、粘接等方式固定连接于第一安装部150。
可以理解的是,第一围板130可以通过二次折弯工艺形成第一定位部140和第一安装部150。举例来说,第一定位部140通过第一围板130向内折弯并折叠形成,即形成为U形结构,从而增加了第一定位部140的结构强度。第一安装部150通过第一围板130向热交换箱体100的中心再次折弯形成,即与第一定位部140形成为L形。因此,第一定位框110与第一围板130安装时,可以通过第一定位部140实现对位,并通过第一安装部150实现稳定连接,提高了热交换箱体100的装配效率。
参照图9所示,第一定位框110朝向第一安装部150的一端设有第一安装孔113,第一安装部150设有第二安装孔151,第一安装孔113和第二安装孔151内穿设有紧固件,从而实现第一定位框110与第一围板130的稳定连接,而且装配更加方便。
可以理解的是,为了便于第一定位框110的安装,需要对第一定位框110的轴向进行限位,因此第一定位框110的外周壁设有第一定位槽114,第一定位部140设于第一定位槽114内,第一定位部140与第一定位槽114的底壁抵接配合。
参照图8和图9所示,为了提高热交换箱体100的保温效果,第一围板130内需要粘贴保温棉160。因此为了使保温棉160的安装更加稳定和方便,第一定位框110朝向热交换箱体100的内部延伸设有第 一定位边115,第一定位边115与第一围板130间隔设置,保温棉160定位安装于第一定位边115和第一围板130之间的空间内。
同样,第一围板130的下端也可以形成有第一定位部140,第一定位部140与位于第一围板130下端的第一定位框110的连接结构与上述实施例相同,为了避免重复,在此不再赘述。
参照图3和图9所示,可以理解的是,风机箱体200包括第二围板230和第二定位框210,第二围板230沿风机箱体200的周向延伸形成,第二定位框210固定连接于第二围板230朝向热交换箱体100的一端。第二围板230为钣金件,第二围板230可以通过冲压、弯板等工艺加工而成。第二定位框210为塑料件,第二定位框210可以通过注塑加工而成。本公开实施例的风机箱体200采用钣金和塑料组合的结构,能够在提升强度的同时降低加工难度。具体来说,本公开实施例的风机箱体200相对于风机箱体200整体采用钣金加工而成的方式,只加工第二围板230能够降低加工难度,提高加工效率;相对于风机箱体200整体采用塑料加工而成的方式,只注塑第二定位框210能够降低加工难度,提高加工效率,而且生产成本也较低。
参照图8和图9所示,以风机箱体200的下部为例进行说明,可以理解的是,第二围板230的下端形成有第二定位部240,第二定位部240围设于第二定位框210的部分外周壁,从而使第二定位框210嵌设于第二定位部240的围设空间内,实现第二定位框210与第二围板230的定位连接。为了进一步提高第二定位框210和第二围板230的连接稳定性,第二定位部240连接有第二安装部250,第二安装部250朝向风机箱体200的中心延伸,第二定位框210可以通过铆接、螺接、卡接、粘接等方式固定连接于第二安装部250。
可以理解的是,第二围板230可以通过二次折弯工艺形成第二定位部240和第二安装部250。举例来说,第二定位部240通过第二围板230向内折弯并折叠形成,即形成为U形结构,从而增加了第二定位部240的结构强度。第二安装部250通过第二围板230向风机箱体200的中心再次折弯形成,即与第二定位部240形成为L形。因此,第二定位框210与第二围板230安装时,可以通过第二定位部240实现对位,并通过第二安装部250实现稳定连接,提高了风机箱体200的装配效率。
可以理解的是,为了便于第二定位框210的安装,需要对第二定位框210的轴向进行限位,因此第二定位框210的外周壁设有第二定位槽213,第二定位部240设于第二定位槽213内,第二定位部240与第二定位槽213的底壁抵接配合。
参照图10和图11所示,本公开另一种实施例的空气处理机组,包括热交换模块1000和风机模块2000。本公开实施例的空气处理机组由于不独立设置滤网模块3000,因此热交换模块1000还设有滤网板700,滤网板700可拆卸连接于第一定位框110,具体为安装于第一定位框110的外侧,即远离热交换箱体100的中心的一端,从而方便安装和拆卸。可以理解的是,滤网板700能够与两个第一定位框110实现可拆卸连接,从而保证在热交换箱体100的其中一端与风机箱体200连接后,另一端也能够安装滤网板700。需要说明的是,滤网板700的安装位置需要根据空气处理机组的安装方向以及热交换模块1000的装配状态进行选择,即滤网板700安装在靠近热交换箱体100进风侧的第一定位框110,从而实现对进入空气处理机组的气流的有效过滤。
参照图10和图11所示,滤网板700与第一定位框110可以通过吸附连接、螺接或扣接等方式实现可拆卸连接。
参照图11所示,可以理解的是,第一定位框110沿气流通道的周向设有多个磁体116,多个磁体116可以内嵌于第一定位框110的底壁。对应的,滤网板700为金属件,或者滤网板700与第一定位框110配合的外周沿设有金属围边,从而实现滤网板700与多个磁体116的吸附连接。
参照图2和图11所示,可以理解的是,热交换箱体100的一侧设有开口(图中未示出),开口与气流通道连通,换热器组件300可以通过开口装入热交换箱体100内,例如采用滑动连接的方式安装、或者卡扣固定等方式实现快速安装。热交换模块1000还包括箱门1100,箱门1100安装于热交换箱体100的开口,从而对开口进行密封。需要说明的是,箱门1100一般设计为易拆部件,便于对热交换模块1000进行售后维修。举例来说,箱门1100可以通过吸附连接等方式安装于热交换箱体100。
参照图1和图2所示,热交换箱体100和风机箱体200均设有提手800,提手800设于热交换箱体100和风机箱体200的侧壁相对的两侧,从而便于安装人员对热交换模块1000和风机模块2000进行搬运。为了使空气处理机组能够实现侧放,提手800采用内凹结构,即通过热交换箱体100和风机箱体200向其内部凹陷形成。
参照图1和图2所示,本公开实施例的连接组件600,连接组件600用于实现热交换箱体100和风机箱体200的可拆卸连接。连接组件600安装于热交换箱体100和风机箱体200的连接处,连接组件600包括第一连接机构120和第二连接机构220。第一连接机构120可以设有多个,多个第一连接机构120 分成两组,两组第一连接机构120分别设于热交换箱体100的两端,每组第一连接机构120可以安装于热交换箱体100相对的两个侧壁,或者安装于热交换箱体100的三个侧壁或四个侧壁。对应的,第二连接机构220可以设有多个,多个第二连接机构220分别设于热交换箱体100的两端,多个第一连接机构120可以安装于热交换箱体100相对的两个侧壁,或者安装于热交换箱体100的三个侧壁或四个侧壁。为了提高热交换箱体100和风机箱体200之间连接的稳定性,本公开实施例的空气处理机组的每个侧壁可以设置两个连接组件600,或者设置三个或更多个,在此不再具体限定。
参照图12和图13所示,本公开实施例的第一连接机构120为卡扣座620,卡扣座620固定连接于热交换箱体100。第二连接机构220包括基座610,基座610固定连接于风机箱体200,基座610和卡扣座620沿上下方向间隔设置。可以理解的是,基座610可以采用螺钉等紧固件连接于风机箱体200,基座610和风机箱体200的侧壁的相应位置可以预加工安装孔等安装结构,从而便于紧固件的装配。另外,卡扣座620也可以采用螺钉等紧固件连接于热交换箱体100。
参照图13所示,本公开实施例的第二连接机构220还包括卡盖630和封盖640。基座610设有第一连接部611,卡盖630的一端设有第二连接部631,第二连接部631与第一连接部611铰接。卡盖630还设有与第二连接部631间隔设置的第三连接部632,封盖640的一端设有第四连接部641,第四连接部641与第三连接部632铰接。封盖640的另一端设有第二扣接部642,卡扣座620远离基座610的一端设有第一扣接部621,第一扣接部621与第二扣接部642扣接。
参照图14、图15和图16所示,可以理解的是,本公开实施例的卡盖630能够带动封盖640相对于卡扣座620运动,例如带动封盖640与卡扣座620扣接并转动至靠近基座610的位置,从而使卡盖630的另一端能够盖设于基座610,实现基座610与卡扣座620的锁紧;或者卡盖630能够向远离基座610的方向转动,从而使卡盖630的另一端能够分离于基座610,并带动封盖640与卡扣座620解锁。本公开实施例的连接组件600能够实现第二扣接部642与第一扣接部621的锁紧配合或解锁配合,从而实现基座610与卡扣座620的锁紧或解锁,进而实现热交换箱体100和风机箱体200的装配和拆卸,操作方便快捷;而且连接组件600的结构简单稳定。
参照图13、图15和图16所示,可以理解的是,第一扣接部621为卡台,卡台为卡扣座620向上凸出形成,第二扣接部642为与卡台相配合的卡孔,可以理解的是,第二扣接部642还可以为与卡台相配合的卡槽(图中未示出),也可以实现封盖640和卡扣座620的稳定连接。作为另一种实施例,第一扣接部621还可以设置为卡槽,相应的,第二扣接部642可以设置为与卡槽配合的卡台。
可以理解的是,当第一扣接部621为卡台时,卡台远离卡扣座620的一端设有倒角6211,便于封盖640与卡扣座620实现锁紧或解锁的功能,提升连接组件600操作的便捷性。
可以理解的是,为了实现空气处理机组的卧式安装的要求,即空气处理机组的侧壁与地面接触,当连接组件600处于锁紧状态时整体结构不能凸出于空气处理机组的侧壁。因此,本公开实施例的热交换箱体100和风机箱体200的连接处分别设有避让凹部900,连接组件600容置于两个避让凹部900内,即第一连接机构120设于热交换箱体100的避让凹部900,第二连接机构220设于风机箱体200的避让凹部900。
参照图13、图15和图16所示,可以理解的是,本公开实施例的第二连接机构220还包括第一固定栓650,第一固定栓650可以固定连接于第一连接部611,第二连接部631转动连接于第一固定栓650,从而使基座610和卡盖630之间能够实现稳定的相对转动。作为另一种实施例,第一固定栓650还可以固定连接于第二连接部631,第一连接部611转动连接于第一固定栓650。
可以理解的是,第一连接部611包括两个第一支耳6111,两个第一支耳6111沿左右方向间隔设置于基座610,两个第一支耳6111均设有第一通孔6112。卡盖630包括面板633和分别设于面板633两侧的两个侧板634,面板633可以与两个侧板634一体加工而成。第二连接部631为分别设于两个侧板634的两个第二通孔6341,第一固定栓650穿设于两个第一通孔6112和两个第二通孔6341,第一固定栓650固定于两个第一支耳6111,或者固定于两个侧板634,从而实现基座610和卡盖630的转动连接。可以理解的是,两个侧板634可以设于两个第一支耳6111之间,或者两个第一支耳6111设于两个侧板634之间。
参照图3所示,可以理解的是,面板633的两侧分别设有避让槽6331,两个避让槽6331的位置与两个第一支耳6111相匹配,两个第一支耳6111设于两个侧板634之间,避让槽6331用于避让第一支耳6111,从而能够避免卡盖630相对于基座610转动时与第一支耳6111发生干涉,因此可以将卡盖630的厚度尺寸设计得更小,使得连接组件600处于锁紧状态时的整体厚度更小,使用更加方便,有利于节省空气处理机组的避让空间。可以理解的是,为了提高两个第一支耳6111与第一固定栓650配合的稳定性,两个第一支耳6111分别位于靠近两个侧板634的位置,两个避让槽6331分别位于面板633和两个 侧板634的连接处。
参照图3所示,可以理解的是,第一固定栓650与卡盖630固定连接,第一支耳6111相对于第一固定栓650转动连接。为了使第一固定栓650与卡盖630的连接更加稳定,卡盖630设有两个第一卡槽635,两个第一卡槽635分别设于两个侧板634,且分别形成于两个第二通孔6341的周沿,第一固定栓650的两端设有第一卡柱651,两个第一卡柱651分别固定连接于两个第一卡槽635。举例来说,第一卡柱651可以与第一卡槽635过盈配合,或者采用焊接等方式进行固定连接,在此不再具体限定。
参照图13、图15和图16所示,可以理解的是,本公开一种实施例的第二连接机构220还包括扭簧660,扭簧660套设于第一固定栓650,并且位于扭簧660其中一端的第一扭臂661与基座610抵接,位于扭簧660另一端的第二扭臂662与卡盖630抵接。可以理解的是,基座610设有第一折边612,第一扭臂661与第一折边612抵接固定。第二扭臂662抵接于卡盖630朝向第一固定栓650的一端,即面板633的端部,或抵接于面板633的外侧,从而能够向卡盖630施加朝向基座610转动的弹性力,使得卡盖630向基座610的外侧打开时存在阻碍打开的反作用力,从而有效防止卡盖630回弹,即避免连接组件600在实际使用中因为轻微的碰撞而导致卡盖630弹起,进而导致封盖640与卡扣座620脱开,造成连接组件600解锁的情况。
参照图13所示,基座610的中部向风机箱体200凹陷形成凹陷部614,凹陷部614通过螺钉等紧固件固定于风机箱体200的侧壁。基座610的左右两侧形成有第二折边613,第二折边613抵接于风机箱体200的侧壁,使得基座610具有更大的受力面积,有效防止基座610在受力状态下发生变形,从而能够为连接组件600整体提供稳定的支撑。
参照图13所示,可以理解的是,第二连接机构220还包括第二固定栓670,第二固定栓670可以固定连接于第三连接部632,第四连接部641转动连接于第二固定栓670,从而使封盖640和卡盖630之间能够实现稳定的相对转动。作为另一种实施例,第二固定栓670还可以固定连接于第四连接部641,第三连接部632转动连接于第二固定栓670。
参照图13所示,可以理解的是,第三连接部632为分别设于卡盖630的两个侧板634的第三通孔6321,第三通孔6321与第二通孔6341间隔设置。第四连接部641包括两个第二支耳6411,两个第二支耳6411沿左右方向间隔设于封盖640,两个第二支耳6411均设有第四通孔6412,第二固定栓670穿设于两个第三通孔6321和两个第四通孔6412,第二固定栓670固定于两个第二支耳6411,或者固定于两个侧板634,从而实现封盖640和卡盖630的转动连接。可以理解的是,两个第二支耳6411设于两个侧板634之间,或者两个侧板634设于两个第二支耳6411之间。
参照图13所示,可以理解的是,第二固定栓670与封盖640固定连接,侧板634相对于第二固定栓670转动连接。两个第二支耳6411设有第二卡槽6413,第二卡槽6413形成于第四通孔6412的周沿,第二固定栓670的两端设有第二卡柱671,第二卡柱671固定连接于第二卡槽6413。举例来说,第二卡柱671可以与第二卡槽6413过盈配合,或者采用焊接等方式进行固定连接,在此不再具体限定。
参照图13、图15和图16所示,可以理解的是,卡盖630远离第二连接部631的一端设有翻边636,翻边636可以与卡盖630一体制造成型。翻边636能够作为提手800使用,增加了卡盖630打开时的力矩,方便对卡盖630进行掀起操作,从而便于对连接组件600进行解锁。
参照图17所示,本公开另一种实施例的连接组件600,与上一种实施例的连接组件600相似,可以适当参考上一种实施例进行理解。其区别点在于:本公开实施例的第二连接机构220增设有锁定机构680,锁定机构680包括第二锁定件681、连接件682和把手683,第二锁定件681位于卡盖630的内侧,即卡盖630朝向基座610的一侧,基座610设有与第二锁定件681相配合的第一锁定件615。
可以理解的是,连接件682穿设于卡盖630,连接件682位于卡盖630内侧的一端与第二锁定件681固定连接,连接件682可以采用螺钉等紧固件与第二锁定件681连接,从而能够方便地实现装配。连接件682位于卡盖630的外侧的一端并与把手683连接,把手683通过连接件682与第二锁定件681连接,把手683能够带动第二锁定件681相对于第一锁定件615运动,从而实现锁紧状态或解锁状态。参照图12和图13所示,锁定机构680处于锁紧状态。参照图14和图15所示,锁定机构680处于解锁状态。本公开实施例的连接组件600通过增设锁定机构680,锁定机构680能够通过滑动、摆动或转动等方式控制第二锁定件681与第一锁定件615实现锁紧或者解锁,从而限制了卡盖630发生回弹而造成连接组件600发生解锁的情况,使热交换箱体100和风机箱体200的装配更加稳定。
参照图18、图19、图20和图21所示,可以理解的是,本公开实施例的连接件682为转轴6821,转轴6821的两端分别连接第二锁定件681和把手683。把手683转动从而带动转轴6821转动,进而能够带动第二锁定件681相对于第一锁定件615转动,使得第二锁定件681锁紧于第一锁定件615,或者使得第二锁定件681解锁于第一锁定件615。本公开实施例的锁定机构680采用转动操作的方式,其操 作更加方便,结构更加简单。
可以理解的是,第一连接部611设于基座610的上端,第一锁定件615设于基座610的下端。第二锁定件681通过与第一锁定件615相对转动的方式实现锁紧或者解锁。本公开实施例的连接组件600,第一锁定件615为卡槽,第二锁定件681为能够与卡槽卡接配合的卡片。为了使锁定机构680能够更好地实现对连接组件600的锁紧效果,第二锁定件681和把手683均设置为长条状,第二锁定件681的长度方向设置为与把手683的长度方向相同,即当锁定机构680处于锁紧状态下,把手683与封盖640和卡盖630之间也能形成锁紧,即把手683沿竖直方向放置,分别抵接封盖640和卡盖630,从而限制封盖640和卡盖630之间发生相互转动,限制卡盖630发生回弹。而且,把手683能够有助于辅助识别第二锁定件681与第一锁定件615的锁紧或解锁状态,即当把手683转动至沿竖直方向放置时,第二锁定件681与第一锁定件615为锁紧状态,此时连接组件600也处于锁紧状态,封盖640与卡扣座620锁紧,封盖640和卡盖630无法相互转动,连接组件600无法解锁;当把手683转动至沿水平方向放置时,第二锁定件681与第一锁定件615为解锁状态,此时封盖640和卡盖630可以相互转动,即可以操作连接组件600实现解锁。本公开实施例采用设于卡盖630外侧的把手683,辨识度更高。
参照图20和图21所示,可以理解的是,为了减小连接组件600整体的厚度尺寸,本公开实施例连接组件600处于锁紧状态时,把手683需要设置能够摆动并贴近于卡盖630的结构。因此,把手683设有固定销6833,固定销6833穿设于转轴6821的安装孔内,固定销6833的外径设置为略小于转轴6821的安装孔,固定销6833转动连接于转轴6821的安装孔内,从而使把手683能够相对于转轴6821转动,从而实现把手683的折叠。
参照图18和图21所示,可以理解的是,为了便于把手683和连接件682的装配,把手683包括握把部6831和轴套部6832,握把部6831为板状结构,轴套部6832设于握把部6831的端部,轴套部6832与固定销6833连接,轴套部6832可以与固定销6833通过过盈配合连接,或者焊接、螺钉固定连接等方式,在此不再具体限定。
可以理解的是,作为另一种实施例,第一连接机构120和第二连接机构220的具体可以互换,即第二连接机构220为卡扣座620,同样可以实现风机箱体200和热交换箱体100的稳定连接。
参照图22和图23所示,本公开另一种实施例的空气处理机组,包括热交换模块1000、风机模块2000和滤网模块3000。热交换模块1000的第一连接机构120为装配孔121,装配孔121设于热交换箱体100的两端的避让凹部900内,风机模块2000的第二连接机构220为连接臂221,连接臂221朝向远离风机箱体200的方向延伸至装配孔121,并且与热交换箱体100上端的装配孔121通过螺钉等紧固件固定连接,从而实现风机箱体200与热交换箱体100的稳定连接。滤网模块3000也设有连接臂221并通过紧固件固定连接于热交换模块1000的另一端的装配孔121,从而实现与热交换模块1000的稳定连接。
可以理解的是,作为另一种实施例,热交换模块1000的第一连接机构120还可以为连接臂221,对应的,风机模块2000的第二连接机构220为装配孔121,其连接方式可以参考上述实施例的进行理解,为了避免重复,在此不再赘述。
上面结合附图对本公开实施例作了详细说明,但是本公开不限于上述实施例,在所属技术领域普通技术人员所具备的知识范围内,还可以在不脱离本公开宗旨的前提下作出各种变化。

Claims (16)

  1. 空气处理机组,包括:
    热交换箱体,沿所述热交换箱体的高度延伸方向的两端分别设有第一装配部;以及
    风机箱体,沿所述风机箱体的高度延伸方向的一端设有与所述第一装配部对应的第二装配部;
    所述热交换箱体被配置为具有两个装配状态,其中
    位于第一装配状态时,所述热交换箱体其中一端的所述第一装配部与所述风机箱体的所述第二装配部连接;以及
    位于第二装配状态时,所述热交换箱体另外一端的所述第一装配部与所述风机箱体的所述第二装配部连接。
  2. 根据权利要求1所述的空气处理机组,其中,所述第一装配部包括第一定位框和第一连接机构,所述第二装配部包括第二定位框和第二连接机构;当所述热交换箱体位于所述第一装配状态时或位于所述第二装配状态时,所述第一定位框和所述第二定位框配合定位,所述第一连接机构与所述第二连接机构可拆卸地连接。
  3. 根据权利要求2所述的空气处理机组,其中,所述第一定位框形成有定位配合的定位凸起和定位凹部中的其中一个,所述第二定位框形成有所述定位凸起和所述定位凹部中的另一个。
  4. 根据权利要求3所述的空气处理机组,其中,所述定位凸起设有第一配合面,所述定位凹部设有第二配合面,所述第二配合面与所述第一配合面抵接,所述第一配合面和所述第二配合面为相配合的斜面或弧面。
  5. 根据权利要求2至4任一项所述的空气处理机组,其中,所述热交换箱体包括第一围板,所述第一围板为钣金件且沿所述热交换箱体的周向延伸形成,两个所述第一定位框为塑料件且分别固定连接于所述第一围板的两端。
  6. 根据权利要求5所述的空气处理机组,其中,所述第一围板的端部形成有第一定位部,以及连接所述第一定位部的第一安装部,所述第一定位部围设于所述第一定位框的部分外周壁,所述第一安装部朝向所述热交换箱体的中心延伸,所述第一定位框固定连接于所述第一安装部。
  7. 根据权利要求6所述的空气处理机组,其中,所述第一定位框的外周壁设有第一定位槽,所述第一定位部设于所述第一定位槽内。
  8. 根据权利要求2所述的空气处理机组,其中,所述第一连接机构和所述第二连接机构中的其中一个为卡扣座,所述卡扣座设有第一扣接部;所述第一连接机构和所述第二连接机构中的另一个包括:
    基座,设有第一连接部;
    卡盖,设有第二连接部和第三连接部,所述第二连接部设于所述卡盖的一端且与所述第一连接部铰接,以使所述卡盖的另一端能够转动靠近或远离于所述基座,所述第三连接部与所述第二连接部间隔设置;以及
    封盖,一端设有与所述第三连接部铰接的第四连接部,另一端设有与所述第一扣接部扣接的第二扣接部。
  9. 根据权利要求8所述的空气处理机组,其中,所述第一连接机构为所述卡扣座,所述第二连接机构还包括第一固定栓和扭簧,所述第一连接部与所述第二连接部通过所述第一固定栓连接,所述扭簧套设于所述第一固定栓,所述扭簧的第一扭臂与所述基座抵接,所述扭簧的第二扭臂与所述卡盖抵接,以向所述卡盖施加朝向所述基座转动的弹性力。
  10. 根据权利要求9所述的空气处理机组,其中,所述第一连接部包括间隔设置的两个第一支耳,两个所述第一支耳均设有第一通孔;所述卡盖包括面板和分别设于所述面板两侧的两个侧板,所述第二连接部为分别设于两个所述侧板的第二通孔,所述第一固定栓穿设于所述第一通孔和所述第二通孔。
  11. 根据权利要求10所述的空气处理机组,其中,所述面板的两侧分别设有用于避让两个所述第一支耳的避让槽,两个所述第一支耳设于两个所述侧板之间。
  12. 根据权利要求8所述的空气处理机组,其中,所述第一连接机构为所述卡扣座,所述基座设有第一锁定件,所述第二连接机构还包括锁定机构,所述锁定机构包括第二锁定件、连接件和把手,所述第二锁定件位于所述卡盖朝向所述基座的一侧,所述连接件的一端与所述第二锁定件连接,另一端穿出于所述卡盖并与所述把手连接,所述把手能够带动所述第二锁定件与所述第一锁定件锁紧或解锁。
  13. 根据权利要求12所述的空气处理机组,其中,所述连接件为转轴,所述转轴的两端分别连接所述第二锁定件和所述把手,所述第一连接部和所述第一锁定件分别设于所述基座的上下两端,所述第二锁定件和所述把手均为长条状结构且长度方向一致。
  14. 根据权利要求2所述的空气处理机组,其中,所述第一连接机构和所述第二连接机构中的其中 一个为连接臂,另一个为装配孔,所述连接臂朝向所述装配孔延伸并通过紧固件连接于所述装配孔。
  15. 根据权利要求1所述的空气处理机组,还包括滤网板,所述滤网板可拆卸连接于靠近所述热交换箱体的进风侧的所述第一定位框。
  16. 根据权利要求15所述的空气处理机组,其中,所述第一定位框沿周向设有多个磁体,所述滤网板与多个所述磁体吸附连接。
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