Hardware capable of being adjusted in linkage mode

By using a linkage design of the rotating rod, rotating column, and external threaded adjusting sleeve, the complexity and stability issues of traditional single-screw designs in scenarios involving the synchronous movement of multiple objects are solved. This enables synchronous or independent adjustment of multiple objects, simplifies the transmission mechanism, and improves the flexibility and stability of the adjustment.

CN223794598UActive Publication Date: 2026-01-13KUNSHAN JIUHENGXIN MOULD TECH CO LTD
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Patent Information

Application Number
CN202422121884.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2026-01-13
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

Traditional single-screw designs require complex transmission mechanisms in scenarios where two or more objects need to be driven to move axially simultaneously. This increases design complexity and cost, and may reduce system stability and reliability.

Method used

The design employs a linkage mechanism consisting of a rotating rod, a rotating column, an external threaded adjusting sleeve, and an internal threaded sleeve plate. By rotating the rotating rod alone, the synchronous or independent position adjustment of multiple objects can be achieved, simplifying the transmission mechanism and improving the flexibility and stability of the adjustment.

Benefits of technology

It achieves a simplified design for synchronous or independent position adjustment of multiple objects, reduces design costs and complexity, enhances the flexibility and accuracy of adjustment, and improves the stability and reliability of the system.

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Abstract

The hardware capable of being adjusted in a linkage mode comprises a bottom plate, a first supporting plate, a second supporting plate and a third supporting plate are fixedly connected to the position, close to one side, the position, close to the center and the other side, of the front surface of the bottom plate respectively, and a rotating rod is arranged among the first supporting plate, the second supporting plate and the third supporting plate in a sleeved mode and rotationally connected with the first supporting plate, the second supporting plate and the third supporting plate. Baffles are arranged at the positions, close to one side and the center, of the surface of the rotating rod in a sleeving mode, and two rotating columns are arranged on the surface of the rotating rod in a sleeving mode. According to the hardware piece capable of being adjusted in the linkage mode, through single rotation of a rotating rod and the design of a first external thread adjusting sleeve rod and a second external thread adjusting sleeve rod, a first internal thread sleeve plate and a second internal thread sleeve plate which are connected with the hardware piece can be driven to move axially at the same time, and therefore synchronous position adjustment of a first object and a second object is achieved; by means of the design, a complex transmission mechanism needed by traditional multi-object synchronous movement is greatly simplified, and the design cost and complexity are reduced.
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Description

Technical Field

[0001] This utility model relates to the field of hardware technology, specifically to a hardware component that can be linked and adjusted. Background Technology

[0002] In the current field of hardware structural design, the common adjustment mechanism is to drive the threaded connected parts to move axially along the slide or guide rail by rotating the screw. This design has shown good results in the position adjustment of a single object, but its limitations have gradually become apparent in some complex or specific application scenarios.

[0003] For scenarios that require simultaneous axial movement of two or more objects, traditional single-screw designs are inadequate. Since the screw can only rotate along a single axis, it usually drives a single component that is threaded to it. To achieve synchronous movement of multiple objects, a complex transmission mechanism is usually required, which not only increases the complexity and cost of the design but may also reduce the stability and reliability of the system. Utility Model Content

[0004] The purpose of this utility model is to provide a hardware component that can be linked and adjusted to solve the problem mentioned in the background art. For scenarios that require simultaneous axial movement of two or more objects, the traditional single-screw design is inadequate. Since the screw can only rotate along a single axis, it usually directly drives a single component that is threaded to it. To achieve synchronous movement of multiple objects, a complex transmission mechanism is usually required. This not only increases the complexity and cost of the design, but may also reduce the stability and reliability of the system.

[0005] To achieve the above objectives, this utility model provides the following technical solution: A hardware component with adjustable linkage, comprising a base plate, wherein a support plate one, a support plate two, and a support plate three are respectively fixedly connected to one side, one center, and one side of the front surface of the base plate; a rotating rod is sleeved and rotatably connected between the support plates one, two, and three; baffles are sleeved on one side and one center of the surface of the rotating rod; two rotating columns are sleeved on the surface of the rotating rod; a groove is formed on one side of the rotating columns; two annular fixing plates are fixedly connected to the surface of the rotating rod; the side of the annular fixing plates away from the rotating rod extends into the interior of the groove; a movable groove is formed at the top and bottom of one side of the groove; a limiting movable plate is slidably connected inside the movable groove; several limiting grooves are formed on one side of the annular fixing plate; a movable groove is formed at one end of the outer side of the movable groove; a sliding groove is formed on one side of the movable groove; a sliding plate is slidably connected inside the sliding groove; an internal toothed opening is formed on one side of the front surface of the sliding plate; a gear meshes with the front side of the internal toothed opening.

[0006] Compared with the prior art, the beneficial effects of this utility model are:

[0007] This adjustable hardware component, through the single rotation of the rotating rod, combined with the design of external threaded adjusting sleeve rod one and external threaded adjusting sleeve rod two, can simultaneously drive the connected internal threaded sleeve plate one and internal threaded sleeve plate two to move axially, thereby achieving synchronous position adjustment of object one and object two. This design greatly simplifies the complex transmission mechanism required for the synchronous movement of multiple objects in the past, reducing design costs and complexity. Each external threaded adjusting sleeve rod is independently set and rotatably connected to the support plate, allowing users to adjust the position of any object individually as needed without affecting other objects, enhancing the flexibility and practicality of adjustment. Through the engagement of the limiting moving plate with the limiting groove on the annular fixed plate, the rotating column is precisely positioned and fixed on the rotating rod, effectively preventing accidental rotation of the rotating column when it is not needed, improving the accuracy and stability of adjustment. The linkage design of the movable plate, sliding plate and gear allows users to precisely control the movement of the limiting moving plate by rotating the rotating rod, thereby fixing the rotating column. Attached Figure Description

[0008] Figure 1 This is a schematic diagram of the structure of this utility model;

[0009] Figure 2 This utility model Figure 1 A magnified view of part A in the diagram;

[0010] Figure 3 This is a three-dimensional view of the sliding plate of this utility model;

[0011] Figure 4 This is a three-dimensional view of the external thread adjusting sleeve rod one and external thread adjusting sleeve rod two of this utility model.

[0012] In the diagram: 1. Base plate; 2. Support plate one; 3. Support plate two; 4. Support plate three; 5. Handle; 6. Rotating rod; 7. Baffle; 8. Rotating column; 9. External thread adjusting sleeve one; 10. External thread adjusting sleeve two; 11. Internal thread sleeve one; 12. Internal thread sleeve two; 13. Object one; 14. Object two; 15. Groove; 16. Annular fixing plate; 17. Limiting groove; 18. Moving groove; 19. Movable groove; 20. Sliding groove; 21. Limiting moving plate; 22. Movable plate; 23. Fixing bolt; 24. Sliding plate; 25. Internal toothed opening; 26. Rotating rod; 27. Gear; 28. Fixing sleeve. Detailed Implementation

[0013] 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.

[0014] Please see Figure 1-4 This utility model provides a technical solution: a hardware component that can be linked and adjusted, including a base plate 1. Support plates 2, 3, and 4 are fixedly connected to one side, the center, and the other side of the front surface of the base plate 1, respectively. A rotating rod 6 is sleeved and rotatably connected between the support plates 2, 3, and 4. Baffles 7 are sleeved on one side and the center of the surface of the rotating rod 6. Two rotating columns 8 are sleeved on the surface of the rotating rod 6. A groove 15 is formed on one side of each rotating column 8. Two rings are fixedly connected to the surface of the rotating rod 6. The annular fixing plate 16 extends into the groove 15 from the side away from the rotating rod 6. The top and bottom of one side of the groove 15 are provided with moving grooves 18. The moving groove 18 is slidably connected to a limiting moving plate 21. The annular fixing plate 16 is provided with several limiting grooves 17 on one side. The outer end of the moving groove 18 is provided with a movable groove 19. The movable groove 19 is provided with a sliding groove 20 on one side. The sliding groove 20 is slidably connected to a sliding plate 24. The front surface of the sliding plate 24 is provided with an internal toothed opening 25. The front side of the internal toothed opening 25 is engaged with a gear 27.

[0015] One side of the rotating column 8 located on one side is rotatably connected to the support plate 2, and the other side of the rotating column 8 located on one side is fixedly connected to the baffle 7 located on one side. One side of the rotating column 8 located on the other side is rotatably connected to the support plate 3, and the other side of the rotating column 8 located on the other side is fixedly connected to the baffle 7 located on the other side. A handle 5 is fixedly connected to one side of the rotating rod 6.

[0016] One side of the limiting moving plate 21 extends into the interior of the limiting groove 17 and engages with the limiting groove 17, thereby fixing the rotating column 8 onto the rotating rod 6.

[0017] The movable slot 19 is equipped with a movable plate 22. One side of the sliding plate 24 is fixedly connected to one side of the movable plate 22. The bottom of the movable plate 22 extends through the interior of the movable slot 18 and is fixedly connected to the top of the limiting movable plate 21, thereby realizing precise adjustment of the position of the limiting movable plate 21.

[0018] The bottom of gear 27 is rotatably connected to the bottom of sliding groove 20, and a rotating rod 26 is fixedly connected to the top of gear 27. The top of rotating rod 26 extends through to the outside of rotating column 8, which can move the limiting moving plate 21, thereby facilitating the fixing of rotating column 8.

[0019] A fixing sleeve 28 is snapped onto the outside of the rotating rod 26. A fixing bolt 23 is threaded onto the top of the fixing sleeve 28. The bottom of the fixing bolt 23 penetrates into the interior of the rotating rod 26 and is threaded onto the rotating rod 26, providing a reliable locking mechanism to prevent the rotating rod 26 from rotating unintentionally, thereby ensuring the stability of the hardware after adjustment.

[0020] A threaded adjusting sleeve 9 is fixedly connected to one side of the baffle 7, corresponding to the outer side of the rotating rod 6. The threaded adjusting sleeve 9 is sleeved with the rotating rod 6. One side of the threaded adjusting sleeve 9 is rotatably connected to one side of the support plate 3. An internally threaded sleeve plate 11 is threadedly connected to the surface of the threaded adjusting sleeve 9. An object 13 is provided on the top of the internally threaded sleeve plate 11. The rear end of the bottom of the internally threaded sleeve plate 11 is slidably connected to the base plate 1. A threaded adjusting sleeve 9 is fixedly connected to one side of the baffle 7, corresponding to the outer side of the rotating rod 6. The external threaded adjusting sleeve 10 is sleeved with the rotating rod 6. One side of the external threaded adjusting sleeve 10 is rotatably connected to one side of the support plate 3 4. The surface of the external threaded adjusting sleeve 10 is threadedly connected to the internal threaded sleeve plate 2 12. The top of the internal threaded sleeve plate 2 12 is provided with the object 2 14. The rear end of the bottom of the internal threaded sleeve plate 2 12 is slidably connected to the base plate 1, realizing independent adjustment of the position of object 1 13 and object 2 14. This design enables the hardware to adapt to various installation scenarios and improves its versatility and flexibility.

[0021] Working principle: When a user wants to adjust the positions of object 13 and object 24 simultaneously, they first ensure that the rotating column 8 is fixed in the limiting groove 17 of the annular fixed plate 16 by the limiting moving plate 21. Then, by rotating the rotating rod 6 through the handle 5, due to the fixation of the rotating column 8, the external thread adjusting sleeve 19 and external thread adjusting sleeve 20 will rotate together with the rotating rod 6. During the rotation, the external threads on these two sleeves will generate relative movement with the internal threads of the internal thread sleeve plate 11 and internal thread sleeve plate 22, respectively, pushing the internal thread sleeve plate to move along the axial direction of the sleeve, thereby achieving synchronous adjustment of the positions of object 13 and object 24. If the user needs to adjust the position of one of the objects independently (for example, only adjusting object 13), they first need to release the corresponding rotating column 8 (i.e., the one that is fixed in place with object 21). The rotating rod 26 is fixed to the side connected to the rotating rod 27. The rotating rod 26 drives the gear 27 to rotate, and then the internal tooth 25 meshes with the gear 27, pushing the sliding plate 24 to move in the sliding groove 20. The movement of the sliding plate 24 drives the limiting moving plate 21 to slide in the moving groove 18 through the movable plate 22 until it disengages from the limiting groove 17, releasing the rotating column 8. At this time, the user can rotate the external thread adjusting sleeve rod 9 alone (without affecting the rotating rod 6 and other parts), and drive the internal thread sleeve plate 11 to move through the threaded connection, adjusting only the position of the object 13. After the adjustment is completed, the rotating column 8 is re-fixed on the rotating rod 6 by the rotating rod 26 and the limiting moving plate 21, and the rotating rod 26 is locked with the fixing sleeve 28 and the fixing bolt 23 to ensure the stability after adjustment.

[0022] In summary, this adjustable hardware component, through the single rotation of the rotating rod 6, combined with the design of the external threaded adjusting sleeve rod 19 and the external threaded adjusting sleeve rod 20, can simultaneously drive the internal threaded sleeve plate 11 and the internal threaded sleeve plate 22 connected to it to move axially, thereby achieving synchronous position adjustment of object 13 and object 24. This design greatly simplifies the complex transmission mechanism required for the synchronous movement of multiple objects in the traditional way, reducing design costs and complexity. Each external threaded adjusting sleeve rod is independently set and rotatably connected to the support plate, allowing users to adjust the position of any object individually as needed without affecting other objects, enhancing the flexibility and practicality of adjustment. Through the engagement of the limiting moving plate 21 with the limiting groove 17 on the annular fixed plate 16, the rotating column 8 is precisely positioned and fixed on the rotating rod 6, effectively preventing the rotating column 8 from rotating accidentally when it is not needed, improving the accuracy and stability of adjustment. The linkage design of the movable plate 22, the sliding plate 24 and the gear 27 allows users to precisely control the movement of the limiting moving plate 21 by rotating the rotating rod 26, thereby fixing the rotating column 8.

[0023] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0024] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A hardware fitting which can be adjusted in linkage, comprising a base plate (1), characterized in that: The front surface of the bottom plate (1) is provided with a support plate one (2), a support plate two (3) and a support plate three (4) respectively fixedly connected at one side, at the center and at the other side, the support plate one (2), the support plate two (3) and the support plate three (4) are sleeved and rotationally connected with a rotating rod (6), the surface of the rotating rod (6) is sleeved with a baffle (7) at one side and at the center, the surface of the rotating rod (6) is sleeved with two rotating columns (8), one side of the rotating column (8) is provided with a groove (15), the surface of the rotating rod (6) is fixedly connected with two annular fixed plates (16), the side away from the rotating rod (6) of the annular fixed plate (16) penetrates into the inside of the groove (15), the top and the bottom of one side of the groove (15) are provided with a moving groove (18), the inside of the moving groove (18) is slidably connected with a limiting moving plate (21), one side of the annular fixed plate (16) is provided with a plurality of limiting grooves (17), one end of the outside of the moving groove (18) is provided with a movable groove (19), one side of the movable groove (19) is provided with a sliding groove (20), the inside of the sliding groove (20) is slidably connected with a sliding plate (24), one side of the front surface of the sliding plate (24) is provided with an internal toothing (25), the front side of the internal toothing (25) is engaged with a gear (27).

2. A linkable adjustable hardware according to claim 1, wherein: The side of the rotating column (8) located at one side is rotationally connected with the support plate one (2), the other side of the rotating column (8) located at one side is fixedly connected with the baffle (7) located at one side, the side of the rotating column (8) located at the other side is rotationally connected with the support plate two (3), the other side of the rotating column (8) located at the other side is fixedly connected with the baffle (7) located at the other side, one side of the rotating rod (6) is fixedly connected with a handle (5).

3. A linkable adjustable hardware according to claim 1, wherein: One side of the limiting moving plate (21) penetrates into the inside of the limiting groove (17) and is clamped with the limiting groove (17).

4. The linkable adjustable hardware of claim 1, wherein: The inside of the movable groove (19) is provided with a movable plate (22), one side of the sliding plate (24) is fixedly connected with one side of the movable plate (22), the bottom of the movable plate (22) penetrates into the inside of the moving groove (18) and is fixedly connected with the top of the limiting moving plate (21).

5. The linkable adjustable hardware of claim 1, wherein: The bottom of the gear (27) is rotationally connected with the bottom of the sliding groove (20), the top of the gear (27) is fixedly connected with a rotating rod (26), the top of the rotating rod (26) penetrates into the outside of the rotating column (8).

6. A linkable adjustable hardware according to claim 5, wherein: The outside of the rotating rod (26) is clamped with a fixed sleeve (28), the top of the fixed sleeve (28) is threadedly connected with a fixed bolt (23), the bottom of the fixed bolt (23) penetrates into the inside of the rotating rod (26) and is threadedly connected with the rotating rod (26).

7. The linkable adjustable hardware of claim 1, wherein: The side of the baffle (7) arranged on one side is fixedly connected with an outer thread adjusting sleeve rod one (9) corresponding to the outer side of the rotating rod (6), the outer thread adjusting sleeve rod one (9) is sleeved with the rotating rod (6), one side of the outer thread adjusting sleeve rod one (9) is rotatably connected with one side of the supporting plate two (3), the surface of the outer thread adjusting sleeve rod one (9) is screw connected with an inner thread sleeve plate one (11), the top of the inner thread sleeve plate one (11) is provided with an article one (13), the rear end of the bottom of the inner thread sleeve plate one (11) is slidably connected with the bottom plate (1).

8. The linkable adjustable hardware of claim 1, wherein: The side of the baffle (7) arranged on the other side is fixedly connected with an outer thread adjusting sleeve rod two (10) corresponding to the outer side of the rotating rod (6), the outer thread adjusting sleeve rod two (10) is sleeved with the rotating rod (6), one side of the outer thread adjusting sleeve rod two (10) is rotatably connected with one side of the supporting plate three (4), the surface of the outer thread adjusting sleeve rod two (10) is screw connected with an inner thread sleeve plate two (12), the top of the inner thread sleeve plate two (12) is provided with an article two (14), the rear end of the bottom of the inner thread sleeve plate two (12) is slidably connected with the bottom plate (1).