Connector structure capable of being rapidly installed
By incorporating a locking mechanism, a quick alignment mechanism, and a limiting mechanism, the design solves the problems of cumbersome installation and insufficient stability of existing connectors, enabling rapid installation and stable connection.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-06
- Publication Date
- 2026-04-03
AI Technical Summary
The installation process of existing connectors is cumbersome, relies on manual alignment which is inefficient, the single locking structure is prone to loosening, operation requires tools or professional skills, and the connection stability is insufficient.
It employs a locking mechanism, a quick alignment mechanism, and a limiting mechanism. It utilizes a semi-circular magnet and a semi-circular hole to achieve quick alignment. Through the sliding cooperation of the support column and the fixed block, combined with the multiple limiting actions of the limiting tube and the rotating block, it achieves rapid installation and tight connection.
It enables rapid connector installation, improves installation efficiency, enhances connection stability, reduces the risk of loosening due to vibration, and simplifies operation requirements.
Smart Images

Figure CN224082802U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of connector structure, specifically relating to a connector structure that can be quickly installed. Background Technology
[0002] Connectors are increasingly widely used in modern industry and daily life. They are mainly used to physically connect different devices or systems to transmit power, data or liquids. Although existing connectors are becoming more and more perfect in function, there is still room for improvement in installation speed and convenience.
[0003] Existing devices rely on manual alignment, resulting in cumbersome and inefficient installation steps. The single locking structure is prone to loosening under vibration, and operation requires tools or professional skills, leading to insufficient connection stability. Utility Model Content
[0004] To overcome the problems of existing technologies, such as cumbersome and inefficient installation steps due to reliance on manual alignment, easy loosening of single locking structures under vibration, the need for tools or professional skills for operation, and insufficient connection stability, a connector structure that can be installed quickly is proposed.
[0005] The technical solution of this utility model is as follows: a connector structure that can be quickly installed, including a locking block mechanism; a slot block mechanism is provided at the upper end of the locking block mechanism, a quick alignment mechanism is provided at the upper part of the locking block mechanism, and a limit mechanism is provided on the upper side of the quick alignment mechanism; the locking block mechanism includes a first limit plate, a support column, a fixing block, a first slot, a spring, and a triangular block; a support column is fixedly connected to the center of the upper end of the first limit plate, four fixing blocks are evenly fixed to one side of the side wall of the support column in the circumferential direction, and three first slots are opened in the vertical direction on the other side of the fixing blocks, one end of the spring is fixedly connected to the inner wall of the first slot, and the other end of the spring is fixedly connected to the triangular block.
[0006] Furthermore, the slot mechanism includes a second limiting plate, a limiting block, a second slot, and a third slot; the upper end of the support column is slidably mounted with the second limiting plate, the lower end of the second limiting plate is fixedly connected with the limiting block, the lower end of the limiting block is provided with a second slot, and the inner wall of the second slot is provided with a third slot.
[0007] Furthermore, the rapid alignment mechanism includes a semi-circular magnet, a semi-circular hole, a fourth slot, and an iron block; multiple semi-circular magnets are uniformly fixed to the upper circumference of the first limiting plate, and multiple semi-circular holes are uniformly opened in the lower circumference of the second limiting plate. A fourth slot is opened at the upper end of the semi-circular hole, and an iron block is fixed to the inner wall of the fourth slot.
[0008] Furthermore, the limiting mechanism includes a fifth slot, a limiting tube, a rotating block, a first through hole, and a second through hole; a plurality of first through holes are evenly provided at one end of the first limiting plate, and a plurality of second through holes are evenly provided at one end of the second limiting plate. A fifth slot is provided on one side of the inner wall of both the first and second through holes. A limiting tube is slidably installed on the inner wall of the first through hole, and the limiting tube is simultaneously slidably installed on the inner wall of both the first and second through holes. A rotating block is hinged to both ends of the limiting tube.
[0009] Furthermore, the semicircular magnets correspond one-to-one with the semicircular holes, and the semicircular holes correspond one-to-one with the fourth slot.
[0010] Furthermore, the fixing block is adapted to the second slot, and the triangular block corresponds one-to-one with the third slot, with the upper end of the triangular block being a bevel.
[0011] Furthermore, the first through hole corresponds one-to-one with the second through hole, and the fifth slot is adapted to the rotating block.
[0012] The beneficial effects of this utility model are:
[0013] 1. First, the first and second limiting plates are initially aligned using a semi-circular magnet and a semi-circular hole to achieve quick alignment and increase efficiency. Then, the support column and fixing block at the top of the first limiting plate are slid into the second slot at the bottom of the limiting block. When the side wall of the second slot presses against the upper end of the triangular block, the upper end of the triangular block is inclined, which will press the spring. The spring slides into the first slot. When the spring slides into the first slot, the fixing block can smoothly enter the second slot. Then, when the triangular block and the third slot are aligned, the spring pushes the triangular block into the third slot. The triangular block is located in the middle of the first and third slots. The lower end of the triangular block is flat, which can be aligned and limited.
[0014] 2. Then rotate the rotating blocks on both sides of the limiting tube so that the limiting tube can pass smoothly through the first through hole and the second through hole. Pass the limiting tube through the first through hole and the second through hole at the same time. Then rotate the rotating blocks on both sides of the limiting tube and place the rotating blocks inside the fifth slot. Repeat the limiting to make the device tightly connected. Attached Figure Description
[0015] Figure 1 The diagram shown is a three-dimensional structural schematic of this utility model;
[0016] Figure 2 The diagram shown is a cross-sectional three-dimensional structural schematic of the locking mechanism of this utility model;
[0017] Figure 3 The diagram shown is a three-dimensional structural schematic of the slot block mechanism of this utility model.
[0018] Figure 4The diagram shown is a cross-sectional three-dimensional structural schematic of the rapid alignment mechanism of this utility model.
[0019] Figure 5 The diagram shown is a three-dimensional structural schematic of the limiting mechanism of this utility model.
[0020] The markings in the attached diagram are as follows: 1. Locking block mechanism; 11. First limiting plate; 12. Support column; 13. Fixing block; 14. First slot; 15. Spring; 16. Triangular block; 2. Slot block mechanism; 21. Second limiting plate; 22. Limiting block; 23. Second slot; 24. Third slot; 3. Quick alignment mechanism; 31. Semicircular magnet; 32. Semicircular hole; 33. Fourth slot; 34. Iron block; 4. Limiting mechanism; 41. Fifth slot; 42. Limiting tube; 43. Rotating block; 44. First through hole; 45. Second through hole. Detailed Implementation
[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0022] Please see Figures 1-5 This utility model provides an embodiment of a connector structure that can be quickly installed, including a locking mechanism 1; a slot mechanism 2 is provided at the upper end of the locking mechanism 1, a quick alignment mechanism 3 is provided at the upper part of the locking mechanism 1, and a limiting mechanism 4 is provided on the upper side of the quick alignment mechanism 3; the locking mechanism 1 includes a first limiting plate 11, a support column 12, a fixing block 13, a first slot 14, a spring 15, and a triangular block 16; the support column 12 is fixedly connected to the center of the upper end of the first limiting plate 11, and four fixing blocks 13 are uniformly fixed to one side of the side wall of the support column 12 in the circumferential direction. Three first slots 14 are opened in the vertical direction on the other side of the fixing blocks 13. One end of the spring 15 is fixedly connected to the inner wall of the first slot 14, and the other end of the spring 15 is fixedly connected to the triangular block 16.
[0023] In use, the first limiting plate 11 and the second limiting plate 21 are initially aligned using the semicircular magnet 31 and the semicircular hole 32 to achieve quick alignment and increase efficiency. Then, the support column 12 and fixing block 13 at the upper end of the first limiting plate 11 are slid into the second slot 23 at the lower end of the limiting block 22. When the sidewall of the second slot 23 presses against the upper end of the triangular block 16, the upper end of the triangular block 16, being inclined, will compress the spring 15, causing the spring 15 to slide into the first slot 14. When the spring 15 slides into the first slot 14, the fixing block 13 can smoothly enter the second slot. Inside hole 23, when triangular block 16 and third slot 24 are aligned, spring 15 pushes triangular block 16, pushing it into the third slot 24. Triangular block 16 is located between the first slot 14 and the third slot 24. The lower end of triangular block 16 is flat and can be aligned for positioning. Then, rotating blocks 43 on both sides of the limiting tube 42 are rotated so that the limiting tube 42 can pass smoothly through the first through hole 44 and the second through hole 45. The limiting tube 42 passes through the first through hole 44 and the second through hole 45 at the same time. Then, rotating blocks 43 on both sides of the limiting tube 42 are rotated to place the rotating blocks 43 inside the fifth slot 41.
[0024] Please see Figure 3 In this embodiment, the slot mechanism 2 includes a second limiting plate 21, a limiting block 22, a second slot 23, and a third slot 24; the upper end of the support column 12 is slidably mounted with the second limiting plate 21, the lower end of the second limiting plate 21 is fixedly connected with the limiting block 22, the lower end of the limiting block 22 is provided with the second slot 23, the inner wall of the second slot 23 is provided with the third slot 24, and the fixing block 13 extends into the interior of the second slot 23.
[0025] Please see Figure 4 In this embodiment, the rapid alignment mechanism 3 includes a semi-circular magnet 31, a semi-circular hole 32, a fourth slot 33, and an iron block 34. A plurality of semi-circular magnets 31 are uniformly fixed to the upper circumference of the first limiting plate 11, and a plurality of semi-circular holes 32 are uniformly opened in the lower circumference of the second limiting plate 21. A fourth slot 33 is opened at the upper end of the semi-circular hole 32, and an iron block 34 is fixed to the inner wall of the fourth slot 33. The semi-circular magnets 31 magnetically attract the iron block 34, which can quickly position the device.
[0026] Please see Figure 5In this embodiment, the limiting mechanism 4 includes a fifth slot 41, a limiting tube 42, a rotating block 43, a first through hole 44, and a second through hole 45. A plurality of first through holes 44 are evenly provided at one end of the first limiting plate 11, and a plurality of second through holes 45 are evenly provided at one end of the second limiting plate 21. A fifth slot 41 is provided on one side of the inner wall of both the first through hole 44 and the second through hole 45. A limiting tube 42 is slidably installed on the inner wall of the first through hole 44. The limiting tube 42 is slidably installed on the inner wall of both the first through hole 44 and the second through hole 45. A rotating block 43 is hinged to both ends of the limiting tube 42 to limit the first limiting plate 11 and the second limiting plate 21 through the limiting tube 42.
[0027] Please see Figure 4 In this embodiment, the semicircular magnet 31 corresponds one-to-one with the semicircular hole 32, and the semicircular hole 32 corresponds one-to-one with the fourth slot 33. The semicircular magnet 31 magnetically attracts the iron block 34 inside the fourth slot 33.
[0028] Please see Figure 2 and Figure 3 In this embodiment, the fixing block 13 is adapted to the second slot 23, and the triangular block 16 corresponds one-to-one with the third slot 24. The upper end of the triangular block 16 is a slope. After the triangular block 16 slides into the interior of the third slot 24, it fixes the first limiting plate 11 and the second limiting plate 21.
[0029] Please see Figure 5 In this embodiment, the first through hole 44 and the second through hole 45 correspond one-to-one, and the fifth slot 41 is adapted to the rotating block 43, so that the rotating block 43 can be placed inside the fifth slot 41.
[0030] Working principle: First, the first limiting plate 11 and the second limiting plate 21 are initially aligned by the semicircular magnet 31 and the semicircular hole 32, achieving rapid alignment and increasing efficiency. Then, the support column 12 and the fixing block 13 at the upper end of the first limiting plate 11 are slid into the second slot 23 at the lower end of the limiting block 22. When the side wall of the second slot 23 presses against the upper end of the triangular block 16, the upper end of the triangular block 16, being inclined, will compress the spring 15. The spring 15 slides into the first slot 14. When the spring 15 slides into the first slot 14, the fixing block 13 can smoothly enter the second slot 23. Inside the slot 23, when the triangular block 16 and the third slot 24 are aligned, the spring 15 pushes the triangular block 16, pushing it into the third slot 24. The triangular block 16 is located between the first slot 14 and the third slot 24. The lower end of the triangular block 16 is flat and can be aligned for positioning. Then, the rotating blocks 43 on both sides of the limiting tube 42 are rotated so that the limiting tube 42 passes smoothly through the first through hole 44 and the second through hole 45. The limiting tube 42 passes through the first through hole 44 and the second through hole 45 at the same time. Then, the rotating blocks 43 on both sides of the limiting tube 42 are rotated to place the rotating blocks 43 inside the fifth slot 41.
Claims
1. A connector structure that allows for quick installation, characterized in that, It includes a locking mechanism (1); the upper end of the locking mechanism (1) is provided with a slotted block mechanism (2), the upper part of the locking mechanism (1) is provided with a quick alignment mechanism (3), and the upper side of the quick alignment mechanism (3) is provided with a limiting mechanism (4); the locking mechanism (1) includes a first limiting plate (11), a support column (12), a fixing block (13), a first slot (14), a spring (15) and a triangular block (16); the upper center of the first limiting plate (11) is fixedly connected to the support column (12), and four fixing blocks (13) are evenly fixed to one side of the side wall of the support column (12) in the circumferential direction. Three first slots (14) are opened in the vertical direction on the other side of the fixing blocks (13). One end of the spring (15) is fixedly connected to the inner wall of the first slot (14), and the other end of the spring (15) is fixedly connected to the triangular block (16).
2. The quick-installable connector structure according to claim 1, characterized in that, The slot mechanism (2) includes a second limiting plate (21), a limiting block (22), a second slot (23) and a third slot (24); the upper end of the support column (12) is slidably mounted with the second limiting plate (21), the lower end of the second limiting plate (21) is fixedly connected with the limiting block (22), the lower end of the limiting block (22) is provided with the second slot (23), and the inner wall of the second slot (23) is provided with the third slot (24).
3. The quick-installable connector structure according to claim 2, characterized in that, The quick alignment mechanism (3) includes a semi-circular magnet (31), a semi-circular hole (32), a fourth slot (33), and an iron block (34); a plurality of semi-circular magnets (31) are uniformly fixed to the upper circumference of the first limiting plate (11), and a plurality of semi-circular holes (32) are uniformly opened to the lower circumference of the second limiting plate (21). A fourth slot (33) is opened at the upper end of the semi-circular hole (32), and an iron block (34) is fixed to the inner wall of the fourth slot (33).
4. The quick-installable connector structure according to claim 2, characterized in that, The limiting mechanism (4) includes a fifth slot (41), a limiting tube (42), a rotating block (43), a first through hole (44), and a second through hole (45); a plurality of first through holes (44) are evenly opened at one end of the first limiting plate (11), a plurality of second through holes (45) are evenly opened at one end of the second limiting plate (21), a fifth slot (41) is opened on one side of the inner wall of the first through hole (44) and the second through hole (45), the limiting tube (42) is slidably installed on the inner wall of the first through hole (44), the limiting tube (42) is simultaneously slidably installed on the inner wall of the first through hole (44) and the second through hole (45), and the rotating block (43) is hinged at both ends of the limiting tube (42).
5. The quick-installable connector structure according to claim 3, characterized in that, The semicircular magnet (31) corresponds one-to-one with the semicircular hole (32), and the semicircular hole (32) corresponds one-to-one with the fourth slot (33).
6. The quick-installable connector structure according to claim 2, characterized in that, The fixing block (13) is adapted to the second slot (23), and the triangular block (16) corresponds to the third slot (24). The upper end of the triangular block (16) is a slope.
7. The quick-installable connector structure according to claim 4, characterized in that, The first through hole (44) corresponds to the second through hole (45) one by one, and the fifth slot (41) is adapted to the rotating block (43).