Positioning frame capable of conveniently adjusting positions of transverse ribs
By using a scissor-type telescopic assembly and a positioning frame design driven by a dual-axis motor, the problem of time-consuming adjustment of the horizontal rib position in existing technologies has been solved, enabling rapid and precise adjustment of the horizontal rib position to meet various production needs.
Patent Information
- Application Number
- CN202423227724.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-26
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-26
AI Technical Summary
The existing positioning frame requires adjusting the receiving slots one by one when adjusting the position of the horizontal ribs, which results in excessive working time and affects work efficiency.
The positioning frame design, which adopts a scissor-type telescopic component and a dual-axis motor drive, achieves synchronous adjustment of the horizontal rib placement component through the cooperation of the synchronizing rod and the push block, simplifying the position adjustment process.
It enables rapid and precise adjustment of the horizontal rib position, improves work efficiency, and adapts to the production needs of different sizes and specifications.
Smart Images

Figure CN223571916U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of mesh manufacturing, in particular to a positioning frame facilitating horizontal rib position adjustment. BACKGROUND
[0002] The positioning frame can ensure the accurate position of the steel mesh during production. By controlling the size and structure, the positioning frame can fix the position of the steel bar, prevent its deviation or movement during production, and thus ensure the dimensional accuracy and shape stability of the product.
[0003] The positioning frame is provided with a plurality of accommodation grooves for placing horizontal ribs, and the plurality of horizontal ribs are placed at equal distances. The horizontal ribs are slowly pushed out by the pushing device, and are welded with the vertical ribs during the pushing process. During mesh production, there are often various production requirements of different sizes. At this time, the accommodation grooves for placing the horizontal ribs need to be adjusted. In the prior art, the positions of the plurality of accommodation grooves need to be adjusted one by one, which consumes a lot of working time.
[0004] Therefore, it is necessary to invent a positioning frame facilitating horizontal rib position adjustment to solve the above problems. SUMMARY
[0005] To solve the problems of the prior art, the purpose of the utility model is to provide a positioning frame facilitating horizontal rib position adjustment, which solves the problem that the positions of the accommodation grooves need to be adjusted one by one during actual use, resulting in a large amount of working time.
[0006] To achieve the above purpose, the utility model adopts the following technical scheme:
[0007] A positioning frame facilitating horizontal rib position adjustment, comprising a positioning frame body, two scissor-type telescopic assemblies are installed inside the positioning frame body, the scissor-type telescopic assembly comprises a plurality of synchronous rods, the top end of each synchronous rod is fixedly connected with a horizontal rib placing assembly, the two ends of the horizontal rib placing assembly are slidably connected with the positioning frame body, an adjusting slide for driving the scissor-type telescopic assembly to synchronously telescope is arranged inside the positioning frame body, a double-shaft motor is arranged inside the positioning frame body, double-head threaded rods for moving the adjusting slide are connected to the two sides of the double-shaft motor, a horizontal rib push rod is slidably arranged at the top end of the positioning frame body, and a plurality of synchronous push blocks are slidably arranged on the horizontal rib push rod.
[0008] As one preferred scheme of the utility model, the inside of the positioning frame body is provided with a bottom supporting plate, a double-shaft motor is fixedly installed at the top end of the bottom supporting plate, the two side output ends of the double-shaft motor are all in detachable connection with a double-head threaded rod, and the top end of the bottom supporting plate is further provided with a limiting block, which is used for rotating the double-head threaded rod and guiding the adjusting sliding block.
[0009] As one preferred scheme of the utility model, the adjusting sliding block is located at the two ends of the double-head threaded rod respectively, the scissor-type telescopic assembly further comprises a scissor lever one, a scissor lever two and an extension pivot, the scissor lever one and the scissor lever two are in rotary connection and are arranged in a cross shape, a pivot is arranged at the intersection of the scissor lever one and the scissor lever two, the extension pivot is located inside the limiting block and is arranged at the intersection of the scissor lever one and the scissor lever two, the extension pivot located in the middle is rotatably connected with a positioning block, the positioning block is fixedly installed at the top end of the limiting block, the extension pivots located on the two sides of the positioning block are all in rotary connection with the adjusting sliding block, a plurality of the synchronizing rods are in rotary connection with the pivots, and the synchronizing rods are all located at the positions of the two intersections.
[0010] As one preferred scheme of the utility model, the horizontal rib placing assembly comprises a placing groove, a supporting connecting block and an end sliding block, the supporting connecting block is fixedly installed at the top end of the synchronizing rod, the placing groove is located at the top end of the supporting connecting block and has a V-shaped top end section surface for placing the horizontal rib, a guide sliding groove one is formed at the top end of the positioning frame body, the end sliding block is in sliding connection with the guide sliding groove one, and the end sliding block is detachably installed at the bottom end of the supporting connecting block.
[0011] As one preferred scheme of the utility model, the two sides of the positioning frame body are provided with sliding rails for sliding the horizontal rib push rod, the bottom end of the horizontal rib push rod is provided with a sliding block for sliding along the sliding rail, a guide sliding groove two is formed in the inside of the horizontal rib push rod, and a plurality of the synchronizing push blocks are in sliding connection with the guide sliding groove two.
[0012] As one preferred scheme of the utility model, the bottom end of the synchronizing push block is provided with an adaptive through groove, the adaptive through groove can be sleeved with the outside surface of the placing groove, and when the position of the placing groove is adjusted, the synchronizing push block moves synchronously.
[0013] As one preferred scheme of the utility model, the two sides of the limiting block are further provided with guide blocks for preventing the scissor-type telescopic assembly from falling off.
[0014] In the above technical scheme, the utility model provides the following technical effects and advantages:
[0015] The utility model discloses, through the setting of scissor type telescopic component can drive multiple horizontal muscle placing assembly on both sides synchronous outward or inward sliding, thereby make multiple horizontal muscle placing assembly in equidistance setting, can pass through the telescopic adjustment gap between the control of scissor type telescopic component distance, thereby can follow different product model, different size specification carry out corresponding adjustment, avoid needing long -time adjustment and place the placing groove position, improve work efficiency, simultaneously through the adjustment synchronous push -out block, can make it follow the synchronous movement of placing groove movement, thereby after the adjustment of the horizontal muscle's placing position, still can guarantee the push -out of horizontal muscle, improved the adaptation performance of device. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is whole structure schematic diagram of the utility model;
[0017] Figure 2 It is scissor type telescopic component position structure schematic diagram of the utility model;
[0018] Figure 3 It is positioning frame body overhead structure schematic diagram of the utility model;
[0019] Figure 4 It is extension pivot connection structure schematic diagram of the utility model;
[0020] Figure 5 It is synchronous push -out block structure schematic diagram of the utility model.
[0021] Mark explanation: 1, positioning frame body;101, guide sliding groove one;2, slide rail;3, horizontal muscle push rod;301, guide sliding groove two;4, horizontal muscle placing assembly;401, placing groove;402, support connecting block;403, end block;5, scissor type telescopic component;501, synchronous rod;502, scissor lever one;503, scissor lever two;504, extension pivot;6, double shaft motor;7, synchronous push -out block;701, adaptation slot;8, double -end threaded rod;9, adjustment sliding block;10, positioning block;11, limit block;12, guide block;13, bottom support plate. DETAILED DESCRIPTION
[0022] The utility model makes further description below combining with the drawings. The following embodiment is only used for more clearly explaining the technical scheme of the utility model, and can not limit the protection scope of the utility model by this.
[0023] The utility model provides a kind of horizontal muscle placing device, including positioning frame body, slide rail, horizontal muscle push rod, scissor type telescopic component and synchronous push -out block, positioning frame body is connected with slide rail, and slide rail is connected with horizontal muscle push rod, and horizontal muscle push rod is connected with scissor type telescopic component, and scissor type telescopic component is connected with synchronous push -out block. Figures 1-5The illustrated positioning frame facilitating the adjustment of the position of the cross rib comprises a positioning frame body 1, two scissor type telescopic assemblies 5 are mounted in the positioning frame body 1, the scissor type telescopic assemblies 5 comprise a plurality of synchronous rods 501, the top end of each of the synchronous rods 501 is fixedly connected with a cross rib placing assembly 4, the two ends of the cross rib placing assembly 4 are in sliding connection with the positioning frame body 1, an adjusting sliding block 9 for driving the synchronous telescoping of the scissor type telescopic assemblies 5 is arranged in the positioning frame body 1, a double shaft motor 6 is arranged in the positioning frame body 1, double headed threaded rods 8 for moving the adjusting sliding block 9 are connected to the two sides of the double shaft motor 6, a cross rib push rod 3 is slidingly arranged at the top end of the positioning frame body 1, a plurality of synchronous push blocks 7 are slidingly arranged on the cross rib push rod 3, the arrangement of the double shaft motor 6 can synchronously drive the synchronous telescoping of the two scissor type telescopic assemblies 5, so as to ensure that the cross rib placing assembly 4 can move at the same speed, and avoid the tilting of one side due to uneven speed and finally being stuck.
[0024] A bottom support plate 13 is mounted in the positioning frame body 1, the double shaft motor 6 is fixedly mounted at the top end of the bottom support plate 13, the two side output ends of the double shaft motor 6 are in detachable connection with the double headed threaded rods 8, a limiting block 11 is further arranged at the top end of the bottom support plate 13, the limiting block 11 is used for rotating the double headed threaded rods 8 and guiding the adjusting sliding block 9, synchronous inward sliding of the adjusting sliding block 9 can drive the synchronous outward moving of the two synchronous rods 501, and then the placing position of the cross rib is adjusted to meet various working requirements.
[0025] The adjusting sliding block 9 is respectively located at the two ends of the double headed threaded rod 8, the scissor type telescopic assembly 5 further comprises a scissor rod one 502, a scissor rod two 503 and an extension shaft 504, the scissor rod one 502 and the scissor rod two 503 are in rotary connection and are arranged in an intersecting manner, a shaft is arranged at the intersection of the scissor rod one 502 and the scissor rod two 503, the extension shaft 504 is located inside the limiting block 11 and is arranged at the intersection of the scissor rod one 502 and the scissor rod two 503, the extension shaft 504 located in the middle is rotatably connected with a positioning block 10, the positioning block 10 is fixedly mounted at the top end of the limiting block 11, the extension shaft 504 located on the two sides of the positioning block 10 is in rotary connection with the adjusting sliding block 9, a plurality of the synchronous rods 501 are in rotary connection with the shaft, and the synchronous rods 501 are located at the positions of the two intersections, the bottom end of the extension shaft 504 extends downward to the inside of the limiting block 11, so that the adjusting sliding block 9 can drive the synchronous movement of the extension shaft 504.
[0026] The transverse rib placing assembly 4 comprises a placing groove 401, a support connecting block 402 and an end sliding block 403, the support connecting block 402 is fixedly installed at the top end of the synchronous rod 501, the placing groove 401 is located at the top end of the support connecting block 402 and has a V-shaped top end section for placing the transverse rib, the top end of the positioning frame body 1 is provided with a guide sliding groove one 101, the end sliding block 403 is in sliding connection with the guide sliding groove one 101, and the end sliding block 403 is detachably installed at the bottom end of the support connecting block 402; the V-shaped section can adapt to transverse ribs of various sizes, and the V-shaped section can also effectively prevent the synchronous push block 7 from falling off.
[0027] The positioning frame body 1 is provided with sliding rails 2 on both sides for sliding of the transverse rib push rod 3, the bottom end of the transverse rib push rod 3 is provided with sliding blocks for sliding along the sliding rails 2, the inside of the transverse rib push rod 3 is provided with a guide sliding groove two 301, a plurality of synchronous push blocks 7 are in sliding connection with the guide sliding groove two 301, the inside of the sliding blocks on both sides of the bottom end of the transverse rib push rod 3 is provided with transmission components, which can synchronously drive the transverse rib push rod 3 to push out the transverse rib, and the sliding rails 2 can effectively prevent the transverse rib push rod 3 from tilting during pushing.
[0028] The bottom end of the synchronous push block 7 is provided with an adaptive through groove 701, the adaptive through groove 701 can be sleeved with the outer side of the placing groove 401, when the position of the placing groove 401 is adjusted, the synchronous push block 7 moves synchronously, and the sliding of the synchronous push block 7 enables the synchronous push block 7 to move synchronously with the transverse rib placing assembly 4, thereby ensuring the accuracy of pushing out the transverse rib.
[0029] The limiting blocks 11 are also provided with guide blocks 12 on both sides for preventing the scissor-type telescopic assembly 5 from falling off, the guide blocks 12 are used for supporting the end face of the synchronous rod 501 to prevent the synchronous rod 501 from falling off, and the inner side of the guide block 12 is provided with a sliding groove for sliding of the synchronous rod 501, thereby ensuring the transverse rib position adjustment effect.
[0030] The utility model discloses, through the setting of scissor-type telescopic assembly 5 can drive multiple transverse rib placing assembly 4 on both sides to move outward or inward synchronously, thereby enabling multiple transverse rib placing assembly 4 to be arranged at equal distances, adjusting the distance between the gaps by controlling the telescopic adjustment of scissor-type telescopic assembly 5, thereby being able to follow different product models, different size specifications to make corresponding adjustment, avoid needing to adjust the placing position of placing groove 401 for a long time, improve work efficiency, and by adjusting synchronous push block 7, the synchronous push block 7 can move synchronously with the movement of placing groove 401, thereby still being able to ensure the pushing out of the transverse rib after adjusting the placing position of the transverse rib, and the adaptation performance of the device is improved.
[0031] The above merely is the preferred implementation manner of the present application, and it should be noted that, for the ordinary skilled in the art, without departing from the technical principles of the present application, a number of improvements and deformations can be made, and these improvements and deformations should also be considered as the protection scope of the present application.
Claims
1. A positioning frame that facilitates adjustment of the position of the transverse ribs, characterized in that: The system includes a positioning frame body (1), inside which are installed two scissor telescopic components (5). Each scissor telescopic component (5) includes multiple synchronizing rods (501). The top ends of each synchronizing rod (501) are fixedly connected to a horizontal rib placement component (4). Both ends of the horizontal rib placement component (4) are slidably connected to the positioning frame body (1). Inside the positioning frame body (1) is an adjusting slider (9) for synchronously extending and retracting the scissor telescopic components (5). Inside the positioning frame body (1) is a dual-axis motor (6). Both sides of the dual-axis motor (6) are connected to double-headed threaded rods (8) for moving the adjusting slider (9). A horizontal rib push rod (3) is slidably arranged at the top end of the positioning frame body (1). Multiple synchronizing push blocks (7) are slidably arranged on the horizontal rib push rod (3).
2. The positioning frame for facilitating adjustment of the transverse rib position according to claim 1, characterized in that: The positioning frame body (1) is equipped with a bottom support plate (13). The dual-axis motor (6) is fixedly installed on the top of the bottom support plate (13). Both output ends of the dual-axis motor (6) are detachably connected to the double-headed threaded rod (8). The top of the bottom support plate (13) is also provided with a limit block (11). The limit block (11) is used to allow the double-headed threaded rod (8) to rotate and to guide the adjusting slider (9).
3. A positioning frame for facilitating adjustment of the transverse rib position according to claim 2, characterized in that: The adjusting sliders (9) are located at both ends of the double-ended threaded rod (8). The scissor-type telescopic assembly (5) also includes a scissor rod one (502), a scissor rod two (503), and an extension shaft (504). The scissor rod one (502) and the scissor rod two (503) are rotatably connected and arranged in a cross shape. A shaft is provided at the intersection of the scissor rod one (502) and the scissor rod two (503). The extension shaft (504) is located inside the limiting block (11) and A positioning block (10) is rotatably connected to an extension shaft (504) located at the intersection of scissor bar one (502) and scissor bar two (503). The positioning block (10) is fixedly installed on the top of the limiting block (11). The extension shafts (504) on both sides of the positioning block (10) are rotatably connected to the adjusting slider (9). Multiple synchronization rods (501) are rotatably connected to the shafts, and the synchronization rods (501) are all located at the two intersection points.
4. A positioning frame for facilitating adjustment of the transverse rib position according to claim 3, characterized in that: The horizontal rib placement assembly (4) includes a placement groove (401), a support connecting block (402), and an end slider (403). The support connecting block (402) is fixedly installed on the top of the synchronizing rod (501). The placement groove (401) is located at the top of the support connecting block (402) and has a V-shaped top section for placing horizontal ribs. The top of the positioning frame body (1) is provided with a guide slide groove (101). The end slider (403) and the guide slide groove (101) form a sliding connection. The end slider (403) can be detachably installed at the bottom of the support connecting block (402).
5. A positioning frame for facilitating adjustment of the position of the transverse ribs according to claim 1, characterized in that: The positioning frame body (1) is equipped with slide rails (2) on both sides for sliding the horizontal rib push rod (3). The bottom end of the horizontal rib push rod (3) is provided with a slider that slides along the slide rail (2). The interior of the horizontal rib push rod (3) is provided with a guide groove (301). Multiple synchronous push blocks (7) are slidably connected with the guide groove (301).
6. A positioning frame for facilitating adjustment of the transverse rib position according to claim 5, characterized in that: The bottom end of the synchronous push block (7) is provided with an adapter slot (701). The adapter slot (701) can fit and fit against the outer side of the placement slot (401). When the position of the placement slot (401) is adjusted, the synchronous push block (7) moves synchronously.
7. A positioning frame for facilitating adjustment of the transverse rib position according to claim 3, characterized in that: The limiting block (11) is also equipped with guide blocks (12) on both sides to prevent the scissor telescopic assembly (5) from falling off.