Bracket for processing reinforcing mesh
By designing the slide chute and sliding limit components on the bracket for steel mesh processing and combining the scale bar, flexible adjustment of the bracket is achieved, solving the problem that existing brackets can only be suitable for steel mesh with specific sizes, and improving the flexibility and applicability of use.
Patent Information
- Application Number
- CN202422360393.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-25
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-25
AI Technical Summary
The longitudinal and transverse jacks of the existing steel mesh processing brackets are fixed, which makes it only suitable for steel mesh of specific sizes, and has poor flexibility in use.
Sliding chute 1 and chute 2 and sliding limit components are designed, combined with scale bar 1 and scale bar 2 to achieve flexible adjustment of the spacing of sliding components of the bracket for steel mesh processing to meet the support needs of steel mesh of different sizes.
It realizes better flexibility in the use of brackets for steel mesh processing, and can adjust the spacing between longitudinal and transverse steel bars according to actual needs to meet the diverse interlaced arrangement needs.
Smart Images

Figure CN223129225U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of steel bar mesh processing brackets, and particularly relates to a bracket for steel bar mesh processing. Background Technique
[0002] A steel bar mesh is a wire mesh formed by welding steel bars in a crisscross pattern, and is often used in aspects such as concrete reinforcement, ground reinforcement, wall reinforcement, and road construction. During the welding and processing of the steel bar mesh, a bracket is required to pre-support the steel bar mesh bars.
[0003] Currently, the brackets for steel bar mesh processing mainly consist of a square frame body, transverse insertion holes opened on two parallel sides of the frame body, and longitudinal insertion holes opened on the other two parallel sides. When using the bracket with this structure, the steel bars are sequentially passed through the corresponding longitudinal insertion holes and transverse insertion holes, and the two ends of the steel bars are limited, so as to fix the steel bars on the bracket to ensure subsequent welding and processing. Although the bracket with the above structure can support the longitudinal steel bars and transverse steel bars on the steel bar mesh, due to the fixed positions of the longitudinal insertion holes and transverse insertion holes on the bracket with the above structure, the bracket can only be applied to the processing of steel bar meshes with specific sizes, resulting in poor flexibility in the use of the brackets for steel bar mesh processing. Summary of the Utility Model
[0004] (1) Technical Problems to be Solved
[0005] The technical problem to be solved by the utility model is to provide a bracket for steel bar mesh processing that can flexibly adjust the spacing between longitudinal steel bars and transverse steel bars according to actual processing needs, and meet the support and processing requirements of the bracket for steel bar meshes of different sizes, in view of the current situation of the prior art.
[0006] (2) Technical Solutions
[0007] The utility model is realized through the following technical solutions: The utility model provides a bracket for steel bar mesh processing, which includes a support frame. On both sides of the upper end of the support frame, chute one is parallelly opened, and on the other two sides of the upper end of the support frame, chute two is parallelly opened. Sliding limit components are respectively installed in chute one and chute two. On one side of the support frame where chute one is located, scale bar one is arranged, and on one side of the support frame where chute two is located, scale bar two is arranged. The height of the sliding limit component in chute one is lower than the height of the sliding limit component in chute two.
[0008] Furthermore, the sliding limit component includes a slider, a T-shaped bolt one installed at the top end of the slider, a movable clamping plate installed below the T-shaped bolt one, a placement groove arranged on the slider below the movable clamping plate, and a T-shaped bolt two installed in the middle of one side wall of the slider.
[0009] By adopting the above technical solution, the sliding limit assembly is mainly used for clamping and limiting the steel bars used in the processing of steel bar meshes.
[0010] Furthermore, the slider is of an L-shaped structure, and the portions of the slider between the movable clamping plate and the placement groove are all hollow structures.
[0011] By adopting the above technical solution, such a design can ensure that the longitudinal steel bars and transverse steel bars used in the processing of steel bar meshes can be conveniently placed on the corresponding sliders.
[0012] Furthermore, the placement groove is of an arc-shaped structure, and the side wall of the movable clamping plate facing the placement groove is also of an arc-shaped structure.
[0013] By adopting the above technical solution, it can be ensured that the longitudinal steel bars and transverse steel bars used in the processing of steel bar meshes can be reliably fitted with the placement groove after being placed.
[0014] Furthermore, both the first chute and the second chute are of an L-shaped structure, and both the first chute and the second chute are slidably connected to the corresponding sliding position assembly.
[0015] By adopting the above technical solution, it can be ensured that the sliding limit assembly can be conveniently slid and adjusted along the first chute and the second chute.
[0016] Furthermore, the first T-shaped bolt is threadedly connected to the slider, and the first T-shaped bolt is rotatably connected to the movable clamping plate.
[0017] By adopting the above technical solution, the first T-shaped bolt is mainly used to press down the movable clamping plate so as to tightly limit the steel bars used in the processed steel bar mesh, so as to ensure the subsequent convenient welding of the steel bars used in the processing of steel bar meshes.
[0018] Furthermore, the second T-shaped bolt passes through the slider and is threadedly connected to the slider.
[0019] By adopting the above technical solution, after the slider slides to the specified position, screwing the second T-shaped bolt tightly can achieve reliable limiting of the slider after position adjustment, thereby ensuring the fixed position of the steel bars used in the processing of steel bar meshes.
[0020] Furthermore, both the first scale bar and the second scale bar are bonded to the support frame, the first chute is arranged along the length direction of the support frame, and the second chute is arranged along the width direction of the support frame.
[0021] By adopting the above technical solution, under the action of the first scale bar and the second scale bar, the distance between the corresponding sliding limit assemblies can be accurately controlled.
[0022] (3) Beneficial effects
[0023] The utility model has the following beneficial effects compared with the prior art:
[0024] To solve the problem that the existing support for processing steel bar meshes mainly consists of a square frame body, transverse insertion holes opened on two parallel sides of the frame body, and longitudinal insertion holes opened on the other two parallel sides. When using the support for processing steel bar meshes with this structure, the steel bars are sequentially passed through the corresponding longitudinal insertion holes and transverse insertion holes, and the two ends of the steel bars are limited to fix the steel bars on the support to ensure subsequent welding processing. Although the support with the above structure can support the longitudinal and transverse steel bars on the steel bar mesh, due to the fixed positions of the longitudinal insertion holes and transverse insertion holes on the support with the above structure, the support can only be applied to the processing of steel bar meshes with specific sizes, resulting in poor flexibility in the use of the support for processing steel bar meshes. Through the cooperative design of the first chute, the second chute, the first scale bar, and the second scale bar, and by respectively installing sliding limit components in the first chute and the second chute, the support for processing steel bar meshes can flexibly adjust the distance between the corresponding sliding components according to actual processing needs during use, making the staggered arrangement between the transverse and longitudinal steel bars of the steel bar mesh more diverse, enabling the support to meet the support processing requirements of steel bar meshes with different sizes and having better flexibility in use. Description of the drawings
[0025] Figure 1 is a schematic structural diagram of a support for processing a steel bar mesh according to the utility model;
[0026] Figure 2 is a side cross-sectional view of the sliding limit component in a support for processing a steel bar mesh according to the utility model.
[0027] The descriptions of the reference numerals are as follows:
[0028] 1. First chute; 2. First scale bar; 3. Support frame; 4. Second scale bar; 5. Second chute; 6. Sliding limit component; 601. First T-shaped bolt; 602. Movable clamping plate; 603. Placing groove; 604. Slide block; 605. Second T-shaped bolt. Detailed implementation manners
[0029] In order to make the purpose, technical solutions and advantages of the utility model clearer, the following further describes the utility model in detail with reference to the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the utility model and are not used to limit the utility model.
[0030] Such as Figure 1 - Figure 2As shown in the figure, a support for processing a steel bar mesh in this embodiment includes a support frame 3. On both sides of the upper end of the support frame 3, a first chute 1 is parallelly provided. On the other two sides of the upper end of the support frame 3, a second chute 5 is parallelly provided. Sliding limit components 6 are respectively installed in the first chute 1 and the second chute 5. On one side of the support frame 3 where the first chute 1 is located, a first scale bar 2 is arranged. On one side of the support frame 3 where the second chute 5 is located, a second scale bar 4 is arranged. Under the action of the first scale bar 2 and the second scale bar 4, the distance between the corresponding sliding limit components 6 can be accurately controlled. At the same time, the sliding limit components 6 can flexibly adjust and limit the distance between the steel bars for processing the steel bar mesh according to actual processing needs, and clamp and limit the steel bars for processing the steel bar mesh. The height of the sliding limit component 6 in the first chute 1 is lower than the height of the sliding limit component 6 in the second chute 5.
[0031] As Figure 1 - Figure 2 shown in the figure, in this embodiment, the sliding limit component 6 includes a slider 604, a first T-shaped bolt 601 installed at the top end of the slider 604, a movable clamping plate 602 installed on the lower side of the first T-shaped bolt 601, a placement groove 603 arranged on the slider 604 below the movable clamping plate 602, and a second T-shaped bolt 605 installed in the middle of one side wall of the slider 604. The slider 604 is of an L-shaped structure. The space between the movable clamping plate 602 and the placement groove 603 on the slider 604 is a hollow structure. Such a design can ensure that the longitudinal steel bars and transverse steel bars for processing the steel bar mesh can be conveniently placed on the corresponding sliders 604.
[0032] As Figure 1 - Figure 2 shown in the figure, in this embodiment, the placement groove 603 is of an arc structure, and the side wall of the movable clamping plate 602 facing the placement groove 603 is also of an arc structure, which can ensure that the longitudinal steel bars and transverse steel bars for processing the steel bar mesh can be reliably attached to the placement groove 603 after being placed. Both the first chute 1 and the second chute 5 are of an L-shaped structure, and both the first chute 1 and the second chute 5 are slidably connected to the corresponding sliding limit components 6, which can ensure the convenient sliding adjustment of the sliding limit components 6 along the first chute 1 and the second chute 5.
[0033] As Figure 1 - Figure 2As shown, in this embodiment, the first T-shaped bolt 601 is threadedly connected to the slider 604, and the first T-shaped bolt 601 is rotatably connected to the movable clamping plate 602. The first T-shaped bolt 601 is mainly used to press down the movable clamping plate 602 so as to tightly limit the steel bars processed after the steel bar mesh is placed, ensuring the subsequent convenient welding of the steel bars used for steel bar mesh processing. The second T-shaped bolt 605 penetrates through the slider 604 and is threadedly connected to the slider 604. After the slider 604 slides to the specified position, tightening the second T-shaped bolt 605 can realize the reliable limit of the slider 604 after position adjustment, thereby ensuring the fixed position of the steel bars used for steel bar mesh processing. The first scale bar 2 and the second scale bar 4 are both bonded to the support frame 3. The first chute 1 is arranged along the length direction of the support frame 3, and the second chute 5 is arranged along the width direction of the support frame 3.
[0034] The specific implementation process of this embodiment is as follows: When in use, first place the longitudinal steel bars on the sliding limit assembly 6 in the first chute 1 and tightly limit the longitudinal steel bars. Then, according to the actual processing requirements, adjust and limit the distance between adjacent two longitudinal steel bars by referring to the first scale bar 2. Then, place the transverse steel bars on the sliding limit assembly 6 in the second chute 5 and limit the transverse steel bars. Then, according to the actual processing requirements, adjust and limit the distance between adjacent two transverse steel bars by referring to the second scale bar 4. Then, just place the fixed support frame 3 on the steel bar welding machine, and the longitudinal steel bars and transverse steel bars in the supported state can be welded and processed. During the supporting process, through the cooperative design of the first chute 1, the second chute 5, the first scale bar 2 and the second scale bar 4, and by respectively installing the sliding limit assembly 6 in the first chute 1 and the second chute 5, the distance between the corresponding sliding assemblies can be flexibly adjusted according to the actual processing requirements when the bracket for steel bar mesh processing is in use, making the staggered arrangement between the transverse steel bars and longitudinal steel bars for steel bar mesh processing more diversified, enabling the bracket to meet the support processing requirements of different-sized steel bar meshes and having better use flexibility.
[0035] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present invention. Various modifications to these embodiments will be apparent to those skilled in the art. The general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention will not be limited to these embodiments shown herein, but rather will be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A support for processing a steel bar mesh, characterized in that: It includes a support frame (3). On both sides of the upper end of the support frame (3), chute one (1) is provided in parallel. On the other two sides of the upper end of the support frame (3), chute two (5) is provided in parallel. Slide limiting components (6) are respectively installed in chute one (1) and chute two (5). On one side of chute one (1) on the support frame (3), scale bar one (2) is also arranged. On one side of chute two (5) on the support frame (3), scale bar two (4) is arranged. The height of the slide limiting component (6) in chute one (1) is lower than the height of the slide limiting component (6) in chute two (5).
2. The support for processing steel bar meshes according to claim 1, characterized in that: The slide limiting component (6) includes a slider (604), a T-shaped bolt one (601) installed at the top end of the slider (604), a movable clamping plate (602) installed on the lower side of the T-shaped bolt one (601), a placement groove (603) arranged on the slider (604) and located on the lower side of the movable clamping plate (602), and a T-shaped bolt two (605) installed in the middle of one side wall of the slider (604).
3. A support for processing a steel bar mesh according to claim 2, characterized in that: The slider (604) is of an L-shaped structure. The part of the slider (604) between the movable clamping plate (602) and the placement groove (603) is of a hollow structure.
4. A support for processing a steel bar mesh according to claim 2, characterized in that: The placement groove (603) is of an arc-shaped structure. The side wall of the movable clamping plate (602) facing the placement groove (603) is also of an arc-shaped structure.
5. A support for processing a steel bar mesh according to claim 1, characterized in that: Both chute one (1) and chute two (5) are of an L-shaped structure, and both chute one (1) and chute two (5) are slidably connected to the corresponding slide limiting components (6).
6. The support for processing steel bar meshes according to claim 2, characterized in that: The T-shaped bolt one (601) is threadedly connected to the slider (604), and the T-shaped bolt one (601) is rotatably connected to the movable clamping plate (602).
7. A bracket for processing a steel bar mesh according to claim 2, characterized in that: The T-shaped bolt two (605) penetrates through the slider (604) and is threadedly connected to the slider (604).
8. A support for processing a steel bar mesh according to claim 1, characterized in that: Both scale bar one (2) and scale bar two (4) are adhered to the support frame (3). Chute one (1) is arranged along the length direction of the support frame (3), and chute two (5) is arranged along the width direction of the support frame (3).