CN222873235U - Support tool for wind power tower bobbin sheet steel reinforcement framework - Google Patents

Support tool for wind power tower bobbin sheet steel reinforcement framework Download PDF

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Publication number
CN222873235U
CN222873235U CN202421837464.3U CN202421837464U CN222873235U CN 222873235 U CN222873235 U CN 222873235U CN 202421837464 U CN202421837464 U CN 202421837464U CN 222873235 U CN222873235 U CN 222873235U
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China
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arc
fixedly connected
steel reinforcement
wind power
supporting plate
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CN202421837464.3U
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Chinese (zh)
Inventor
王玉雷
赵飞
刘聪
张�浩
胡朝朋
刘欢欢
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Hebei Yugou Building Materials Co ltd
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Hebei Yugou Building Materials Co ltd
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Abstract

The utility model relates to the technical field of wind power towers and provides a supporting tool for a steel reinforcement framework of a wind power tower tube sheet, which comprises an underframe, arc-shaped frames, bending mechanisms, clamping mechanisms and fixing mechanisms, wherein the arc-shaped frames are two, the two arc-shaped frames are fixedly connected to the underframe, the bending mechanisms are two, the two bending mechanisms are respectively arranged on the two arc-shaped frames and are used for bending steel reinforcement, the clamping mechanisms are two, the two clamping mechanisms are respectively arranged on the two arc-shaped frames and are used for lifting and fixing the steel reinforcement, the fixing mechanisms are provided with a plurality of fixing mechanisms, and the fixing mechanisms are respectively arranged at four corners of the underframe and are used for fixing one end of the steel reinforcement.

Description

Support tool for wind power tower bobbin sheet steel reinforcement framework
Technical Field
The utility model relates to the technical field of wind power towers, in particular to a supporting tool for a steel reinforcement framework of a wind power tower pipe slice.
Background
The wind power tower is a tower pole of wind power generation, mainly plays a supporting role in a wind power generator set, absorbs vibration of the set, and is internally supported by a mounting reinforcement cage when a wind power tower tube piece is mounted.
The existing reinforcement cage is welded, the reinforcement needs to be bent into an arc shape through bending equipment, after the reinforcement is bent, an operator takes down the reinforcement from the bending equipment, then the operator places the bent reinforcement neatly and then welds the reinforcement, in the welding process, the operator needs to manually lift the reinforcement frequently to a designated position to weld, and the welding mode is time-consuming and labor-consuming, and the welding efficiency of the reinforcement cage is reduced.
Disclosure of utility model
The utility model provides a supporting tool for a steel reinforcement framework of a wind power tower tube slice, which solves the problems that in the welding process in the prior art, operators are required to frequently manually lift steel reinforcements to specified positions for welding, the welding mode is time-consuming and labor-consuming, and the welding efficiency of the steel reinforcement framework is reduced.
The technical scheme of the utility model is that the support tool for the wind power tower tube sheet steel reinforcement cage comprises an underframe, an arc-shaped frame, a bending mechanism, a clamping mechanism and a fixing mechanism;
the two arc-shaped frames are fixedly connected to the underframe;
The bending mechanisms are arranged in two and are respectively arranged on the two arc-shaped frames and used for bending the steel bars;
the two clamping mechanisms are respectively arranged on the two arc-shaped frames and used for lifting and fixing the reinforcing steel bars;
The fixing mechanisms are arranged in a plurality, and the fixing mechanisms are respectively arranged at four corners of the underframe and used for fixing one end of the reinforcing steel bar.
Preferably, the bending mechanism comprises a supporting plate, a lifting frame, a bending wheel, a first electric cylinder and a moving assembly;
The supporting plate is arranged on the arc-shaped frame in a sliding manner;
the lifting frame is arranged on the supporting plate in a sliding way;
the bending wheel is rotatably arranged in the lifting frame;
the two first electric cylinders are arranged on the supporting plate, and the output ends of the two first electric cylinders are fixedly connected with the lifting frame;
The moving assembly is arranged on the supporting plate and used for driving the supporting plate to move on the arc-shaped frame.
Further, the moving assembly comprises a toothed ring, a driving gear and a first motor;
The toothed ring is fixedly connected in the arc-shaped frame;
the driving gear is rotatably arranged on the supporting plate and meshed with the toothed ring;
The first motor is arranged on the supporting plate, and the output end of the first motor penetrates through the supporting plate and is fixedly connected with the driving gear.
Still further, the clamping mechanism comprises a clamping rod, a clamping block and a driving assembly;
the two clamping rods are arranged and are both rotatably arranged on the supporting plate;
the two clamping blocks are respectively arranged on the two clamping rods in a rotating way;
The driving component is arranged on the supporting plate and is used for driving the two clamping rods to move.
As a further scheme of the application, the driving assembly comprises a driving rod, a connecting frame and a second electric cylinder;
The two driving rods are respectively arranged on the two clamping rods in a rotating way;
the connecting frame is rotatably connected between the two driving rods;
The second electric cylinder is arranged on the supporting plate, and the output end of the second electric cylinder penetrates through the supporting plate and is fixedly connected with the connecting frame.
As a still further scheme of the application, the fixing mechanism comprises a fixing plate, a fixing block and a third electric cylinder;
The fixed plate is fixedly connected to the underframe;
the fixed block is arranged on the fixed plate;
The third electric cylinder is arranged on the fixed plate, and the output end of the third electric cylinder penetrates through the fixed plate and is fixedly connected with the fixed block.
On the basis of the scheme, the arc-shaped frame is fixedly connected with a sliding box, the supporting plate is fixedly connected with a sliding block, and the sliding block is arranged in the sliding box in a sliding mode.
On the basis of the scheme, a sliding rod is fixedly connected to the supporting plate, a sliding hole is formed in the lifting frame, and the sliding rod is arranged in the sliding hole in a sliding mode.
As the preferable technical scheme of the application, the supporting plate is fixedly connected with a rotating seat, and the clamping rod is rotatably arranged in the rotating seat.
As a preferable technical scheme of the application, the bending wheel is provided with a groove matched with the steel bar and corresponds to the arc-shaped frame.
The working principle and the beneficial effects of the utility model are as follows:
1. According to the utility model, the fixing and bending of the tightening are facilitated through the cooperation between the bending mechanism and the fixing mechanism, and the steel bar is required to be detached after bending and directly welded.
2. According to the utility model, through the arrangement of the clamping mechanism, the steel bars to be welded are convenient to clamp and fix, and an operator does not need to manually lift the steel bars for welding.
3. According to the utility model, through the cooperation among the underframe, the arc-shaped frame, the bending mechanism, the clamping mechanism and the fixing mechanism, the steel bars can be conveniently and rapidly welded without disassembly after bending, and in the welding process, operators do not need to frequently lift the steel bars, so that time and labor are saved, and the welding efficiency of the steel bar framework is improved.
Drawings
The utility model will be described in further detail with reference to the drawings and the detailed description.
FIG. 1 is a schematic view of the overall structure of the present utility model;
FIG. 2 is a schematic view of the structure of the arc frame, bending mechanism and clamping mechanism of the present utility model;
FIG. 3 is a schematic view of the bending mechanism and the clamping mechanism of the present utility model;
Fig. 4 is a schematic structural view of the fixing mechanism of the present utility model.
The device comprises a chassis, an arc-shaped frame, a supporting plate, a lifting frame, a bending wheel, a first electric cylinder, a 7, a toothed ring, a driving gear, a 9, a first motor, a 10, a clamping rod, a 11, a clamping block, a 12, a driving rod, a 13, a connecting frame, a 14, a second electric cylinder, a 15, a fixed plate, a 16, a fixed block, a 17, a third electric cylinder, a 18, a sliding box, a 19, a sliding block, a 20, a sliding rod, a 21 and a rotating seat.
Detailed Description
The technical solutions of the embodiments of the present utility model will be clearly and completely described below in conjunction with the embodiments of the present utility model, and it is apparent that the described embodiments are only some embodiments of the present utility model, not all embodiments. All other embodiments, which can be made by one of ordinary skill in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
As shown in fig. 1-4, the embodiment provides a support tool for a wind power tower tube sheet reinforcement cage, which comprises a bottom frame 1, arc frames 2, bending mechanisms, clamping mechanisms and fixing mechanisms, wherein a sliding box 18 is fixedly connected to the arc frames 2, a sliding block 19 is fixedly connected to a support plate 3, the sliding blocks 19 are arranged in the sliding box 18 in a sliding manner, the arc frames 2 are provided with two, the two arc frames 2 are fixedly connected to the bottom frame 1, and the rapid welding can be performed without disassembling after bending the reinforcement through the cooperation among the bottom frame 1, the arc frames 2, the bending mechanisms, the clamping mechanisms and the fixing mechanisms.
As shown in fig. 1-3, wherein two bending mechanisms are arranged, the two bending mechanisms are respectively arranged on two arc frames 2 and used for bending reinforcing steel bars, each bending mechanism comprises a supporting plate 3, a lifting frame 4, bending wheels 5, a first electric cylinder 6 and a moving assembly, grooves matched with the reinforcing steel bars are formed in the bending wheels 5 and correspond to the arc frames 2, sliding rods 20 are fixedly connected to the supporting plates 3, sliding holes are formed in the lifting frames 4, the sliding rods 20 are arranged in the sliding holes in a sliding manner, the supporting plates 3 are arranged on the arc frames 2 in a sliding manner, the lifting frames 4 are arranged on the supporting plates 3 in a sliding manner, the bending wheels 5 are arranged in the lifting frames 4 in a rotating manner, the first electric cylinders 6 are arranged on the two first electric cylinders 6 and are all arranged on the supporting plates 3, the output ends of the two first electric cylinders 6 are fixedly connected with the lifting frames 4, the moving assembly is arranged on the supporting plates 3 and used for driving the supporting plates 3 to move on the arc frames 2, each moving assembly comprises a toothed ring 7, a driving gear 8 and a first motor 9, the toothed ring 7 is fixedly connected in the lifting frames 2, the driving gear 8 is arranged on the driving gear 8, the driving gear 8 is arranged on the supporting plates 3 and is arranged on the arc frames 3, the first electric cylinders 9 and then the first electric cylinders 3 are arranged on the supporting plates 3 through the rolling frames 3 and the first electric cylinders 3 are arranged on the lifting frames 3 in a pressing manner, and the rolling frames 3 are arranged on the lifting frames 3 and the first electric cylinders 3 and then the lifting frames 3 are fixedly connected.
As shown in fig. 1-3, two clamping mechanisms are respectively arranged on two arc-shaped frames 2 and used for lifting and fixing reinforcing steel bars, each clamping mechanism comprises a clamping rod 10, a clamping block 11 and a driving assembly, a rotating seat 21 is fixedly connected to a supporting plate 3, the clamping rods 10 are rotatably arranged in the rotating seats 21, the clamping rods 10 are respectively provided with two clamping rods 10 and are rotatably arranged on the supporting plate 3, the clamping blocks 11 are respectively rotatably arranged on the two clamping rods 10, the driving assembly is arranged on the supporting plate 3 and used for driving the two clamping rods 10 to move, each driving assembly comprises a driving rod 12, a connecting frame 13 and a second electric cylinder 14, the driving rods 12 are respectively rotatably arranged on the two clamping rods 10, the connecting frame 13 is rotatably connected between the two driving rods 12, the second electric cylinder 14 is arranged on the supporting plate 3, the output end of the second electric cylinder 14 penetrates through the supporting plate 3 and is fixedly connected with the connecting frame 13, and specifically, when the two driving rods 12 are driven by the second electric cylinder 14 arranged on the supporting plate 3, the driving rods 12 are driven by the driving assembly to move by the driving assembly, and the driving assembly drives the two driving rods 12 to move relatively, and then the two driving rods 11 are driven by the driving assembly to move.
As shown in fig. 1 and 4, the fixing mechanism is provided with a plurality of fixing mechanisms, the fixing mechanisms are respectively arranged at four corners of the underframe 1 and are used for fixing one end of a steel bar, the fixing mechanism comprises a fixing plate 15, a fixing block 16 and a third electric cylinder 17, the fixing plate 15 is fixedly connected to the underframe 1, the fixing block 16 is arranged on the fixing plate 15, the third electric cylinder 17 is arranged on the fixing plate 15, an output end of the third electric cylinder 17 penetrates through the fixing plate 15 and is fixedly connected with the fixing block 16, and specifically, the fixing block 16 is driven to move through the third electric cylinder 17 arranged on the fixing plate 15, so that one end of the steel bar is fixed on the arc-shaped frame 2.
In this embodiment, when needing to weld the framework of steel reinforcement, drive fixed block 16 through the third electric jar 17 that sets up on fixed plate 15 and remove, thereby fix the one end of reinforcing bar on arc frame 2, first electric jar 6 that sets up on through backup pad 3 drives crane 4 and descends, and then drive bending wheel 5 compresses tightly the reinforcing bar on arc frame 2, afterwards, drive driving gear 8 through the first motor 9 that sets up on backup pad 3 and rotate on ring gear 7, thereby drive backup pad 3 and remove on arc frame 2, thereby bend the reinforcing bar through the rolling of bending wheel 5, drive link 13 and actuating lever 12 through the second electric jar 14 that sets up on backup pad 3 and remove, drive two clamping levers 10 and carry out relative motion when actuating lever 12 removes, and then drive two clamping blocks 11 and carry out the centre gripping fixedly to the reinforcing bar, thereby convenience of operation personnel weld the framework of steel reinforcement.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, alternatives, and improvements that fall within the spirit and scope of the utility model.

Claims (10)

1. Support frock that wind-powered electricity generation tower bobbin piece steel reinforcement cage was used, a serial communication port includes:
a chassis (1);
The two arc-shaped frames (2) are arranged, and the two arc-shaped frames (2) are fixedly connected to the underframe (1);
the bending mechanisms are arranged in two and are respectively arranged on the two arc-shaped frames (2) and used for bending the steel bars;
The two clamping mechanisms are respectively arranged on the two arc-shaped frames (2) and used for lifting and fixing the reinforcing steel bars;
The fixing mechanisms are arranged in a plurality, and are respectively arranged at four corners of the underframe (1) and used for fixing one end of the reinforcing steel bar.
2. The support tooling for a wind power tower segment steel reinforcement cage of claim 1, wherein the bending mechanism comprises:
The support plate (3) is arranged on the arc-shaped frame (2) in a sliding manner;
The lifting frame (4) is arranged on the supporting plate (3) in a sliding manner;
The bending wheel (5) is rotatably arranged in the lifting frame (4);
The two first electric cylinders (6) are arranged, the two first electric cylinders (6) are arranged on the supporting plate (3), and the output ends of the two first electric cylinders (6) are fixedly connected with the lifting frame (4);
and the moving assembly is arranged on the supporting plate (3) and is used for driving the supporting plate (3) to move on the arc-shaped frame (2).
3. The support tooling for a wind power tower section steel reinforcement cage of claim 2, wherein the moving assembly comprises:
the toothed ring (7), the said toothed ring (7) is fixedly connected in said arcuate shelf (2);
The driving gear (8) is rotatably arranged on the supporting plate (3), and the driving gear (8) is meshed with the toothed ring (7);
The first motor (9), first motor (9) set up on backup pad (3), the output of first motor (9) run through backup pad (3) and with drive gear (8) fixed connection.
4. A support tooling for a wind power tower section steel reinforcement cage according to claim 3, wherein the clamping mechanism comprises:
The clamping rods (10) are arranged, two clamping rods (10) are arranged, and the two clamping rods (10) are both rotatably arranged on the supporting plate (3);
The clamping blocks (11) are arranged, the two clamping blocks (11) are respectively and rotatably arranged on the two clamping rods (10);
the driving assembly is arranged on the supporting plate (3) and used for driving the two clamping rods (10) to move.
5. The support tooling for a wind power tower section steel reinforcement cage of claim 4, wherein the drive assembly comprises:
The driving rods (12) are arranged, and the two driving rods (12) are respectively and rotatably arranged on the two clamping rods (10);
The connecting frame (13), the said connecting frame (13) rotates and connects between two said driving rods (12);
The second electric cylinder (14), the second electric cylinder (14) is arranged on the supporting plate (3), and the output end of the second electric cylinder (14) penetrates through the supporting plate (3) and is fixedly connected with the connecting frame (13).
6. The support tooling for a wind power tower segment steel reinforcement cage of claim 5, wherein the fixing mechanism comprises:
The fixing plate (15), the said fixing plate (15) is fixedly connected to said chassis (1);
a fixed block (16), the fixed block (16) being arranged on the fixed plate (15);
the third electric cylinder (17), the third electric cylinder (17) is arranged on the fixed plate (15), and the output end of the third electric cylinder (17) penetrates through the fixed plate (15) and is fixedly connected with the fixed block (16).
7. The support tool for the wind power tower tube sheet steel reinforcement cage according to claim 6, wherein a sliding box (18) is fixedly connected to the arc-shaped frame (2), a sliding block (19) is fixedly connected to the support plate (3), and the sliding block (19) is slidably arranged in the sliding box (18).
8. The support tool for the wind power tower tube sheet steel reinforcement cage according to claim 7, wherein a sliding rod (20) is fixedly connected to the support plate (3), a sliding hole is formed in the lifting frame (4), and the sliding rod (20) is slidably arranged in the sliding hole.
9. The support tool for the wind power tower tube sheet steel reinforcement cage according to claim 8, wherein a rotating seat (21) is fixedly connected to the support plate (3), and the clamping rod (10) is rotatably arranged in the rotating seat (21).
10. The support tool for the wind power tower tube sheet steel reinforcement cage according to claim 9, wherein grooves matched with steel reinforcements are formed in the bending wheels (5) and correspond to the arc-shaped frames (2).
CN202421837464.3U 2024-07-31 2024-07-31 Support tool for wind power tower bobbin sheet steel reinforcement framework Active CN222873235U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202421837464.3U CN222873235U (en) 2024-07-31 2024-07-31 Support tool for wind power tower bobbin sheet steel reinforcement framework

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202421837464.3U CN222873235U (en) 2024-07-31 2024-07-31 Support tool for wind power tower bobbin sheet steel reinforcement framework

Publications (1)

Publication Number Publication Date
CN222873235U true CN222873235U (en) 2025-05-16

Family

ID=95692959

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202421837464.3U Active CN222873235U (en) 2024-07-31 2024-07-31 Support tool for wind power tower bobbin sheet steel reinforcement framework

Country Status (1)

Country Link
CN (1) CN222873235U (en)

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