A ceiling-mounted air-conditioning radiant water pipe structure
Through the design of the connecting seal between the female plug connection pipe and the water pipe, the connection method of the air conditioning system is simplified, the assembly efficiency and sealing performance are improved, and the complex connection problem of pipe fittings in traditional air conditioning systems is solved.
Patent Information
- Application Number
- CN202310903000.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-21
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2043-07-21
AI Technical Summary
The pipe fittings of traditional air conditioning systems are complex, resulting in low installation efficiency and cannot be modularly installed, making it easy to leak.
The female plug connection and water pipe structure are adopted to seal it through the connecting seal, simplifying the connection method and improving the pipeline connection efficiency.
It improves the assembly efficiency of the ceiling air conditioner radiation water pipe structure, enhances the convenience of connection and sealing performance, and reduces the risk of water leakage.
Smart Images

Figure CN116892755B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of suspended ceilings, and particularly relates to a suspended ceiling air-conditioning radiant water pipe structure. Background Art
[0002] In recent years, prefabricated decoration has been widely used, and the installation efficiency of the hard decoration part has doubled. However, for cooling or heating, the traditional air-conditioning system is still used. There are many pipe fittings used in the installation, the connection process is complex, water leakage accidents are likely to occur, and modular installation cannot be carried out, resulting in low efficiency.
[0003] The traditional air-conditioning system can no longer meet the requirements, and the capillary network radiant air-conditioning system is increasingly favored by people. It uses water as the medium to transport energy, is thin, soft, and has a small load. It has a variety of convenient and flexible installation forms, and has the characteristics of high energy efficiency and high comfort. The capillary network can be installed in combination with the decorative layer on the ceiling, floor or wall to evenly distribute energy. The energy transfer between the user and the room surface is carried out by radiation, and the indoor air circulation is promoted by the temperature difference to ensure the comfort of the room. For the overall installation of the capillary network, generally, the capillary network as a whole is first connected to the metal frame, and then the capillary network as a whole is suspended at the designated position. When connecting the capillary network as a whole to the metal frame, it is necessary to use a form of multiple connecting columns and nuts for connection. Workers need to rotate each nut one by one. This connection method of the capillary pipeline will correspondingly increase the working time and reduce the working efficiency. Summary of the Invention
[0004] Aiming at the above deficiencies, the technical problem to be solved by the present invention is to provide a suspended ceiling air-conditioning radiant water pipe structure for simplifying the connection method of the water pipe structure and improving the pipeline connection efficiency.
[0005] To solve the above technical problems, the technical solution adopted by the present invention is
[0006] A suspended ceiling air-conditioning radiant water pipe structure includes an air-conditioning main unit, a female insertion pipe, and a water pipe for communicating with a suspended ceiling decorative panel. The water pipe is inserted into the female insertion pipe, and a connection seal is installed on the water pipe to seal the connection between the water pipe and the female insertion pipe. The air-conditioning main unit is connected to the female insertion pipe.
[0007] As a preferred solution of the present invention, a part of the water pipe is inserted into the female insertion pipe, the connection seal is arranged in the insertion section of the water pipe, and the bottom end face of the connection seal abuts against the inner wall of the female insertion pipe.
[0008] As a preferred solution of the present invention, the female insertion pipe is provided with a socket, and an expansion rubber ring in contact with the side wall of the water pipe is arranged in the socket.
[0009] As a preferred embodiment of the present invention, the female insertion pipe includes a main pipe and a plurality of auxiliary pipes. The auxiliary pipes are connected to the main pipe, and the main pipe is connected to the air conditioner main unit. Sockets are provided on the auxiliary pipes.
[0010] As a preferred embodiment of the present invention, the connection seal is provided with an insertion deformation groove and an installation deformation groove. The installation deformation groove is arranged on the back in the insertion direction of the connection seal, and the insertion deformation groove is arranged on the insertion surface in the insertion direction of the connection seal.
[0011] As a preferred embodiment of the present invention, the bottom of the connection seal includes a deformation end face and a support end face. The deformation end face and the support end face are respectively arranged on both sides of the installation deformation groove, and the deformation end face is inclined relative to the support end face.
[0012] As a preferred embodiment of the present invention, sealing threads are provided on both the deformation end face and the support end face.
[0013] As a preferred embodiment of the present invention, support ribs are provided inside the connection seal, and both ends of the support ribs are connected to the circumferential side wall and the installation deformation groove of the connection seal respectively.
[0014] As a preferred embodiment of the present invention, deformation support ribs are provided inside the connection seal, and both ends of the deformation support ribs are connected to the circumferential side wall and the circumferential inner wall of the connection seal respectively.
[0015] As a preferred embodiment of the present invention, support rib deformation grooves are provided on the deformation support ribs.
[0016] The beneficial effect of the present invention is that the female insertion pipe and the water pipe are connected in an insertion form, which is convenient for improving the connection convenience between pipe fittings, thereby greatly improving the assembly efficiency of the ceiling air-conditioning radiation water pipe structure. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic diagram of the ceiling air-conditioning radiation water pipe structure.
[0018] Figure 2 It is an assembly schematic diagram of the water pipe and the female insertion pipe.
[0019] Figure 3 It is a cross-sectional view of the connection seal.
[0020] Figure 4 It is a connection schematic diagram of the water pipe and the connection seal.
[0021] Figure 5 It is a cross-sectional view of the female insertion pipe.
[0022] Figure 6 It is a schematic diagram of the assembly process of the water pipe connection structure.
[0023] Reference numerals: ceiling decorative panel 1, water pipe 1-10, connection seal 3-1, insertion deformation groove 3-2, installation deformation groove 3-3, deformation end face 3-4, support end face 3-5, sealing thread 3-6, support rib 3-7, deformation support rib 3-8, support rib deformation groove 3-9, through hole 3-10, female insertion pipe 4, socket 4-1, expansion rubber ring 4-2, main pipe 4-3, auxiliary pipe 4-4, air conditioner main unit 5, air conditioner liquid inlet pipe 5-1, air conditioner liquid outlet pipe 5-2. Detailed implementation manner
[0024] The present invention will be further described below with reference to the accompanying drawings.
[0025] A ceiling air-conditioning radiant water pipe structure includes an air conditioner main unit 5, a female insertion pipe 4 and a water pipe 1-10. The water pipe 1-10 is connected to the ceiling decorative panel 1. The female insertion pipe 4 is used to connect the water pipe 1-10 and the air conditioner main unit 5. The heat radiation liquid of the air conditioner main unit 5 sequentially flows into the ceiling decorative panel 1 through the female insertion pipe 4 and the water pipe 1-10, and then sequentially returns to the air conditioner main unit 5 through the water pipe 1-10 and the female insertion pipe 4 from within the ceiling decorative panel 1. The water pipe 1-10 is inserted into the female insertion pipe 4, and a connection seal 3-1 is installed on the water pipe 1-10. The connection between the water pipe 1-10 and the female insertion pipe 4 is sealed by the connection seal 3-1. The female insertion pipe 4 and the water pipe 1-10 are connected in an inserted manner, which is convenient for improving the connection convenience between pipe fittings, thereby greatly improving the assembly efficiency of the ceiling air-conditioning radiant water pipe structure.
[0026] The air conditioner main unit 5 is provided with an air conditioner liquid inlet pipe 5-1 and an air conditioner liquid outlet pipe 5-2. Female insertion pipes 4 are connected to both the air conditioner liquid inlet pipe 5-1 and the air conditioner liquid outlet pipe 5-2, which is convenient for the heat radiation liquid to circulate between the air conditioner main unit 5 and the ceiling decorative panel 1 through the female insertion pipes 4.
[0027] A part of the water pipe 1-10 is inserted into the female insertion pipe 4. The connection seal 3-1 is arranged in the insertion section of the water pipe 1-10. The bottom end face of the connection seal 3-1 abuts against the inner wall of the female insertion pipe 4. The connection between the water pipe 1-10 and the female insertion pipe 4 is sealed by the connection seal 3-1 to ensure the sealing performance of the water pipe structure.
[0028] The female insertion pipe 4 includes a main pipe 4-3 and an auxiliary pipe 4-4. The auxiliary pipe 4-4 is connected to the main pipe 4-3. A socket 4-1 is provided on the auxiliary pipe 4-4. The water pipe 1-10 is inserted into the auxiliary pipe 4-4 through the socket 4-1. The connection seal 3-1 fits with the inner wall of the auxiliary pipe 4-4. To further ensure the sealing performance of the water pipe connection structure, an expansion rubber ring 4-2 that contacts the side wall of the water pipe 1-10 is provided in the socket 4-1. The material of the expansion rubber ring 4-2 is a water-swellable material. When the water pipe connection structure leaks, the expansion rubber ring 4-2 expands, so that the water pipe connection structure stops leaking.
[0029] The connecting seal 3-1 is provided with an insertion deformation groove 3-2 and an installation deformation groove 3-3. The installation deformation groove 3-3 is arranged on the back of the connecting seal 3-1 in the insertion direction, and the insertion deformation groove 3-2 is arranged on the insertion surface of the connecting seal 3-1 in the insertion direction. Through the setting of the insertion deformation groove 3-2, it is convenient for the connecting seal 3-1 to deform during the insertion process, reduce its volume, prevent the connecting seal 3-1 from being damaged during the insertion process, and ensure the sealing performance of the pipe fittings sealed by the connecting seal 3-1; through the setting of the installation deformation groove 3-3, it is convenient for the end face of the connecting seal 3-1 to deform, increase the connection area between the connecting seal 3-1 and the female insertion pipe 4, and thus increase the sealing performance at the connecting seal 3-1.
[0030] In this embodiment, the connecting seal 3-1 has a conical structure. A through hole 3-10 for installing it on the water pipe 1-10 is provided in the middle of the connecting seal 3-1. The insertion deformation groove 3-2 is arranged on the circumferential side wall of the connecting seal 3-1, and the installation deformation groove 3-3 is arranged on the bottom end face of the connecting seal 3-1. During the installation process of the water pipe 1-10, the side wall and the bottom end face of the connecting seal 3-1 both deform, so that it is convenient for the connecting seal 3-1 to be inserted into the female insertion pipe 4 along with the water pipe 1-10. After the insertion is completed, the bottom end face of the connecting seal 3-1 deforms in the reverse direction, so that the seal 3-1 closely adheres to the inner wall of the female insertion pipe 4, improving the connection sealing performance of the connecting seal 3-1.
[0031] The bottom of the connecting seal 3-1 includes a deformation end face 3-4 and a support end face 3-5. The deformation end face 3-4 and the support end face 3-5 are respectively arranged on both sides of the installation deformation groove 3-3. The deformation end face 3-4 is inclined relative to the support end face 3-5. In this embodiment, the support end face 3-5 is horizontally arranged, and the deformation end face 3-4 is inclined downward. During the process of inserting the connecting seal 3-1 into the female insertion pipe 4, the deformation end face 3-4 deforms towards the through hole 3-10, reducing the volume of the connecting seal 3-1. After the connecting seal 3-1 is inserted into the female insertion pipe 4, both the deformation end face 3-4 and the support end face 3-5 are attached to the inner wall of the female insertion pipe 4. Since the deformation end face 3-4 is inclined downward, a certain pressing force is generated between the deformation end face 3-4 and the female insertion pipe 4, thus realizing the tight adhesion between the connecting seal 3-1 and the female insertion pipe 4 and improving the sealing performance.
[0032] Sealing threads 3-6 are provided on both the deformation end face 3-4 and the support end face 3-5. Through the setting of the sealing threads 3-6, it is convenient to improve the sealing performance between the lower end face of the connecting seal 3-1 and the inner wall of the female insertion pipe 4.
[0033] The connecting seal 3-1 is provided with a support rib 3-7 and a deformation support rib 3-8 inside. The two ends of the support rib 3-7 are respectively connected to the circumferential side wall of the connecting seal 3-1 and the installation deformation groove 3-3, and the two ends of the deformation support rib 3-8 are respectively connected to the circumferential side wall of the connecting seal 3-1 and the circumferential inner wall of the connecting seal 3-1. The connecting seal 3-1 is supported by the support rib 3-7 and the deformation support rib 3-8, so that it is more elastic after the connecting seal 3-1 is installed on the female socket pipe 4, thereby improving the fitting tightness between the connecting seal 3-1 and the female socket pipe 4.
[0034] A support rib deformation groove 3-9 is provided on the deformation support rib 3-8, which is convenient for the deformation support rib 3-8 to deform during the installation process of the connecting seal 3-1, and is convenient for the connecting seal 3-1 to be inserted into the female socket pipe 4.
[0035] The support rib 3-7 and the deformation support rib 3-8 are respectively connected above the insertion deformation groove 3-2, so that the side wall of the connecting seal 3-1 below the insertion deformation groove 3-2 is deformed, increasing the pressing force between the deformation end face 3-4 and the inner wall of the female socket pipe 4, and improving the sealing performance between the connecting seal 3-1 and the female socket pipe 4.
[0036] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present invention. Various modifications to these embodiments will be obvious to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present invention; therefore, the present invention will not be limited to these embodiments shown herein, but will conform to the widest scope consistent with the principles and novel features disclosed herein.
[0037] Although more terms corresponding to the reference numerals in the drawings are used herein, the possibility of using other terms is not excluded; these terms are only used to more conveniently describe and explain the essence of the present invention; interpreting them as any additional limitation is contrary to the spirit of the present invention.
Claims
1. A ceiling-mounted air-conditioning radiation water pipe structure, characterized in that, It includes an air conditioner main unit (5), a female insertion connecting pipe (4), and a water pipe (1 - 10) for communicating with a ceiling decorative panel. The water pipe (1 - 10) is inserted into the female insertion connecting pipe (4). A connecting seal (3 - 1) is installed on the water pipe (1 - 10), and the connection between the water pipe (1 - 10) and the female insertion connecting pipe (4) is sealed through the connecting seal (3 - 1). The air conditioner main unit (5) is connected to the female insertion connecting pipe (4). A part of the water pipe (1 - 10) is inserted into the female insertion connecting pipe (4). The connecting seal (3 - 1) is arranged in the insertion section of the water pipe (1 - 10), and the bottom end face of the connecting seal (3 - 1) abuts against the inner wall of the female insertion connecting pipe (4). The connecting seal (3 - 1) is provided with an insertion deformation groove (3 - 2) and an installation deformation groove (3 - 3). The installation deformation groove (3 - 3) is arranged on the back of the connecting seal (3 - 1) in the insertion direction, and the insertion deformation groove (3 - 2) is arranged on the insertion surface of the connecting seal (3 - 1) in the insertion direction. The bottom of the connecting seal (3 - 1) includes a deformation end face (3 - 4) and a support end face (3 - 5). The deformation end face (3 - 4) and the support end face (3 - 5) are respectively arranged on both sides of the installation deformation groove (3 - 3), and the deformation end face (3 - 4) is inclined relative to the support end face (3 - 5). A support rib (3 - 7) is arranged inside the connecting seal (3 - 1), and both ends of the support rib (3 - 7) are connected to the circumferential side wall and the installation deformation groove (3 - 3) of the connecting seal (3 - 1). A deformation support rib (3 - 8) is arranged inside the connecting seal (3 - 1), and both ends of the deformation support rib (3 - 8) are connected to the circumferential side wall and the circumferential inner wall of the connecting seal (3 - 1).
2. The structure of a ceiling air-conditioning radiation water pipe according to claim 1, wherein, The female insertion connecting pipe (4) is provided with a socket (4 - 1), and an expansion rubber ring (4 - 2) in contact with the side wall of the water pipe (1 - 10) is arranged inside the socket (4 - 1).
3. The structure of a ceiling air-conditioning radiation water pipe according to claim 2, characterized in that, The female insertion connecting pipe (4) includes a main pipe (4 - 3) and a plurality of sub - pipes (4 - 4). The sub - pipes (4 - 4) are connected to the main pipe (4 - 3). The main pipe (4 - 3) is connected to the air conditioner main unit (5), and the socket (4 - 1) is arranged on the sub - pipe (4 - 4).
4. A ceiling air-conditioning radiant water pipe structure according to claim 1, characterized in that, Sealing threads (3 - 6) are arranged on both the deformation end face (3 - 4) and the support end face (3 - 5).
5. A ceiling air-conditioning radiant water pipe structure according to claim 1, characterized in that, A support rib deformation groove (3 - 9) is arranged on the deformation support rib (3 - 8).
Citation Information
Patent Citations
Radiation water pipe structure of ceiling air conditioner
CN220453838U