Integrated waterway unit
Through the design of integrated waterway units, multiple waterway components are integrated together, efficient installation and flexible configuration are achieved, cumbersome problems of waterway system maintenance are solved, and the stability and compatibility of the system are improved.
Patent Information
- Application Number
- CN202422501930.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-16
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-10-16
AI Technical Summary
When functional components in existing waterway systems are damaged, maintenance projects are cumbersome and lack of unified interfaces lead to high scrapping rates.
Design an integrated waterway unit, including a liquid inlet pipe, a liquid outlet pipe, a lap assembly, a connection port and an extension interface, and introduce functional interfaces such as detection interface, control interface and backup interface to achieve the integration and flexible configuration of multiple components.
Simplifies the on-site installation process, reduces the risk of wrong installation, improves the adaptability and functionality of the system, ensures the system operates stably in the event of interface failure, and enhances compatibility and security.
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Figure CN223076535U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of water purification, and more specifically, to an integrated waterway unit. Background Art
[0002] With the development of technology, the number of functional components installed in the waterway system has been increasing continuously, resulting in more and more functional interfaces in the waterway system. Different interfaces between functional components mean that if a functional component is damaged, it must be removed from the waterway system and a new interface or pipeline must be installed on it to provide an installation position for the new functional component, and then the waterway system is reinstalled. Such maintenance work is rather cumbersome. Thus, it can be seen that unifying the interfaces of the main functional components is a better solution, or it is necessary to reserve spare common interfaces in advance when setting up the waterway system. In this way, even if a functional component is damaged, a new functional component can be directly installed on the spare common interface for continued use. Summary of the Utility Model
[0003] The problem solved by the utility model is how to install various functional components on one whole, improve the waterway installation efficiency, and reduce the waterway scrapping rate.
[0004] To solve the above problems, the utility model provides an integrated waterway unit, including: a liquid inlet pipe, a liquid storage pipe, a lapping component, a connection port, and an extension interface. Among them, the liquid inlet pipe guides water flow into the pipeline; the liquid outlet pipe guides water flow out of the pipeline; the lapping component connects the liquid inlet pipe and the liquid outlet pipe; the connection port is arranged on the surfaces of the liquid inlet pipe and the liquid outlet pipe; the extension interface passes through the lapping component and is connected to the liquid inlet pipe and the liquid outlet pipe.
[0005] The technical effects achieved after adopting this technical solution: The integrated waterway unit integrates multiple components, simplifies the on-site installation process, reduces the on-site workload, and reduces the risk of incorrect installation.
[0006] Furthermore, the integrated waterway unit further includes: a functional interface, and the functional interface is connected to the connection port and the extension interface.
[0007] The technical effects achieved after adopting this technical solution: By introducing the functional interface, the integrated waterway unit can be flexibly configured according to the requirements of different application scenarios, enhancing the adaptability and functionality of the system.
[0008] Furthermore, the functional interface includes: a detection interface, a control interface, and / or a spare interface. Among them, the detection interface is used to obtain information from the waterway system; the control interface is used to adjust the operation state of the waterway system; the spare interface is used when the detection interface and the control interface fail.
[0009] Technical effects achieved after adopting this technical solution: By providing a backup interface, it can be switched to the backup interface when the main interface fails, ensuring the stable operation of the system.
[0010] Furthermore, at least one detection interface is provided on the liquid inlet pipe, and / or at least one control interface is provided on the liquid inlet pipe, and / or at least one backup interface is provided on the liquid inlet pipe.
[0011] Technical effects achieved after adopting this technical solution: Multiple functional components are provided on the liquid inlet pipe, improving the monitoring of the liquid inlet pipe and the control of the flow rate entering the liquid inlet pipe.
[0012] Furthermore, the liquid inlet pipe is provided with a plurality of extension interfaces, and at least one detection interface is provided on the extension interface, and / or at least one control interface is provided on the extension interface, and / or at least one backup interface is provided on the extension interface.
[0013] Technical effects achieved after adopting this technical solution: Multiple functional components are provided on the liquid inlet pipe, improving the monitoring of the liquid inlet pipe and the control of the flow rate entering the liquid inlet pipe.
[0014] Furthermore, at least one detection interface is provided on the liquid outlet pipe, and / or at least one control interface is provided on the liquid outlet pipe, and / or at least one backup interface is provided on the liquid outlet pipe.
[0015] Technical effects achieved after adopting this technical solution: Multiple functional components are provided on the liquid outlet pipe, improving the monitoring of the liquid outlet pipe and the control of the flow rate discharged from the liquid outlet pipe.
[0016] Furthermore, the liquid outlet pipe is provided with at least one extension interface, and at least one detection interface is provided on the extension interface, and / or at least one control interface is provided on the extension interface, and / or at least one backup interface is provided on the extension interface.
[0017] Technical effects achieved after adopting this technical solution: Multiple functional components are provided on the liquid outlet pipe, improving the monitoring of the liquid outlet pipe and the control of the flow rate discharged from the liquid outlet pipe.
[0018] Furthermore, the backup interface is universal with the detection interface and the control interface.
[0019] Technical effects achieved after adopting this technical solution: This enables the expansion or replacement of functions without changing the original structure, enhancing the compatibility of the system.
[0020] Furthermore, a sealing device is provided inside the latching component to prevent leakage between the extension interface and the connection interface.
[0021] Technical effects achieved by adopting this technical solution: By providing a sealing device inside the lap joint assembly, the problem of liquid leakage caused by poor interface connection is effectively prevented, and the safety of the system is improved.
[0022] Furthermore, the integrated waterway unit further includes: a flow control valve, the flow control valve is connected to the liquid inlet pipe, and / or the flow control valve is connected to the liquid outlet pipe.
[0023] Technical effects achieved by adopting this technical solution: The flow control valve enables the system to precisely control the water flow rate and flow volume, ensuring precise control of the internal pipeline by the integrated waterway unit.
[0024] In summary, each of the above technical solutions of this application may have one or more of the following advantages or beneficial effects: i) The installation efficiency of the integrated waterway unit is improved. ii) The convenience of maintaining the integrated waterway unit is enhanced. iii) The integrated waterway unit reserves a common spare interface, enhancing the compatibility between functional interfaces. iv) The integrated waterway unit can be customized according to different requirements to meet special requirements in various useful environments. Description of the Drawings
[0025] Figure 1 It is a schematic structural diagram of an integrated waterway unit in an embodiment of the present utility model;
[0026] Figure 2 It is a top view of the integrated waterway unit in an embodiment of the present utility model;
[0027] Figure 3 It is a left view of the integrated waterway unit in an embodiment of the present utility model;
[0028] Figure 4 It is a detailed diagram of the functional interfaces of the integrated waterway unit in an embodiment of the present utility model.
[0029] Description of the Reference Numerals:
[0030] 100 - Integrated waterway unit; 110 - Liquid inlet pipe; 120 - Liquid outlet pipe; 130 - Lap joint assembly; 131 - Sealing device; 140 - Connection port; 150 - Extension interface; 160 - Functional interface; 161 - Detection interface; 162 - Control interface; 163 - Spare interface; 170 - Flow control valve. Detailed Embodiment
[0031] The purpose of the present utility model is to provide an integrated waterway unit for achieving the effects of how to install various functional components on a whole, improving the waterway installation efficiency, and reducing the waterway scrapping rate.
[0032] To make the above - mentioned objects, features and advantages of the present utility model more obvious and understandable, the following will describe in detail the specific embodiments of the present utility model with reference to the drawings.
[0033] Refer to Figure 1 , the present utility model provides an integrated waterway unit 100, including: a liquid inlet pipe 110, a liquid storage pipe, a lapping component 130, a connection port 140, and an extension interface 150. Among them, the liquid inlet pipe 110 guides water flow into the pipeline; the liquid outlet pipe 120 guides water flow out of the pipeline; the lapping component 130 connects the liquid inlet pipe 110 and the liquid outlet pipe 120; the connection port 140 is arranged on the surfaces of the liquid inlet pipe 110 and the liquid outlet pipe 120; the extension interface 150 passes through the lapping component 130 and is connected to the liquid inlet pipe 110 and the liquid outlet pipe 120.
[0034] In this embodiment, the integrated waterway unit 100 integrates multiple components together, simplifies the on - site installation process, reduces the on - site workload, and reduces the risk of incorrect installation.
[0035] Specifically, the integrated waterway unit 100 is provided with a liquid inlet pipe 110 for guiding liquid into the pipeline and a liquid outlet pipe 120 for guiding water flow out. A lapping component 130 is arranged between the liquid inlet pipe 110 and the liquid outlet pipe 120 to connect the two pipelines together; connection ports 140 are arranged on the surfaces of the liquid inlet pipe 110 and the liquid outlet pipe 120 for connecting functional components of the integrated waterway unit 100; the extension interface 150 is arranged on the surface of the lapping component 130. It is an interface extended from the connection port 140, and the middle extension pipeline passes through the lapping component 130.
[0036] Refer to Figure 2 , the integrated waterway unit 100 further includes: a functional interface 160, and the functional interface 160 is connected to the connection port 140 and the extension interface 150.
[0037] In this embodiment, by introducing the functional interface 160, the integrated waterway unit 100 can be flexibly configured according to the requirements of different application scenarios, enhancing the adaptability and functionality of the system.
[0038] Specifically, the functional interface 160 will be installed on the connection port 140. When the integrated waterway unit 100 requires specific functions, the functional interface 160 is installed on the connection port 140 and the extension interface 150, and the functional components are connected to the corresponding functional interfaces 160 to realize the detection of the integrated waterway unit 100.
[0039] Refer to Figure 1 、 Figure 2, the functional interface 160 includes: a detection interface 161, a control interface 162, and / or a spare interface 163. Among them, the detection interface 161 is used to obtain information from the water circuit system; the control interface 162 is used to adjust the operating state of the water circuit system; the spare interface 163 is used when the detection interface 161 and the control interface 162 fail.
[0040] In this embodiment, by setting the spare interface 163, when the main interface fails, it can be switched to the spare interface 163 to ensure the stable operation of the system.
[0041] Specifically, the functional interface 160 includes: a detection interface 161, a control interface 162, and / or a spare interface 163. Among them, the detection interface 161 is used to obtain information from the water circuit system; the control interface 162 is used to adjust the operating state of the water circuit system; the spare interface 163 is used when the detection interface 161 and the control interface 162 fail.
[0042] Preferably, the functional interface 160 includes: a detection interface 161 and a control interface 162. Among them, the detection interface 161 is connected to a detection device and is used to obtain information from the liquid inlet pipe 110 and the liquid outlet pipe 120; the control interface 162 is connected to a control device and is used to adjust the operating state inside the integrated water circuit unit 100.
[0043] Preferably, the functional interface 160 includes: a detection interface 161, a control interface 162, and a spare interface 163. Among them, the detection interface 161 is connected to a detection device and is used to obtain information from the liquid inlet pipe 110 and the liquid outlet pipe 120; the control interface 162 is connected to a control device and is used to adjust the operating state inside the integrated water circuit unit 100; the spare interface 163 is universal with the detection interface 161 and the control interface 162. When the detection interface 161 and the control interface 162 fail, the spare interface 163 is enabled so that the integrated water circuit unit 100 can be used normally.
[0044] See Figure 1 、 Figure 2 , at least one detection interface 161 is provided on the liquid inlet pipe 110, and / or at least one control interface 162 is provided on the liquid inlet pipe 110, and / or at least one spare interface 163 is provided on the liquid inlet pipe 110.
[0045] In this embodiment, multiple functional components are provided on the liquid inlet pipe 110, which improves the monitoring of the liquid inlet pipe 110 and the control of the flow rate entering the liquid inlet pipe 110.
[0046] Specifically, at least one detection interface 161 is provided on the liquid inlet pipe 110, and / or at least one control interface 162, and / or at least one spare interface 163 is provided on the surface of the liquid inlet pipe 110 and is connected to the connection port 140.
[0047] Preferably, two detection interfaces 161 are provided on the liquid inlet pipe 110, one control interface 162 is provided on the liquid inlet pipe 110, and one spare interface 163 is provided on the liquid inlet pipe 110.
[0048] See Figure 1 、 Figure 2 , the liquid inlet pipe 110 is provided with a plurality of extension interfaces 150, at least one detection interface 161 is provided on the extension interface 150, and / or at least one control interface 162 is provided on the extension interface 150, and / or at least one spare interface 163 is provided on the extension interface 150.
[0049] In this embodiment, a variety of functional components are provided on the liquid inlet pipe 110, improving the monitoring of the liquid inlet pipe 110 and the control of the flow rate entering the liquid inlet pipe 110.
[0050] Specifically, the liquid inlet pipe 110 is provided with five extension interfaces 150, at least one detection interface 161 is provided on the extension interface 150, and / or at least one control interface 162 is provided on the extension interface 150, and / or at least one spare interface 163 is provided on the extension interface 150.
[0051] Preferably, two detection interfaces 161 are provided on the extension interface 150, one control interface 162 is provided on the extension interface 150, and two spare interfaces 163 are provided on the extension interface 150.
[0052] See Figure 1 、 Figure 2 , at least one detection interface 161 is provided on the liquid outlet pipe 120, and / or at least one control interface 162 is provided on the liquid outlet pipe 120, and / or at least one spare interface 163 is provided on the liquid outlet pipe 120.
[0053] In this embodiment, a variety of functional components are provided on the liquid outlet pipe 120, improving the monitoring of the liquid outlet pipe 120 and the control of the flow rate discharged from the liquid outlet pipe 120.
[0054] Specifically, at least one detection interface 161 is provided on the liquid outlet pipe 120, and / or at least one control interface 162 is provided on the liquid outlet pipe 120, and / or at least one spare interface 163 is provided on the liquid outlet pipe 120 and is connected to the connection port 140.
[0055] Preferably, two detection interfaces 161 are provided on the liquid outlet pipe 120, one control interface 162 is provided on the liquid outlet pipe 120, and one spare interface 163 is provided on the liquid outlet pipe 120.
[0056] See Figure 1 、 Figure 2, the liquid outlet pipe 120 is provided with at least one extension interface 150, at least one detection interface 161 is provided on the extension interface 150, and / or at least one control interface 162 is provided on the extension interface 150, and / or at least one spare interface 163 is provided on the extension interface 150.
[0057] In this embodiment, a variety of functional components are provided on the liquid outlet pipe 120, which improves the monitoring of the liquid outlet pipe 120 and the control of the flow rate discharged from the liquid outlet pipe 120.
[0058] Specifically, the liquid outlet pipe 120 is provided with one extension interface 150, at least one detection interface 161 is provided on the extension interface 150, and / or at least one control interface 162 is provided on the extension interface 150, and / or at least one spare interface 163 is provided on the extension interface 150.
[0059] Preferably, one spare interface 163 is provided on the extension interface 150.
[0060] See Figure 1 , Figure 2 , the spare interface 163 is common with the detection interface 161 and the control interface 162.
[0061] In this actual example, this enables the expansion or replacement of functions without changing the original structure, enhancing the compatibility of the system.
[0062] Specifically, when the detection interface 161 and / or the control interface 162 inside the integrated waterway unit 100 fails, the detection device and / or the control device can be installed on the spare interface 163 for continued use.
[0063] See Figure 3 , the overlapping component 130 is provided with a sealing device 131 to prevent leakage between the extension interface 150 and the connection port 140.
[0064] In this embodiment, by providing the sealing device 131 inside the overlapping component 130, the problem of liquid leakage caused by poor interface connection is effectively prevented, improving the safety of the system.
[0065] Specifically, the pipeline of the extension interface 150 passes through the overlapping component 130 and is connected to the liquid inlet pipe 110 and the liquid outlet pipe 120. The internal space of the overlapping component 130 is filled with the sealing device 131 to prevent the integrated waterway unit 100 from leaking.
[0066] See Figure 2 , the integrated waterway unit 100 further includes: a flow control valve 170, the flow control valve 170 is connected to the liquid inlet pipe 110, and / or the flow control valve 170 is connected to the liquid outlet pipe 120.
[0067] In this embodiment, the flow control valve 170 enables the system to precisely control the water flow rate and flow volume, ensuring the precise control of the internal pipeline by the integrated water circuit unit 100.
[0068] Specifically, the flow control valve 170 is provided on the liquid inlet pipe 110 to facilitate liquid discharge and replenishment.
[0069] The present utility model provides an integrated water circuit unit 100 to solve the problem of how to install various functional components on a whole, improve the water circuit installation efficiency, and reduce the scrap rate of the water circuit. Specifically, refer to Figure 4 , 1 to 7 are the functional interfaces 160 of the liquid outlet pipe 120, and 8 to 18 are the functional interfaces 160 of the liquid inlet pipe 110. In the part of the liquid outlet pipe 120, the 1st and 2nd interfaces are the water temperature increase sensor interfaces, the 3rd and 4th interfaces are the pressure sensor interfaces, the 5th interface is the water replenishing tank interface, and the 6th and 7th interfaces are the general spare interfaces 163. Among them, when additional functional components need to be added to the liquid outlet pipe 120, the functional components can be installed on these interfaces; in the part of the liquid inlet pipe 110, the 12th and 13th interfaces are the water temperature sensor interfaces, the 10th and 15th interfaces are the expansion tank interfaces, the 11th and 14th interfaces are the water pressure sensor interfaces, the 16th interface is the exhaust valve interface, the 17th interface is the liquid replenishing pump interface, the 19th interface is the flow control valve 170, and this interface faces outward to facilitate liquid discharge and replenishment. The 20th interface is the filter interface, and the remaining three interfaces, 8, 9, and 18, are used as common spare interfaces 163. When a valve interface fails or additional functional components need to be added to the water circuit, the functional components can be connected to these interfaces.
[0070] Although the present utility model is disclosed as above, the present utility model is not limited thereto. Any person skilled in the art can make various changes and modifications without departing from the spirit and scope of the present utility model. Therefore, the protection scope of the present utility model should be subject to the scope defined by the claims.
Claims
1. An integrated waterway unit, characterized in that, Comprising: A liquid inlet pipe which guides water flow into the pipeline; A liquid outlet pipe which guides water flow out of the pipeline; A lapping component which connects the liquid inlet pipe and the liquid outlet pipe; A connection port which is arranged on the surfaces of the liquid inlet pipe and the liquid outlet pipe; An extension interface which passes through the lapping component and is connected to the liquid inlet pipe and the liquid outlet pipe.
2. The integrated waterway unit according to claim 1, characterized in that The integrated waterway unit further comprises: A functional interface which is connected to the connection port and the extension interface.
3. The integrated waterway unit according to claim 2, characterized in that, The functional interface includes: a detection interface, a control interface and / or a spare interface. Among them, the detection interface is used to obtain information from the waterway system; the control interface is used to adjust the operating state of the waterway system; the spare interface is used when the detection interface and the control interface fail.
4. The integrated waterway unit according to claim 3, wherein At least one of the detection interfaces is arranged on the liquid inlet pipe, and / or at least one of the control interfaces is arranged on the liquid inlet pipe, and / or at least one of the spare interfaces is arranged on the liquid inlet pipe.
5. The integrated waterway unit according to claim 4, wherein The liquid inlet pipe is provided with a plurality of the extension interfaces, and at least one of the detection interfaces is arranged on the extension interface, and / or at least one of the control interfaces is arranged on the extension interface, and / or at least one of the spare interfaces is arranged on the extension interface.
6. The integrated waterway unit according to claim 3, wherein At least one of the detection interfaces is arranged on the liquid outlet pipe, and / or at least one of the control interfaces is arranged on the liquid outlet pipe, and / or at least one of the spare interfaces is arranged on the liquid outlet pipe.
7. The integrated waterway unit according to claim 6, characterized in that, The liquid outlet pipe is provided with one extension interface, and at least one of the detection interfaces is arranged on the extension interface, and / or at least one of the control interfaces is arranged on the extension interface, and / or at least one of the spare interfaces is arranged on the extension interface.
8. The integrated waterway unit according to claim 3, characterized in that, The spare interface is common to the detection interface and the control interface.
9. The integrated waterway unit according to claim 1, characterized in that A sealing device is arranged inside the lapping component to prevent leakage between the extension interface and the connection port.
10. The integrated waterway unit according to claim 1, characterized in that, The integrated waterway unit further comprises: a flow control valve which is connected to the liquid inlet pipe and / or the flow control valve is connected to the liquid outlet pipe.