Intelligent air pressure compensation device for air conditioner

CN224837770UActive Publication Date: 2026-10-09SHENZHEN MORETRADE NETWORK TECH CO LTD
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Patent Information

Application Number
CN202522307975.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-31
Publication Date
2026-10-09
Estimated Expiration
2035-10-31

AI Technical Summary

Technical Problem

[0003]市场上的风压补偿装置通常都采用整体式法兰连接或单一紧固结构,存在‌安装效率低、密封性不足、抗震缓冲差‌等劣势,为此,我们提出一种空调智能风压补偿装置

Benefits of technology

1、本实用新型通过设置安装组件,安装组件包括法兰安装盘、固定耳板、支撑拉杆、限位螺帽、弹性密封垫、安装接管和密封垫圈,使用时,通过安装接管与空调风管的卡合连接,实现补偿器器体与空调风管的快速安装,‌密封垫圈可保证接口处的密封效果,并通过法兰安装盘与螺栓的螺纹连接固定实现补偿器器体与管道的可靠连接,‌弹性密封垫吸收振动并进一步增强连接处的密封性,‌固定耳板与法兰安装盘一体化设计,用于安装和导向支撑拉杆,支撑拉杆通过限位螺帽调节,提供稳定的轴向支撑并限制过度位移,从而使得该装置通过集成可调节的支撑拉杆和多重密封设计,显著提升了安装适应性及稳定性和密封可靠性。

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Abstract

The utility model discloses an air conditioner intelligence wind pressure compensation device relates to air conditioning system component technical field, including compensator body and installation component, the compensator body is integrated structure, installation component sets up at compensator body surface, and installation component includes flange mounting disc, fixed lug, support pull rod, limit nut, elastic sealing pad, installation connecting pipe and sealing washer, the flange mounting disc sets up at compensator body both sides, and flange mounting disc symmetry has two groups. The air conditioner intelligence wind pressure compensation device, through installation component makes the device through integrated adjustable support pull rod and multiple sealing design, has improved installation adaptability and stability and sealing reliability significantly, through the protection component makes the device through the comprehensive effect of multilayer protection structure, effectively improves high temperature resistance, impact resistance, corrosion resistance and wear resistance performance, thereby prolongs the service life and enhances the operation stability.
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Description

Technical Field

[0001] This utility model relates to the technical field of air conditioning system components, specifically to an intelligent air pressure compensation device for air conditioning. Background Technology

[0002] An air conditioner is a device that regulates indoor temperature, humidity, and air quality. It alters environmental comfort through cooling or heating cycles, and its functions include cooling and dehumidifying, heating and humidifying, and filtering air pollutants. It enhances the comfort of living or working environments and protects delicate equipment from temperature and humidity fluctuations. Currently, to protect fans and duct systems from damage or efficiency reduction caused by pressure fluctuations, air pressure compensation devices are typically used for protection.

[0003] The wind pressure compensation devices on the market usually adopt an integral flange connection or a single fastening structure, which has disadvantages such as low installation efficiency, insufficient sealing and poor shock resistance. To address this, we propose an intelligent wind pressure compensation device for air conditioning. Utility Model Content

[0004] The purpose of this invention is to provide an intelligent air pressure compensation device for air conditioners to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: an intelligent air pressure compensation device for air conditioning, comprising a compensator body and an installation assembly. The compensator body is an integrated structure. The installation assembly is disposed on the surface of the compensator body and includes a flange mounting plate, a fixing lug, a support rod, a limit nut, an elastic sealing gasket, an installation pipe, and a sealing washer. The flange mounting plates are disposed on both sides of the compensator body, and two sets of flange mounting plates are symmetrically arranged. The fixing lug is mounted on the side surface of the flange mounting plate, and the fixing lug and the flange mounting plate are an integrated structure that is tightly connected. The support rod is slidably connected to the inner side of the fixing lug, and four sets of support rods are equidistantly arranged in a ring. The support rod is threadedly connected to a limit nut.

[0006] Furthermore, the flange mounting plate is an integrated structure, and an elastic sealing gasket is provided on the outer surface of the flange mounting plate.

[0007] Furthermore, the compensator has mounting pipes installed at both ends of its inner side, and sealing gaskets are provided on the outer surface of the mounting pipes.

[0008] Furthermore, the surface of the compensator body is provided with protective components for enhancing performance, and the protective components include a thermal insulation layer, a metal reinforcement layer, an elastic buffer layer, a sealing protective layer, a polytetrafluoroethylene liner, and a ceramic coating.

[0009] Furthermore, the thermal insulation layer is made of aluminum silicate fiber material, and a metal reinforcing layer is provided on the inner surface of the thermal insulation layer.

[0010] Furthermore, the metal reinforcing layer is made of alloy steel, and an elastic buffer layer is provided on the inner surface of the metal reinforcing layer.

[0011] Furthermore, a sealing and protective layer is provided on the inner surface of the elastic buffer layer, and the sealing and protective layer is made of rubber material.

[0012] Furthermore, a polytetrafluoroethylene (PTFE) liner is provided on the inner side of the sealing and protective layer, and the inner surface of the PTFE liner is coated with a ceramic coating.

[0013] This utility model provides an intelligent air pressure compensation device for air conditioners, which has the following beneficial effects: 1. This utility model, through the setting of an installation component, includes a flange mounting plate, a fixed ear plate, a support tie rod, a limit nut, an elastic sealing gasket, an installation pipe, and a sealing washer. In use, the installation pipe is engaged with the air conditioning duct to achieve rapid installation of the compensator body and the air conditioning duct. The sealing washer ensures the sealing effect at the interface, and the flange mounting plate and bolt threaded connection ensure a reliable connection between the compensator body and the pipeline. The elastic sealing gasket absorbs vibration and further enhances the sealing performance at the connection. The fixed ear plate and flange mounting plate are integrated for installing and guiding the support tie rod. The support tie rod is adjustable through the limit nut, providing stable axial support and limiting excessive displacement. Thus, this device, through the integration of an adjustable support tie rod and multiple sealing designs, significantly improves installation adaptability, stability, and sealing reliability.

[0014] 2. This utility model incorporates a protective assembly comprising a thermal insulation layer, a metal reinforcement layer, an elastic buffer layer, a sealing protective layer, a polytetrafluoroethylene (PTFE) liner, and a ceramic coating. During use, the thermal insulation layer reduces the thermal stress on the bellows caused by high-temperature media, preventing material degradation due to sudden temperature changes. The metal reinforcement layer enhances the overall structure's pressure resistance and rigidity. The elastic buffer layer, made of elastic alloy foil, absorbs pipeline vibration and mechanical impact through elastic deformation, reducing bellows fatigue damage. The sealing protective layer provides basic sealing and pressure bearing capacity. The PTFE liner improves the corrosion resistance of the compensator's inner surface, while the ceramic coating further enhances the liner's surface wear resistance and high-temperature resistance. Through the combined effect of these multiple protective structures, the device effectively improves its high-temperature resistance, impact resistance, corrosion resistance, and wear resistance, thereby extending its service life and enhancing operational stability. Attached Figure Description

[0015] Figure 1 This is a three-dimensional structural diagram of the installation components of an intelligent air pressure compensation device for an air conditioner according to the present invention; Figure 2 This is a three-dimensional structural diagram of an intelligent air pressure compensation device for air conditioning according to the present invention; Figure 3 This is a three-dimensional structural diagram of the protective component of an intelligent air pressure compensation device for air conditioning according to this utility model.

[0016] In the diagram: 1. Compensator body; 2. Mounting assembly; 201. Flange mounting plate; 202. Fixing lug; 203. Support rod; 204. Limit nut; 205. Elastic sealing gasket; 206. Mounting pipe; 207. Sealing gasket; 3. Protective assembly; 301. Thermal insulation layer; 302. Metal reinforcing layer; 303. Elastic buffer layer; 304. Sealing and protective layer; 305. PTFE liner; 306. Ceramic coating. Detailed Implementation

[0017] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.

[0018] like Figures 1 to 3 As shown, an intelligent air conditioning pressure compensation device includes a compensator body 1 and an installation assembly 2. The compensator body 1 is an integrated structure. The installation assembly 2 is disposed on the surface of the compensator body 1 and includes a flange mounting plate 201, a fixing lug 202, a support tie rod 203, a limit nut 204, an elastic sealing gasket 205, an installation pipe 206, and a sealing washer 207. The flange mounting plates 201 are disposed on both sides of the compensator body 1, and two sets of flange mounting plates 201 are symmetrically arranged. A fixing lug 207 is installed on the side surface of the flange mounting plate 201. The ear plate 202 and the fixed ear plate 202 and the flange mounting plate 201 are an integrated structure that is tightly connected. The fixed ear plate 202 is slidably connected to the inner side of the support rod 203, and the support rod 203 is circumferentially arranged in four sets. The support rod 203 is connected to the limit nut 204 by a threaded connection. The flange mounting plate 201 is an integrated structure, and the outer surface of the flange mounting plate 201 is provided with an elastic sealing gasket 205. The inner two ends of the compensator body 1 are installed with installation pipes 206, and the outer surface of the installation pipes 206 is provided with sealing gaskets 207.

[0019] The specific operation is as follows: During use, the compensator body 1 is quickly installed on the air conditioning duct by engaging the installation pipe 206 with the air conditioning duct. The sealing gasket 207 ensures the sealing effect at the interface, and the compensator body 1 is reliably connected to the pipeline by the threaded connection of the flange mounting plate 201 and the bolt. The elastic sealing gasket 205 absorbs vibration and further enhances the sealing performance at the connection. The fixed ear plate 202 is integrated with the flange mounting plate 201 and is used to install and guide the support rod 203. The support rod 203 is adjusted by the limit nut 204 to provide stable axial support and limit excessive displacement.

[0020] Please refer to Figure 3 The compensator body 1 has a protective component 3 on its surface to enhance performance. The protective component 3 includes a thermal insulation layer 301, a metal reinforcing layer 302, an elastic buffer layer 303, a sealing protective layer 304, a polytetrafluoroethylene liner 305, and a ceramic coating 306. The thermal insulation layer 301 is made of aluminum silicate fiber material, and a metal reinforcing layer 302 is provided on the inner surface of the thermal insulation layer 301. The metal reinforcing layer 302 is made of alloy steel material, and an elastic buffer layer 303 is provided on the inner surface of the metal reinforcing layer 302. A sealing protective layer 304 is provided on the inner surface of the elastic buffer layer 303, and the sealing protective layer 304 is made of rubber material. A polytetrafluoroethylene liner 305 is provided on the inner side of the sealing protective layer 304, and a ceramic coating 306 is applied to the inner surface of the polytetrafluoroethylene liner 305. The specific operation is as follows: When in use, the thermal insulation layer 301 can reduce the thermal stress of the high-temperature medium on the bellows and avoid the degradation of material properties caused by sudden temperature changes. The metal reinforcement layer 302 can improve the pressure resistance and rigidity of the overall structure. The elastic buffer layer 303 uses elastic alloy foil, which helps to absorb pipeline vibration and mechanical impact through the elastic deformation of the material, reducing the fatigue damage of the bellows. The sealing and protection layer 304 achieves basic sealing and pressure bearing. The polytetrafluoroethylene lining 305 can improve the corrosion resistance of the inner side of the compensator body 1. The ceramic coating 306 can further improve the wear resistance and high temperature resistance of the lining surface.

[0021] In summary, as Figures 1 to 3As shown, this intelligent air conditioning pressure compensation device, in use, firstly, achieves rapid installation of the compensator body 1 and the air conditioning duct by engaging the installation pipe 206 with the duct. The sealing gasket 207 ensures the sealing effect at the interface, and the flange mounting plate 201 and the bolt threaded connection ensure a reliable connection between the compensator body 1 and the pipeline. The elastic sealing gasket 205 absorbs vibration and further enhances the sealing performance at the connection. The fixed ear plate 202 and the flange mounting plate 201 are integrated for installing and guiding the support rod 203. The support rod 203 is adjusted by the limit nut 204 to provide stable axial support. In addition to limiting excessive displacement, the thermal insulation layer 301 can reduce the thermal stress of the high-temperature medium on the bellows during the use of the device, and avoid material performance degradation caused by sudden temperature changes. The metal reinforcement layer 302 can improve the pressure resistance and rigidity of the overall structure. The elastic buffer layer 303 uses elastic alloy foil, which helps to absorb pipeline vibration and mechanical impact through the elastic deformation of the material, reducing the fatigue damage of the bellows. The sealing and protective layer 304 achieves basic sealing and pressure bearing. The polytetrafluoroethylene lining 305 can improve the corrosion resistance of the inner side of the compensator body 1. The ceramic coating 306 can further improve the wear resistance and high temperature resistance of the lining surface.

[0022] The embodiments of this utility model are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the utility model to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical applications of this utility model, and to enable those skilled in the art to understand this utility model and design various embodiments with various modifications suitable for a particular purpose.

Claims

1. An intelligent air pressure compensation device for air conditioning, comprising a compensator body (1) and an installation assembly (2), characterized in that: The compensator body (1) is an integrated structure. The mounting assembly (2) is disposed on the surface of the compensator body (1). The mounting assembly (2) includes a flange mounting plate (201), a fixing lug (202), a support rod (203), a limit nut (204), an elastic sealing gasket (205), a mounting pipe (206), and a sealing gasket (207). The flange mounting plate (201) is disposed on both sides of the compensator body (1). Two sets of flange mounting plates (201) are symmetrically arranged. The fixing lug (202) is installed on the side surface of the flange mounting plate (201). The fixing lug (202) and the flange mounting plate (201) are an integrated structure that is tightly connected. The support rod (203) is slidably connected to the inner side of the fixing lug (202). Four sets of support rods (203) are equidistantly arranged in a ring. The support rod (203) is connected to the limit nut (204) by a threaded connection.

2. The intelligent air pressure compensation device for air conditioning according to claim 1, characterized in that, The flange mounting plate (201) is an integrated structure, and an elastic sealing gasket (205) is provided on the outer surface of the flange mounting plate (201).

3. The intelligent air pressure compensation device for air conditioning according to claim 1, characterized in that, The compensator body (1) has installation pipes (206) installed at both ends of its inner side, and sealing gaskets (207) are provided on the outer surface of the installation pipes (206).

4. The intelligent air pressure compensation device for air conditioning according to claim 1, characterized in that, The compensator body (1) has a protective component (3) on its surface for enhancing performance, and the protective component (3) includes a thermal insulation layer (301), a metal reinforcement layer (302), an elastic buffer layer (303), a sealing protective layer (304), a polytetrafluoroethylene liner (305), and a ceramic coating (306).

5. The intelligent air pressure compensation device for air conditioning according to claim 4, characterized in that, The thermal insulation layer (301) is made of aluminum silicate fiber material, and a metal reinforcing layer (302) is provided on the inner surface of the thermal insulation layer (301).

6. The intelligent air pressure compensation device for air conditioning according to claim 5, characterized in that, The metal reinforcing layer (302) is made of alloy steel, and an elastic buffer layer (303) is provided on the inner surface of the metal reinforcing layer (302).

7. The intelligent air pressure compensation device for air conditioning according to claim 6, characterized in that, The inner surface of the elastic buffer layer (303) is provided with a sealing and protective layer (304), and the sealing and protective layer (304) is made of rubber material.

8. The intelligent air pressure compensation device for air conditioning according to claim 7, characterized in that, The inner side of the sealing and protective layer (304) is provided with a polytetrafluoroethylene liner (305), and the inner surface of the polytetrafluoroethylene liner (305) is coated with a ceramic coating (306).