Integrated micro-positive pressure industrial air conditioner

By installing a partition plate and a micro-positive pressure device inside the air conditioner casing, the problem of poor air circulation caused by the pressure imbalance between indoor and outdoor air is solved, thus achieving smooth indoor air circulation and improved air quality.

CN223649420UActive Publication Date: 2025-12-09ANHUI YIDU ENVIRONMENTAL EQUIPMENT CO LTD
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Patent Information

Application Number
CN202520044137.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-09
Publication Date
2025-12-09
Estimated Expiration
2035-01-09

AI Technical Summary

Technical Problem

When existing air conditioners are in cooling or heating mode, the pressure balance between indoors and outdoors leads to poor air circulation, which can easily cause indoor bacteria to grow and affect air quality.

Method used

An integrated micro-positive pressure industrial air conditioner is adopted. By setting up first and second containment spaces inside the air conditioner casing, and using a micro-positive pressure device to deliver air from the second containment space to the first containment space to maintain a positive pressure state, the indoor air circulation is improved and bacteria growth is prevented.

Benefits of technology

It enables smooth indoor air circulation, prevents bacterial growth, and improves the performance of the air conditioner and air quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an integrated micro-positive pressure industrial air conditioner which comprises an air conditioner shell, a first air inlet, a first air outlet, a second air inlet and a second air outlet, a first air inlet, a second air inlet and a second air outlet are formed in the air conditioner shell, and a containing space is formed in the air conditioner shell. The first partition plate is arranged in the containing space and divides the containing space into a first containing space and a second containing space, the first air inlet and the first air outlet communicate with the first containing space, and the second air inlet communicates with the second containing space. The second air inlet and the second air outlet are communicated with the second containing space, and the evaporator is arranged in the first containing space; the condenser is arranged in the second containing space, the evaporator is communicated with the condenser, and the performance of the air conditioner can be improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to air conditioning technical field especially relates to an integrated micro positive pressure industrial air conditioner. BACKGROUND

[0002] In the air conditioning refrigeration or heating mode, the air conditioner adjusts temperature through circulating indoor air. In this process, in the prior art, the indoor and outdoor pressure keeps balance during the operation of the air conditioner, and the indoor and outdoor pressure, the air flow is not smooth, and indoor bacteria breeding is easy to cause, which can cause indoor air quality to drop. SUMMARY

[0003] The utility model provides a kind of integrated micro positive pressure industrial air conditioner, it can improve the performance of air conditioner.

[0004] To solve the above technical problems, the utility model provides a kind of integrated micro positive pressure industrial air conditioner, comprising:

[0005] Air conditioner shell, the inside of the air conditioner shell is formed with accommodating space, first air inlet, first air outlet, second air inlet and second air outlet are formed on the air conditioner shell;

[0006] First partition plate, it is set in the accommodating space, the first partition plate separates the accommodating space and forms first accommodating space and second accommodating space, the first air inlet and the first air outlet are communicated with the first accommodating space, the second air inlet and the second air outlet are communicated with the second accommodating space;

[0007] Evaporator, it is set in the first accommodating space;

[0008] Condenser, it is set in the second accommodating space, and the evaporator and the condenser are communicated with each other;

[0009] First fan, the air inlet of the first fan is communicated with the first accommodating space, and the air outlet of the first fan corresponds to the first air outlet;

[0010] Second fan, the air inlet of the second fan is correspondingly arranged with the second air inlet, and the air outlet of the second fan is communicated with the second accommodating space;

[0011] Micro positive pressure device, it is set on the first partition plate, and the micro positive pressure device is used to send the air of the second accommodating space to the first accommodating space to at least make the air pressure in the first accommodating space greater than the air pressure in the second accommodating space.

[0012] As a preferred embodiment of the above technical solution, the first partition plate extends vertically, the first accommodating space and the second accommodating space are respectively located on both sides of the first partition plate, a second partition plate is provided at the upper end of the first partition plate, the second partition plate extends horizontally, a third accommodating space is formed above the second partition plate, the first air outlet is formed at the top of the air conditioner housing, an opening is formed on the second partition plate to allow the third accommodating space to communicate with the first accommodating space, the first fan is fixed on the second partition plate, and the inlet of the first fan corresponds to the opening on the second partition plate.

[0013] As a preferred embodiment of the above technical solution, the evaporator is located in the first accommodating space and is arranged at an angle, and the condenser is located in the second accommodating space and is arranged vertically.

[0014] As a preferred embodiment of the above technical solution, the first partition plate is formed from top to bottom as an upper vertical plate, a middle inclined plate, and a lower vertical plate. The upper vertical plate and the lower vertical plate extend in a vertical direction, the middle inclined plate extends in an inclined direction, and the inclined extension direction of the evaporator is opposite to the inclined extension direction of the middle inclined plate.

[0015] As a preferred embodiment of the above technical solution, a water receiving trough is provided at the connection between the middle inclined plate and the lower vertical plate, and the lower end of the evaporator is placed in the water receiving trough.

[0016] As a preferred embodiment of the above technical solution, the back of the evaporator is provided with a mounting bracket, the mounting bracket is provided with a hanging opening, and the inner wall of the first accommodating space is provided with a hanging shaft, the hanging shaft engaging with the hanging opening.

[0017] As a preferred embodiment of the above technical solution, a micro-positive pressure opening is formed on the lower vertical plate, and a cover is provided on one side of the lower vertical plate located in the first accommodating space. The cover covers the micro-positive pressure opening, and the micro-positive pressure device extends into the interior of the cover from the micro-positive pressure opening.

[0018] As a preferred embodiment of the above technical solution, the micro positive pressure device includes a device housing and a micro positive pressure fan. The micro positive pressure fan is disposed inside the device housing. The front end of the device housing extends through the cover into the first accommodating space. An air outlet is formed on the part of the device housing that extends into the first accommodating space, and an air inlet is formed on the part of the device housing located inside the cover.

[0019] As a preferred embodiment of the above technical solution, the air inlet is located on the lower surface of the device housing, the air outlet is located on the upper surface of the device housing, a louver structure is provided at the inlet of the micro positive pressure fan, the louver structure faces the air inlet, an adsorption layer is provided inside the louver structure, and the micro positive pressure device also includes a control panel for controlling the micro positive pressure fan.

[0020] As a preferred embodiment of the above technical solution, the second air inlet and the second air outlet are formed on the same side of the air conditioner housing, and the second air outlet is located above the second air inlet, while the first air inlet is formed on the other side of the air conditioner housing.

[0021] This utility model provides an integrated micro-positive pressure industrial air conditioner, which includes an air conditioner housing, an evaporator, a condenser, a first fan, a second fan, and a micro-positive pressure device. A first partition plate is installed inside the air conditioner housing to divide the internal space into at least a first receiving space and a second receiving space. The first receiving space is connected to the indoor space through a first air inlet and a first air outlet, while the second receiving space is connected to the outdoor space through a second air inlet and a second air outlet. During operation, outdoor air is drawn into the second receiving space by the second fan, exchanges heat with the condenser, and is then discharged from the second air outlet. Heat exchange occurs between the condenser and the evaporator. Meanwhile, indoor air enters through the first air inlet and exits through the first air outlet under the action of the first fan, exchanging heat with the evaporator during this process. The micro-positive pressure device, located on the first partition plate, maintains a positive pressure state indoors by drawing fresh outdoor air into the first receiving space, thereby promoting indoor air circulation, preventing bacterial growth, and improving the performance of the air conditioner.

[0022] The above description is merely an overview of the technical solution of this utility model. In order to better understand the technical means of this utility model and to implement it in accordance with the contents of the specification, and to make the above and other objects, features and advantages of this utility model more obvious and understandable, specific embodiments of this utility model are given below. Attached Figure Description

[0023] Figure 1 A cross-sectional view of an integrated micro-positive pressure industrial air conditioner in this embodiment is shown;

[0024] Figure 2 A partial cross-sectional view of an integrated micro-positive pressure industrial air conditioner in this embodiment is shown;

[0025] Figure 3 A schematic diagram of the installation structure of the micro-positive pressure device in this embodiment is shown;

[0026] Figure 4 A schematic diagram of the evaporator installation structure in this embodiment is shown;

[0027] Figure 5 A three-dimensional structural schematic diagram of the micro-positive pressure device in this embodiment is shown;

[0028] Figure 6 A three-dimensional structural schematic diagram of the micro-positive pressure device in this embodiment is shown from another angle;

[0029] Figure 7 A partial cross-sectional view of the micro-positive pressure device in this embodiment is shown;

[0030] In the diagram: 10. Air conditioner housing; 20. Second fan; 30. First fan; 40. Condenser; 50. Evaporator; 60. First partition plate; 70. Second partition plate; 80. Water collection tank; 90. Cover; 100. Micro-positive pressure device; 101. First accommodating space; 102. Second accommodating space; 103. Third accommodating space; 104. First air inlet; 105. First air outlet; 106. Second air outlet; 107. Second air inlet; 501. Mounting bracket; 502. Hanging shaft; 503. Hanging opening; 601. Upper vertical plate; 602. Middle inclined plate; 603. Lower vertical plate; 6031. Micro-positive pressure opening; 1001. Device housing; 1002. Air outlet; 1003. Control panel; 1004. Air inlet; 1005. Louver structure; 1006. Micro-positive pressure fan. Detailed Implementation

[0031] To make the objectives, features, and advantages of this utility model more apparent and understandable, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0032] See Figures 1 to 7 This utility model embodiment provides an integrated micro-positive pressure industrial air conditioner, comprising:

[0033] The air conditioner housing 10 has an internal space for receiving air, and the air conditioner housing 10 has a first air inlet 104, a first air outlet 105, a second air inlet 107, and a second air outlet 106.

[0034] A first partition plate 60 is disposed in the accommodating space, and the first partition plate 60 divides the accommodating space into a first accommodating space 101 and a second accommodating space 102. A first air inlet 104 and a first air outlet 105 are interconnected with the first accommodating space 101, and a second air inlet 107 and a second air outlet 106 are interconnected with the second accommodating space 102.

[0035] Evaporator 50 is disposed in the first receiving space 101;

[0036] The condenser 40 is disposed in the second accommodating space 102, and the evaporator 50 is connected to the condenser 40.

[0037] The first fan 30 has an air inlet that is connected to the first accommodating space 101 and an air outlet that corresponds to the first air outlet 105.

[0038] The second fan 20 has an air inlet corresponding to the second air inlet 107, and the air outlet of the second fan 20 is connected to the second accommodating space 102.

[0039] A micro-positive pressure device 100 is disposed on the first partition plate 60. The micro-positive pressure device 100 is used to deliver air from the second receiving space 102 to the first receiving space 101 so that the air pressure in the first receiving space 101 is greater than the air pressure in the second receiving space 102.

[0040] This embodiment provides an integrated micro-positive pressure industrial air conditioner, which includes an air conditioner housing 10, an evaporator 50, a condenser 40, a first fan 30, a second fan 20, and a micro-positive pressure device 100. A first partition plate 60 is provided inside the air conditioner housing 10 to divide the internal space into at least a first receiving space 101 and a second receiving space 102. The first receiving space 101 is interconnected with the indoor space through a first air inlet 104 and a first air outlet 105, while the second receiving space 102 is interconnected with the outdoor space through a second air inlet 107 and a second air outlet 106. During operation, the outdoor... Air is drawn into the second receiving space 102 by the second fan 20, and after heat exchange with the condenser 40, it is discharged from the second air outlet 106. Heat exchange occurs between the condenser 40 and the evaporator 50. Meanwhile, indoor air enters through the first air inlet 104 and exits through the first air outlet 105 under the action of the first fan 30, exchanging heat with the evaporator 50 during this process. The micro-positive pressure device 100, installed on the first partition plate 60, maintains a positive pressure state indoors by drawing fresh outdoor air into the first receiving space 101. This promotes indoor air circulation, prevents bacterial growth, and improves the performance of the air conditioner.

[0041] In a further embodiment of this invention, the first partition plate 60 extends vertically, the first accommodating space 101 and the second accommodating space 102 are located on both sides of the first partition plate 60, the upper end of the first partition plate 60 is provided with a second partition plate 70, the second partition plate 70 extends horizontally, a third accommodating space 103 is formed above the second partition plate 70, the first air outlet 105 is formed on the top of the air conditioner housing 10, an opening is formed on the second partition plate 70 so that the third accommodating space 103 and the first accommodating space 101 are interconnected, the first fan 30 is fixed on the second partition plate 70, and the inlet of the first fan 30 corresponds to the opening on the second partition plate 70.

[0042] In a further embodiment of this invention, the evaporator 50 is located in the first accommodating space 101 and is arranged at an angle, while the condenser 40 is located in the second accommodating space 102 and is arranged vertically.

[0043] In a further embodiment of this example, the first partition plate 60 is formed from top to bottom as an upper vertical plate 601, a middle inclined plate 602 and a lower vertical plate 603. The upper vertical plate 601 and the lower vertical plate 603 extend in a vertical direction, while the middle inclined plate 602 extends in an inclined direction. The oblique extension direction of the evaporator 50 is opposite to the oblique extension direction of the middle inclined plate 602.

[0044] In a further embodiment of this invention, a water receiving trough 80 is provided at the connection between the middle inclined plate 602 and the lower vertical plate 603, and the lower end of the evaporator 50 is placed in the water receiving trough 80.

[0045] In this embodiment, the shape of the first partition plate 60 is more conducive to air circulation. In addition, the evaporator 50 in this embodiment is inclined so that its condensate can flow into the water receiving tank 80, preventing condensate from flowing into the air conditioner housing 10.

[0046] In a further embodiment of this invention, a mounting bracket 501 is provided on the back of the evaporator 50, and a hanging opening 503 is provided on the mounting bracket 501. A hanging shaft portion 502 is provided on the inner wall of the first accommodating space 101, and the hanging shaft portion 502 cooperates with the hanging opening 503.

[0047] The evaporator 50 in this embodiment is easier to install and remove.

[0048] In a further embodiment of this invention, a micro-positive pressure opening 6031 is formed on the lower vertical plate 603, and a cover 90 is provided on one side of the lower vertical plate 603 located in the first accommodating space 101. The cover 90 covers the micro-positive pressure opening 6031, and the micro-positive pressure device 100 extends into the interior of the cover 90 from the micro-positive pressure opening 6031.

[0049] In a further embodiment of this invention, the micro positive pressure device 100 includes a device housing 1001 and a micro positive pressure fan 1006. The micro positive pressure fan 1006 is disposed inside the device housing 1001. The front end of the device housing 1001 extends through the cover 90 into the first receiving space 101. An air outlet 1002 is formed on the portion of the device housing 1001 that extends into the first receiving space 101, and an air inlet 1004 is formed on the portion of the device housing 1001 located inside the cover 90.

[0050] In a further embodiment of this invention, the air inlet 1004 is located on the lower surface of the device housing 1001, the air outlet 1002 is located on the upper surface of the device housing 1001, a louver structure 1005 is provided at the inlet of the micro positive pressure fan 1006, the louver structure faces the air inlet 1004, an adsorption layer is provided inside the louver structure, and the micro positive pressure device 100 also includes a control panel 1003, which is used to control the micro positive pressure fan 1006.

[0051] In a further embodiment of this invention, the second air inlet 107 and the second air outlet 106 are formed on the same side of the air conditioner housing 10, and the second air outlet 106 is located above the second air inlet 107, while the first air inlet 104 is formed on the other side of the air conditioner housing 10.

[0052] The integrated micro-positive pressure industrial air conditioner in this embodiment has a more compact overall structure, which not only facilitates air circulation but also saves space.

[0053] In the description of this specification, references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. Furthermore, the described specific features, structures, materials, or characteristics may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of those different embodiments or examples.

[0054] 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 indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this utility model, "a plurality of" means two or more, unless otherwise explicitly specified.

[0055] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the protection scope of the claims.

Claims

1. An integrated micro-positive pressure industrial air conditioner, characterized in that, include: An air conditioner housing has an internal accommodating space and a first air inlet, a first air outlet, a second air inlet, and a second air outlet on its surface. A first partition plate is disposed in the accommodating space, which divides the accommodating space into a first accommodating space and a second accommodating space. The first air inlet and the first air outlet are interconnected with the first accommodating space, and the second air inlet and the second air outlet are interconnected with the second accommodating space. An evaporator is disposed in the first accommodating space; A condenser is disposed in the second accommodating space, and the evaporator and the condenser are interconnected; The first fan has an air inlet that is connected to the first accommodating space and an air outlet that corresponds to the first air outlet. The second fan has an air inlet corresponding to the second air outlet, and the air outlet of the second fan is connected to the second accommodating space. A micro-positive pressure device is disposed on the first partition plate. The micro-positive pressure device is used to deliver air from the second containment space to the first containment space so that the air pressure in the first containment space is greater than the air pressure in the second containment space.

2. The integrated micro-positive pressure industrial air conditioner according to claim 1, characterized in that, The first partition extends vertically, and the first and second accommodating spaces are located on both sides of the first partition. A second partition is provided at the upper end of the first partition, and the second partition extends horizontally. A third accommodating space is formed above the second partition. The first air outlet is formed at the top of the air conditioner housing. An opening is formed on the second partition to allow the third accommodating space to communicate with the first accommodating space. The first fan is fixed on the second partition, and the inlet of the first fan corresponds to the opening on the second partition.

3. The integrated micro-positive pressure industrial air conditioner according to claim 1, characterized in that, The evaporator is located in the first accommodating space and is arranged at an angle, while the condenser is located in the second accommodating space and is arranged vertically.

4. The integrated micro-positive pressure industrial air conditioner according to claim 3, characterized in that, The first partition plate is formed from top to bottom as an upper vertical plate, a middle inclined plate, and a lower vertical plate. The upper vertical plate and the lower vertical plate extend in a vertical direction, and the middle inclined plate extends in an inclined direction. The inclined extension direction of the evaporator is opposite to the inclined extension direction of the middle inclined plate.

5. The integrated micro-positive pressure industrial air conditioner according to claim 4, characterized in that, A water collection trough is provided at the connection between the middle inclined plate and the lower vertical plate, and the lower end of the evaporator is placed in the water collection trough.

6. The integrated micro-positive pressure industrial air conditioner according to any one of claims 1 to 5, characterized in that, The back of the evaporator is provided with a mounting bracket, which has a hanging opening. The inner wall of the first accommodating space is provided with a hanging shaft, which cooperates with the hanging opening.

7. The integrated micro-positive pressure industrial air conditioner according to claim 4, characterized in that, A micro-positive pressure opening is formed on the lower vertical plate. A cover is provided on one side of the lower vertical plate located in the first accommodating space. The cover covers the micro-positive pressure opening. The micro-positive pressure device extends into the interior of the cover from the micro-positive pressure opening.

8. The integrated micro-positive pressure industrial air conditioner according to claim 7, characterized in that, The micro-positive pressure device includes a device housing and a micro-positive pressure fan. The micro-positive pressure fan is disposed inside the device housing. The front end of the device housing extends through the cover into the first accommodating space. The portion of the device housing extending into the first accommodating space forms an air outlet, and the portion of the device housing located inside the cover forms an air inlet.

9. The integrated micro-positive pressure industrial air conditioner according to claim 8, characterized in that, The air inlet is located on the lower surface of the device housing, and the air outlet is located on the upper surface of the device housing. The inlet of the micro positive pressure fan is provided with a louver structure facing the air inlet. An adsorption layer is provided inside the louver structure. The micro positive pressure device also includes a control panel for controlling the micro positive pressure fan.

10. The integrated micro-positive pressure industrial air conditioner according to claim 1, characterized in that, The second air inlet and the second air outlet are formed on the same side of the air conditioner housing, and the second air outlet is located above the second air inlet, while the first air inlet is formed on the other side of the air conditioner housing.