A pipe connector for ease of positioning

The pipe connector, with its multi-structure design, utilizes magnetic adsorption, flexible hoses, and rubber blocks to solve the problem of poor adaptability of traditional connectors, enabling flexible adjustment and precise positioning, and improving the accuracy and reliability of the connection.

CN224414611UActive Publication Date: 2026-06-26VOGLASS DC SHANGCENG ZHUANGSHI (BEIJING) LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
VOGLASS DC SHANGCENG ZHUANGSHI (BEIJING) LTD
Filing Date
2025-09-02
Publication Date
2026-06-26

AI Technical Summary

Technical Problem

Traditional pipe connectors are not easily adapted to the needs of different working scenarios, resulting in poor connection flexibility, difficulty in precise connection positioning, and impact on the accuracy and reliability of the connection.

Method used

It adopts a multi-structure design including fixing components, adjustment components, positioning devices and locking devices. Through the cooperation of magnetic adsorption, telescopic hoses and rubber blocks, the connector can be flexibly adjusted, accurately positioned and locked.

Benefits of technology

It improves the flexibility, accuracy and reliability of connectors, ensuring stable connections in different working scenarios.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224414611U_ABST
    Figure CN224414611U_ABST
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Abstract

The utility model relates to the technical field of connector discloses a pipeline connector convenient to position, including first connector and second connector, first connector one side wall and second connector other side wall's center place all are equipped with first circular slot, two first circular slot inside center place all are equipped with the pipe body, second connector upper end face center leans one side place and is equipped with adjusting device, adjusting device includes fixed assembly and adjusting assembly, fixed assembly includes first annular groove, first annular groove one inner side wall center place is equipped with first magnetic block, second connector one side wall center place is equipped with first electromagnet, first electromagnet and first annular groove between the sleeve connection, second connector upper end face center leans one side place and is equipped with first control knob. In the utility model, through adjusting device makes it meet the demand of adapting to different working scenes, thereby improved the flexibility of connection.
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Description

Technical Field

[0001] This utility model relates to the field of connector technology, and in particular to a pipe connector that is easy to position. Background Technology

[0002] Pipe connectors are critical components used to connect pipes or pipes to other equipment, ensuring that piping systems can transmit power safely and reliably. Pipe connectors are widely used in various industries, including oil and gas, chemical, water treatment, construction, heating and ventilation, etc.

[0003] Traditional pipe connectors, when used, are not easily adapted to different working scenarios, which can lead to mismatches and reduced flexibility. Furthermore, it is difficult for operators to accurately position the connection between the connector and the pipe body, which can easily cause errors that affect the connectivity and reduce the accuracy and reliability of the connection. Therefore, those skilled in the art have provided a pipe connector that is easy to position to solve the problems mentioned in the background art. Utility Model Content

[0004] The purpose of this invention is to address the shortcomings of existing technologies by proposing a pipe connector that is easy to position. Through an adjustment device, it can adapt to the needs of different working scenarios, thereby improving the flexibility of the connection.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a pipe connector that is easy to position, comprising a first connector and a second connector, wherein the second connector is disposed at the center of one side of the first connector, and a first circular groove is provided at the center of one side wall of the first connector and the other side wall of the second connector, wherein a pipe body is fitted at the center of the two first circular grooves, and an adjustment device is provided at one side of the center of the upper end face of the second connector.

[0006] The adjustment device includes a fixing component and an adjustment component. The fixing component is located at the lower center of one side wall of the second connector, and the adjustment component is located at the upper center of one side wall of the second connector.

[0007] The fixing component includes a first annular groove, which is located at the upper center of the other side wall of the first connector. A first magnetic block is provided at the center of an inner side wall of the first annular groove, and a first electromagnet is provided at the center of one side wall of the second connector. The first electromagnet is sleeved and connected to the first annular groove, and is attracted to the first magnetic block. A first control button is provided at the center of the upper end face of the second connector.

[0008] Through the above technical solution, the first electromagnet is connected to the first annular groove, and the operator presses the first control button to control the first electromagnet to attract the first magnetic block, thus satisfying the fixation between the first connector and the second connector, and also satisfying the requirement to adjust it according to different scenario needs.

[0009] Furthermore, a second circular groove is provided at the center of the other side wall of the first connector and the center of the other side wall of the second connector. The two second circular grooves pass through the first connector and the second connector respectively and are arranged corresponding to each other. A telescopic hose is provided at the center between the two second circular grooves.

[0010] The above technical solution enables the telescopic hose to extend and retract via the first and second connectors, and the angle of the telescopic hose can be adjusted to meet the requirements of different working scenarios, thereby improving the flexibility of the connection.

[0011] Furthermore, positioning devices are provided at the center of the inner wall of the first connector on one side and at the center of the inner wall of the second connector on one side. The two positioning devices include four second annular grooves. The four second annular grooves are respectively located at the inner walls of the first connector and the second connector and at the center of the outer walls of the two tubes. A first rubber block is provided at the center of the inner wall of the two second annular grooves on the outer side. A second electromagnet is provided at the center of the lower end face of the two first rubber blocks. A circular block is provided at the center of both sides of the two second electromagnets. The four circular blocks are inclined annular blocks. The two second electromagnets and the four circular blocks are respectively sleeved and connected to the two second annular grooves on the inner side. A second magnetic block is provided at the center of the lower inner wall of the two second annular grooves on the inner side. The two second magnetic blocks are attracted to each other with the two second electromagnets respectively. A second control button is provided at the center of the upper end face of the first connector on one side and at the center of the upper end face of the second connector on the other side.

[0012] The above technical solution facilitates the movement of the tube body by using the inclined annular block. The elastic force of the first rubber block causes the annular block and the second electromagnet to be fitted inside the second annular groove, which facilitates the connection and positioning of the first connector, the second connector and the tube body by the operator. Pressing the second control button causes the second electromagnet and the second magnetic block to attract each other, which satisfies the precise positioning of the first connector, the second connector and the tube body, reduces human error, and improves the accuracy and reliability of the connection.

[0013] Furthermore, locking devices are provided at one side of the center of the outer wall of the first connector and at the other side of the center of the outer wall of the second connector. The two locking devices include six first annular grooves, which are arranged in a rectangular pattern at one side of the outer wall of the tube and at the other side of the outer wall of the tube. A second rubber block is provided at the front end of the center of the lower inner wall of each of the six first annular grooves. A limiting block is provided at the center of the upper end face of each of the six second rubber blocks, and the two blocks are fixedly connected to the front end of the lower end face of the six limiting blocks. A second annular groove is provided at one side of the center of the inner wall of the first connector and at the other side of the center of the inner wall of the second connector. Three fixing blocks are arranged in a circular pattern at the center of the inner wall of each of the two second annular grooves. A slot is provided at the center of the front end face of each of the six fixing blocks, and the six slots are respectively sleeved and connected to the six limiting blocks.

[0014] The above technical solution involves pressing the limiting block to fit it inside the first annular groove, then using the sleeve between the tube body and the first and second connectors, and leveraging the elasticity of the second rubber block to ensure the limiting block fits inside the second annular groove. Rotating the tube body further rotates the limiting block, securing it inside the slot. This solution effectively limits the movement of the limiting block and locks the tube body, preventing displacement of the first and second connectors during operation and thus improving the connection's robustness.

[0015] Furthermore, a sealing ring is provided at the center of the inner wall of the first circular groove on one side and at the center of the inner wall of the first circular groove on the other side;

[0016] The above technical solution ensures the sealing performance of the connection by using a sealing ring, thus guaranteeing the normal operation of the pipe body.

[0017] This utility model has the following beneficial effects:

[0018] 1. In this utility model, when using the pipe connector that is easy to position, the operator presses the first control button to control the first electromagnet to attract the first magnetic block, which satisfies the need to fix the first connector and the second connector. Then, the angle is adjusted by the telescopic hose, which satisfies the need to drive the first connector and the second connector to adjust their angles, and meets the needs of different working scenarios, thereby improving the flexibility of the connection.

[0019] 2. In this utility model, the circular block of the inclined annular block facilitates the movement of the tube body. Then, under the elastic force of the first rubber block, the circular block and the second electromagnet are fitted into the second annular groove, which facilitates the operator's connection and positioning between the first connector, the second connector and the tube body. Then, by pressing the second control button, the second electromagnet and the second magnetic block are attracted to each other, which satisfies the precise positioning between the first connector, the second connector and the tube body, reduces human operation error, and improves the accuracy and reliability of the connection.

[0020] 3. In this utility model, by pressing the limiting block, the limiting block is fitted inside the first annular groove. Then, through the fitting between the tube body and the first and second connectors, and through the elastic properties of the second rubber block, the limiting block can be driven to fit inside the second annular groove. Then, by rotating the tube body, the limiting block is rotated, so that the limiting block fits inside the slot. This satisfies the limiting of the limiting block and the locking of the tube body, preventing the first and second connectors from shifting during operation and affecting the connection, thereby improving the connection's firmness. Attached Figure Description

[0021] Figure 1 A perspective view of a pipe connector that is easy to position according to this utility model;

[0022] Figure 2 This is a front sectional view of a pipe connector that is easy to position according to the present invention.

[0023] Figure 3 This is a side sectional view of a pipe connector that is easy to position according to the present invention.

[0024] Figure 4 for Figure 2 Enlarged view of point A in the middle;

[0025] Figure 5 for Figure 3 Enlarged diagram of point B in the middle.

[0026] Legend:

[0027] 1. First connector; 2. Second connector; 3. First circular groove; 4. Tube body; 5. Adjustment device; 501. First annular groove; 502. First electromagnet; 503. First magnetic block; 504. Second circular groove; 505. Telescopic flexible hose; 506. First control button; 6. Positioning device; 601. Second annular groove; 602. First rubber block; 603. Second electromagnet; 604. Circular block; 605. Second magnetic block; 606. Second control button; 7. Locking device; 701. First annular groove; 702. Second rubber block; 703. Limiting block; 704. Second annular groove; 705. Fixing block; 706. Slot; 8. Sealing ring. Detailed Implementation

[0028] 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.

[0029] Reference Figure 1-5 This utility model provides an embodiment of a pipe connector that is easy to position, including a first connector 1 and a second connector 2. The second connector 2 is located at the center of one side of the first connector 1. A first circular groove 3 is provided at the center of one side wall of the first connector 1 and the other side wall of the second connector 2. A pipe body 4 is fitted inside the center of each of the two first circular grooves 3. An adjustment device 5 is provided at one side of the center of the upper end face of the second connector 2. The adjustment device 5 includes a fixing component and an adjustment component. The fixing component is located at the lower center of one side wall of the second connector 2, and the adjustment component is located at the upper center of one side wall of the second connector 2. A sealing ring 8 is provided at the center of the other inner side wall of the first circular groove 3 on one side and at the center of the inner side wall of the first circular groove 3 on the other side. The sealing ring 8 ensures the connection sealing and the normal operation of the pipe body 4.

[0030] Positioning devices 6 are provided at the center of the inner wall of the first connector 1 on one side and at the center of the inner wall of the second connector 2 on one side. Each positioning device 6 includes four second annular grooves 601, located on the inner walls of the first connector 1 and the second connector 2, and at the center of the outer walls of the two tube bodies 4, respectively. A first rubber block 602 is provided at the center of the inner wall of each of the two outer second annular grooves 601. A second electromagnet 603 is provided at the center of the lower end face of each of the two first rubber blocks 602. A circular ring block 604 is provided at the center of both sides of each of the two second electromagnets 603. The four circular ring blocks 604 are inclined annular blocks. The two second electromagnets 603 and the four circular ring blocks 604 are respectively sleeved and connected to the two inner second annular grooves 601. A second electromagnet is provided at the center of the lower inner wall of each of the two inner second annular grooves 601. Block 605, two second magnetic blocks 605 are respectively attracted to two second electromagnets 603. A second control button 606 is provided on one side of the upper end face of the first connector 1 and on the other side of the upper end face of the second connector 2. The circular block 604 of the inclined annular block facilitates the movement of the tube body 4. Under the elastic force of the first rubber block 602, the circular block 604 and the second electromagnet 603 are fitted into the second annular groove 601, which facilitates the connection and positioning of the first connector 1, the second connector 2 and the tube body 4 by the operator. Pressing the second control button 606 causes the second electromagnet 603 and the second magnetic block 605 to attract to each other, which satisfies the precise positioning of the first connector 1, the second connector 2 and the tube body 4, reduces human operation error and improves the accuracy and reliability of the connection.

[0031] Locking devices 7 are provided at one side of the outer wall center of the first connector 1 and at the other side of the outer wall center of the second connector 2. Each locking device 7 includes six first annular grooves 701, arranged in a rectangular pattern at the other side of the outer wall center of one tube body 4 and at the other side of the outer wall center of the other tube body 4. A second rubber block 702 is provided at the front end of the lower inner wall center of each of the six first annular grooves 701. A limiting block 703 is provided at the center of the upper end face of each of the six second rubber blocks 702, and is fixedly connected to the front end of the lower end face center of each of the six limiting blocks 703. A second annular groove 704 is provided at one side of the inner wall center of the first connector 1 and at the other side of the inner wall center of the second connector 2. Three fixing blocks are arranged in a circular pattern at the center of the inner wall of each of the two second annular grooves 704. 705. Each of the six fixing blocks 705 has a slot 706 at the center of its front end face. The six slots 706 are respectively connected to the six limiting blocks 703. By pressing the limiting blocks 703, the limiting blocks 703 are fitted into the first annular groove 701. Then, through the fitting between the tube body 4 and the first connector 1 and the second connector 2, and through the elasticity of the second rubber block 702, the limiting blocks 703 can be fitted into the second annular groove 704. Then, by rotating the tube body 4, the limiting blocks 703 are rotated, so that the limiting blocks 703 are fitted into the slots 706, which satisfies the limiting of the limiting blocks 703 and the locking of the tube body 4. This prevents the first connector 1 and the second connector 2 from shifting during operation, thus improving the connection's firmness.

[0032] like Figure 2 As shown, the fixing component includes a first annular groove 501, which is located at the upper center of the other side wall of the first connector 1. A first magnet 503 is located at the center of an inner side wall of the first annular groove 501, and a first electromagnet 502 is located at the center of one side wall of the second connector 2. The first electromagnet 502 is sleeved and connected to the first annular groove 501, and is attracted to the first magnet 503. A first control button 506 is located at the center of the upper surface of the second connector 2. By sleeved and connected between the first electromagnet 502 and the first annular groove 501, and by pressing the first control button 506, the first electromagnet 502 can be controlled to attract the first magnet 503, thus satisfying the fixing of the first connector 1 and the second connector 2, and also satisfying the requirement of adjustment according to different scenarios.

[0033] A second circular groove 504 is provided at the center of the other side wall of the first connector 1 and the center of the center of the first connector 2. The two second circular grooves 504 pass through the first connector 1 and the second connector 2 respectively and are arranged correspondingly to each other. A telescopic hose 505 is provided at the center between the two second circular grooves 504. The first connector 1 and the second connector 2 drive the telescopic hose 505 to extend and retract. The telescopic hose 505 can also be used to adjust the angle of the first connector 1 and the second connector 2, so that it can adapt to the needs of different working scenarios, thereby improving the flexibility of the connection.

[0034] Working principle: When using the pipe connector for easy positioning, the circular block 604 of the inclined annular block facilitates the movement of the pipe body 4, and the sealing ring 8 ensures a tight connection. Under the elastic force of the first rubber block 602, the circular block 604 and the second electromagnet 603 are fitted into the second annular groove 601, which facilitates the operator's positioning of the connection between the first connector 1, the second connector 2, and the pipe body 4. Pressing the second control button 606 causes the second electromagnet 603 and the second magnetic block 605 to attract each other, which satisfies the precise positioning between the first connector 1, the second connector 2, and the pipe body 4, reducing human error and improving the accuracy and reliability of the connection.

[0035] Then, by pressing the limiting block 703, it is fitted into the first annular groove 701. Then, through the fitting between the tube body 4 and the first connector 1 and the second connector 2, and through the elastic properties of the second rubber block 702, it is possible to drive the limiting block 703 to fit into the second annular groove 704. Then, by rotating the tube body 4, the limiting block 703 is rotated, so that the limiting block 703 fits into the slot 706, which satisfies the limiting of the limiting block 703 and the locking of the tube body 4. This prevents the first connector 1 and the second connector 2 from shifting during operation, thus affecting the connection and improving the connection's firmness.

[0036] When encountering complex working scenarios, the first electromagnet 502 is connected to the first annular groove 501. Then, the operator presses the first control button 506 to control the first electromagnet 502 to attract the first magnetic block 503, thus fixing the first connector 1 and the second connector 2. This also allows for adjustment according to different scenario requirements. Furthermore, the first connector 1 and the second connector 2 drive the telescopic hose 505 to extend and retract, and the angle of the telescopic hose 505 can be adjusted to accommodate different working scenarios, thereby improving the flexibility of the connection.

[0037] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present 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 the present utility model should be included within the protection scope of the present utility model.

Claims

1. A pipe connector for easy positioning comprising a first connector (1) and a second connector (2) arranged centrally on one side of the first connector (1), characterized in that: A first circular groove (3) is provided at the center of one side wall of the first connector (1) and the other side wall of the second connector (2). A tube (4) is fitted inside the center of the two first circular grooves (3). An adjustment device (5) is provided at the center of the upper end face of the second connector (2) on one side. The adjustment device (5) includes a fixing component and an adjustment component. The fixing component is located at the lower center of one side wall of the second connector (2), and the adjustment component is located at the upper center of one side wall of the second connector (2). The fixing component includes a first annular groove (501), which is located at the upper center of the other side wall of the first connector (1). A first magnet (503) is provided at the center of an inner side wall of the first annular groove (501). A first electromagnet (502) is provided at the center of one side wall of the second connector (2). The first electromagnet (502) is sleeved and connected to the first annular groove (501) and is attracted to the first magnet (503). A first control button (506) is provided at the center of the upper surface of the second connector (2) on one side.

2. A pipe coupling for facilitating positioning according to claim 1, characterized in that: A second circular groove (504) is provided at the center of the other side wall of the first connector (1) and the center of the other side wall of the second connector (2). The two second circular grooves (504) pass through the first connector (1) and the second connector (2) respectively and are respectively connected to the interior of the first connector (1) and the second connector (2), and are arranged corresponding to each other. A telescopic hose (505) is provided at the center between the interiors of the two second circular grooves (504).

3. A pipe coupling for facilitating positioning according to claim 1, wherein: Positioning devices (6) are provided at the center of the inner wall of the first connector (1) on one side and at the center of the inner wall of the second connector (2) on one side. The two positioning devices (6) include four second annular grooves (601). The four second annular grooves (601) are respectively located on the inner wall of the first connector (1) and the second connector (2) and at the center of the outer wall of the two tubes (4). A first rubber block (602) is provided at the center of the inner wall of the two second annular grooves (601) on the outer side. A second electromagnet (603) is provided at the center of the lower end face of the two first rubber blocks (602). The two second electromagnets (603) are provided at the center of the lower end face of the two first rubber blocks (602). 3) A circular block (604) is provided at the center of both sides. The four circular blocks (604) are inclined circular blocks. The two second electromagnets (603) and the four circular blocks (604) are respectively connected to the two second annular grooves (601) on the inner side. A second magnetic block (605) is provided at the center of the lower inner wall of the two second annular grooves (601) on the inner side. The two second magnetic blocks (605) are attracted to each other with the two second electromagnets (603). A second control button (606) is provided at one side of the center of the upper end face of the first connector (1) and the other side of the upper end face of the second connector (2).

4. A pipe coupling for facilitating positioning according to claim 1, wherein: Locking devices (7) are provided at one side of the center of the outer wall of the first connector (1) and at the other side of the center of the outer wall of the second connector (2). The two locking devices (7) include six first annular grooves (701). The six first annular grooves (701) are arranged in a rectangular pattern at the other side of the center of the outer wall of one side of the tube body (4) and at one side of the center of the outer wall of the other side of the tube body (4). A second rubber block (702) is provided at the front end of the center of the lower inner wall of each of the six first annular grooves (701). The upper surface of the six second rubber blocks (702) is... Each connector (1) has a limiting block (703) at its center, and is fixedly connected to the center of the lower end face of the six limiting blocks (703) near the front end. The center of the inner wall of the first connector (1) near one side and the center of the inner wall of the second connector (2) near the other side are provided with a second annular groove (704). The center of the inner wall of the two second annular grooves (704) are arranged in a circle and each has three fixing blocks (705). The center of the front end face of the six fixing blocks (705) is provided with a slot (706). The six slots (706) are respectively sleeved and connected to the six limiting blocks (703).

5. A pipe connector for easy positioning according to claim 1, characterized in that: A sealing ring (8) is provided at the center of the inner wall of the first circular groove (3) on one side and at the center of the inner wall of the first circular groove (3) on the other side.