Quick disassembly and assembly type water pipe connector

By designing a quick-release water pipe connector with snap-fit ​​and pry-off components, the problem of time-consuming and laborious disassembly and assembly of existing water pipe connectors is solved, enabling rapid installation and disassembly and improving connection efficiency and sealing.

CN122040981APending Publication Date: 2026-05-15BEIJING HUAQINGJIA HIGH ENERGY ELECTRONIC TECH CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
BEIJING HUAQINGJIA HIGH ENERGY ELECTRONIC TECH CO LTD
Filing Date
2026-03-19
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

Existing quick-release water pipe fittings are time-consuming and labor-intensive to install and remove, making them difficult to install and disassemble quickly.

Method used

A quick-connect and disconnect water pipe connector, including male and female connectors, was designed. It adopts a snap-fit ​​and pry-off structure, and achieves quick connection and disconnection of the male and female connectors through the cooperation of the pressing and rotating rods and the pressure rods.

Benefits of technology

It enables rapid installation and disassembly of water pipe joints, improving assembly and disassembly efficiency and enhancing sealing and connection stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of water pipe connectors, in particular to a quick disassembly and assembly type water pipe connector which comprises a water pipe male connector and a water pipe female connector arranged at the end of the water pipe male connector. And the breaking-apart piece comprises a bearing plate arranged at the end of the flange, a first rotating rod arranged on the bearing plate and a second rotating rod arranged at the end of the first rotating rod, and when the water pipe male head and the water pipe female head need to be quickly disassembled and assembled, the first rotating rod and the second rotating rod are pressed, so that the water pipe male head and the water pipe female head can be quickly disassembled and assembled, and the water pipe male head and the water pipe female head can be quickly disassembled and assembled. The pressing rod drives the butt joint cylinder to sleeve the water pipe male head, the cross rod at the end of the second rotating rod forms a pressure extrusion effect on the groove of the pressing rod, the position and angle of the pressing rod on the connecting rod are fixed, and at the moment, the butt joint cylinder is stably installed at the end of the water pipe male head through the pressing rod. And a worker can quickly mount and dismount the water pipe male head and the water pipe female head.
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Description

Technical Field

[0001] This invention relates to the field of water pipe fitting technology, and in particular to a quick-release water pipe fitting. Background Technology

[0002] Water systems are generally composed of water pipes, valves, and various pipe fittings. Among them, pipe fittings are an indispensable component of the piping system, used to connect, turn, branch, change diameter, or seal pipes to ensure smooth water flow and a leak-free system. Quick-release pipe fittings are used in locations where frequent connection and disconnection are required.

[0003] During use, existing quick-release water pipe joints are locked and tightened by threads. In the water circuit testing process, when the water pipe joints need to be frequently twisted for disassembly and assembly, it is time-consuming and laborious.

[0004] Based on this, the present invention designs a quick-release water pipe connector to solve the above problems. Summary of the Invention

[0005] In view of the problem that water pipe joints in the above-mentioned or existing technologies are not convenient for quick installation and disassembly, the present invention is proposed.

[0006] Therefore, the purpose of this invention is to provide a quick-release water pipe connector.

[0007] As a preferred embodiment of the quick-disassembly water pipe connector of the present invention, it includes a male water pipe connector and a female water pipe connector disposed at the end of the male water pipe connector.

[0008] The quick-release assembly provided on the male water pipe includes a latching element provided on the end of the male water pipe and a prying element provided on the latching element;

[0009] The fastening component includes a flange disposed at the male end of the water pipe, a connecting rod disposed at the end of the flange, and a pressure rod disposed at the end of the connecting rod;

[0010] The prying component includes a bearing plate disposed at the end of the flange, a first rotating rod disposed on the bearing plate, and a second rotating rod disposed at the end of the first rotating rod;

[0011] The inlet end of the water pipe is inserted from one end of the flange and installed onto one end of the male water pipe connector.

[0012] As a preferred embodiment of the quick-release water pipe connector of the present invention, the female water pipe is provided with a connecting sleeve, and the end of the connecting sleeve is provided with a sealing ring.

[0013] As a preferred embodiment of the quick-release water pipe connector of the present invention, the buckle further includes a sliding groove, and the pressure rod is provided with a sliding groove and a recess, the recess being located at the end of the pressure rod.

[0014] As a preferred embodiment of the quick-release water pipe connector of the present invention, the prying component further includes a crossbar, the end of the second rotating rod is provided with a crossbar, the bearing plate is provided with two rotating shaft plates, and the second crossbar is located between the two rotating shaft plates.

[0015] As a preferred embodiment of the quick-release water pipe connector of the present invention, wherein: the pressure rod is provided with a fixing component inside.

[0016] As a preferred embodiment of the quick-release water pipe connector of the present invention, the fixing component includes a U-shaped through groove, the pressure rod has a U-shaped through groove inside, the U-shaped through groove is provided with an arc plate and an inclined rod, and the two ends of the inclined rod are respectively provided with a first round rod and a second round rod.

[0017] As a preferred embodiment of the quick-release water pipe connector of the present invention, one end of the U-shaped through groove is connected to the groove.

[0018] As a preferred embodiment of the quick-release water pipe connector of the present invention, a first spring is provided between the second round rod and the U-shaped through groove, a gear plate is provided at the lower end of the second round rod, and a gear groove is provided on the surface of the arc plate.

[0019] As a preferred embodiment of the quick-assembly water pipe connector of the present invention, a water-stopping element is provided between the male water pipe connector and the female water pipe connector.

[0020] As a preferred embodiment of the quick-release water pipe connector of the present invention, the water-stopping component includes a fixed water outlet cylinder, the end of the male water pipe is provided with a fixed water outlet cylinder, the end of the male water pipe is provided with a rotating water outlet cylinder, the surface of the rotating water outlet cylinder is provided with a guide groove, the inner wall of the connecting cylinder is provided with a guide block, the inner wall of the connecting cylinder is provided with a limit block, and the surface of the male water pipe is provided with a limit groove.

[0021] The beneficial effects of the quick-release water pipe connector of this invention are as follows: When it is necessary to quickly assemble or disassemble the male and female water pipe connectors, by pressing the first and second rotating rods, the pressure rod drives the connecting sleeve to fit onto the male water pipe connector. The crossbar at the end of the second rotating rod creates a pressure squeezing effect on the groove of the pressure rod, fixing the position and angle of the pressure rod on the connecting rod. At this time, the pressure rod firmly installs the connecting sleeve on the end of the male water pipe connector, which is conducive to workers quickly assembling and disassembling the male and female water pipe connectors. Attached Figure Description

[0022] To more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the following description of the embodiments will be briefly introduced. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0023] Figure 1 This is a schematic diagram of the overall structure of a quick-release water pipe connector according to the present invention. Figure 1 .

[0024] Figure 2 This is a schematic diagram of the overall structure of a quick-release water pipe connector according to the present invention. Figure 2 .

[0025] Figure 3 This is a schematic diagram of the pressure bar structure of a quick-release water pipe connector according to the present invention.

[0026] Figure 4 This is a side sectional view of the pressure bar structure of a quick-release water pipe connector according to the present invention.

[0027] Figure 5 This is a schematic diagram of the arc-shaped plate structure of a quick-assembly water pipe connector according to the present invention.

[0028] Figure 6 This is a schematic diagram of the guide groove structure of a quick-release water pipe connector according to the present invention.

[0029] The labels in the diagram represent: 1. Male water pipe fitting; 2. Female water pipe fitting; 21. Connecting sleeve; 22. Sealing ring; 3. Quick-release assembly; 31. Clip; 311. Flange; 312. Connecting rod; 313. Pressure rod; 314. Horizontal sliding groove; 315. Groove; 32. Splitting piece; 321. Bearing plate; 322. First rotating rod; 323. Second rotating rod; 324. Crossbar; 325. Rotating shaft. Plate; 33, Fixing component; 331, U-shaped through groove; 332, Arc plate; 333, Inclined rod; 334, First round rod; 335, Second round rod; 336, First spring; 337, Gear plate; 338, Gear groove; 34, Water stop component; 341, Fixed water outlet cylinder; 342, Rotating water outlet cylinder; 343, Guide groove; 344, Guide block; 345, Limiting block; 346, Limiting groove. Detailed Implementation

[0030] To make the above-mentioned objects, features and advantages of the present invention more apparent and understandable, the specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings.

[0031] Many specific details are set forth in the following description in order to provide a full understanding of the invention. However, the invention may also be practiced in other ways different from those described herein, and those skilled in the art can make similar extensions without departing from the spirit of the invention. Therefore, the invention is not limited to the specific embodiments disclosed below.

[0032] Secondly, the term "one embodiment" or "embodiment" as used herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. The phrase "in one embodiment" appearing in different places in this specification does not necessarily refer to the same embodiment, nor is it a single or selective embodiment that is mutually exclusive with other embodiments.

[0033] Example 1, referring to Figures 1 to 6 This is the first embodiment of the present invention. This embodiment provides a quick-release water pipe connector, which can achieve the effect of quick installation and disassembly of the male water pipe connector 1 and the female water pipe connector 2. It includes a male water pipe connector 1 and a female water pipe connector 2 disposed at the end of the male water pipe connector 1.

[0034] Specifically, the quick-release assembly 3 installed on the male water pipe connector 1 includes a latching member 31 installed at the end of the male water pipe connector 1 and a prying member 32 installed on the latching member 31;

[0035] Furthermore, the male water pipe connector 1 is convex, and the female water pipe connector 2 is concave;

[0036] One end of the male water pipe connector 1 is equipped with a quick-release assembly 3, which includes a clip 31 installed at one end of the male water pipe connector 1 and a prying part 32 installed at one end of the clip 31.

[0037] Specifically, the fastener 31 includes a flange 311 disposed at the end of the male water pipe connector 1, a connecting rod 312 disposed at the end of the flange 311, and a pressure rod 313 disposed at the end of the connecting rod 312;

[0038] Furthermore, the fastener 31 includes a flange 311, one end of the male water pipe 1 is sealed with a flange 311, and a circular water groove is provided in the middle of the flange 311, the male water pipe 1 and the female water pipe 2. A rectangular connecting rod 312 is welded to one side of the flange 311, and a pressure rod 313 is rotatably connected to one end of the connecting rod 312 by a screw.

[0039] Specifically, the prying part 32 includes a bearing plate 321 disposed at the end of the flange 311, a first rotating rod 322 disposed on the bearing plate 321, and a second rotating rod 323 disposed at the end of the first rotating rod 322;

[0040] Furthermore, the prying part 32 includes a support plate 321. The support plate 321 is welded to the side of the flange 311 away from the connecting rod 312. The upper end of the support plate 321 is rotatably connected to a first rotating rod 322. The support plate 321 and the first rotating rod 322 are rotatably connected through a rotating shaft one. One end of the first rotating rod 322 is rotatably connected to a second rotating rod 323. The second rotating rod 323 is rotatably connected to the first rotating rod 322 through a rotating shaft two. The second rotating rod 323 is rotatably connected to the support plate 321 through a rotating shaft three. The rotating shaft one, rotating shaft two, and rotating shaft three are on the same horizontal line.

[0041] The surface of the first rotating rod 322 is provided with a sliding groove with a certain length. When the first rotating rod 322 is manually turned around the first rotating shaft, the inner wall of the sliding groove presses down the second rotating shaft and the second rotating rod 323. The second rotating rod 323 rotates around the third rotating shaft on the upper end of the bearing plate 321. The second rotating shaft between the first rotating rod 322 and the second rotating rod 323 is located in the sliding groove, and the width of the sliding groove is the same as the diameter of the second rotating shaft.

[0042] The end of the first rotating rod 322 away from the second rotating rod 323 is designed to be tilted upwards, making it easier for the user to turn the first rotating rod 322 around the pivot and saving some effort;

[0043] The surface of the support plate 321 is provided with a motion groove. When the first rotating rod 322 and the second rotating rod 323 rotate from a horizontal state to an inclined state on the support plate 321, the rotational stroke of the ends of the first rotating rod 322 and the second rotating rod 323 is increased.

[0044] Specifically, the water pipe inlet is inserted from one end of flange 311 and installed onto one end of water pipe male connector 1.

[0045] Furthermore, the male water pipe 1 is inserted into the female water pipe 2, and the two sections of water pipe are respectively connected to one end of the male water pipe 1 and the female water pipe 2. The water flow enters from the water pipe at one end of the male water pipe 1 and passes through the male water pipe 1, the female water pipe 2 and the water pipe at one end of the female water pipe 2 in sequence.

[0046] Specifically, the female water pipe connector 2 is provided with a connecting sleeve 21, and a sealing ring 22 is provided at the end of the connecting sleeve 21.

[0047] Furthermore, the female water pipe connector 2 is provided with a connecting sleeve 21. The depth of the connecting sleeve 21 is greater than the end of the convex male water pipe connector 1. The connecting sleeve 21 is sleeved on the surface of the convex male water pipe connector 1. The end of the connecting sleeve 21 is connected to an annular sealing ring 22, which is made of rubber. An annular sealing groove is opened on the surface of the convex male water pipe connector 1. When the male water pipe connector 1 is connected to the female water pipe connector 2, the annular sealing ring 22 at the end of the female water pipe connector 2 enters the annular sealing groove. When the external force squeezes the female water pipe connector 2 and the male water pipe connector 1, the annular sealing ring 22 deforms and fills the annular sealing groove, so that the sealing ring 22 and the male water pipe connector 1 form a whole, the contact surface between the two increases, and the sealing effect is improved.

[0048] Specifically, the fastener 31 also includes a translational through groove 314, and the pressure rod 313 is provided with a translational through groove 314 and a groove 315, with the groove 315 located at the end of the pressure rod 313.

[0049] Furthermore, the fastener 31 also includes a sliding groove 314. The sliding groove 314 is opened in the middle of the pressure rod 313. The end of the pressure rod 313 has two symmetrically arranged protruding rods. The female water pipe 2 moves in the sliding groove 314 in the pressure rod 313. The diameter of the connecting cylinder 21 is larger than the width of the sliding groove 314. The two protruding rods at the end of the pressure rod 313 are stuck at the lower end of the connecting cylinder 21, increasing the squeezing force between the connecting cylinder 21 and the convex male water pipe 1, and increasing the sealing between the female water pipe 2 and the male water pipe 1.

[0050] The ends of the two protruding rods at the end of the pressure rod 313 are provided with arc grooves 315. When the arc grooves 315 are connected with the crossbar 324 of the splitting piece 32, the ends of the pressure rod 313 and the connecting rod 312 are nearly perpendicular. The pressure rod 313 can rotate freely at the end of the connecting rod 312. When the pressure rod 313 drives the water pipe female head 2 to connect, and the ends of the pressure rod 313 and the connecting rod 312 are nearly perpendicular, the degree of compression between the water pipe female head 2 and the water pipe male head 1 is the greatest.

[0051] Specifically, the prying component 32 also includes a crossbar 324. The end of the second rotating rod 323 is provided with a crossbar 324, and two rotating shaft plates 325 are provided on the bearing plate 321. The second crossbar 324 is located between the two rotating shaft plates 325.

[0052] Furthermore, the prying part 32 also includes a crossbar 324. The end of the second rotating rod 323 is connected to the crossbar 324. The second rotating rod 323 and the crossbar 324 together form a rectangular frame. The crossbar 324 has a circular cross section and is engaged in the arc groove 315.

[0053] Two rotating shaft plates 325 are fixedly connected to the bearing plate 321. The second rotating rod 323 has two rotating shafts, a second rotating shaft and a third rotating shaft, horizontally arranged inside. The second rotating rod 323 is rotatably connected to the two rotating shaft plates 325 through the third rotating shaft. The first rotating shaft and the second rotating shaft are always on the same connecting line, and the second rotating shaft and the third rotating shaft are always on the same connecting line, so that the ends of the first rotating rod 322 and the second rotating rod 323 can move simultaneously and in the same direction.

[0054] In use, the two water pipes are connected to the corresponding male pipe connector 1 and female pipe connector 2 respectively. The female pipe connector 2 is then inserted into the sliding groove 314 in the middle of the pressure rod 313, keeping the connecting sleeve 21 of the female pipe connector 2 facing the male pipe connector 1. One side of the pressure rod 313 is in contact with the end of the connecting sleeve 21 of the female pipe connector 2. At this time, the pressure rod 313 is manually pushed, pushing the end of the connecting sleeve 21 closer to the male pipe connector 1, and the female pipe connector 2 and the male pipe connector 1 are then inserted into each other. At this time, the first rotating rod 322 is pressed to rotate around the first rotating shaft, causing the sliding groove at the end of the first rotating rod 322 to press down on the second rotating rod 323's second rotating shaft, causing the second rotating rod 323 to rotate around the third rotating shaft. The horizontal bar 324 at the end of the second rotating rod 323 moves in an arc until the first rotating rod 322 and the second rotating rod 323 are horizontal. In this process, the crossbar 324 aligns with the groove 315 at the end of the pressure bar 313, and pulls the pressure bar 313 to a near-vertical position with the connecting rod 312. At this time, the male water pipe 1 and the female water pipe 2 are completely and tightly connected. The annular sealing ring 22 at the end of the connecting cylinder 21 is squeezed and deformed in the annular sealing groove and fills the annular sealing groove. The sealing performance between the female water pipe 2 and the male water pipe 1 reaches its maximum. Similarly, by bending the end of the first rotating rod 322 upward, the end of the second rotating rod 323 is driven to rotate. The crossbar 324 at the end of the second rotating rod 323 makes an arc motion and separates from the groove 315 of the pressure bar 313. At this time, the squeezing force of the pressure bar 313 on the connecting cylinder 21 disappears, and the staff can smoothly remove the female water pipe 2 from the male water pipe 1, which is conducive to the staff quickly completing the installation and disassembly work during the testing phase.

[0055] Example 2, refer to Figures 1 to 5 This is the second embodiment of the present invention, which differs from the previous embodiment in that it includes a fixing member 33.

[0056] Specifically, the pressure rod 313 has a fixing component 33 inside.

[0057] Furthermore, a fastener 33 is connected between the pressure rod 313 and the translational through groove 314;

[0058] Specifically, the fastener 33 includes a U-shaped through groove 331. The pressure rod 313 has a U-shaped through groove 331 inside. An arc plate 332 and an inclined rod 333 are provided in the U-shaped through groove 331. A first round rod 334 and a second round rod 335 are respectively provided at both ends of the inclined rod 333. One end of the U-shaped through groove 331 is connected to the groove 315.

[0059] Furthermore, the fixing member 33 includes a U-shaped through groove 331. The pressure rod 313 has a U-shaped through groove 331 inside. The U-shaped through groove 331 is divided into a first vertical groove, a second vertical groove, and a rectangular groove. The first vertical groove communicates with the groove 315. The first round rod 334 is slidably connected in the first vertical groove, and the second round rod 335 is slidably connected in the second vertical groove. The inclined rod 333 and the arc plate 332 are both rotatably connected in the rectangular groove. The arc plate 332 rotates from the U-shaped through groove 331 into the translational through groove 314, and the pivot between the inclined rod 333 and the rectangular groove is... The point is located on the side of the middle of the inclined rod 333 near the first round rod 334. The first round rod 334 moves in the first vertical groove and pushes one end of the inclined rod 333 to rotate around the pivot point. The other end of the inclined rod 333 pushes the second round rod 335 to move in the second vertical groove, so that the movement stroke of the second round rod 335 in the U-shaped through groove 331 is greater than the movement stroke of the first round rod 334. The second round rod 335 drives the arc plate 332 to rotate from the U-shaped through groove 331 to the translational through groove 314, thus restricting the water pipe female head 2 in the translational through groove 314.

[0060] Specifically, a first spring 336 is provided between the second round rod 335 and the U-shaped through groove 331, a gear plate 337 is provided at the lower end of the second round rod 335, and a gear groove 338 is provided on the surface of the arc plate 332.

[0061] Furthermore, a gear plate 337 is connected to the lower end of the second round rod 335, and a gear groove 338 is connected to the side of the arc plate 332. The gear plate 337 and the gear groove 338 mesh with each other. A first spring 336 is connected inside the second vertical groove of the U-shaped through groove 331. The first spring 336 is sleeved on the surface of the second round rod 335. The length of the second vertical groove is greater than the length of the second round rod 335. The cross-sections of the second round rod 335, the first round rod 334, the first vertical groove, and the second vertical groove are all circular. The second round rod 335 has a diameter equal to the inner diameter of the second vertical groove, and the first round rod 334 has a diameter equal to the inner diameter of the first vertical groove. When the second round rod 335 moves in the second vertical groove, the gear plate 337 at the lower end of the second round rod 335 meshes and drives the gear groove 338 on the side of the arc plate 332 to move, so that the arc plate 332 moves from the U-shaped through groove 331 to the translational through groove 314, thereby restricting the water pipe female head 2 located in the translational through groove 314 to the inner side of the arc plate 332.

[0062] In use, when the male water pipe connector 1 is connected to the female water pipe connector 2, and the first rotating rod 322 and the second rotating rod 323 are pressed, the horizontal bar 324 at the end of the second rotating rod 323 is pressed into the groove 315 at the end of the pressure rod 313. The horizontal bar 324 presses the end of the first round rod 334 located in the groove 315. The first round rod 334 moves vertically in the first vertical groove in the U-shaped through groove 331. The end of the first round rod 334 presses one end of the inclined rod 333, causing the inclined rod 333 to rotate around the pivot point. At this time, the other end of the inclined rod 333 pushes the end of the second round rod 335 and pushes the second round rod 335 to move vertically in the second vertical groove. The gear plate 337 at the lower end of the second round rod 335 meshes and drives the gear groove on the outer side of the arc plate 332. 338, which causes the arc plate 332 to move from the U-shaped through groove 331 to the translational through groove 314. Since the pivot point of the inclined rod 333 is close to the side of the first round rod 334, the two ends of the inclined rod 333 have different strokes. The stroke of the first round rod 334 in the first vertical groove is less than the stroke of the second round rod 335 in the second vertical groove. This is beneficial for the cross rod 324 to press the first round rod 334 into the first vertical groove, and the second round rod 335 to drive the arc plate 332 to rotate until the water pipe female head 2 is wrapped between the arc plate 332 and the translational through groove 314. This reduces the lateral force between the water pipe female head 2 and the water pipe male head 1 during installation and disassembly, and reduces the wear between the water pipe male head 1 and the water pipe female head 2.

[0063] Example 3, referring to Figure 1 , Figure 2 , Figure 3 and Figure 6 This is the third embodiment of the present invention, which differs from the previous embodiment in that it includes a water-stopping component 34.

[0064] Specifically, a water-stopping component 34 is installed between the male water pipe connector 1 and the female water pipe connector 2.

[0065] Furthermore, a water-stopping component 34 is connected between the male water pipe connector 1 and the female water pipe connector 2;

[0066] Specifically, the water-stopping component 34 includes a fixed water outlet cylinder 341, a fixed water outlet cylinder 341 is provided at the end of the male water pipe connector 1, a rotating water outlet cylinder 342 is provided at the end of the male water pipe connector 1, a guide groove 343 is provided on the surface of the rotating water outlet cylinder 342, a guide block 344 is provided on the inner wall of the connecting cylinder 21, a limit block 345 is provided on the inner wall of the connecting cylinder 21, and a limit groove 346 is provided on the surface of the male water pipe connector 1.

[0067] Furthermore, the water-stopping component 34 includes a fixed water outlet cylinder 341. When the male water pipe 1 and the female water pipe 2 are connected, the connecting block is aligned and enters the limiting groove 346, and the male water pipe 1 is pushed to connect with the female water pipe 2, so that the guide block 344 on the inner wall of the connecting cylinder 21 enters the guide groove 343 on the surface of the rotating water outlet cylinder 342.

[0068] The limiting block 345 and the limiting groove 346 have rectangular cross-sections, the guide block 344 is circular, and the guide groove 343 is divided into a straight groove and an arc groove. The straight groove connects with the guide block 344 to prevent the guide block 344 from separating from the guide groove 343. When the female water pipe 2 connects with the male water pipe 1, the guide block 344 moves in the straight groove. At this time, the three water outlets on the side of the fixed water outlet cylinder 341 and the rotating water outlet cylinder 342 do not connect with each other. At this time, the water flow is restricted within the fixed water outlet cylinder 341 and the male water pipe 1. When the second rotating rod 323 is in a horizontal state, the pressure rod 313 pushes... The annular sealing ring 22 at the end of the movable docking cylinder 21 is pressed into contact with the annular sealing groove. During this process, the sealing ring 22 at the end of the docking cylinder 21 is compressed and deformed, and the docking cylinder 21 moves relative to the male water pipe 1. At this time, the guide block 344 on the inner wall of the docking cylinder 21 presses the arc groove on the surface of the rotating water outlet cylinder 342, so that the rotating water outlet cylinder 342 rotates at a certain angle, and the fixed water outlet cylinder 341 is connected to the three water outlets on the side of the rotating water outlet cylinder 342 one by one. At this time, the water flow in the male water pipe 1 enters the rotating water outlet cylinder 342 and flows out from one end and enters the female water pipe 2.

[0069] The male water pipe connector 1 is connected to a fixed water outlet tube 341 and a rotating water outlet tube 342 at its end. The fixed water outlet tube 341 is located in the middle of the rotating water outlet tube 342. Both the fixed water outlet tube 341 and the rotating water outlet tube 342 have three water outlets on their side walls. The interior of the fixed water outlet tube 341 is connected to the interior of the male water pipe connector 1, and one end of the fixed water outlet tube 341 is closed. One side of the rotating water outlet tube 342 is rotatably connected to the male water pipe connector 1, and one end of the rotating water outlet tube 342 is open. The water in the fixed water outlet tube 341 enters the interior of the rotating water outlet tube 342 through the water outlet and flows out from one side of the rotating water outlet tube 342 into the female water pipe connector 2.

[0070] In use, when connecting the male water pipe 1 to the female water pipe 2, align the connecting block and place it into the limiting groove 346. Then, manually push the female water pipe 2 closer to the male water pipe 1. At this time, the guide block 344 on the inner wall of the connecting cylinder 21 slides in the straight groove of the guide groove 343. When the second rotating rod 323 moves to a horizontal position, the horizontal rod 324 presses against the pressure rod 313 and the first round rod 334 in the pressing groove 315 of the connecting cylinder 21 and the horizontal rod 324, causing the annular sealing ring 22 at the end of the connecting cylinder 21 to deform within the annular sealing groove. At this time, the guide block 344 on the inner wall of the connecting cylinder 21 presses against the arc-shaped groove on the surface of the rotating water outlet cylinder 342, causing the rotating water outlet cylinder 342 to rotate at a certain angle. The fixed water outlet cylinder 341 connects one by one with the three water outlets on the side of the rotating water outlet cylinder 342. Water from the male water pipe 1 then enters the rotating water outlet cylinder 342 and flows out from one end into the female water outlet cylinder, thus achieving the desired effect. When the male water pipe connector 1 and the female water pipe connector 2 are completely sealed together, water flows from the male water pipe connector 1 into the female water pipe connector 2. Similarly, when the crossbar 324 at the end of the second rotating rod 323 separates from the groove 315 of the pressure rod 313, the annular sealing ring 22 at the end of the connecting cylinder 21 separates from the annular sealing groove. During this process, relative movement occurs between the connecting cylinder 21 and the male water pipe connector 1. The guide block 344 on the inner wall of the connecting cylinder 21 squeezes the arc-shaped groove on the surface of the rotating water outlet cylinder 342, causing the rotating water outlet cylinder 342 to rotate at a certain angle in the opposite direction. This causes the three water outlets on the side of the fixed water outlet cylinder 341 and the rotating water outlet cylinder 342 to be staggered one by one, thus intercepting the water flow in the male water pipe connector 1. This helps to reduce the number of times the water flow needs to be switched on and off when the workers install and disassemble the male water pipe connector 1 and the female water pipe connector 2. It also helps the workers to quickly install and disassemble the male water pipe connector 1 and the female water pipe connector 2 during the testing phase.

[0071] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit it. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention, and all such modifications or substitutions should be covered within the scope of the claims of the present invention.

Claims

1. A quick-release water pipe connector, characterized in that: Including, Male water pipe connector (1) and female water pipe connector (2) disposed at the end of the male water pipe connector (1); and, The quick-release assembly (3) provided on the male water pipe connector (1) includes a latching member (31) provided at the end of the male water pipe connector (1) and a prying member (32) provided on the latching member (31); wherein, The fastening member (31) includes a flange (311) disposed at the end of the male water pipe connector (1), a connecting rod (312) disposed at the end of the flange (311), and a pressure rod (313) disposed at the end of the connecting rod (312); and, The prying component (32) includes a bearing plate (321) disposed at the end of the flange (311), a first rotating rod (322) disposed on the bearing plate (321), and a second rotating rod (323) disposed at the end of the first rotating rod (322); wherein, The inlet end of the water pipe is inserted from one end of the flange (311) and installed onto one end of the male water pipe fitting (1).

2. The quick-release water pipe connector according to claim 1, characterized in that: The water pipe connector (2) is provided with a connecting sleeve (21), and a sealing ring (22) is provided at the end of the connecting sleeve (21).

3. The quick-release water pipe connector according to claim 2, characterized in that: The buckle (31) also includes a sliding through groove (314), and the pressure rod (313) is provided with a sliding through groove (314) and a groove (315), the groove (315) being located at the end of the pressure rod (313).

4. The quick-release water pipe connector according to claim 3, characterized in that: The prying component (32) also includes a crossbar (324), and the end of the second rotating rod (323) is provided with a crossbar (324). The bearing plate (321) is provided with two rotating shaft plates (325), and the second crossbar (324) is located between the two rotating shaft plates (325).

5. The quick-release water pipe connector according to claim 4, characterized in that: The pressure rod (313) has a fixing member (33) inside.

6. The quick-release water pipe connector according to claim 5, characterized in that: The fastener (33) includes a U-shaped through groove (331). The pressure rod (313) has a U-shaped through groove (331) inside. An arc plate (332) and an inclined rod (333) are provided inside the U-shaped through groove (331). A first round rod (334) and a second round rod (335) are respectively provided at both ends of the inclined rod (333).

7. The quick-release water pipe connector according to claim 6, characterized in that: One end of the U-shaped through groove (331) is connected to the groove (315).

8. The quick-release water pipe connector according to claim 7, characterized in that: A first spring (336) is provided between the second round rod (335) and the U-shaped through groove (331), a gear plate (337) is provided at the lower end of the second round rod (335), and a gear groove (338) is provided on the surface of the arc plate (332).

9. The quick-release water pipe connector according to claim 8, characterized in that: A water-stopping element (34) is provided between the male water pipe connector (1) and the female water pipe connector (2).

10. The quick-release water pipe connector according to claim 9, characterized in that: The water-stopping component (34) includes a fixed water outlet cylinder (341), the end of the male water pipe (1) is provided with a fixed water outlet cylinder (341), the end of the male water pipe (1) is provided with a rotating water outlet cylinder (342), the surface of the rotating water outlet cylinder (342) is provided with a guide groove (343), the inner wall of the connecting cylinder (21) is provided with a guide block (344), the inner wall of the connecting cylinder (21) is provided with a limit block (345), and the surface of the male water pipe (1) is provided with a limit groove (346).