Machining and positioning device for vase pier steel reinforcement framework

By introducing a combination design of sliding groove, adjusting seat, positioning component and column support rod in the positioning device for vase-shaped pier steel reinforcement cage processing, the positioning problem of vase-shaped pier steel reinforcement cage of different sizes and shapes is solved, realizing efficient and accurate processing and improving the structural safety of the building.

CN223902839UActive Publication Date: 2026-02-13CHINA RAILWAY 12TH BUREAU GRP URBAN DEV & CONSTR CO LTD
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Patent Information

Application Number
CN202520591547.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2026-02-13
Estimated Expiration
2035-03-31

AI Technical Summary

Technical Problem

Existing technologies cannot effectively position and process the steel reinforcement cages of vase-shaped piers of different sizes and shapes, resulting in insufficient processing efficiency and accuracy.

Method used

A processing and positioning device for vase-shaped pier steel reinforcement cages is adopted. By setting a sliding groove and adjustment seat on the processing table, combined with positioning components, angle plate and column support rod, the steel reinforcement can be adjusted and fixed in multiple dimensions to meet the processing needs of vase-shaped pier steel reinforcement cages of different sizes and shapes.

Benefits of technology

It improves the adaptability of steel reinforcement cages for vase-shaped piers of different sizes and shapes, ensures the accuracy and stability of processing, and enhances processing efficiency and the overall structural safety of the building.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of reinforcement cage machining equipment, in particular to a vase pier reinforcement cage machining positioning device which comprises a machining table, a plurality of sliding grooves are formed in the machining table in the length direction of the machining table, and the length direction of the sliding grooves is perpendicular to the length direction of the machining table. A plurality of adjusting seats are slidably arranged on a sliding groove of the machining table in the length direction of the sliding groove, positioning assemblies used for fixing the adjusting seats are arranged between the adjusting seats and the machining table, angle scales are rotatably arranged on the adjusting seats, angle control pieces used for fixing the angle scales are arranged on the adjusting seats, and stand columns are arranged on the angle scales. A plurality of supporting rods are vertically arranged on the stand column in a sliding mode, height grooves allowing the supporting rods to vertically slide are formed in the stand column, the supporting rods are used for supporting steel bars, and height pieces used for fixing the supporting rods are arranged on the stand column. The machining device has the effect of being capable of machining steel reinforcement frameworks of different sizes and shapes.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of steel bar framework processing equipment, in particular to a processing and positioning device for vase pier steel bar framework. BACKGROUND

[0002] The positioning device in steel bar framework processing is an important equipment for ensuring the accuracy and stability of steel bars during processing and installation. The main function of the positioning device is to control the relative position of the steel bar diameter to prevent over-limiting or mispositioning, thereby ensuring the correct arrangement of the steel bar framework in the concrete.

[0003] During the processing of the steel bar framework, the use of the limiting device can greatly improve the work efficiency and accuracy. By accurately controlling the position and spacing of the steel bars, the quality and stability of the steel bar framework can be ensured, thereby improving the structural safety and use performance of the entire building.

[0004] A vase pier steel bar framework overall binding jig is disclosed in Chinese Patent No. CN222060726U, which comprises two bottom frames, an adjusting mechanism arranged between the two bottom frames, and a surface of the adjusting mechanism extending above the bottom frames. The adjusting mechanism comprises a bottom adjusting assembly arranged between the two bottom frames, and a side adjusting assembly arranged above the bottom adjusting assembly.

[0005] The above-mentioned technology improves the processing efficiency of the steel bar framework, but it can only process and position the vase pier steel bar framework of specific size and shape, and cannot process and position the vase pier steel bar framework of different sizes and shapes, which has some shortcomings. CONTENT OF THE UTILITY MODEL

[0006] In order to improve the problem that different sizes and shapes of vase pier steel bar framework cannot be positioned and processed, the application provides a processing and positioning device for vase pier steel bar framework.

[0007] The processing and positioning device for vase pier steel bar framework provided by the application adopts the following technical scheme:

[0008] The utility model provides a kind of flower vase pier reinforcement framework's processing positioning device, including processing table, and several sliding grooves are opened in its length direction on the processing table, the length direction of the sliding groove is perpendicular to the length direction of the processing table, the sliding groove of the processing table is slidably provided with multiple adjusting seats along the length direction of the sliding groove, and the adjusting seat is provided with a positioning assembly for fixing the adjusting seat between the adjusting seat and the processing table, the adjusting seat is rotatably provided with a protractor on the adjusting seat, the adjusting seat is provided with angle control for fixing the protractor, the protractor is provided with a stand on the adjusting seat, multiple support rods are vertically slidably provided on the stand, the stand is opened with height groove for the vertical sliding of the support rod, and the support rod is used to support reinforcement, and the stand is provided with height piece for fixing the support rod.

[0009] By adopting the above technical scheme, the worker adjusts the position of the adjusting seat at different positions on the processing table according to the size and shape of the flower vase pier reinforcement framework to be bound, then fixes the position of the adjusting seat by the positioning assembly, then changes the angle and range that the support rod on the stand can support by the angle control, then adjusts the support height of the support rod by the height piece, and finally places the reinforcement on each support rod and processes the binding, so that the flower vase pier reinforcement framework of different sizes and shapes can be processed, and the adaptability to the flower vase pier reinforcement framework of different sizes and shapes is improved.

[0010] Optionally, the positioning assembly includes a positioning tube arranged on the adjusting seat, both ends of the positioning tube are slidably provided with a pressing plate, a tension spring is arranged between the two pressing plates, a rotating shaft is rotatably arranged on the positioning tube between the two pressing plates, an elliptical drive block is arranged on the rotating shaft in the positioning tube, the pressing plate abuts against the drive block, a rubber block is arranged on the side of the pressing plate away from the drive block, a plurality of positioning teeth are arranged on the inner side wall of the sliding groove of the processing table along the length direction of the sliding groove, the rubber block is used to abut against the positioning teeth, and a locking piece is arranged on the rotating shaft for fixing the rotating shaft.

[0011] By adopting the above technical scheme, when it is necessary to fix the position of the adjusting seat, the worker rotates the rotating shaft, the rotating shaft drives the drive block to rotate synchronously, the convex end of the drive block pushes the two pressing plates to slide away from each other in the process of rotation, the tension spring is stretched, the rubber block is extruded on the positioning teeth by the pressing plate at this time, the rubber block is deformed, and then the rotating shaft is fixed by the locking piece, so that the adjusting seat is fixed on the processing table.

[0012] Optionally, the locking piece includes a handle arranged on the rotating shaft, and a locking rod is slidably arranged on the handle, when the convex end of the drive block abuts against the pressing plate, the locking rod abuts against the end of the positioning tube.

[0013] By adopting the technical scheme, the worker pulls the locking rod upward, then drives the handle to rotate the rotating shaft, and in this process, the locking rod does not touch the positioning tube; when the convex end of the driving block abuts against the pressing plate, the worker pulls the locking rod downward, and the locking rod abuts against the end of the positioning tube, so that the handle cannot continue to rotate, thereby achieving the fixing effect of the rotating shaft.

[0014] Optionally, the angle control includes a ring gear coaxially arranged on the angle plate, and the angle control block is bolted on the adjusting seat and used for clamping in the tooth gap of the ring gear.

[0015] By adopting the technical scheme, when the bending part of the vase pier reinforcement cage needs to be supported, the worker rotates the angle plate to a certain angle, and then fixes the angle control block on the adjusting seat, so that the angle plate cannot be rotated, thereby achieving the supporting effect of the reinforcement at a specific angle.

[0016] Optionally, the height component includes an inclined support plate rotationally arranged at the bottom of the support rod, a plurality of height fixing grooves are vertically arranged on the column, the inclined support plate is inserted into the height fixing groove, a rotating shaft is arranged on the support rod, a lifting sliding groove is vertically arranged on the column and communicates with the height fixing groove, and the rotating shaft is in sliding fit with the lifting sliding groove.

[0017] By adopting the technical scheme, when the height of the support rod needs to be adjusted, the worker rotates the support rod to make the inclined support plate disengage from the height fixing groove, then slides the support rod to a suitable position, rotates the support rod again and inserts the inclined support plate into the height fixing groove, and the support rod is in a horizontal state, which is beneficial to adapt to the requirements of reinforcement binding at different intervals.

[0018] Optionally, the column is rotationally arranged on the angle plate, and an anti-rotation rod is detachably arranged on the angle plate and used for abutting against the side wall of the column.

[0019] By adopting the technical scheme, after the reinforcement cage of the vase pier is bound, the worker lowers the support rod and removes the anti-rotation rod, so that the column can be rotated to a horizontal state, thereby facilitating the worker to move the bound reinforcement cage of the vase pier.

[0020] Optionally, the support rod is provided with a U-shaped reinforcing block, and the reinforcement is clamped in the U-shaped groove of the reinforcing block.

[0021] By adopting the technical scheme, the possibility of movement of the reinforcement during binding is reduced, and the accuracy of the size of the bound reinforcement cage of the vase pier is improved.

[0022] Optionally, the adjusting seat is provided with a guide strip, and the processing table is provided with a guide groove for sliding of the guide strip, and the guide strip and the guide groove are both in T-shaped cross section.

[0023] By adopting the above technical scheme, the possibility of accidental disengagement of the adjusting seat from the processing table is reduced.

[0024] To sum up, the present application has at least one of the following beneficial technical effects:

[0025] 1. Workers adjust the positions of the adjusting seats at different positions on the processing table according to the size and shape of the vase column reinforcement framework that needs to be bound, then fix the positions of the adjusting seats through the positioning assembly, then change the angle and range that the support rods on the stand column can support through the angle control, then adjust the support height of the support rods through the height component, and finally place the reinforcement on the support rods and perform binding processing, so that different sizes and shapes of vase column reinforcement frameworks can be processed, and the adaptability to different sizes and shapes of vase column reinforcement frameworks is improved.

[0026] 2. When the position of the adjusting seat needs to be fixed, the worker rotates the rotating shaft, the rotating shaft drives the driving block to rotate synchronously, the convex end of the driving block pushes the two pressing plates to slide away from each other in the process of rotation, the tension spring is stretched, at this time the pressing plates extrude the rubber block on the positioning tooth block, the rubber block is deformed, then the rotating shaft is fixed through the locking component, so that the adjusting seat is fixed on the processing table.

[0027] 3. When the height of the support rod needs to be adjusted, the worker rotates the support rod to make the inclined support plate disengage from the height fixing groove, then slides the support rod to the appropriate position, rotates the support rod again and makes the inclined support plate insert into the height fixing groove, and at this time the support rod is in a horizontal state, which is beneficial to adapt to the requirements of reinforcement binding with different spacing. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 is a structural schematic diagram of an embodiment of the present application.

[0029] Figure 2 is Figure 1 is an enlarged view of part A in

[0030] Figure 3 is a partial sectional view for embodying the internal structure of the positioning tube in an embodiment of the present application.

[0031] Figure 4 is a structural schematic diagram for embodying the positional relationship between the support rod, the inclined support plate and the anti-rotation rod in an embodiment of the present application.

[0032] Explanation of reference signs: 0, reinforcing bar; 1, processing table; 2, sliding groove; 3, adjusting seat; 4, positioning assembly; 41, positioning pipe; 42, pressing plate; 43, tension spring; 44, rotating shaft; 45, driving block; 46, rubber block; 47, positioning tooth block; 48, locking member; 481, handle; 482, locking rod; 5, angle disc; 6, angle control; 61, ring gear; 62, angle control block; 7, stand; 8, supporting rod; 9, height groove; 10, height member; 101, inclined supporting plate; 102, height fixing groove; 103, rotating shaft; 104, lifting sliding groove; 11, anti-rotation rod; 12, supporting rib block; 13, guide bar; 14, guide groove. DETAILED DESCRIPTION

[0033] The following will be described in detail with reference to the accompanying drawings. Figures 1-4 The application is further described in detail.

[0034] The application discloses a processing and positioning device for a vase pier reinforcing bar framework.

[0035] Reference Figure 1 The processing and positioning device for the vase pier reinforcing bar framework comprises a processing table 1, and a plurality of sliding grooves 2 are formed on the processing table 1 and along the length direction of the processing table 1; the length direction of the sliding grooves 2 is perpendicular to the length direction of the processing table 1; and two adjusting seats 3 are slidingly arranged on the sliding grooves 2 of the processing table 1 and along the length direction of the sliding grooves 2.

[0036] Reference Figure 2 A guide bar 13 is welded to the bottom of the adjusting seat 3, and a guide groove 14 is formed on the processing table 1 and used for the sliding of the guide bar 13; the cross sections of the guide bar 13 and the guide groove 14 are both T-shaped; and a positioning assembly 4 is arranged between the adjusting seat 3 and the processing table 1 and used for fixing the adjusting seat 3.

[0037] Reference Figure 2 and Figure 3 The positioning assembly 4 comprises a horizontal positioning pipe 41 welded to the adjusting seat 3; the positioning pipe 41 is welded by a plurality of components; the two ends of the positioning pipe 41 are slidingly provided with pressing plates 42; the two pressing plates 42 are welded with a tension spring 43; a vertical rotating shaft 44 is rotationally connected to the positioning pipe 41 and located between the two pressing plates 42; and an elliptical driving block 45 is welded to the rotating shaft 44 in the positioning pipe 41.

[0038] Reference Figure 2 and Figure 3 The pressing plate 42 abuts against the side wall of the driving block 45; a rubber block 46 is bonded to the side of the pressing plate 42 away from the driving block 45; the rubber block 46 can be made of rubber material; a plurality of positioning tooth blocks 47 are welded to the inner side wall of the sliding groove 2 of the processing table 1 and along the length direction of the sliding groove 2; the rubber block 46 is used for abutting against the positioning tooth blocks 47; and a locking member 48 is arranged on the rotating shaft 44 and used for fixing the rotating shaft 44.

[0039] Reference Figure 2 and Figure 3 The locking component 48 includes a handle 481 welded to the rotating shaft 44 and positioned horizontally. A locking rod 482 is vertically slidably connected to the handle 481. When the protruding end of the driving block 45 abuts against the pressure plate 42, the locking rod 482 abuts against the end of the positioning tube 41.

[0040] Workers adjust the positions of the adjusting seats 3 at different locations on the processing table 1 according to the size and shape of the steel reinforcement skeleton of the vase pier to be tied. When it is necessary to fix the position of the adjusting seat 3, the worker pulls the locking rod 482 upward and then pushes the locking rod 482 to drive the handle 481 to rotate around the axis of the rotating shaft 44. The rotating shaft 44 drives the drive block 45 to rotate synchronously. During this process, the locking rod 482 will not touch the positioning tube 41.

[0041] When the protruding end of the drive block 45 abuts against the pressure plate 42, the protruding end of the drive block 45 pushes the two pressure plates 42 to slide in opposite directions, and the tension spring 43 is stretched. At this time, the pressure plate 42 presses the rubber block 46 onto the positioning tooth block 47, and the rubber block 46 deforms. Then, the worker removes the locking rod 482 downwards. The locking rod 482 will abut against the end of the positioning tube 41, but will not abut against the rubber block 46, so that the handle 481 cannot be rotated, thereby fixing the adjusting seat 3.

[0042] Reference Figure 2 and Figure 4 An angle disk 5 is rotatably connected to the adjusting seat 3. An angle control 6 for fixing the angle disk 5 is arranged on the adjusting seat 3. The angle control 6 includes a ring gear ring 61 coaxially welded to the angle disk 5. An angle control block 62 is bolted to the adjusting seat 3. The angle control block 62 is used to be locked in the tooth gap of the ring gear ring 61.

[0043] Reference Figure 2 and Figure 4 An upright column 7 is rotatably connected to the angle plate 5. An anti-rotation rod 11 is bolted to the angle plate 5. The anti-rotation rod 11 is used to abut against the side wall of the upright column 7. Multiple support rods 8 are vertically slidably arranged on the upright column 7. A height groove 9 is opened on the upright column 7 for the support rods 8 to slide vertically.

[0044] Reference Figure 4 The support rod 8 is welded with a U-shaped cross-section support block 12, and the steel bar 0 is stuck in the U-shaped groove of the support block 12. The column 7 is provided with a height member 10 for fixing the support rod 8. The height member 10 includes a diagonal brace plate 101 rotatably connected to the bottom of the support rod 8.

[0045] Reference Figure 4A plurality of fixed height grooves 102 are formed on the vertical column 7 and along the vertical direction thereof, and the inclined support plate 101 is inserted into the fixed height grooves 102; a rotating shaft 103 is rotatably connected to the support rod 8; a lifting sliding groove 104 is vertically formed on the vertical column 7 and is in communication with the height groove 9; and the rotating shaft 103 vertically slides and rotates with the lifting sliding groove 104.

[0046] The worker rotates the vertical column 7, and then bolts the anti-rotation rod 11 to keep the vertical column 7 in a vertical state; when the height of the support rod 8 needs to be adjusted, the worker vertically rotates the support rod 8 upward, so that the inclined support plate 101 is separated from the fixed height grooves 102; then the support rod 8 is slid to a suitable position, and the support rod 8 is reversely rotated again, so that the inclined support plate 101 is inserted into the fixed height grooves 102, and the support rod 8 is in a horizontal state at this time.

[0047] When the bending part of the vase column steel reinforcement framework needs to be supported, the worker first removes the angle control block 62, then rotates the angle disc 5 to a certain angle, and then bolts the angle control block 62 to the adjusting seat 3 and makes the angle control block 62 clamped in the tooth gap of the ring gear 61, so that the angle disc 5 cannot be rotated, so that the bending part of the steel reinforcement 0 can be supported.

[0048] The implementation principle of the vase column steel reinforcement framework processing and positioning device is that the worker adjusts the positions of the adjusting seats 3 at different positions on the processing table 1 according to the size and shape of the vase column steel reinforcement framework that needs to be bound; when the position of the adjusting seat 3 needs to be fixed, the worker pulls the locking rod 482 upward, and then pushes the locking rod 482 to drive the handle 481 to rotate around the axis of the rotating shaft 44, and the rotating shaft 44 drives the driving block 45 to rotate synchronously, and in this process, the locking rod 482 does not touch the positioning pipe 41.

[0049] When the convex end of the driving block 45 abuts against the pressing plate 42, the convex end of the driving block 45 pushes the two pressing plates 42 to slide away from each other, and the tension spring 43 is stretched; at this time, the pressing plate 42 extrudes the rubber block 46 on the positioning tooth block 47, and the rubber block 46 is deformed; then the worker removes the locking rod 482 downward, and the locking rod 482 abuts against the end of the positioning pipe 41, but does not abut against the rubber block 46, so that the handle 481 cannot be rotated, thereby fixing the adjusting seat 3.

[0050] The worker rotates the vertical column 7, and then bolts the anti-rotation rod 11 to keep the vertical column 7 in a vertical state; when the height of the support rod 8 needs to be adjusted, the worker vertically rotates the support rod 8 upward, so that the inclined support plate 101 is separated from the fixed height grooves 102; then the support rod 8 is slid to a suitable position, and the support rod 8 is reversely rotated again, so that the inclined support plate 101 is inserted into the fixed height grooves 102, and the support rod 8 is in a horizontal state at this time.

[0051] When the support is needed for the bending part of the vase column steel skeleton, the worker first removes the angle control block 62, then rotates the angle disc 5 to a certain angle, and then re-bolts the angle control block 62 on the adjusting seat 3, and makes the angle control block 62 clamped in the tooth gap of the ring gear 61, so that the angle disc 5 cannot be rotated, so that the steel 0 of the bending part can be supported.

[0052] The above are preferred embodiments of the present application, not to limit the protection scope of the present application, therefore: all equivalent changes made according to the structure, shape, principle of the present application should be covered within the protection scope of the present application.

Claims

1. A processing and positioning device for a vase-shaped pier steel reinforcement cage, characterized in that: The utility model provides a kind of steel bar processing device, including processing platform (1), several sliding grooves (2) are opened on the processing platform (1) and along its length direction, the length direction of the sliding groove (2) is perpendicular to the length direction of the processing platform (1), the sliding groove (2) of the processing platform (1) is slidably arranged with multiple adjusting seats (3) along the length direction of the sliding groove (2), the adjusting seat (3) and the processing platform (1) between being provided with the positioning assembly (4) for fixing the adjusting seat (3), the adjusting seat (3) is rotatably provided with angle plate (5), the adjusting seat (3) is provided with angle control (6) for fixing the angle plate (5), the angle plate (5) is provided with vertical column (7), multiple support bars (8) are vertically slidably arranged on the vertical column (7), the vertical column (7) is opened with the height groove (9) for the vertical sliding of the support bar (8), and the support bar (8) is used to support steel bar (0), and the vertical column (7) is provided with height piece (10) for fixing the support bar (8).

2. The processing and positioning device for the vase pedestal reinforcement framework according to claim 1, characterized in that: The positioning assembly (4) includes a positioning tube (41) arranged on the adjusting seat (3), both ends of the positioning tube (41) are slidably provided with a pressing plate (42), a tension spring (43) is arranged between the two pressing plates (42), a rotating shaft (44) is rotatably arranged on the positioning tube (41) between the two pressing plates (42), the rotating shaft (44) in the positioning tube (41) is provided with an elliptical cross-section drive block (45), the pressing plate (42) abuts on the drive block (45), the side of the pressing plate (42) away from the drive block (45) is provided with a rubber block (46), the inner side wall of the sliding groove (2) of the processing platform (1) is provided with a plurality of positioning tooth blocks (47) along the length direction of the sliding groove (2), the rubber block (46) is used to abut on the positioning tooth block (47), and the rotating shaft (44) is provided with a locking member (48) for fixing the rotating shaft (44).

3. The processing and positioning device for the vase pedestal reinforcement framework according to claim 2, characterized in that: The locking member (48) includes a handle (481) arranged on the rotating shaft (44), a locking rod (482) is slidably arranged on the handle (481), when the convex end of the drive block (45) abuts on the pressing plate (42), the locking rod (482) abuts on the end of the positioning tube (41).

4. The positioning device for processing a vase pedestal reinforcement framework according to claim 1, wherein: The angle control (6) includes a ring gear (61) coaxially arranged on the angle plate (5), and an angle control block (62) is bolted on the adjusting seat (3), and the angle control block (62) is used to be clamped in the tooth gap of the ring gear (61).

5. The positioning device for processing a vase reinforcement framework according to claim 1, wherein: The height part (10) comprises an inclined support plate (101) rotatably arranged at the bottom of the support rod (8), a plurality of height setting grooves (102) are arranged on the vertical column (7) and along the vertical direction of the vertical column (7), the inclined support plate (101) is inserted into the height setting grooves (102), a rotating shaft (103) is arranged on the support rod (8), a lifting sliding groove (104) in communication with the height setting grooves (9) is vertically arranged on the vertical column (7), and the rotating shaft (103) is in sliding fit with the lifting sliding groove (104).

6. The processing and positioning device for a vase reinforcement framework according to claim 5, characterized in that: The vertical column (7) is rotatably arranged on the angle disc (5), and a rotation preventing rod (11) is detachably arranged on the angle disc (5), and the rotation preventing rod (11) is used for abutting against the side wall of the vertical column (7).

7. The positioning device for processing a vase reinforcement framework according to claim 5, wherein: A U-shaped reinforcing bar block (12) is arranged on the support rod (8), and the reinforcing bar (0) is clamped in the U-shaped groove of the reinforcing bar block (12).

8. The processing and positioning device for a vase reinforcement framework according to claim 2, characterized in that: A guide strip (13) is arranged on the adjusting seat (3), a guide groove (14) for the sliding of the guide strip (13) is arranged on the processing table (1), and the cross sections of the guide strip (13) and the guide groove (14) are both T-shaped.

Citation Information

Patent Citations

  • Flower vase pier reinforcement cage integral binding jig frame

    CN222060726U