Double-control water outlet device with quick connection function
By designing a dual-control water outlet device with quick-connect function, the problems of troublesome faucet replacement and water waste due to misoperation are solved. Through the design of pipe connectors and faucet protection, quick replacement and disassembly are achieved, and misoperation is prevented, significantly reducing water consumption and saving water resources. It is suitable for both household and commercial use.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 陈静涛
- Filing Date
- 2025-04-14
- Publication Date
- 2026-04-21
AI Technical Summary
Replacing existing faucets is troublesome, requiring the entire water system to be shut off before replacement, and water resources are easily wasted due to misoperation.
Design a dual-control water outlet device with quick-connect function, including elbow type and straight pipe faucet, with first and second toggle control valves respectively installed, and quick connection and disconnection achieved through pipe connectors, and equipped with anti-touch components to prevent accidental operation.
It enables quick faucet replacement and protection against misoperation, reduces the impact on other water pipes, significantly saves water resources, and is suitable for both residential and commercial use.
Smart Images

Figure CN224148817U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of drainage equipment technology, specifically a dual-control water outlet device with quick-connect function. Background Technology
[0002] A faucet is a common name for a water valve, used to control the flow of water. It has the effect of saving water. Its main function is to easily turn the water source on or off by rotating the handle or other control methods, and to adjust the flow and temperature of water as needed. Faucets not only make people's lives more convenient, but also play a role in saving water, helping to reduce water waste and promote sustainable development.
[0003] Currently, the frequent opening and closing of faucets causes continuous friction between the valve core and the sealing ring. Over time, this friction leads to increased wear on the valve core and sealing ring, reducing the sealing effect and causing leaks or failure to close properly. Replacing current faucets is quite troublesome, requiring the entire water circuit to be shut off. This replacement process affects the use of other water pipes. Furthermore, faucets without anti-touch features are easily operated accidentally, such as by accidentally touching the switch and turning on the faucet. This can lead to water waste in a kitchen environment. Therefore, we have proposed a dual-control water outlet device with a quick-connect function to solve the above-mentioned problems. Utility Model Content
[0004] To address the shortcomings of existing technologies, this utility model provides a dual-control water outlet device with quick-connect function, which solves the problem of the cumbersome replacement of front-end faucets, which requires shutting off the entire water circuit before replacement. This replacement process affects the use of other water pipes, and faucets without anti-touch function are easily operated by accident, such as accidentally touching the switch and turning on the faucet, which may cause water waste in the kitchen environment.
[0005] To achieve the above objectives, this utility model is implemented through the following technical solution: a dual-control water outlet device with quick-connect function, including an elbow-type faucet and a straight-pipe faucet;
[0006] The elbow-type faucet and the straight-pipe faucet are respectively equipped with a first toggle control valve and a second toggle control valve for rotating the opening and closing of the pipeline.
[0007] A pipe connector is installed between the elbow-type faucet and the straight-pipe faucet.
[0008] The pipe connector includes a first connecting pipe and a second connecting pipe, which are respectively screwed onto the threaded portions of the elbow-type faucet and the straight-pipe faucet.
[0009] The surfaces of the first connecting pipe and the second connecting pipe are both provided with flanges, and multiple sets of bolts arranged in a ring at equal intervals are provided between the two sets of flanges;
[0010] The elbow-shaped faucet is equipped with an anti-touch component to limit the movement of the first actuation control valve and prevent contact.
[0011] Preferably, the outer surfaces of the first connecting pipe and the second connecting pipe are provided with annular grooves, and the two sets of flanges are respectively rotatably installed in the two sets of annular grooves via bearings;
[0012] The bolt assembly includes a locking bolt and a nut. The locking bolt passes through the corresponding locking holes of the two sets of flanges and is threadedly connected to the nut on one side of one set of flanges. The bolt assembly is used to lock the connection between the two sets of flanges.
[0013] Preferably, a sleeve is fixed on one side of the second connecting tube, and a slot adapted to the sleeve is provided on one side of the first connecting tube, and a first sealing ring is provided in the slot.
[0014] Preferably, both the first connecting pipe and the second connecting pipe are provided with a second sealing ring inside.
[0015] Preferably, a second hexagonal swivel is fixedly installed on the outer surface of both the first connecting pipe and the second connecting pipe.
[0016] Preferably, a first hexagonal swivel is fixedly installed on the surface of both the elbow-type faucet and the straight-pipe faucet.
[0017] Preferably, the anti-collision component includes a first arc-shaped clamp and a second arc-shaped clamp disposed on the elbow-type faucet. Hexagonal head bolts are provided at both ends between the second arc-shaped clamp and the first arc-shaped clamp. A connecting block is fixed to the surface of the second arc-shaped clamp. A stop rod is rotatably connected to the connecting block via a bearing. A baffle is fixed to one end of the stop rod. A return torsion spring is wound around the surface of the stop rod. Both ends of the return torsion spring are fixedly connected to the baffle and the connecting block, respectively. Through holes are provided at both ends of the second arc-shaped clamp. Threaded holes corresponding to the through holes are provided at both ends of the first arc-shaped clamp. The hexagonal head bolts pass through the through holes of the second arc-shaped clamp and are screwed into the threaded holes of the first arc-shaped clamp, thereby locking the connection between the first and second arc-shaped clamps.
[0018] Beneficial effects
[0019] This invention provides a dual-control water outlet device with quick-connect function. Compared with the prior art, it has the following advantages:
[0020] This dual-control water outlet device with quick-connect function allows straight-pipe faucets to remain continuously flowing by operating the second toggle control valve. Users can control the water flow by toggling the first toggle control valve. If an elbow faucet leaks or cannot be closed properly, the user can toggle the second toggle control valve to shut off the straight-pipe faucet, allowing for easy removal and replacement of the elbow faucet without shutting down the entire water circuit. This quick-connect design reduces the impact on other water pipes during replacement, improves the overall usability of the device, and meets practical needs. It also effectively prevents accidental activation, avoiding water waste. By reducing unnecessary water flow due to misoperation, this device significantly reduces water consumption, offering significant water-saving benefits for both residential and commercial use. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0022] Figure 2 This is a structural cross-sectional view of the connecting components such as the first connecting pipe and the second connecting pipe of this utility model;
[0023] Figure 3 This is a schematic diagram of the anti-collision component structure of this utility model;
[0024] Figure 4 This is a structural exploded view of the connecting parts for elbow-type faucets and straight-pipe faucets of this utility model.
[0025] In the diagram: 101, elbow-type faucet; 102, first actuating control valve; 103, straight-pipe faucet; 104, second actuating control valve; 105, first hexagonal swivel sleeve; 2, pipe connector; 201, first connecting pipe; 202, second connecting pipe; 203, socket; 204, flange; 205, bolt; 206, first sealing ring; 207, second sealing ring; 208, second hexagonal swivel sleeve; 3, anti-collision component; 301, first arc-shaped clamp; 302, second arc-shaped clamp; 303, hexagonal head bolt; 304, stop bar; 305, connecting block; 306, baffle plate; 307, return torsion spring. Detailed Implementation
[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0027] like Figure 1-4 As shown:
[0028] A dual-control water outlet device with quick-connect function includes an elbow-type faucet 101 and a straight-pipe faucet 103.
[0029] The elbow-type faucet 101 and the straight-pipe faucet 103 are respectively equipped with a first toggle control valve 102 and a second toggle control valve 104 for rotating the opening and closing of the pipe.
[0030] A pipe connector 2 is installed between the elbow-type faucet 101 and the straight-pipe faucet 103;
[0031] The pipe connector 2 includes a first connecting pipe 201 and a second connecting pipe 202, which are respectively screwed onto the threaded portions of the elbow-type faucet 101 and the straight-pipe faucet 103.
[0032] The surfaces of the first connecting pipe 201 and the second connecting pipe 202 are both provided with flanges 204. The outer surfaces of the first connecting pipe 201 and the second connecting pipe 202 are provided with annular grooves, and the two sets of flanges 204 are respectively rotatably installed in the two sets of annular grooves through bearings. Multiple sets of bolts 205 arranged in annular and equidistant arrangement are provided between the two sets of flanges 204. The bolts 205 include locking bolts and nuts. The locking bolts are inserted into the corresponding locking holes opened in the two sets of flanges 204 and are threadedly connected to the nuts on one side of one set of flanges 204. The bolts 205 are used to lock the connection between the two sets of flanges 204.
[0033] A sleeve 203 is fixed on one side of the second connecting pipe 202, and a slot adapted to the sleeve 203 is opened on one side of the first connecting pipe 201. A first sealing ring 206 is provided in the slot, and a second sealing ring 207 is provided inside both the first connecting pipe 201 and the second connecting pipe 202.
[0034] An anti-collision component 3 is installed on the elbow-type faucet 101 to limit and prevent contact with the first toggle control valve 102. The anti-collision component 3 includes a first arc-shaped clamp 301 and a second arc-shaped clamp 302 disposed on the elbow-type faucet 101. Hexagonal head bolts 303 are provided at both ends between the second arc-shaped clamp 302 and the first arc-shaped clamp 301. A connecting block 305 is fixed to the surface of the second arc-shaped clamp 302. The connecting block 305 is rotatably connected to a stop rod 304 through a bearing. A baffle 30 is fixed to one end of the stop rod 304. 6. A return torsion spring 307 is wound around the surface of the stop lever 304. The two ends of the return torsion spring 307 are fixedly connected to the stop plate 306 and the connecting block 305, respectively. The two ends of the second arc-shaped clamp 302 are provided with through holes. The two ends of the first arc-shaped clamp 301 are provided with threaded holes corresponding to the through holes. The hexagonal head bolt 303 passes through the through hole of the second arc-shaped clamp 302 and is screwed into the threaded hole of the first arc-shaped clamp 301 to lock the connection between the first arc-shaped clamp 301 and the second arc-shaped clamp 302.
[0035] In this embodiment: the device includes a straight-pipe faucet 103 and an elbow faucet 101. Both ends of the straight-pipe faucet 103 are threaded. During installation, one end of the threaded portion is wrapped with Teflon tape and then screwed onto the second connecting pipe 202. The second connecting pipe 202 is equipped with a second sealing ring 207 to enhance the sealing between the second connecting pipe 202 and the straight-pipe faucet 103. Subsequently, the other end of the straight-pipe faucet 103 is also wrapped with Teflon tape and screwed onto the main water supply pipe (not shown in the figure).
[0036] One end of the elbow-type faucet 101 is provided with a threaded part, which also needs to be wrapped with Teflon tape and then screwed into the first connecting pipe 201. The first connecting pipe 201 is also provided with a second sealing ring 207 to enhance the sealing of the connection between the elbow-type faucet 101 and the first connecting pipe 201.
[0037] Subsequently, the slot of the first connecting pipe 201 is inserted into the sleeve 203 at one end of the second connecting pipe 202. After docking, the horizontal installation of the elbow faucet 101 is ensured, making its appearance more aesthetically pleasing. Next, the flanges 204 on the first connecting pipe 201 and the second connecting pipe 202 are rotated to align the locking holes on the two sets of flanges 204. Then, the locking bolts (not shown in the figure) are inserted into the corresponding locking holes of the two sets of flanges 204 and threadedly connected to the nuts (not shown in the figure) on one side of one set of flanges 204. The bolt 205 is used to lock the connection between the two sets of flanges 204. At the same time, by setting the first sealing ring 206, the sealing performance of the sleeve 203 inserted into the slot of the first connecting pipe 201 is increased, thereby improving the overall sealing performance of the connection between the first connecting pipe 201 and the second connecting pipe 202.
[0038] By operating the second toggle control valve 104, the straight-pipe faucet 103 can be kept in a continuously flowing state. Users can control the water flow by toggling the first toggle control valve 102. However, with prolonged use of the elbow faucet 101, the first toggle control valve 102 will operate frequently. This frequent opening and closing causes continuous friction between the valve core and the sealing ring. Over time, this friction may exacerbate wear on the valve core and sealing ring, reducing the sealing effect and leading to leaks or failure to close properly. In this case, the user can toggle the second toggle control valve 104 to close the straight-pipe faucet 103, allowing for the disassembly and replacement of the elbow faucet 101 without shutting down the entire water circuit. This design reduces the impact on other water pipes during replacement, improves the overall performance of the device, and meets practical usage needs.
[0039] By clamping the first arc-shaped clamp 301 and the second arc-shaped clamp 302 onto the surface of the elbow-type faucet 101, and using the hexagonal head bolt 303 to connect and lock the first arc-shaped clamp 301 and the second arc-shaped clamp 302 onto the elbow-type faucet 101, while tightly fitting one side of the stop lever 304 with one side of the first toggle control valve 102;
[0040] During use, by moving the stop lever 304, it rotates at an angle under the action of the connecting block 305, causing the baffle 306 to rotate accordingly. The rotation of the stop lever 304 causes the return torsion spring 307 to elastically deform, thereby releasing the stop lever 304 from obstructing the first toggle control valve 102. In this way, the user can operate the first toggle control valve 102. The stop lever 304 effectively blocks the first toggle control valve 102 in real time, effectively distinguishing accidental touches by the user, thus preventing the faucet from being accidentally turned on and avoiding water waste. By reducing ineffective water flow caused by misoperation, this device helps to significantly reduce water consumption, showing significant water-saving effects for both household and commercial use.
[0041] It should be noted that the elbow faucet 101, the straight pipe faucet 103, and the pipe connector 2 form a dual-control water outlet structure. The pipe connector 2 makes the installation and operation of the elbow faucet 101 and the straight pipe faucet 103 more convenient. The dual-control water outlet structure is applicable to specific scenarios, such as laboratories, hospitals, and other places where water quality and temperature need to be strictly controlled. In these situations, the dual-valve faucet can provide more precise and stable water flow control to meet specific water needs.
[0042] Furthermore;
[0043] In an optional embodiment, a second hexagonal swivel sleeve 208 is fixedly installed on the outer surface of both the first connecting pipe 201 and the second connecting pipe 202;
[0044] Both the elbow-type faucet 101 and the straight-pipe faucet 103 have a first hexagonal swivel sleeve 105 fixedly installed on their surfaces.
[0045] In this embodiment: For ease of installation, both the elbow-type faucet 101 and the straight-pipe faucet 103 are equipped with a first hexagonal swivel 105, while the first connecting pipe 201 and the second connecting pipe 202 are equipped with a second hexagonal swivel 208. By using a wrench to engage the first hexagonal swivel 105 and the second hexagonal swivel 208, the elbow-type faucet 101 can be easily screwed into the first connecting pipe 201, and the second connecting pipe 202 can be easily screwed into the straight-pipe faucet 103, thus facilitating the installation process.
[0046] The working principle and usage process of this utility model are as follows: This dual-control water outlet device with quick-connect function includes a straight pipe faucet 103 and an elbow faucet 101. Both ends of the straight pipe faucet 103 are threaded. During installation, one end of the threaded portion is wrapped with Teflon tape and then screwed onto the second connecting pipe 202. The other end of the straight pipe faucet 103 is also wrapped with Teflon tape and screwed onto the main water supply pipe (not shown in the figure). One end of the elbow faucet 101 is threaded, which also needs to be wrapped with Teflon tape and then screwed into the first connecting pipe 201. Subsequently, locking bolts (not shown in the figure) are inserted into the two sets of flanges 204. The corresponding lock hole is threaded to a nut (not shown in the figure) on one side of a set of flanges 204 to lock the connection between the two sets of flanges 204; the first arc-shaped clamp 301 and the second arc-shaped clamp 302 are clamped onto the surface of the elbow faucet 101, and the first arc-shaped clamp 301 and the second arc-shaped clamp 302 are connected and locked onto the elbow faucet 101 using hexagonal head bolts 303, while one side of the stop lever 304 is tightly fitted with one side of the first toggle control valve 102; during use, by toggling the stop lever 304, the stop lever 304 rotates at an angle under the action of the connecting block 305, and drives the baffle 306 to rotate accordingly. The rotation of the lever 304 will cause the reset torsion spring 307 to undergo elastic deformation, thereby releasing the lever 304 from obstructing the first toggle control valve 102; in this way, the user can toggle the first toggle control valve 102. The lever 304 is designed to block the first toggle control valve 102 in real time, effectively distinguishing accidental touches by the user, thereby preventing the faucet from being turned on unintentionally and avoiding waste of water resources.
[0047] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A dual-control water outlet device with quick-connect function, characterized in that, Including elbow-type faucets (101) and straight-pipe faucets (103); The elbow-type faucet (101) and the straight-pipe faucet (103) are respectively equipped with a first toggle control valve (102) and a second toggle control valve (104) for rotating the opening and closing of the pipeline; A pipe connector (2) is installed between the elbow-type faucet (101) and the straight-pipe faucet (103); The pipe connector (2) includes a first connecting pipe (201) and a second connecting pipe (202), wherein the first connecting pipe (201) and the second connecting pipe (202) are respectively screwed onto the threaded portions of the elbow-type faucet (101) and the straight-pipe faucet (103); The surfaces of the first connecting pipe (201) and the second connecting pipe (202) are both provided with flanges (204), and multiple sets of bolts (205) arranged in a ring at equal intervals are provided between the two sets of flanges (204); The elbow-shaped faucet (101) is equipped with an anti-collision component (3) to limit and prevent contact with the first toggle control valve (102).
2. The double control water outlet device with quick connection function according to claim 1, characterized in that: The outer surfaces of the first connecting pipe (201) and the second connecting pipe (202) are provided with annular grooves, and the two sets of flanges (204) are respectively rotatably installed in the two sets of annular grooves through bearings; The bolt (205) includes a locking bolt and a nut. The locking bolt passes through the corresponding locking holes of the two sets of flanges (204) and is threadedly connected to the nut on one side of one set of flanges (204). The bolt (205) is used to lock the connection between the two sets of flanges (204).
3. The double control water outlet device with quick connection function according to claim 2, characterized in that: A sleeve (203) is fixed on one side of the second connecting tube (202), and a slot adapted to the sleeve (203) is opened on one side of the first connecting tube (201), and a first sealing ring (206) is provided in the slot.
4. The double control water outlet device with quick connection function according to claim 3, characterized in that: The first connecting pipe (201) and the second connecting pipe (202) are both provided with a second sealing ring (207).
5. The double control water outlet device with quick connection function according to claim 1, characterized in that: The outer surfaces of the first connecting pipe (201) and the second connecting pipe (202) are both fixedly installed with a second hexagonal swivel sleeve (208).
6. The double control water outlet device with quick connection function according to claim 1, characterized in that: Both the elbow-type faucet (101) and the straight-pipe faucet (103) have a first hexagonal swivel sleeve (105) fixedly installed on their surfaces.
7. The double control water outlet device with quick connection function according to claim 1, characterized in that: The anti-collision component (3) includes a first arc-shaped clamp (301) and a second arc-shaped clamp (302) disposed on the elbow-type faucet (101). Hexagonal head bolts (303) are provided at both ends between the second arc-shaped clamp (302) and the first arc-shaped clamp (301). A connecting block (305) is fixed on the surface of the second arc-shaped clamp (302). The connecting block (305) is rotatably connected to a stop rod (304) through a bearing. A baffle (306) is fixed at one end of the stop rod (304). A reset torsion spring (307) is wound around the surface of the stop rod (304). The two ends of the reset torsion spring (307) are fixedly connected to the baffle (306) and the connecting block (305) respectively.