Water pipe convenient to mount and dismount
By designing water pipes that are easy to install and disassemble, and using clamping blocks and adjusting components to unscrew valve covers without special tools, the problem of requiring special tools to unscrew valve covers for internal thread joints is solved. This enables rapid installation and self-cleaning of rust and impurities, improving the ease of operation and stability of municipal pipelines.
Patent Information
- Application Number
- CN202511436173.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-09
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2045-10-09
AI Technical Summary
The internal threaded joints of municipal pipelines require special tools to unscrew the valve cover before they can be connected, which increases the necessity of carrying tools and the preparation time for connection. Furthermore, the difficulty of disassembly due to corrosion increases physical exertion.
Design a water pipe that is easy to install and disassemble. It uses clamping blocks and adjustment components. The valve cover can be rotated by disassembling the pipe without the need for special tools to unscrew the valve cover. The water flow can also clean rust and impurities, improving the connection and fixing effect.
The valve cover can be quickly unscrewed without special tools, shortening the docking time, improving installation efficiency, reducing physical exertion, and cleaning rust and impurities with water flow, ensuring a stable connection and self-cleaning capability between the connector and the connecting pipe.
Smart Images

Figure CN120889971A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of water pipes, and more particularly to a water pipe that is easy to install and disassemble. Background Technology
[0002] In the field of municipal infrastructure construction and daily operation and maintenance, municipal pipelines such as fire hydrants and water supply network interfaces are key nodes for emergency water supply and daily water replenishment. Currently, in order to meet the needs of rapid installation and disassembly, the mainstream municipal pipelines on the market generally adopt the internal snap-fit joint structure. This type of joint achieves connection and fixation by adapting the internal snap-fit to the water pipe interface, which to a certain extent meets the basic disassembly and assembly needs.
[0003] However, in order to ensure the sealing and cleanliness of the inside of the joint, the internal snap-fit joint is usually equipped with a valve cover. When performing water pipe connection and water intake operations, workers must first use special tools such as Allen wrenches to unscrew the valve cover before they can carry out the subsequent water pipe connection operation. This process not only increases the necessity of carrying tools, but also prolongs the connection preparation time, making it inconvenient to use. Furthermore, municipal pipelines (especially outdoor fire hydrants and other facilities) often face long periods of inactivity. Affected by factors such as environmental humidity, air oxidation, and water stains, the mating groove of the internal threaded joint and the threaded groove on the inner wall of the joint are prone to accumulating a large amount of rust and impurities. These rust and impurities will adhere to the contact surface of the joint. When workers install water pipes and internal threaded joints, the water pipes and internal threaded joints will rotate relative to each other, causing the rust adhering to the contact surface of the joint to be hung off and stuck in the fitting gap between the water pipe interface and the internal threaded joint. This significantly increases the rotational resistance between the two, requiring workers to apply more external force to complete the disassembly, increasing physical exertion and making the operation inconvenient. Summary of the Invention
[0004] To overcome the disadvantages of needing to carry special tools to unscrew valve caps before connecting water pipes to municipal pipelines, which increases the necessity of carrying tools, prolongs the connection preparation time, and is inconvenient to use, this invention provides a water pipe that is easy to install and disassemble.
[0005] Technical solution: A water pipe that is easy to install and disassemble includes a water pipe; it also includes a connector for connecting to the water pipe; the connector has several first sliding grooves; each first sliding groove has a clamping block slidably connected to it; each clamping block is fixedly connected to the outer surface of the connector with several springs; a disassembly tube is connected inside the connector; several fixing blocks are fixedly connected to the outside of the disassembly tube; each fixing block is fixedly connected to the inner wall of the connector; an internal hexagonal hole is opened on the left side of the disassembly tube; a first adjusting component for adjusting the clamping blocks is connected to the connector; and a mating interface is provided inside the connector.
[0006] Furthermore, the first adjustment assembly includes a pressure roller connected to the clamping block; a pressure roller is fixedly connected to each clamping block; a rotating ring is rotatably connected to the outside of the coupling; a plurality of protrusions are provided on the rotating ring; a first handle is slidably connected to one of the protrusions; and a plurality of first pin holes are opened on the outside of the coupling.
[0007] Furthermore, each pressure roller is rotatably connected to a corresponding clamping block.
[0008] Furthermore, the connector and water pipe are detachably connected.
[0009] Furthermore, the clamping blocks are all provided with rough surfaces on the side facing the inside of the connector.
[0010] Furthermore, a sealing ring is provided on the outside of the interface.
[0011] Furthermore, several first through slots are provided on the right side of the disassembly tube.
[0012] Furthermore, it also includes a collar connected within the connector; the collar is fitted onto the right side of the disassembly tube; several second through slots are opened on the right side of the collar, communicating with the corresponding first through slots; a through hole is opened on the disassembly tube; a through slot is opened in one of the fixing blocks, communicating with the through hole; a connecting pipe is fixedly connected inside the connector, the connecting pipe having one inlet and two outlets; the inlet of the connecting pipe communicating with the through slot on the fixing block; the two outlets of the connecting pipe communicating with the second mating slot and the threaded slot respectively; a fixing rod is fixedly connected to the middle of the collar; a sealing block for sealing the through hole is fixedly connected to the fixing rod; a second adjusting assembly for rotating and adjusting the collar and the sealing block is connected to the mating head; a drainage groove is opened on the lower side of the connector, communicating with the second mating groove and the threaded slot.
[0013] Furthermore, the second adjustment component includes a rotating block and a second handle; a second sliding groove is provided on the outer side of the coupling; a rotating block is slidably connected to the second sliding groove, and the rotating block is fixedly connected to the collar; a second handle is fixedly connected to the rotating block; a sealing ring for sealing the second sliding groove is provided on the outer side of the collar; and several second pin holes are provided on the outer side of the coupling.
[0014] Furthermore, each of the first and second handles is fitted with a rubber sleeve on the outside.
[0015] Compared with the prior art, the present invention has the following advantages: the internal hexagonal hole on the disassembly pipe is fitted onto the hexagonal nut on the valve cover, and then the connector is rotated, thereby driving the valve cover to rotate through the disassembly pipe and unscrewing the valve cover. The valve cover can be unscrewed without special tools, shortening the docking time and improving the installation efficiency of the connector and water pipe. The clamping block clamps the outer surface of the valve cover, assisting the disassembly tube in rotating and unscrewing the valve cover. This solves the problem of stripped threads and difficulty in unscrewing the valve cover caused by the mismatch between the outer surface of the hexagonal nut and the inner surface of the internal hexagonal hole due to corrosion. After the butt joint and the butt pipe are connected, the butt pipe is clamped and fixed by the clamping block, which improves the fixing effect after the butt joint and the butt pipe are connected. At the same time, the clamping block abuts against the left side of the outer ring. When the butt joint is under pressure and tends to detach from the butt pipe, the outer ring can also abut against the clamping block to prevent the butt joint from detaching to the right, which further improves the fixing effect after the butt joint and the butt pipe are connected. The collar is rotated by the second adjustment component, thereby blocking the first through groove. This allows water to flow into the first mating groove, the second mating groove, and the threaded groove, cleaning the first mating groove and the threaded groove to prevent the accumulation of rust and impurities, which could affect the installation and disassembly of the connector. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the three-dimensional structure of the water pipe for easy installation and disassembly according to the present invention; Figure 2 This is a diagram showing the connection status of the water pipe and connector of the present invention with a fire hydrant; Figure 3 This is a three-dimensional structural diagram of the connecting pipe of the present invention; Figure 4 This is a cross-sectional view of the connector of the present invention; Figure 5 This is a three-dimensional structural diagram of the combined connector, clamping block, spring, pressure roller, rotating ring and protrusion of the present invention. Figure 6 This is a diagram showing the contact state between the pressure roller and the protrusion in this invention; Figure 7 This is a diagram showing the docking state of the connector and valve cover of the present invention; Figure 8 This is a diagram showing the docking state of the connector and the connecting pipe of the present invention; Figure 9 This is a three-dimensional structural diagram of the disassembly tube and collar combination of the present invention.
[0017] In the attached diagrams: 1-Connecting pipe, 1001-First mating groove, 1002-First snap-fit, 1003-Threaded groove, 1004-Outer ring, 1005-Valve cover, 1006-First locking block, 2-Water pipe, 101-Connecting joint, 10101-Second mating groove, 10102-Second snap-fit, 10103-Drain groove, 10104-First sliding groove, 10105-First pin hole, 10106-Second pin hole, 10107-Second sliding groove, 10108-Matching interface, 10 109-Second clamping block, 102-Clamping block, 103-Spring, 104-Pressure roller, 105-Rotating ring, 106-Protrusion, 107-First handle, 108-Disassembly tube, 10801-Internal hexagonal hole, 10802-First through groove, 10803-Through hole, 109-Fixing block, 201-Collar ring, 20101-Second through groove, 20102-Sealing ring, 202-Connecting tube, 203-Rotating block, 204-Second handle, 205-Fixing rod, 206-Sealing block. Detailed Implementation
[0018] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0019] Example 1: A water pipe that is easy to install and disassemble, such as Figures 1-9 As shown, it includes water pipe 2; It also includes a connector 101, a clamping block 102, a spring 103, a disassembly tube 108, a fixing block 109, and a first adjusting assembly; the connector 101 is connected to the water pipe 2; the connector 101 has six first sliding grooves 10104 arranged in a ring array; each first sliding groove 10104 is slidably connected to a clamping block 102; each clamping block 102 is fixedly connected to the outer surface of the connector 101 with two springs 103; the disassembly tube 108 is connected inside the connector 101; four fixing blocks 109 are fixedly connected to the outside of the disassembly tube 108; each fixing block 109 is fixedly connected to the inner wall of the connector 101; the disassembly tube 108 has an internal hexagonal hole 10801 on its left side; the first adjusting assembly is connected to the connector 101; the connector 101 has a mating interface 10108 inside the connector 101.
[0020] The connecting pipe 1 has a first mating groove 1001, and is provided with two first snap fasteners 1002 and two first locking blocks 1006; the connecting joint 101 is provided with a second mating groove 10101, two second snap fasteners 10102 and two second locking blocks 10109 corresponding to the structure of the connecting pipe 1. An outer ring 1004 is provided on the outer side of the connecting pipe 1, and threads are provided on the outer side of the connecting pipe 1. The valve cover 1005 is threadedly connected to the connecting pipe 1. When the connecting pipe 1 and the connecting joint 101 are mated, the threads of the connecting joint 101 and the connecting pipe 1 do not contact each other. This threaded area constitutes the... Figure 8 The threaded groove 1003 is shown; the interface 10108 is clearance-fitted with the inner wall of the connecting pipe 1.
[0021] In this embodiment, firstly as follows Figure 3 As shown: When it is necessary to connect the connector 101 and the connecting pipe 1, insert the second buckle 10102 on the connector 101 into the first docking groove 1001. At this time, the first buckle 1002 will also enter the second docking groove 10101. Then rotate the connector 101 to rotate the second buckle 10102 to the left side of the corresponding first locking block 1006. At this time, the first buckle 1002 will also rotate to the right side of the corresponding second locking block 10109, and then the second buckle 10102 will be inserted into the first docking groove 1001 and the second docking groove 10101, thus completing the connection between the connector 101 and the connecting pipe 1. After the connector 101 and the connecting pipe 1 are connected, the interface 10108 will be inserted into the connecting pipe 1, thus connecting the connecting pipe 1 and the connector 101. Then, water intake can be carried out.
[0022] It should be noted that, to ensure the sealing and cleanliness of the joint's interior, connecting pipe 1 is typically equipped with a valve cover 1005. When connecting water pipe 2 for water intake, workers must first use specialized tools such as an Allen wrench to unscrew the valve cover 1005 before proceeding with the subsequent water pipe 2 connection operation. This process not only increases the necessity of carrying tools but also prolongs the connection preparation time, making it inconvenient to use. Therefore, if... Figure 6 and Figure 7 As shown: The worker can first put the connector 101 onto the valve cover 1005, put the internal hexagonal hole 10801 on the disassembly pipe 108 onto the hexagonal nut on the valve cover 1005, and then rotate the connector 101, thereby driving the valve cover 1005 to rotate through the disassembly pipe 108, and unscrew the valve cover 1005. The valve cover 1005 can be unscrewed without the need for additional tools, which shortens the docking time and improves the installation efficiency of the connector 101 and the water pipe 2.
[0023] Furthermore, considering that the valve cover 1005 is exposed to the outside environment for a long time, and is affected by environmental humidity, air oxidation, etc., the outer surface of the hexagonal nut is prone to rust during the process of wind and sun exposure. This causes the outer surface of the hexagonal nut to mismatch with the inner surface of the internal hexagonal hole 10801, resulting in stripping of the threads when the worker unscrews the valve cover 1005. Therefore, before putting the connector 101 on the valve cover 1005, the clamping block 102 is moved in the opposite direction (i.e., outward) of the central axis direction of the connector 101 by the first adjusting component. Move it to retract it, preventing its end from protruding and affecting subsequent installation. Then, put the connector 101 on the valve cover 1005. Next, release the pressure on the clamping block 102 through the first adjustment component. At this time, the spring 103 retracts and resets, thereby driving the clamping block 102 to move and reset inward to the connector 101. Then, during the process of the worker unscrewing the valve cover 1005, the clamping block 102 clamps the outer surface of the valve cover 1005, assisting the disassembly tube 108 to rotate and unscrew the valve cover 1005. This solves the problem that the outer surface of the hexagonal nut is prone to corrosion, which causes the outer surface of the hexagonal nut to mismatch with the inner surface of the internal hexagonal hole 10801, resulting in stripping when the worker unscrews the valve cover 1005, making it difficult to unscrew the valve cover 1005.
[0024] Furthermore, after the worker unscrews the valve cover 1005, the worker again uses the first adjusting component to press the clamping block 102 outwards towards the connector 101 to prevent the clamping block 102 from protruding from the inside of the connector 101 and affecting subsequent installation and docking. Then, the connector 101 is connected to the connector tube 1, and then... Figure 8 As shown: At this time, the clamping block 102 moves to the left side of the outer ring 1004. Therefore, after the worker releases the pressure on the clamping block 102 through the first adjustment component, the spring 103 contracts and resets, thereby driving the clamping block 102 to move and reset to the inside of the connector 101. Then, the clamping block 102 clamps and fixes the connector 1, sharing the load borne by the first buckle 1002 and the second buckle 10102, improving the fixing effect after the connector 101 and the connector 1 are connected. Moreover, the clamping block 102 abuts against the left side of the outer ring 1004. When the connector 101 is pressed to the right and disengages from the connector 1, the outer ring 1004 can also abut against the clamping block 102 to prevent the connector 101 from disengaging to the right, further improving the fixing effect after the connector 101 and the connector 1 are connected.
[0025] In some optional implementations of this embodiment, such as Figures 4-7As shown, the first adjustment assembly includes a pressure roller 104, a rotating ring 105, a protrusion 106, and a first handle 107; a pressure roller 104 is fixedly connected to each clamping block 102; a rotating ring 105 is rotatably connected to the outside of the coupling 101; six protrusions 106 are arranged in a circular array on the rotating ring 105; a first handle 107 is slidably connected to one of the protrusions 106; two first pin holes 10105 are opened on the outside of the coupling 101. In the initial state, the first handle 107 is inserted into the first pin hole 10105 on the front side. At this time, the pressure roller 104 is in contact with the outer surface of the rotating ring 105, and the clamping block 102 is located inside the coupling 101.
[0026] In this embodiment, the specific working principle of the first adjustment component is as follows: In the initial state, the first handle 107 is inserted into the first pin hole 10105 on the front side. At this time, the pressure roller 104 is in contact with the outer surface of the rotating ring 105, and the clamping block 102 is located inside the connector 101. The worker pulls the first handle 107 out of the first pin hole 10105 on the front side. Then, with the reference from right to left, the worker holds the first handle 107 and rotates the rotating ring 105 and the protrusion 106 clockwise by 30°, and inserts the first handle 107 into the first pin hole 10105 on the upper side. During this process, the protrusion 106 will squeeze the pressure roller 104, thereby squeezing the clamping block 102. When the first handle 107 is inserted into the first pin hole 10105 on the upper side, the pressure roller 104 contacts the outer surface of the protrusion 106. The worker pulls the first handle 107 out of the first pin hole 10105 on the upper side, and then, with the reference from right to left, holds the first handle 107 and rotates the rotating ring 105 and the protrusion 106 counterclockwise by 30°. The first handle 107 is then inserted into the first pin hole 10105 on the front side. At this time, the protrusion 106 releases the pressure on the pressure roller 104, the spring 103 contracts and resets, and then drives the clamping block 102 to move and reset towards the inside of the connector 101.
[0027] Furthermore, when the first handle 107 is inserted into the first pin hole 10105, the worker can hold the first handle 107 and use it to rotate the connector 101 during the installation and disassembly of the connector 101, making the installation and disassembly of the connector 101 easier for the worker.
[0028] In a further preferred embodiment of the present invention, such as Figure 5 As shown, each pressure roller 104 is rotatably connected to the corresponding clamping block 102.
[0029] In this embodiment, when the protrusion 106 squeezes the pressure roller 104, the pressure roller 104 will rotate relative to the protrusion 106, which reduces the rotational resistance and makes it easier for the worker to rotate and adjust the rotating ring 105. At the same time, it reduces the wear of the pressure roller 104 and the protrusion 106, and improves the service life of the rotating ring 105 and the pressure roller 104.
[0030] In a further preferred embodiment of the present invention, such as Figure 1 and Figure 2 As shown, the connector 101 is detachably connected to the water pipe 2.
[0031] In this embodiment, the worker can first remove the connector 101, then unscrew the valve cover 1005 through the connector 101, then connect the connector 101 to the connector pipe 1, and then reinstall the water pipe 2 onto the connector 101, making the installation of the connector 101 more flexible and convenient.
[0032] In a further preferred embodiment of the present invention, such as Figures 5-8 As shown, the clamping block 102 has a rough surface on the side facing the inside of the connector 101.
[0033] In this embodiment, after the clamping block 102 clamps the outer surface of the valve cover 1005, the friction between the clamping block 102 and the outer surface of the valve cover 1005 is increased, making it easier for workers to unscrew the valve cover 1005 through the connector 101.
[0034] In a further preferred embodiment of the present invention, such as Figure 4 As shown, a sealing ring is provided on the outside of interface 10108.
[0035] In this embodiment, after inserting the connector 1 into the connector 10108, the sealing performance of the connector 10108 is improved.
[0036] Example 2: Based on Example 1, such as Figures 5-9 As shown, two first through slots 10802 are provided on the right side of the disassembly tube 108.
[0037] In this example, when water flows through the connector 101, the water entering the internal hexagonal hole 10801 can flow into the water pipe 2 through the first through groove 10802, thus preventing the internal hexagonal hole 10801 from being continuously impacted by the water flow, which would cause the connector 101 to continuously generate a rightward impact force, increasing the stress load on the second buckle 10102 and the clamping block 102.
[0038] In a further preferred embodiment of the present invention, such as Figure 2 and Figures 5-9As shown, it also includes a collar 201, a connecting pipe 202, a fixing rod 205, a sealing block 206, and a second adjusting assembly; the collar 201 is rotatably connected inside the connector 101; the collar 201 is sleeved on the right side of the disassembly pipe 108; two second through slots 20101 are opened on the right side of the collar 201; a through hole 10803 is opened on the disassembly pipe 108; a through groove is opened in the fixing block 109 located on the upper side, and the through groove communicates with the through hole 10803; the connecting pipe 202 is fixedly connected inside the connector 101, and the connecting pipe 202 has a... One inlet and two outlets; the inlet of the connecting pipe 202 is connected to the through groove on the fixing block 109; the two outlets on the connecting pipe 202 are respectively connected to the second mating groove 10101 and the threaded groove 1003; a fixing rod 205 is fixedly connected to the middle of the collar 201; a sealing block 206 is fixedly connected to the fixing rod 205; a second adjusting component is connected to the connector 101; a drainage groove 10103 is opened on the lower side of the connector 101, and the drainage groove 10103 is connected to the second mating groove 10101 and the threaded groove 1003.
[0039] In this embodiment, considering that municipal pipelines (especially outdoor fire hydrants and other facilities) often face long periods of inactivity, and are affected by factors such as environmental humidity, air oxidation, and water residue, the first mating groove 1001 and threaded groove 1003 are prone to rust and impurities. Over time, the rust and impurities accumulate, causing the second clip 10102 to come into contact with the rust and get stuck on the contact surface between the second clip 10102 and the first mating groove 1001 during subsequent installation and disassembly of the connector 101 and the connecting pipe 1. This significantly increases the rotational resistance of both, requiring workers to apply greater external force to complete the installation and disassembly, increasing physical exertion and making operation inconvenient. Therefore, if Figures 5-9As shown: In the initial state, the first through groove 10802 is connected to the corresponding second through groove 20101, and the sealing block 206 seals the through hole 10803. Therefore, during the water intake operation, water can flow through the first through groove 10802 into the water pipe 2. After the water intake operation is completed, the worker can rotate the collar 201 through the second adjusting component to make the second through groove 20101 and the first through groove 10802 misaligned, thereby blocking the first through groove 10802. After the collar 201 is rotated, the sealing block 206 will also release the seal on the through hole 10803. Then, the water flowing into the disassembly pipe 108 will enter the connecting pipe 202 through the through hole 10803 and the through hole in the uppermost fixing block 109, and then enter the first mating groove 1001, the second mating groove 10101 and the threaded groove 1003, thereby sealing the first mating groove 1001 and the threaded groove 1003. The water washes away the rust and impurities, as well as the rust stuck on the contact surface between the second clip 10102 and the first mating groove 1001. Then, the water flow and the washed-down rust and impurities are discharged from the drain trough 10103 to clean the first mating groove 1001 and the threaded groove 1003, thus preventing the accumulation of too much rust and impurities on the first mating groove 1001 and the threaded groove 1003, which would affect the subsequent disassembly of the connector 101. In addition, this method directly uses the water flow from the connector 1 to clean the first mating groove 1001, the second mating groove 10101 and the threaded groove 1003, giving the connector 1 a self-cleaning ability without the need for additional water receiving equipment. After the connector 1 is cleaned, the worker removes the connector 101, wipes the residual water stains on the surface of the connector 1 with a cloth, and then reinstalls the valve cover 1005 on the connector 1 to seal and protect the connector 1.
[0040] In some optional implementations of this embodiment, such as Figures 5-8 As shown, the second adjustment component includes a rotating block 203 and a second handle 204; a second sliding groove 10107 is provided on the outer side of the connector 101; the rotating block 203 is slidably connected to the second sliding groove 10107, and the rotating block 203 is fixedly connected to the collar 201; the second handle 204 is fixedly connected to the rotating block 203; a sealing ring 20102 is provided on the outer side of the collar 201; two second pin holes 10106 are provided on the outer side of the connector 101. In the initial state, the second handle 204 is inserted into the upper second pin hole 10106. At this time, the first through groove 10802 is connected to the corresponding second through groove 20101, the sealing block 206 blocks the through hole 10803, and the sealing ring 20102 blocks the second sliding groove 10107.
[0041] In this embodiment, the specific working principle of the second adjustment component is as follows: In the initial state, the second handle 204 is inserted into the upper second pin hole 10106. At this time, the first through groove 10802 is connected to the corresponding second through groove 20101. The sealing block 206 blocks the through hole 10803, and the sealing ring 20102 blocks the second sliding groove 10107. When the worker needs to clean the rust and impurities on the first mating groove 1001 and the threaded groove 1003, the worker pulls the second handle 204 out of the upper second pin hole 10106. Then, with a reference from right to left, the worker holds the second handle 204 to move the collar 201 and the rotating block 203. Rotate clockwise 45° and insert the second handle 204 into the second pin hole 10106 on the rear side. At this time, the second through groove 20101 is misaligned with the first through groove 10802. Then, the first through groove 10802 is blocked by the collar 201. After cleaning the rust and impurities, the worker pulls the second handle 204 out of the second pin hole 10106 on the rear side. Then, with the reference from right to left, hold the second handle 204 and rotate the collar 201 and the rotating block 203 counterclockwise 45°. Insert the second handle 204 into the second pin hole 10106 on the upper side. Then, the second through groove 20101 and the first through groove 10802 are reconnected.
[0042] In a further preferred embodiment of the present invention, such as Figure 5 As shown, each of the first handle 107 and the second handle 204 is provided with a rubber sleeve on the outside.
[0043] In this embodiment, the rubber sleeves provided on the outer sides of both the first handle 107 and the second handle 204 improve the frictional resistance and comfort when workers hold the first handle 107 and the second handle 204, so that they can hold the handle stably even when their hands are wet and sweaty, and avoid operational errors caused by the handle slipping.
[0044] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in the present invention should be included within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope of the claims.
Claims
1. A water pipe that is easy to install and disassemble, comprising a water pipe (2); characterized in that: It also includes a connector (101) connected to the water pipe (2); the connector (101) has several first sliding grooves (10104); each first sliding groove (10104) is slidably connected to a clamping block (102); each clamping block (102) is fixedly connected to the outer surface of the connector (101) with several springs (103); a disassembly tube (108) is connected inside the connector (101); several fixing blocks (109) are fixedly connected to the outside of the disassembly tube (108); each fixing block (109) is fixedly connected to the inner wall of the connector (101); an internal hexagonal hole (10801) is opened on the left side of the disassembly tube (108); a first adjusting component for adjusting the clamping block (102) is connected to the connector (101); and a matching interface (10108) is provided inside the connector (101).
2. A water pipe that is easy to install and disassemble according to claim 1, characterized in that: The first adjustment assembly includes a pressure roller (104) connected to a clamping block (102); a pressure roller (104) is fixedly connected to each clamping block (102); a rotating ring (105) is rotatably connected to the outside of the coupling (101); a plurality of protrusions (106) are provided on the rotating ring (105); a first handle (107) is slidably connected to one of the protrusions (106); a plurality of first pin holes (10105) are opened on the outside of the coupling (101).
3. A water pipe that is easy to install and disassemble according to claim 2, characterized in that: Each pressure roller (104) is rotatably connected to the corresponding clamping block (102).
4. A water pipe that is easy to install and disassemble according to claim 1, characterized in that: The connector (101) is detachably connected to the water pipe (2).
5. A water pipe that is easy to install and disassemble according to claim 4, characterized in that: The clamping block (102) has a rough surface on the side facing the inside of the connector (101).
6. A water pipe that is easy to install and disassemble according to claim 1, characterized in that: A sealing ring is provided on the outside of the interface (10108).
7. A water pipe that is easy to install and disassemble according to claim 1, characterized in that: Several first through slots (10802) are provided on the right side of the disassembly tube (108).
8. A water pipe that is easy to install and disassemble according to claim 7, characterized in that: It also includes a collar (201) connected inside the connector (101); the collar (201) is fitted on the right side of the disassembly pipe (108); the right side of the collar (201) has several second through grooves (20101) that communicate with the corresponding first through grooves (10802); the disassembly pipe (108) has through holes (10803); one of the fixing blocks (109) has a through groove that communicates with the through hole (10803); a connecting pipe (202) is fixed inside the connector (101), the connecting pipe (202) has one inlet and two outlets; the inlet of the connecting pipe (202) is connected to the fixing block (10802) 9) The through groove is connected; the two outlets on the connecting pipe (202) are connected to the second docking groove (10101) and the threaded groove (1003) respectively; a fixing rod (205) is fixedly connected to the middle of the collar (201); a sealing block (206) for sealing the through hole (10803) is fixedly connected to the fixing rod (205); a second adjusting component for rotating and adjusting the collar (201) and the sealing block (206) is connected to the joint (101); a drainage groove (10103) is opened on the lower side of the joint (101), and the drainage groove (10103) is connected to the second docking groove (10101) and the threaded groove (1003).
9. A water pipe that is easy to install and disassemble according to claim 8, characterized in that: The second adjustment assembly includes a rotating block (203) and a second handle (204); a second groove (10107) is provided on the outer side of the connector (101); the rotating block (203) is slidably connected to the second groove (10107), and the rotating block (203) is fixedly connected to the collar (201); the second handle (204) is fixedly connected to the rotating block (203); a sealing ring (20102) for sealing the second groove (10107) is provided on the outer side of the collar (201); a plurality of second pin holes (10106) are provided on the outer side of the connector (101).
10. A water pipe that is easy to install and disassemble according to claim 9, characterized in that: Each of the first handle (107) and the second handle (204) is fitted with a rubber sleeve on the outside.
Citation Information
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