Tiling mechanism of high-speed rail box girder reinforcing rib bending machine

By designing a flattening mechanism for the high-speed railway box girder reinforcement bending machine and using an oscillating motor and rubber pads to vibrate and spread out the steel bars, the problem of low steel bar retrieval efficiency in the existing technology is solved, achieving the effects of efficient retrieval and enhanced structural strength.

CN223440983UActive Publication Date: 2025-10-17白林平
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Patent Information

Application Number
CN202422047442.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-22
Publication Date
2025-10-17
Estimated Expiration
2034-08-22

AI Technical Summary

Technical Problem

During the processing, existing steel bars need to be cut and bundled and taken out one by one, which is inefficient and difficult to quickly take out the required steel bars from a pile of steel bars.

Method used

A flattening mechanism for a high-speed railway box girder reinforcement bending machine is designed. An oscillating motor is used to drive the I-beam and rubber pad to vibrate, thereby spreading out bundles of steel bars. Iron filings and dust are collected through an annular rubber belt and a dust collecting plate, thereby improving the efficiency of steel bar retrieval.

Benefits of technology

It achieves efficient spreading and taking of steel bars, prevents steel bars from rolling down, enhances structural strength, and facilitates the cleaning of iron filings and dust.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a tiling mechanism of a high-speed rail box girder reinforcing rib bending machine, which is characterized in that I-shaped steel B is arranged on the right side of I-shaped steel A, I-shaped steel C is tiled and fixed between the upper surfaces of the I-shaped steel A and the I-shaped steel B at unequal intervals, the left parts of the lower surfaces of the two I-shaped steel C in the middle are provided with a same placing plate A, and the right parts of the lower surfaces of the two I-shaped steel C in the middle are provided with a same placing plate B; an oscillation motor A is arranged on the lower surface of the placing plate A, an oscillation motor B is arranged on the lower surface of the placing plate B, rubber pads A are arranged on the front and rear portions of the lower surface of the I-shaped steel A respectively, supporting legs A are arranged on the lower surfaces of the rubber pads A respectively, rubber pads B are arranged on the front and rear portions of the lower surface of the I-shaped steel B respectively, and supporting legs B are arranged on the lower surfaces of the rubber pads B. The steel bar taking-away device has the advantage of being high in steel bar taking-away efficiency.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of paving mechanism, in particular to a kind of paving mechanism of high-speed rail box girder reinforcing bar bending machine. BACKGROUND

[0002] In the construction of high-speed rail system, overhead bridge structure is often used, in order to strengthen the firmness of overhead bridge, box girder is used to strengthen the structural strength of bridge, high-speed rail box girder is a concrete prefabricated part with steel bars in the middle, a large number of steel bars are used in the processing of high-speed rail box girder; At present, the existing steel bars are bundled into bundles with iron sheets, when processing steel bars, the bundled steel bars need to be cut, and the steel bars are taken one by one, in a pile of steel bars, two people cannot quickly lift the same steel bar needed to be taken out, and the efficiency of taking out steel bars is low. UTILITY MODEL CONTENTS

[0003] The utility model solves the technical problems that the existing steel bars are bundled into bundles with iron sheets, when processing steel bars, the bundled steel bars need to be cut, and the steel bars are taken one by one, in a pile of steel bars, two people cannot quickly lift the same steel bar needed to be taken out, and the efficiency of taking out steel bars is low.

[0004] The utility model employs the technical scheme to solve the above problems:

[0005] A kind of paving mechanism of high-speed rail box girder reinforcing bar bending machine, including H steel A1, H steel B2, H steel C3, placing plate A4, placing plate B5, oscillation motor A6, oscillation motor B7, rubber pad A8, rubber pad B9, support leg A10 and support leg B11, H steel A1 right side is provided with H steel B2, H steel A1, H steel B2 upper surface are not equal interval and are fixed with H steel C3, the lower surface left part of the two H steel C3 located in middle portion is fixedly provided with same placing plate A4, the lower surface right part of the two H steel C3 located in middle portion is fixedly provided with same placing plate B5, the lower surface of placing plate A4 is fixedly provided with oscillation motor A6, the lower surface of placing plate B5 is fixedly provided with oscillation motor B7, the lower surface front, back of H steel A1 is fixedly provided with rubber pad A8, the lower surface of each rubber pad A8 is fixedly provided with support leg A10, the lower surface front, back of H steel B2 is fixedly provided with rubber pad B9, the lower surface of each rubber pad B9 is fixedly provided with support leg B11.

[0006] The left and right side walls of each H steel C3 are fixedly provided with limiting plate 12, and the upper part of each limiting plate 12 protrudes from the H steel C3, to prevent the steel bars placed on the surface of H steel C3 from rolling off.

[0007] The same reinforcing rib A13 is fixedly arranged between the two legs A10, and the same reinforcing rib B14 is fixedly arranged between the two legs B11, the reinforcing rib A13 strengthens the structural strength between the two legs A10, and the reinforcing rib B14 strengthens the structural strength between the two legs B11.

[0008] The same reinforcing rib C15 is fixedly arranged between the two legs A10 and B11 on the front side, and the same reinforcing rib D16 is fixedly arranged between the two legs A10 and B11 on the back side, the reinforcing rib C15 strengthens the structural strength between the two legs A10 and B11 on the front side, and the reinforcing rib D16 strengthens the structural strength between the two legs A10 and B11 on the back side.

[0009] The same dust containing plate 17 is arranged on the upper surface of the reinforcing rib C15 and the reinforcing rib D16, so that the iron filings and dust falling from the reinforcing rib can be contained by the dust containing plate 17.

[0010] The supporting plates 18 are fixedly arranged on the lower surface of the dust containing plate 17, the supporting shafts 19 are fixedly arranged on the supporting plates 18, the groove wheels 20 are rotatably arranged on the left and right parts of the supporting shafts 19, the same annular rubber belt 21 is rotatably arranged on the groove wheels 20 on the left side, the same annular rubber belt 21 is rotatably arranged on the groove wheels 20 on the right side, and the annular rubber belts 21 are rotatably connected with the reinforcing rib C15 and the reinforcing rib D16, so that the dust containing plate 17 can be pulled away from the reinforcing rib C15 and the reinforcing rib D16 by the annular rubber belt 21.

[0011] The working principle of the utility model is as follows: according to the working requirement, the vibration frequency of the oscillation motor A and the oscillation motor B is adjusted, the bundled reinforcing steel bars are placed on the right part of the upper surface of the I-shaped steel C, the bundled reinforcing steel bars are cut, and the oscillation motor A and the oscillation motor B are started at the same time, the placing plate A is driven by the oscillation motor A, the left part of the I-shaped steel C is driven by the placing plate A, the I-shaped steel C is driven by the rubber pad A, the placing plate B is driven by the oscillation motor B, the right part of the I-shaped steel C is driven by the placing plate B, the I-shaped steel C is driven by the rubber pad B, under the condition that the vibration frequency of the oscillation motor A and the oscillation motor B is different, the reinforcing steel bars are scattered on the I-shaped steel C, the reinforcing steel bars are scattered on the I-shaped steel C from right to left in sequence, the reinforcing steel bars on the left part of the I-shaped steel C are taken away one by one, the iron filings and dust generated in the vibration process of the reinforcing steel bars fall on the dust containing plate, and the oscillation motor A and the oscillation motor B are stopped after work.

[0012] Pull the dust containing plate forward, the dust containing plate drives each support plate, each support plate drives the connected support shaft respectively, each support shaft drives each groove wheel respectively, each groove wheel drives the matched annular rubber belt to roll respectively, the annular rubber belt rolls away from the reinforcing rib D, reinforcing rib C in turn, moves the dust containing plate to the appropriate position, and removes the iron filings and dust on the surface of the dust containing plate;The dust containing plate is put back to the original position from the reinforcing rib C, reinforcing rib D in turn, the annular rubber belt is rolled back to the original position indirectly by the dust containing plate in the process, and the dust containing plate is stopped.

[0013] The utility model discloses the beneficial effects have: 1, the efficiency of taking away steel bar is higher. 2, prevent the steel bar on the surface of I -steel C and roll down. 3, through the structural strength of strengthening rib A and strengthen between two branch legs A, through the structural strength of strengthening rib B and strengthen between two branch legs B. 4, through the structural strength of strengthening rib C and strengthen between the branch leg A, branch leg B on the front side, through the structural strength of strengthening rib D and strengthen between the branch leg A, branch leg B on the back side. 5, convenient through the dust containing plate and contain the iron filings and dust falling on the steel bar. 6, convenient through the annular rubber belt and draw the dust containing plate away from the reinforcing rib C, reinforcing rib D. ACCURACY OF DRAWINGS

[0014] Figure 1 It is the structural schematic diagram of the utility model;

[0015] Figure 2 It is the lower view of the utility model;

[0016] Figure 3 It is the structural schematic diagram of the utility model and the dust containing plate cooperation;

[0017] Figure 4 It is the structural schematic diagram of the dust containing plate of the utility model;

[0018] Figure 5 It is the plan of the dust containing plate of the utility model.

[0019] Wherein, 1-I -steel A;2-I -steel B;3-I -steel C;4-putting plate A;5-putting plate B;6-oscillating motor A;7-oscillating motor B;8-rubber pad A;9-rubber pad B;10-branch leg A;11-branch leg B;12-limiting plate;13-strengthening rib A;14-strengthening rib B;15-strengthening rib C;16-strengthening rib D;17-dust containing plate;18-support plate;19-support shaft;20-groove wheel;21-annular rubber belt. SPECIFIC IMPLEMENTATION

[0020] The embodiment of the utility model is further explained below in combination with the drawings.

[0021] As Figures 1 to 2The utility model provides a kind of paving mechanism of high-speed rail box girder reinforcing bar bending machine, including I-beam A1, I-beam B2, I-beam C3, rest plate A4, rest plate B5, oscillation motor A6, oscillation motor B7, rubber pad A8, rubber pad B9, leg A10 and leg B11, I-beam A1 right side is provided with I-beam B2, I-beam A1, I-beam B2 upper surface are fixed with I-beam C3 between unequal interval paving, the lower surface left part of two I-beam C3 located in middle portion is fixedly provided with same rest plate A4, the lower surface right part of two I-beam C3 located in middle portion is fixedly provided with same rest plate B5, rest plate A4 lower surface is fixedly provided with oscillation motor A6, rest plate B5 lower surface is fixedly provided with oscillation motor B7, I-beam A1 lower surface front, back is fixedly provided with rubber pad A8, and each described rubber pad A8 lower surface is fixedly provided with leg A10, I-beam B2 lower surface front, back is fixedly provided with rubber pad B9, and each described rubber pad B9 lower surface is fixedly provided with leg B11.

[0022] Meanwhile, as shown in Figures 1 to 2 In the embodiment, the left and right side walls of each I-beam C3 are fixedly provided with limiting plates 12, and each limiting plate 12 protrudes above the I-beam C3, to prevent the steel bars placed on the surface of the I-beam C3 from rolling off.

[0023] Meanwhile, as shown in Figures 1 to 2 In the embodiment, a reinforcing bar A13 is fixedly arranged between the two legs A10, and a reinforcing bar B14 is fixedly arranged between the two legs B11, to strengthen the structural strength between the two legs A10 by the reinforcing bar A13 and to strengthen the structural strength between the two legs B11 by the reinforcing bar B14.

[0024] Meanwhile, as shown in Figures 1 to 2 In the embodiment, a reinforcing bar C15 is fixedly arranged between the leg A10 and the leg B11 on the front side, and a reinforcing bar D16 is fixedly arranged between the leg A10 and the leg B11 on the back side, to strengthen the structural strength between the leg A10 and the leg B11 on the front side by the reinforcing bar C15 and to strengthen the structural strength between the leg A10 and the leg B11 on the back side by the reinforcing bar D16.

[0025] Meanwhile, as shown in Figure 3 In the embodiment, a dust containing plate 17 is placed on the upper surfaces of the reinforcing bar C15 and the reinforcing bar D16, to facilitate the collection of iron filings and dust falling from the steel bars by the dust containing plate 17.

[0026] Meanwhile, as shown in Figures 4 to 5As shown, in the embodiment, the undersurface of the dust holding plate 17 is uniformly and fixedly provided with support plates 18, each of which is fixedly provided with a support shaft 19 penetrating therethrough, each of the support shafts 19 is rotatably provided with a groove wheel 20 at the left and right sides, the groove wheel 20 at the left side is rotatably sleeved with a same annular rubber belt 21, the groove wheel 20 at the right side is rotatably sleeved with a same annular rubber belt 21, and each of the annular rubber belts 21 is rollingly connected with the reinforcing rib C15 and the reinforcing rib D16, so as to facilitate the separation of the dust holding plate 17 from the reinforcing rib C15 and the reinforcing rib D16 through the annular rubber belt 21.

[0027] The working principle of the embodiment is as follows: according to the working requirement, the oscillation frequencies of the oscillation motor A6 and the oscillation motor B7 are adjusted, the bundled steel bars are placed on the right part of the upper surface of the I-beam C3, the bundled steel bars are cut, and the oscillation motor A6 and the oscillation motor B7 are started at the same time, the oscillation motor A6 drives the placing plate A4, the placing plate A4 drives the left part of the I-beam C3 to vibrate, the I-beam C3 drives the rubber pad A8 to vibrate, the oscillation motor B7 drives the placing plate B5, the placing plate B5 drives the right part of the I-beam C3 to vibrate, and the I-beam C3 drives the rubber pad B9 to vibrate, under the condition that the oscillation frequencies of the oscillation motor A6 and the oscillation motor B7 are different, the steel bars are scattered on the I-beam C3, the steel bars are sequentially oscillated and scattered from right to left on the surface of the I-beam C3, the steel bars on the left part of the I-beam C3 are taken away one by one, and the iron filings and dust generated in the oscillation process of the steel bars fall on the dust holding plate 17, and the operation of the oscillation motor A6 and the oscillation motor B7 is stopped after the work is completed.

[0028] The dust holding plate 17 is pulled forward, the dust holding plate 17 drives each support plate 18, each support plate 18 drives the connected support shaft 19, each support shaft 19 drives each groove wheel 20, each groove wheel 20 drives the matched annular rubber belt 21 to roll, the annular rubber belt 21 rolls away from the reinforcing rib D16 and the reinforcing rib C15 in sequence, the dust holding plate 17 is moved to a suitable position, and the iron filings and dust on the surface of the dust holding plate 17 are cleaned away, the dust holding plate 17 is sequentially placed back to the original position from the reinforcing rib C15 and the reinforcing rib D16, the annular rubber belt 21 is indirectly driven by the dust holding plate 17 to roll back to the original position in the process, and the dust holding plate 17 is stopped from being pushed.

[0029] In summary, in use, the I-beam A1, the I-beam B2, the I-beam C3, the placing plate A4, the placing plate B5, the oscillation motor A6, the oscillation motor B7, the rubber pad A8, the rubber pad B9, the supporting leg A10, the supporting leg B11, the limiting plate 12, the reinforcing rib A13, the reinforcing rib B14, the reinforcing rib C15, the reinforcing rib D16, the dust holding plate 17, the support plate 18, the support shaft 19, the groove wheel 20, and the annular rubber belt 21 are assembled into a flat mechanism of the high-speed railway box girder reinforcing rib bending machine, and the flat mechanism of the high-speed railway box girder reinforcing rib bending machine improves the efficiency of taking away the steel bars.

[0030] The utility model discloses beneficial effect has: 1, the efficiency of taking away steel bar is higher. 2, prevent the steel bar placed on the I -steel C surface and roll down. 3, through the reinforcement A strengthens the structural strength between two branch legs A, through the reinforcement B strengthens the structural strength between two branch legs B. 4, through the reinforcement C strengthens the structural strength between the branch leg A, branch leg B of being located in the front side, through the reinforcement D strengthens the structural strength between the branch leg A, branch leg B of being located in the back side. 5, convenient through the dust holding board holds the iron filings, dust that falls on steel bar. 6, convenient through the annular rubber band and take away the dust holding board reinforcement C, reinforcement D.

[0031] The specific embodiments of the utility model do not constitute the limitation to the utility model, and all the similar structures and changes adopting the utility model are within the protection scope of the utility model.

Claims

1. A flattening mechanism for a high-speed railway box girder reinforcement bending machine, characterized by: The invention comprises an I-beam A (1), an I-beam B (2), an I-beam C (3), a mounting plate A (4), a mounting plate B (5), an oscillating motor A (6), an oscillating motor B (7), a rubber pad A (8), a rubber pad B (9), a support leg A (10), and a support leg B (11). An I-beam B (2) is arranged on the right side of the I-beam A (1). An I-beam C (3) is fixed flatly at unequal intervals between the upper surfaces of the I-beams A (1) and the I-beams B (2). The left side of the lower surface of the two I-beams C (3) located in the middle is fixedly provided with the same mounting plate A (4). The two I-beams C (3) located in the middle are fixedly provided with the same mounting plate A (4). The same mounting plate B (5) is fixedly provided on the right side of the lower surface of the I-beam C (3), an oscillating motor A (6) is fixedly provided on the lower surface of the mounting plate A (4), and an oscillating motor B (7) is fixedly provided on the lower surface of the mounting plate B (5). Rubber pads A (8) are fixedly provided on the front and rear portions of the lower surface of the I-beam A (1), and a support leg A (10) is fixedly provided on the lower surface of each rubber pad A (8). Rubber pads B (9) are fixedly provided on the front and rear portions of the lower surface of the I-beam B (2), and a support leg B (11) is fixedly provided on the lower surface of each rubber pad B (9).

2. The flattening mechanism of the high-speed railway box girder reinforcement bending machine according to claim 1, characterized in that: A limiting plate (12) is fixedly provided on the left and right side walls of each I-beam C (3), and the upper portion of each limiting plate (12) protrudes from the I-beam C (3).

3. The flattening mechanism of the high-speed railway box girder reinforcement bending machine according to claim 1, characterized in that: A common reinforcing rib A (13) is fixedly provided between the two supporting legs A (10), and a common reinforcing rib B (14) is fixedly provided between the two supporting legs B (11).

4. The flattening mechanism of a high-speed railway box girder reinforcement bending machine according to claim 1, characterized in that: A common reinforcing rib C (15) is fixedly provided between the support legs A (10) and B (11) located at the front side, and a common reinforcing rib D (16) is fixedly provided between the support legs A (10) and B (11) located at the rear side.