Air conditioning unit and air conditioning device
Through the design of detachable adjustment part and air supply part, the air conditioning unit can adapt to different installation environments and realize multiple air supply and return modes, which improves installation flexibility and efficiency and reduces costs.
Patent Information
- Application Number
- CN202422536801.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-18
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2034-10-18
AI Technical Summary
Existing air conditioning units are designed as all-in-one units, which makes them unable to adapt to different installation environments, affecting installation flexibility and efficiency.
The adjustment part and air supply part are designed to be detachably connected. The adjustment part and air supply part are respectively provided with multiple installation positions. By changing their placement to adapt to the on-site environment, a variety of air supply and return modes can be achieved.
It improves the installation flexibility and efficiency of air-conditioning units and reduces the stocking costs of manufacturers and dealers.
Smart Images

Figure CN223412159U_ABST
Abstract
Description
Technical Field
[0001] The present application belongs to the technical field of air-conditioning equipment, and more specifically, relates to an air-conditioning unit and an air-conditioning device. Background Art
[0002] An air conditioner is a device used to regulate indoor temperature, humidity, and air quality. Its main functions include cooling, heating, dehumidification, and air circulation. Air conditioners in related art include an outdoor unit and an indoor unit. The outdoor unit is installed outdoors and receives outdoor air. The indoor unit is installed indoors and connected to the outdoor unit to discharge conditioned air into the room.
[0003] However, most indoor or outdoor units are designed as an integrated unit and are collectively referred to as an air conditioning unit. This design method results in the air conditioning unit having only one fixed air supply and return method; this fixed air supply and return method makes the air conditioning unit unable to adapt to different installation environments, seriously affecting the flexibility and efficiency of the installation. Utility Model Content
[0004] The purpose of the embodiments of the present application is to provide an air-conditioning unit and an air-conditioning device, aiming to solve the technical problem in the related art that the air-conditioning unit cannot adapt to different installation environments.
[0005] To achieve the above-mentioned purpose, according to one aspect of the present application, an air-conditioning unit is provided, including a detachably connected adjustment part and an air supply part, the adjustment part is provided with an adjustment part, an air inlet and an air outlet, the air supply part is provided with an air supply part, an air intake and an exhaust port, and the air outlet is connected to the air intake port; the adjustment part is provided with at least two first mounting positions connected to the air supply part, and the air supply part is provided with at least two second mounting positions connected to the adjustment part, and the first mounting position and the second mounting position are adapted to each other; the air supply part is used to allow external air to enter the adjustment part from the air inlet, and after being adjusted by the adjustment part, enter the air supply part from the air outlet and the air intake port, and then be discharged from the exhaust port; the adjustment part is used to adjust the temperature and / or humidity of the gas entering the adjustment part.
[0006] Optionally, the adjusting part includes an adjusting part body, the adjusting part body has a first accommodating space, the adjusting part is installed in the first accommodating space, and the first accommodating space is divided into an adjusting part air inlet cavity and an adjusting part air outlet cavity; the adjusting part air inlet cavity includes at least two adjacent first cavity sides, and the adjusting part air outlet cavity includes at least two adjacent second cavity sides; the adjusting part also includes an air intake plate that can be detachably mounted on the adjusting part body, the air intake plate is adapted to each first cavity side, and each second cavity side is provided with a first mounting position.
[0007] Optionally, the adjustment part body is a square adjustment part body, which also includes a first side, a second side, a third side and a fourth side adjacent to each other in sequence, the first cavity side includes the first side and the second side, and the second cavity side includes the third side and the fourth side.
[0008] Optionally, the adjustment part also includes a first cavity side panel and a second cavity side panel, the first cavity side panel can be removably installed on the first side or the second side, and the second side or the first side is used to install the air intake plate; the second cavity side panel can be removably installed on the third side or the fourth side, and the fourth side or the third side is used as an air outlet.
[0009] Optionally, the regulating member is an evaporator, and at least two water receiving trays are further provided in the first accommodating space. The two water receiving trays are respectively fixed to the bottom and the top of the evaporator, and the two water receiving trays are arranged facing each other.
[0010] Optionally, the air supply unit includes an air supply unit body, the air supply unit body has a second accommodating space, the air supply component is installed in the second accommodating space, and the second accommodating space forms an air supply cavity; the air supply cavity includes at least two third cavity sides, and each third cavity side is provided with a second installation position.
[0011] Optionally, the air supply part body is a square air supply part body, and the air supply cavity is a square air supply cavity, which includes a fifth side surface, a sixth side surface, a seventh side surface and an eighth side surface that are adjacent to each other in sequence.
[0012] Optionally, the air supply part also includes two third cavity side panels, which can be detachably installed on any two of the fifth side, the sixth side, the seventh side and the eighth side, and the remaining two serve as the air intake and exhaust ports respectively.
[0013] Optionally, the air conditioning unit further includes a connecting member, which is used to connect to a first installation position and a second installation position.
[0014] According to another aspect of the present application, an air-conditioning device is provided, comprising the above-mentioned air-conditioning unit.
[0015] The beneficial effect of the air conditioning unit provided by the present application is that when the air conditioning unit of the present application is in use, the external air enters the regulating part from the air inlet under the action of the air supply member, the regulating part adjusts the temperature and / or humidity of the incoming air, and the regulated air is sent into the air supply part from the air outlet and the air intake under the action of the air supply member, and finally discharged from the exhaust port. When the air inlet or exhaust port cannot adapt to the on-site installation environment, based on the design that the regulating part is provided with at least two first mounting positions connected to the air supply part, the air supply part is provided with at least two second mounting positions connected to the regulating part, and the first mounting positions and the second mounting positions are mutually adapted, the air conditioning unit of the present application can adapt the air inlet or exhaust port to the on-site installation environment by changing the placement position of the regulating part or the air supply part, thereby adapting its own air supply and return mode to the on-site installation environment. By adopting the above design, the air conditioning unit in the present application can realize a variety of different air supply and return modes. This design not only helps the air conditioning unit of the present application adapt to different installation environments, thereby effectively improving the flexibility and efficiency of the air conditioning unit installation, but also helps to reduce the stocking costs of manufacturers and distributors. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings required for use in the embodiments or descriptions of the prior art. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.
[0017] Figure 1 A first exploded schematic diagram of an air-conditioning unit provided in an embodiment of the present application;
[0018] Figure 2 A second exploded schematic diagram of the air-conditioning unit provided in an embodiment of the present application;
[0019] Figure 3 is a simplified cross-sectional schematic diagram of the air-conditioning unit in the first specific embodiment;
[0020] Figure 4 is a simplified cross-sectional schematic diagram of an air-conditioning unit in a second specific embodiment;
[0021] Figure 5 is a simplified cross-sectional schematic diagram of an air-conditioning unit in a second specific embodiment;
[0022] Figure 6 is a simplified cross-sectional schematic diagram of an air-conditioning unit in a third specific embodiment;
[0023] Figure 7 is a simplified cross-sectional schematic diagram of an air-conditioning unit in a fourth specific embodiment;
[0024] Figure 8 is a simplified cross-sectional schematic diagram of an air-conditioning unit in a fourth specific embodiment;
[0025] Figure 9 is a simplified cross-sectional schematic diagram of an air-conditioning unit in a fifth specific embodiment;
[0026] Figure 10 is a simplified cross-sectional schematic diagram of an air-conditioning unit in a sixth specific embodiment;
[0027] Figure 11 is a simplified cross-sectional schematic diagram of an air-conditioning unit in a sixth specific embodiment;
[0028] The reference numerals used in the above drawings are as follows:
[0029] 100, adjustment portion; 110, adjustment member; 120, adjustment member body; 121, first accommodating space; 121a, adjustment member air inlet cavity; 121b, adjustment member air outlet cavity; 122, first side surface; 123, second side surface; 124, third side surface; 125, fourth side surface; 126, air inlet; 127, air outlet; 130, air inlet plate; 131, air inlet hole; 140, first cavity side panel; 150, second cavity side panel; 160, water tray;
[0030] 200, air supply unit; 210, air supply member; 220, air supply unit body; 221, second accommodating space; 222, fifth side surface; 223, sixth side surface; 224, seventh side surface; 225, eighth side surface; 227, air inlet; 228, air outlet; 230, air outlet plate; 231, air outlet through-hole; 240, third cavity side panel;
[0031] 300. Connecting piece; 310. Connecting channel. DETAILED DESCRIPTION
[0032] In order to make the technical problems, technical solutions and beneficial effects to be solved by this application more clearly understood, this application is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this application and are not intended to limit this application.
[0033] It should be noted that when an element is referred to as being "fixed to" or "disposed on" another element, it may be directly on the other element or indirectly on the other element. When an element is referred to as being "connected to" another element, it may be directly connected to the other element or indirectly connected to the other element. The embodiments and features in the embodiments of this application may be combined with each other unless there is a conflict. The present application will be described in detail below with reference to the accompanying drawings and in conjunction with the embodiments.
[0034] It should be understood that the terms "length", "width", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on this application.
[0035] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of the technical features being referred to. Thus, a feature identified as "first" or "second" may explicitly or implicitly include one or more of the features. Throughout the description of this application, "plurality" means more than two, unless otherwise specifically defined.
[0036] As described in the background art, an air-conditioning device is a device used to regulate indoor temperature, humidity, and air quality, and its main functions include cooling, heating, dehumidification, and air circulation. The air-conditioning device in the related art includes an outdoor unit and an indoor unit that are used in conjunction with each other, wherein the outdoor unit is installed outdoors and is used to receive outdoor air; the indoor unit is installed indoors and is connected to the outdoor unit to discharge conditioned air into the room. However, most indoor units or outdoor units are designed as an all-in-one unit and are collectively referred to as air-conditioning units. This design method results in the air-conditioning unit having only one fixed air supply and return method; this fixed air supply and return method makes the air-conditioning unit unable to adapt to different installation environments, seriously affecting the flexibility and efficiency of the installation.
[0037] Reference Figures 1 to 11 In order to solve the above problems, according to one aspect of the present application, an embodiment of the present application provides an air conditioning unit, which includes a detachably connected regulating unit 100 and an air supply unit 200, wherein the regulating unit 100 is provided with a regulating member 110, an air inlet 126 and an air outlet 127, and the air supply unit 200 is provided with an air supply member 210, an air intake 227 and an air outlet 228, and the air outlet 127 is connected to the air intake 227; the regulating unit 100 is provided with at least one Two first mounting positions, the air supply part 200 is provided with at least two second mounting positions connected to the regulating part 100, and the first mounting position and the second mounting position are adapted to each other; the air supply member 210 is used to allow external air to enter the regulating part 100 from the air inlet 126, and after being adjusted by the regulating member 110, enter the air supply part 200 from the air outlet 127 and the air intake 227, and then be discharged from the exhaust port 228; the regulating member 110 is used to adjust the temperature and / or humidity of the gas entering the regulating part 100.
[0038] In an embodiment of the present application, the regulating portion 100 and the air supply portion 200 can be detachably connected by connecting screws. In other embodiments, the regulating portion 100 and the air supply portion 200 can also be detachably connected by magnetic attraction or snap-on connection. The regulating member 110 can be any one of an evaporator, a condenser, a heater, a dehumidifier, a humidifier or a heat exchanger. The air supply member 210 can be any one of a blower, an air pump or an exhaust fan. The number of the second mounting positions is the same as the number of the first mounting positions. In other embodiments, the number of the second mounting positions can also be different from the number of the first mounting positions. External gas refers to the gas in the first external environment, and the gas discharged from the exhaust port 228 is discharged into the second external environment. The first external environment and the second external environment can be the same environment or different environments.
[0039] When the air conditioning unit of the present application is in use, external air enters the regulating unit 100 from the air inlet 126 under the action of the air supply member 210. The regulating unit 110 adjusts the temperature and / or humidity of the incoming air. The regulated air is then delivered to the air supply unit 200 from the air outlet 127 and the air intake 227 under the action of the air supply member 210, and is finally discharged from the exhaust port 228. When the air inlet 126 or the exhaust port 228 cannot adapt to the on-site installation environment, based on the design that the regulating unit 100 is provided with at least two first mounting positions connected to the air supply unit 200, and the air supply unit 200 is provided with at least two second mounting positions connected to the regulating unit 100, and the first mounting positions and the second mounting positions are mutually adapted, the air conditioning unit of the present application can adapt the air inlet 126 or the exhaust port 228 to the on-site installation environment by changing the placement of the regulating unit 100 or the air supply unit 200, thereby adapting its own air supply and return mode to the on-site installation environment. By adopting the above-mentioned design, the air-conditioning unit in the present application can realize a variety of different air supply and return modes. This design not only helps the air-conditioning unit in the present application to adapt to different installation environments, thereby effectively improving the flexibility and efficiency of the air-conditioning unit installation, but also helps to reduce the stocking costs of manufacturers and distributors.
[0040] Reference Figures 1 to 11 In one embodiment, the adjustment part 100 includes an adjustment part body 120, the adjustment part body 120 has a first accommodating space 121, the adjustment member 110 is installed in the first accommodating space 121, and the first accommodating space 121 is divided into an adjustment member air inlet cavity 121a and an adjustment member air outlet cavity 121b; the adjustment member air inlet cavity 121a includes at least two adjacent first cavity sides, and the adjustment member air outlet cavity 121b includes at least two adjacent second cavity sides; the adjustment part 100 also includes an air intake plate 130 detachably mounted on the adjustment part body 120, the air intake plate 130 is adapted to each first cavity side, and each second cavity side is provided with a first mounting position.
[0041] In this embodiment, the regulating unit body 120 is a shell or box, the interior space of which forms a first accommodating space 121. An air inlet 126 is provided on one of at least two adjacent first cavity sides, allowing external air to enter the regulating unit air inlet cavity 121a through the air inlet 126. An air outlet 127 is provided on one of at least two adjacent second cavity sides, allowing air regulated by the regulating unit 110 to enter the air supply unit 200 through the air outlet 127 and the air inlet 227. An air inlet plate 130 is provided with a plurality of spaced-apart air inlet holes 131. The air inlet plate 130 is removably mounted on the regulating unit body 120 using connecting screws and is capable of completely covering the first cavity side provided with the air inlet 126. In other embodiments, the air inlet plate 130 can also be removably mounted on the regulating unit body 120 using magnetic attraction or snap-on connection.
[0042] The air intake plate 130 and at least two first cavity sides used in the present application help to adjust the position of the air inlet 126 on the adjustment part body 120. At the same time, the design of providing a first mounting position on each second cavity side helps to adjust the position of the air outlet 127 on the adjustment part body 120. The above design effectively avoids the need to flip the adjustment part body 120 as a whole to adjust the position of the air inlet 126 and the air outlet 127, reduces the complexity of the adjustment operation and the required physical exertion, and improves the convenience and efficiency of the adjustment operation.
[0043] Reference Figures 1 to 11 In one embodiment, the adjustment portion body 120 is a square adjustment portion body 120, which also includes a first side 122, a second side 123, a third side 124 and a fourth side 125 adjacent to each other in sequence, the first cavity side includes the first side 122 and the second side 123, and the second cavity side includes the third side 124 and the fourth side 125.
[0044] In this embodiment, the first side surface 122, the second side surface 123, the third side surface 124, and the fourth side surface 125 can all be inner or outer surfaces of the adjustment portion body 120. There are two first cavity side surfaces, one of which is the first side surface 122 and the other is the second side surface 123. The air inlet 126 is located on one of the first side surface 122 and the second side surface 123. There are two second cavity side surfaces, one of which is the third side surface 124 and the other is the fourth side surface 125. The air outlet 127 is located on one of the third side surface 124 and the fourth side surface 125.
[0045] The square adjustment part body 120, first side 122, second side 123, third side 124 and fourth side 125 used in this application reduce the manufacturing difficulty and cost of the adjustment part body 120 while helping to adjust the positions of the air inlet 126 and the air outlet 127 on the adjustment part body 120.
[0046] Reference Figures 1 to 11 In one embodiment, the regulating portion 100 further includes a first cavity side panel 140 and a second cavity side panel 150 , the first cavity side panel 140 being detachably mounted on the first side 122 or the second side 123 , and the second side 123 or the first side 122 being used to mount the air intake plate 130 ; the second cavity side panel 150 being detachably mounted on the third side 124 or the fourth side 125 , and the fourth side 125 or the third side 124 being used as the air outlet 127 .
[0047] In this embodiment, first openings communicating with the regulating member air inlet cavity 121a are provided on both the first side surface 122 and the second side surface 123. The first cavity side panel 140 is detachably mounted on the regulating member body 120 using connecting screws and is capable of completely covering the first side surface 122 or the second side surface 123 provided with the first opening. In other embodiments, the first cavity side panel 140 can also be detachably mounted on the regulating member body 120 using magnetic attraction or snap-on connection. When the first cavity side panel 140 is mounted on the first side surface 122, the air inlet plate 130 is mounted on the second side surface 123, and the first opening on the second side surface 123 becomes the air inlet 126. When the first cavity side panel 140 is mounted on the second side surface 123, the air inlet plate 130 is mounted on the first side surface 122, and the first opening on the first side surface 122 becomes the air inlet 126.
[0048] The third side surface 124 and the fourth side surface 125 are both provided with a second opening that communicates with the air outlet cavity 121b of the regulating member. The second cavity side panel 150 is detachably mounted on the regulating portion body 120 using connecting screws and is capable of completely covering the third side surface 124 or the fourth side surface 125 provided with the second opening. In other embodiments, the second cavity side panel 150 can also be detachably mounted on the regulating portion body 120 using a magnetic attraction or a snap-on connection. When the second cavity side panel 150 is mounted on the third side surface 124, the air outlet 127 is located on the fourth side surface 125, and the second opening on the fourth side surface 125 forms the air outlet 127. When the second cavity side panel 150 is mounted on the second side surface 123, the air outlet 127 is located on the third side surface 124, and the second opening on the third side surface 124 forms the air outlet 127.
[0049] The adjustment part body 120, the first cavity side panel 140 and the second cavity side panel 150 used in this application help to adjust the position of the air inlet 126 and the air outlet 127 on the adjustment part body 120. This design not only enables the air-conditioning unit of this application to achieve a variety of different air supply and return modes, but also effectively avoids the need to flip the adjustment part body 120 as a whole to adjust the position of the air inlet 126 and the air outlet 127, reducing the tediousness of the adjustment operation and the required physical exertion, and improving the convenience and efficiency of the adjustment operation.
[0050] Reference Figures 1 to 11 In one embodiment, the regulating member 110 is an evaporator, and at least two water receiving trays 160 are further provided in the first accommodating space 121. The two water receiving trays 160 are respectively fixed to the bottom and the top of the evaporator, and the two water receiving trays 160 are arranged facing each other.
[0051] In this embodiment, the water receiving pan 160 is a condensation water pan for collecting condensed water generated by the evaporator. When the evaporator is in use, the condensed water generated by the evaporator is collected by at least one of the multiple condensation water pans. While there are two water receiving pans 160, in other embodiments, the number of water receiving pans 160 may be three, four, or even more.
[0052] The multiple water collection trays 160 used in this application ensure that the condensed water generated by the evaporator in various positions can be collected and discharged, effectively preventing the evaporator from being immersed in condensed water and ensuring the normal operation of the evaporator. In addition, to ensure that most of the condensed water generated by the evaporator is collected by the water collection trays 160, the collection port of one of the two water collection trays 160 is located on the side of the bottom of the evaporator away from the top of the evaporator, and the collection port of the other water collection tray 160 is located on the side of the top of the evaporator away from the bottom of the evaporator.
[0053] Reference Figures 1 to 11 In one embodiment, the air supply unit 200 includes an air supply unit body 220, the air supply unit body 220 has a second accommodating space 221, the air supply member 210 is installed in the second accommodating space 221, and the second accommodating space 221 forms an air supply cavity; the air supply cavity includes at least two third cavity sides, and each third cavity side is provided with a second mounting position.
[0054] In this embodiment, the air supply unit body 220 is a shell or a box, and the internal space of the shell or the box is formed as a second accommodating space 221; the air intake port 227 is provided on one of the at least two side surfaces of the third cavity, so that the gas in the regulating member outlet cavity 121b enters the second accommodating space 221 through the air intake port 227; the exhaust port 228 is provided on the other one, so that the gas in the second accommodating space 221 is discharged to the external environment through the exhaust port 228.
[0055] The air supply unit 200 also includes an exhaust plate 230 that is detachably mounted on the air supply unit body 220, and the exhaust plate 230 is adapted to the side surfaces of each third cavity; an exhaust through-hole 231 is provided on the exhaust plate 230, and the exhaust plate 230 is detachably mounted on the air supply unit body 220 by connecting screws, and can completely cover the side surfaces of the third cavity where the exhaust port 228 is provided. In other embodiments, the exhaust plate 230 can also be detachably mounted on the air supply unit body 220 by magnetic attraction or snap-on connection.
[0056] The above design helps to adjust the position of the air intake 227 and the exhaust port 228 on the air supply mounting part, avoiding the need to flip the air supply unit body 220 as a whole to adjust the position of the air intake 227 and the exhaust port 228, reducing the complexity of the adjustment operation and the required physical exertion, and improving the convenience and efficiency of the adjustment operation.
[0057] Reference Figures 1 to 11 In one embodiment, the air supply unit body 220 is a square air supply unit body 220, and the air supply cavity is a square air supply cavity, which includes a fifth side 222, a sixth side 223, a seventh side 224 and an eighth side 225 that are adjacent to each other in sequence.
[0058] In this embodiment, the fifth side surface 222, the sixth side surface 223, the seventh side surface 224, and the eighth side surface 225 can all be inner or outer surfaces of the air supply unit body 220. There are four third cavity side surfaces, namely the fifth side surface 222, the sixth side surface 223, the seventh side surface 224, and the eighth side surface 225.
[0059] The square air supply unit body 220, the fifth side 222, the sixth side 223, the seventh side 224 and the eighth side 225 used in this application reduce the manufacturing difficulty and cost of the air supply unit body 220 while helping to adjust the positions of the air intake 227 and the exhaust port 228 on the air supply unit body 220.
[0060] Reference Figures 1 to 11 In one embodiment, the air supply unit 200 further includes two third cavity side panels, which are detachably mounted on any two of the fifth side 222, the sixth side 223, the seventh side 224, and the eighth side 225, and the remaining two serve as an air intake 227 and an air exhaust 228, respectively.
[0061] In this embodiment, the fifth side 222, the sixth side 223, the seventh side 224 and the eighth side 225 are all provided with a third opening connected to the air supply cavity; the third cavity side panel 240 is detachably mounted on the air supply unit body 220 by connecting screws, and can completely cover any two of the fifth side 222, the sixth side 223, the seventh side 224 and the eighth side 225 provided with the third opening, and the third openings on the remaining two are respectively formed as the air intake 227 and the exhaust 228; in other embodiments, the third cavity side panel 240 can also be detachably mounted on the air supply unit body 220 by magnetic attraction or snap-on connection.
[0062] The air supply unit body 220 and the two third cavity side panels 240 used in this application help to adjust the positions of the air intake 227 and the exhaust port 228 on the air supply unit body 220. This design not only enables the air-conditioning unit of this application to achieve a variety of different air supply and return modes, but also effectively avoids the need to flip the adjustment unit body 120 as a whole to adjust the position of the air intake 227 and the exhaust port 228, reducing the tediousness of the adjustment operation and the required physical exertion, and improving the convenience and efficiency of the adjustment operation.
[0063] Reference Figures 1 to 11 In one embodiment, the air supply member 210 has an air suction end, the orthographic projection of the air suction end is located in the air suction port 227, and the air suction end is used to inhale gas.
[0064] In this embodiment, the air supply member 210 is a fan. In other embodiments, the air supply member 210 may also be an air pump or an exhaust fan. The design in which the orthographic projection of the air intake end is located within the air intake port 227 facilitates the inhalation of gas at the air intake port 227 into the air supply member 210. This not only improves the air intake efficiency of the air supply member 210, but also reduces the operating noise of the air supply unit 200, providing a quieter operating environment. In addition, this design also enhances the operational stability of the air supply unit 200.
[0065] Reference Figures 1 to 11 In one embodiment, the air supply member 210 is installed on the exhaust plate 230 , and the air supply member 210 has an exhaust end, the orthographic projection of the exhaust end is located in the exhaust port 228 , and the exhaust end is used to discharge gas toward the exhaust port 228 .
[0066] In this embodiment, the air supply member 210 is detachably mounted on the exhaust plate 230, specifically by screw connection, magnetic attraction, or snap-on connection. This design, in which the orthographic projection of the exhaust end is located within the exhaust port 228, facilitates exhausting the gas within the air supply member 210 to the exhaust port 228. This not only helps improve the exhaust efficiency of the air supply member 210, but also reduces the operating noise of the air supply unit 200, providing a quieter operating environment. Furthermore, this design enhances the operational stability of the air supply unit 200.
[0067] Reference Figures 1 to 11 In one embodiment, there are multiple air intake holes 131, which are spaced apart. There are also multiple air exhaust holes 231, which are spaced apart. The diameter of the exhaust holes 231 is larger than that of the air intake holes 131. The multiple air intake holes 131 not only improve the air intake efficiency of the adjustment portion 100, but also effectively filter foreign objects from entering the first accommodation space 121. The multiple exhaust holes 231 not only improve the exhaust efficiency of the air supply portion 200, but also prevent foreign objects from entering the air supply cavity.
[0068] Reference Figures 1 to 11 In one embodiment, the air conditioning unit further includes a connector 300, which is used to connect to a first installation position and a second installation position.
[0069] In this embodiment, the connector 300 is a connecting frame composed of a plurality of sequentially connected connecting strips. The connecting frame is detachably connected to the regulating unit body 120 and the air supply unit body 220 using connecting screws. In other embodiments, the connector 300 can also be detachably connected to the regulating unit body 120 and the air supply unit body 220 by magnetic attraction or snap-on connection. The middle portion of the connecting frame is hollow and forms a connecting channel 310 that connects the air outlet 127 and the air intake 227. The provided connector 300 not only realizes the detachable connection between the regulating unit 100 and the air supply unit 200, but also ensures effective communication between the air intake 227 and the air outlet 127.
[0070] Reference Figure 3 In the first specific embodiment, the regulating part 100 is located below the air supply part 200; the first cavity side panel 140 is located below the air intake plate 130, and the second cavity side panel 150 is arranged opposite to the air intake plate 130; the two third cavity side panels 240 are arranged opposite to each other and are both located below the exhaust plate 230.
[0071] Reference Figure 4 and Figure 5In the second specific embodiment, the regulating portion 100 is located below the air supply portion 200; the first cavity side panel 140 is located below the air intake plate 130 and is located on the side of the air intake plate 130 close to the air supply portion 200; the second cavity side panel 150 is located on the side of the air intake plate 130 close to the air supply portion 200 and is arranged opposite to the first cavity side panel 140; one of the two third cavity side panels 240 is arranged opposite to the exhaust plate 230, and the other is located above the exhaust plate 230.
[0072] Reference Figure 6 In the third specific embodiment, the regulating portion 100 is located below the air supply portion 200; the first cavity side panel 140 is located below the air intake plate 130 and is located on the side of the air intake plate 130 close to the air supply portion 200; the second cavity side panel 150 is located on the side of the air intake plate 130 close to the air supply portion 200 and is arranged opposite to the first cavity side panel 140; the two third cavity side panels 240 are both located on the side of the exhaust plate 230 close to the regulating portion 100 and are arranged opposite to each other.
[0073] Reference Figure 7 and Figure 8 In the fourth specific embodiment, the regulating portion 100 is located on one side of the air supply portion 200; the first cavity side panel 140 is located on the side of the air intake plate 130 close to the air supply portion 200, and the second cavity side panel 150 is located on the side of the air intake plate 130 close to the air supply portion 200, and is arranged opposite to the first cavity side panel 140; one of the two third cavity side panels 240 is arranged opposite to the exhaust plate 230, and the other is located on the side of the exhaust plate 230 away from the regulating portion 100.
[0074] Reference Figure 9 In the fifth specific embodiment, the regulating part 100 is located above the air supply part 200; the first cavity side panel 140 is located above the air intake plate 130, and the second cavity side panel 150 is arranged opposite to the air intake plate 130 and is located below the first cavity side panel 140; the two third cavity side panels 240 are both located on the side of the exhaust plate 230 close to the regulating part 100 and are arranged opposite to each other.
[0075] Reference Figure 10 and Figure 11 In the sixth specific embodiment, the regulating part 100 is located above the air supply part 200; the first cavity side panel 140 is located above the air intake plate 130, the second cavity side panel 150 is arranged opposite to the air intake plate 130, and is located below the first cavity side panel 140; one of the two third cavity side panels 240 is arranged opposite to the exhaust plate 230, and is located on the side of the other close to the regulating part 100.
[0076] Reference Figures 1 to 11According to another aspect of the present application, an embodiment of the present application further provides an air-conditioning device, which includes the above-mentioned air-conditioning unit.
[0077] In summary, the air-conditioning unit and air-conditioning device provided by this embodiment have at least the following beneficial technical effects: when the air-conditioning unit of the present application is in use, the external air enters the regulating part 100 from the air inlet 126 under the action of the air supply member 210, and the regulating member 110 adjusts the temperature and / or humidity of the incoming gas. The regulated gas is sent into the air supply part 200 from the air outlet 127 and the air intake 227 under the action of the air supply member 210, and is finally discharged from the exhaust port 228. When the air inlet 126 or the exhaust port 228 cannot adapt to the on-site installation environment, based on the design that the regulating unit 100 is provided with at least two first mounting positions connected to the air supply unit 200, and the air supply unit 200 is provided with at least two second mounting positions connected to the regulating unit 100, and the first mounting positions and the second mounting positions are mutually adapted, the air-conditioning unit of the present application can adapt the air inlet 126 or the exhaust port 228 to the on-site installation environment by changing the placement position of the regulating unit 100 or the air supply unit 200, thereby adapting its own air supply and return mode to the on-site installation environment. By adopting the above design, the air-conditioning unit of the present application can realize a variety of different air supply and return modes. This design not only helps the air-conditioning unit of the present application adapt to different installation environments, thereby effectively improving the flexibility and efficiency of the air-conditioning unit installation, but also helps reduce the stocking costs of manufacturers and distributors.
[0078] The above are only preferred embodiments of the present application and are not intended to limit the present application. Any modifications, equivalent replacements, and improvements made within the spirit and principles of the present application should be included in the scope of protection of the present application.
Claims
1. An air conditioning unit, characterized in that: It comprises a detachably connected adjustment part and an air supply part, wherein the adjustment part is provided with an adjustment member, an air inlet and an air outlet, and the air supply part is provided with an air supply member, an air intake and an air exhaust, and the air outlet is communicated with the air intake; The regulating portion is provided with at least two first mounting positions connected to the air supply portion, and the air supply portion is provided with at least two second mounting positions connected to the regulating portion, wherein the first mounting positions and the second mounting positions are adapted to each other; The air supply member is used to allow external air to enter the regulating portion from the air inlet, and after being regulated by the regulating member, enter the air supply portion from the air outlet and the air intake, and then be discharged from the air outlet; The regulating member is used to regulate the temperature and / or humidity of the gas entering the regulating portion.
2. The air conditioning unit according to claim 1, characterized in that: The regulating portion includes a regulating portion body having a first accommodating space, the regulating member is installed in the first accommodating space, and the first accommodating space is divided into an regulating member air inlet cavity and an regulating member air outlet cavity; The regulating member air inlet cavity includes at least two first cavity side surfaces that are sequentially adjacent to each other, and the regulating member air outlet cavity includes at least two second cavity side surfaces that are sequentially adjacent to each other; The regulating portion further includes an air intake plate detachably mounted on the regulating portion body, the air intake plate being adapted to each side surface of the first cavity, and each side surface of the second cavity being provided with a first mounting position.
3. The air conditioning unit according to claim 2, characterized in that: The adjustment part body is a square adjustment part body, which also includes a first side surface, a second side surface, a third side surface and a fourth side surface adjacent to each other in sequence. The first cavity side surface includes the first side surface and the second side surface, and the second cavity side surface includes the third side surface and the fourth side surface.
4. The air conditioning unit according to claim 3, characterized in that: The regulating portion further includes a first cavity side panel and a second cavity side panel, the first cavity side panel is detachably mounted on the first side surface or the second side surface, and the second side surface or the first side surface is used to mount the air intake plate; The second cavity side panel can be detachably mounted on the third side surface or the fourth side surface, and the fourth side surface or the third side surface is used as the air outlet.
5. The air conditioning unit according to claim 2, characterized in that: The regulating member is an evaporator. At least two water receiving trays are further provided in the first accommodating space. The two water receiving trays are respectively fixed to the bottom and the top of the evaporator, and the two water receiving trays are arranged facing each other.
6. The air conditioning unit according to any one of claims 1 to 5, characterized in that: The air supply unit includes an air supply unit body, the air supply unit body has a second accommodating space, the air supply member is installed in the second accommodating space, and the second accommodating space forms an air supply cavity; The air supply cavity includes at least two third cavity side surfaces, and each of the third cavity side surfaces is provided with a second installation position.
7. The air conditioning unit according to claim 6, characterized in that: The air supply portion body is a square air supply portion body, and the air supply cavity is a square air supply cavity, which includes a fifth side surface, a sixth side surface, a seventh side surface and an eighth side surface that are adjacent to each other in sequence.
8. The air conditioning unit according to claim 7, characterized in that: The air supply part also includes two third cavity side panels, which are detachably mounted on any two of the fifth side, the sixth side, the seventh side and the eighth side, and the remaining two serve as the air intake and the exhaust port, respectively.
9. The air conditioning unit according to any one of claims 1 to 5, characterized in that: The air conditioning unit further includes a connecting member, and the connecting member is used to connect with one of the first installation positions and one of the second installation positions.
10. An air conditioning device, characterized in that: An air conditioning unit comprising the air conditioning unit according to any one of claims 1 to 9.