A stable connector cable mounting structure
By designing a stable connector cable installation structure and utilizing components such as a drive sleeve, a movable guide rod, and a rotating correction column, the cable connector installation size limitation and stability issues are resolved, achieving stable docking and positioning of cables with different diameters.
Patent Information
- Application Number
- CN202411632176.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-15
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2044-11-15
AI Technical Summary
The installation size matching between existing cable connectors and cables limits the scope of use, and the center position of the cable cannot be guaranteed after insertion, resulting in unstable connection.
A stable connector cable installation structure including a connector outer sleeve, a built-in movable sleeve and a positioning component is designed. The cable docking and positioning are achieved through the combination of a driving sleeve, a movable guide rod, a pressing ring and a rotating correction column.
It achieves stable docking and positioning of cables with different diameters, improving the stability and reliability of cable installation.
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Figure CN119419533B_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the field of cables, and in particular relates to a stable connector cable installation structure. Background Art
[0002] A cable connector is a device that securely connects two cables at both ends to achieve current transmission. When existing cables are installed through connectors, cables are generally inserted into both ends of the connector so that the two cables are docked, and then the cables are fixed by a fixing structure. However, the installation dimensions of existing cables and connectors are generally matched, which greatly limits the installation dimensions of the connectors and cables, and their scope of use is relatively narrow. At the same time, after the existing cables are inserted into the connectors, the center position of the cables cannot be well guaranteed, so that the two docked cables cannot be well docked, making the connection structure unstable. Therefore, it is necessary to redesign the existing connector and cable installation structure to increase the scope of use of the connector and improve the installation stability and reliability of the cables. Summary of the Invention
[0003] In view of the above-mentioned deficiencies in the prior art, the present invention solves the problem of providing a stable connector cable installation structure that can be installed for cables with different diameters and has stable and reliable cable installation and docking.
[0004] In order to solve the above problems, the technical solutions adopted by the present invention are as follows:
[0005] A stable connector cable installation structure comprises a connector housing, a built-in movable sleeve, a positioning assembly, and a cable body; a built-in movable sleeve is installed horizontally and movably at both ends of the interior of the connector housing; a positioning assembly is installed on each of the built-in movable sleeves; a cable body is inserted into each of the two ends of the connector housing, and the two cable bodies are respectively connected to the interior of the built-in movable sleeve and positioned by the positioning assembly; the positioning assembly comprises a driving sleeve, a movable guide rod, a pressing ring, and a rotating correction column; an annular driving cavity is provided inside the built-in movable sleeve; the driving sleeve is rotatably installed on the annular driving cavity of the built-in movable sleeve, and one end of the driving sleeve extends to the outside of one end of the built-in movable sleeve; both ends of the built-in movable sleeve are slidable all around A plurality of movable guide rods are plugged in, and a pressure ring is installed together at the outer ends of the plurality of movable guide rods located at the same end of the built-in movable sleeve, and the inner end of the movable guide rod extends into the annular driving cavity and is connected to the driving sleeve; the outer end of the movable guide rod is located outside the end of the built-in movable sleeve; a plurality of rotating correction columns are rotatably installed around the two ends of the built-in movable sleeve; the driving sleeve rotates and drives the plurality of movable guide rods around the two ends of the built-in movable sleeve to move toward the inside of the annular driving cavity respectively, and the movable guide rod drives the pressure ring to move toward the built-in movable sleeve, and the pressure ring presses the plurality of rotating correction columns evenly against the four sides of the cable body, and makes the two cable bodies distributed in the internal center of the built-in movable sleeve, and the two built-in movable sleeves move and drive the two cable bodies to dock.
[0006] Furthermore, positioning blocks are evenly provided around both ends of the built-in movable sleeve; a rotation correction column is installed on the outside of each positioning block; the inner end of the rotation correction column is rotatably installed on the positioning block through a torsion spring, and the rotation correction column rotates outward on the positioning block through the torsion spring.
[0007] Furthermore, the inner ends of multiple movable guide rods located at the same end of the built-in movable sleeve are commonly connected to a translation ring body, and the translation ring body is slidably installed in the annular driving cavity; the two inner parts of the driving sleeve are respectively provided with threaded annular surfaces, and the threaded annular surfaces are respectively screwed with a translation ring body; the driving sleeve rotates and drives the two translation ring bodies to move relative to each other, and the translation ring body drives the multiple movable guide rods to translate synchronously.
[0008] Furthermore, a plurality of pressure grooves are provided on the outer side of the translation ring body, and pressure springs are provided between the pressure grooves of the translation ring body.
[0009] Furthermore, a plurality of guide slots are provided on the inner sides of both ends of the annular driving cavity; the inner sides of the movable guide rods are slidably engaged with the guide slots through guide blocks.
[0010] Furthermore, the inner ring surface of the pressure ring is a wedge-shaped ring surface structure.
[0011] Furthermore, a displacement track is respectively provided on the upper and lower inner sides of both ends of the connector sleeve; displacement protrusions are respectively provided on the upper and lower outer sides of the built-in movable sleeve; the displacement protrusions are slidably engaged on the displacement track; a displacement adjustment rod is rotatably installed in the displacement track; the displacement adjustment rod is threadedly connected to the displacement protrusion, the displacement adjustment rod rotates and drives the built-in movable sleeve to move in the connector sleeve, and the built-in movable sleeve drives the cable body to move by rotating the correction column.
[0012] Furthermore, adjustment openings are provided on the sides of both ends of the connector housing; and the outer end of the displacement adjustment rod extends to the adjustment opening.
[0013] The beneficial effects of the present invention are as follows:
[0014] 1. The present invention inserts a cable body at each end of the connector sleeve, so that the cable body is inserted into the built-in movable sleeve and is located on the inner side of multiple rotating correction columns, so that the driving sleeve rotates and drives multiple movable guide rods around the two ends of the built-in movable sleeve to move toward the inside of the annular driving cavity respectively, and the movable guide rod drives the pressure ring to move toward the built-in movable sleeve, so that the pressure ring synchronously presses the multiple rotating correction columns to rotate, and makes the multiple rotating correction columns evenly press on the four sides of the cable body, so that both ends of the cable body can be positioned by the pressure of the multiple rotating correction columns, and the cable body is distributed in the internal center of the built-in movable sleeve, and finally, the two built-in movable sleeves move and drive the two cable bodies to dock, and then the rotation of the multiple rotating correction columns can be used to position cable bodies of different diameters, and at the same time, the center distribution is ensured to achieve stable docking of the two cable bodies.
[0015] 2. The present invention is designed to be movable inside the connector housing by means of a built-in movable sleeve, which can drive the cable body to move, thereby achieving the docking or separation of the two cable bodies and realizing the opening and closing function. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a structural schematic diagram of the present invention.
[0017] Figure 2 It is a structural schematic diagram of the connector housing of the present invention and its internal built-in movable sleeve, positioning assembly, and cable body.
[0018] Figure 3 For the present invention Figure 2 Enlarged structural diagram of the upper part.
[0019] Figure 4 For the present invention Figure 3 Enlarged structural diagram of the left half.
[0020] Figure 5 For the present invention Figure 4Enlarged structural diagram of the upper part.
[0021] Figure 6 It is a schematic diagram of the cross-sectional structure of the built-in movable sleeve, positioning block, and rotation correction column of the present invention. DETAILED DESCRIPTION
[0022] The present invention will be described in further detail below with reference to the accompanying drawings.
[0023] like Figures 1 to 6 As shown, a stable connector cable installation structure includes a connector jacket 1, a built-in movable sleeve 2, a positioning component 3, and a cable body 4; a built-in movable sleeve 2 is installed horizontally and movably at both ends of the interior of the connector jacket 1; a positioning component 3 is installed on each of the built-in movable sleeves 2; a cable body 4 is inserted into each of the two ends of the connector jacket 1, and the two cable bodies 4 are respectively connected to the interior of the built-in movable sleeve 2 and positioned by the positioning component 3; the positioning component 3 includes a driving sleeve 31, a movable guide rod 32, a pressing ring 33, and a rotating correction column 34; an annular driving cavity 21 is provided inside the built-in movable sleeve 2; the driving sleeve 31 is rotatably installed on the annular driving cavity 21 of the built-in movable sleeve 2, and one end of the driving sleeve 31 extends to the outside of one end of the built-in movable sleeve 2; both ends of the built-in movable sleeve 2 are slidably plugged in all directions A plurality of movable guide rods 32, and a pressure ring 33 is commonly installed at the outer ends of the plurality of movable guide rods 32 located at the same end of the built-in movable sleeve 2, and the inner ends of the movable guide rods 32 extend into the annular drive cavity 21 and are connected to the drive sleeve 31; the outer ends of the movable guide rods 32 are located outside the end of the built-in movable sleeve 2; a plurality of rotating correction columns 34 are rotatably installed around the two ends of the built-in movable sleeve 2; the drive sleeve 31 rotates and drives the plurality of movable guide rods 32 around the two ends of the built-in movable sleeve 2 to move toward the inside of the annular drive cavity 21 respectively, and the movable guide rods 32 drive the pressure ring 33 to move toward the built-in movable sleeve 2, and the pressure ring 33 presses the plurality of rotating correction columns 34 evenly against the four sides of the cable body 4, and makes the two cable bodies 4 distributed in the internal center of the built-in movable sleeve 2, and the two built-in movable sleeves 2 move and drive the two cable bodies 4 to dock.
[0024] like Figures 1 to 6 As shown, in order to facilitate the stable rotation and outward reset of the rotation correction column 34, it is further preferred that positioning blocks 22 are evenly provided around the two ends of the built-in movable sleeve 2; a rotation correction column 34 is installed on the outside of each positioning block 22; the inner end of the rotation correction column 34 is rotatably installed on the positioning block 22 through a torsion spring, and the rotation correction column 34 is rotated outward on the positioning block 22 through the torsion spring.
[0025] like Figures 1 to 6As shown, in order to drive the sleeve 31 can be synchronized to drive a plurality of mobile guide 32, further, the same end of the built-in mobile sleeve 2 a plurality of mobile guide 32 of the inner end of the common connection with a translation ring 35, translation ring 35 slidingly installed in the annular drive cavity 21; the inner side of the drive sleeve 31 are respectively provided with threaded ring surface 311, threaded ring surface 311 are respectively with a translation ring 35 screw joint; the drive sleeve 31 rotates and drives two translation ring 35 relative motion, translation ring 35 drive a plurality of mobile guide 32 synchronous translation. So you can move through the translation ring 35 drive a plurality of mobile guide 32.
[0026] As shown in Figures 1 to 6 in order to improve the stability of the structure, further, the outer side of the translation ring 35 are provided with a plurality of abutting groove 351, the abutting groove 351 between the translation ring 35 is provided with the abutting spring 36. Further, the inner side of the two ends of the annular drive cavity 21 are provided with a plurality of guide sliding groove 211; the inner side of the mobile guide 32 is slidingly connected to the guide sliding groove 211 through the guide block 321. Further, the inner side of the abutting ring 33 is a wedge-shaped ring surface structure.
[0027] As shown in Figures 1 to 6 in order to facilitate the adjustment of the position of the built-in mobile sleeve 2, realize the butt joint or separation of two cables, further, the two ends of the connector sleeve 1 are provided with a displacement track 11; the outer side of the built-in mobile sleeve 2 is provided with displacement protrusion 23; the displacement protrusion 23 is slidingly connected to the displacement track 11; the displacement track 11 is rotatably installed with a displacement adjusting rod 5; the displacement adjusting rod 5 is screw connected with the displacement protrusion 23, displacement adjusting rod 5 rotates and drives the built-in mobile sleeve 2 to move in the connector sleeve 1, the built-in mobile sleeve 2 drives the cable body 4 to move through the rotating correction column 34. Further, the side of the two ends of the connector sleeve 1 is provided with an adjusting opening 12; the outer end of the displacement adjusting rod 5 extends to the adjusting opening 12.
[0028] The application inserts a cable body 4 at both ends of the connector sleeve 1, so that the cable body 4 is inserted into the built-in moving sleeve 2 and located inside the plurality of rotating correction columns 34, so that the driving sleeve 31 rotates and drives the plurality of moving guide rods 32 around the two ends of the built-in moving sleeve 2 to move to the inside of the annular driving cavity 21, the moving guide rod 32 drives the pressing ring 33 to move to the built-in moving sleeve 2, so that the pressing ring 33 synchronously presses the plurality of rotating correction columns 34 to rotate, and the plurality of rotating correction columns 34 are uniformly pressed around the cable body 4, so that the two ends of the cable body 4 can be positioned by the plurality of rotating correction columns 34, and the cable body 4 is distributed in the center of the built-in moving sleeve 2, and finally the two built-in moving sleeves 2 move and drive the two cable bodies 4 to be connected, and the rotation of the plurality of rotating correction columns 34 can position the cable body 4 with different diameters, and ensure the center distribution to realize the stable connection of the two cable bodies 4.
[0029] The above only describes the preferred embodiments of the application and is not intended to limit the application. Any modification, equivalent replacement, improvement, etc. within the spirit and principles of the application shall be included in the protection scope of the application.
Claims
1. A stable connector cable installation structure, characterized in that: It includes a connector jacket, a built-in movable sleeve, a positioning assembly, and a cable body; a built-in movable sleeve is installed horizontally and movably at both ends of the interior of the connector jacket; a positioning assembly is installed on each of the built-in movable sleeves; a cable body is inserted into each of the two ends of the connector jacket, and the two cable bodies are respectively connected to the interior of the built-in movable sleeve and positioned by the positioning assembly; the positioning assembly includes a driving sleeve, a movable guide rod, a pressure ring, and a rotating correction column; an annular driving cavity is provided inside the built-in movable sleeve; the driving sleeve is rotatably installed on the annular driving cavity of the built-in movable sleeve, and one end of the driving sleeve extends to the outside of one end of the built-in movable sleeve; a plurality of movable guide rods are slidably inserted around both ends of the built-in movable sleeve. , a pressure ring is installed together at the outer ends of the multiple movable guide rods located at the same end of the built-in movable sleeve, and the inner end of the movable guide rod extends into the annular driving cavity and is connected to the driving sleeve; the outer end of the movable guide rod is located outside the end of the built-in movable sleeve; multiple rotating correction columns are rotatably installed around the two ends of the built-in movable sleeve; the driving sleeve rotates and drives the multiple movable guide rods around the two ends of the built-in movable sleeve to move toward the inside of the annular driving cavity respectively, and the movable guide rod drives the pressure ring to move toward the built-in movable sleeve, and the pressure ring presses the multiple rotating correction columns evenly against the four sides of the cable body, and makes the two cable bodies distributed in the internal center of the built-in movable sleeve, and the two built-in movable sleeves move and drive the two cable bodies to dock; Material toggling mechanism, its both sides respectively have a cylinder pressure, and the cylinder pressure bar connects swing arm, and the swing arm end face has hook portion, and a bar passes position between the end of two swing arms and the hook portion.
2. The stable connector cable installation structure according to claim 1, characterized in that: Positioning blocks are evenly arranged around both ends of the built-in movable sleeve; a rotation correction column is installed on the outside of each positioning block; the inner end of the rotation correction column is rotatably installed on the positioning block through a torsion spring, and the rotation correction column rotates outward on the positioning block through the torsion spring.
3. The stable connector cable installation structure according to claim 1, characterized in that: The inner ring surface of the pressure ring is a wedge-shaped ring surface structure.
4. The stable connector cable installation structure according to claim 1, characterized in that: Adjustment openings are provided on the sides of both ends of the connector housing; and the outer end of the displacement adjustment rod extends to the adjustment opening.
Citation Information
Patent Citations
Grounding wire clamp operating rod convenient for butt joint
CN116565593A
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CN208723486U