CN211638155U - Reinforcing cage shaping tool - Google Patents

Reinforcing cage shaping tool Download PDF

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Publication number
CN211638155U
CN211638155U CN201920782350.6U CN201920782350U CN211638155U CN 211638155 U CN211638155 U CN 211638155U CN 201920782350 U CN201920782350 U CN 201920782350U CN 211638155 U CN211638155 U CN 211638155U
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China
Prior art keywords
distance
reinforcement cage
frame
constant head
mesa
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CN201920782350.6U
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Chinese (zh)
Inventor
张少武
涂文磊
陈定球
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Meihao Building Assembly Technology Co ltd
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Meihao Building Assembly Technology Co ltd
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Priority to CN201920782350.6U priority Critical patent/CN211638155U/en
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Abstract

The utility model discloses a steel reinforcement cage design frock, including frame and distance, there is the side of mesa and perpendicular to mesa frame upper portion, the distance is established on mesa and side and the position is adjustable around on the mesa, the position is adjustable about on the side, the distance that the distance has constant head tank and two adjacent constant head tanks along the length direction equipartition equals the minimum interval between the stirrup, all parallel and the constant head tank notch of distance align in the frame, when the steel reinforcement cage is stereotyped, the stirrup bottom card is put in the constant head tank of the distance on the mesa, one side card is put in the constant head tank of the distance on the side, the stirrup is simultaneously at least with three distance cooperation and vertical not falling. The tool ensures the forming size of the reinforcement cage, improves the efficiency and reduces the workload.

Description

Reinforcing cage shaping tool
Technical Field
The utility model belongs to the assembly type structure field, concretely relates to steel reinforcement cage design frock.
Background
In the assembled building, prefabricated component goes out the muscle more generally, and during the production prefabricated component, in order to prevent lou thick liquid, go out the muscle reinforcing bar and expect much on going out the muscle side forms distance size. The existing steel reinforcement cage forming is that a ruler is used for marking each forming point of each longitudinal reinforcement, the stirrups are placed at the forming points, and finally the stirrups and the longitudinal reinforcements are fixed and formed, so that the existing steel reinforcement cage forming is low in efficiency, large in workload, and the key is that the spacing size cannot be guaranteed after forming, and the steel reinforcement cage forming is not beneficial to construction of fabricated buildings and large in rework amount.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a steel reinforcement cage design frock has guaranteed steel reinforcement cage's shaping size, has improved efficiency, has reduced work load.
The utility model adopts the technical proposal that:
the utility model provides a steel reinforcement cage design frock, including frame and distance, frame upper portion has the side of mesa and perpendicular to mesa, the distance is established on mesa and side and the position is adjustable around on the mesa, the position is adjustable about on the side, the distance that the distance has constant head tank and two adjacent constant head tanks along the length direction equipartition equals the minimum interval between the stirrup, all parallel and the constant head tank notch of distance align in the frame, when the steel reinforcement cage is stereotyped, the stirrup bottom card is put in the constant head tank of the distance on the mesa, one side card is put in the constant head tank of the distance on the side, the stirrup is simultaneously at least with three distance cooperation and vertical not falling.
Further, the distance bar is vertically parallel with the frame and is set up along the vertical logical length of frame, and the distance bar both ends respectively are half constant head tank, and when steel reinforcement cage design frock vertically connects the long term, two adjacent steel reinforcement cage design frock vertical contact aligns.
Further, when the steel reinforcement cage shaping tools are transversely connected, the two adjacent steel reinforcement cage shaping tools are transversely contacted and aligned, the side face of the first steel reinforcement cage shaping tool is reserved, and the side faces of the other steel reinforcement cage shaping tools are removed.
Further, the positioning groove is V-shaped.
Further, the front and back direction equipartition has two rows of mounting holes at least on the mesa, the side about the direction equipartition have two rows of mounting holes at least, the position beyond the distance bar both ends constant head tank all is equipped with the mounting hole, during the distance bar installation, the mounting hole at distance bar both ends passes through the bolt with the mounting hole in the frame to be connected fixedly.
Furthermore, the frame is of a frame structure, and the table top and the side surfaces are both hollow planes.
Furthermore, the frame structure comprises a vertical rod and a cross rod which form the frame main body and an inclined strut for reinforcing the frame main body, wherein the vertical rod, the cross rod and the inclined strut are all standard parts and are mutually connected through bolts.
The utility model has the advantages that:
the utility model discloses a plurality of distance control stirrup intervals, need not to do the mark, guarantee through a plurality of distance during fixed shaping moreover that the stirrup is vertical not to fall, need not to hand, both guaranteed the shaping size of steel reinforcement cage, improved efficiency again, reduced work load, made things convenient for the construction of assembly type structure, stopped doing over again.
Drawings
Fig. 1 is a schematic diagram of an embodiment of the present invention.
Fig. 2 is a schematic view of the embodiment of the present invention during longitudinal splicing.
Fig. 3 is a schematic view of the embodiment of the present invention during transverse splicing.
Fig. 4 is a schematic view of a distance rod in an embodiment of the present invention.
Fig. 5 is a schematic view of a rectangular reinforcement cage.
Fig. 6 is a schematic view of a circular rebar cage.
In the figure: 1-a frame; 11-erecting a rod; 12-a cross-bar; 13-diagonal bracing; 2-distance bars on the sides; 3-distance bars on the table top; 4-longitudinal ribs; 5-stirrup; a-a positioning groove; b-mounting holes.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and examples.
As shown in fig. 1 to 4, a reinforcement cage shaping tool comprises a rack 1 and distance bars (2 and 3), wherein the upper part of the rack 1 is provided with a table top and a side surface perpendicular to the table top, the distance bars (2 and 3) are arranged on the table top and the side surface, the front and back positions of the distance bars on the table top are adjustable, the upper and lower positions of the side surface are adjustable, the distance bars (2 and 3) are uniformly provided with positioning grooves a along the length direction, the distance between every two adjacent positioning grooves a is equal to the minimum distance between stirrups 5, and all the distance bars (2 and 3) on the rack 1 are parallel and the notches of the positioning grooves a are aligned; when the steel reinforcement cage is stereotyped (as shown in fig. 5 and fig. 6, the steel reinforcement cage can be the rectangle, also can be circular), 5 bottom blocks of stirrup are put in the constant head tank a of distance strip 3 on the mesa, the constant head tank a of distance strip 2 on the side is put to one side card, stirrup 5 cooperates and vertical not falling with three distance strip (2 and 3) simultaneously at least, thereby put into different constant head tank a through adjustment stirrup 5 and control 5 intervals of stirrup, thereby the size of adaptation stirrup 5 through adjusting the position of distance strip (2 and 3) upper and lower and front and back and the quantity that drops into, when distance strip (2 and 3) are shorter than vertical muscle 4, satisfy vertical muscle 4 dimensional requirement through addding and lengthening steel reinforcement cage design frock, disposable fixed molding after all stirrups 5 and vertical muscle 4 cooperate. The utility model discloses a 5 intervals of a plurality of distance strips (2 and 3) control stirrup, need not to do the mark, guarantee 5 vertical not falling of stirrup, need not to hand through a plurality of distance strips (2 and 3) during fixed shaping moreover, both guaranteed steel reinforcement cage's shaping size, improved efficiency again, reduced work load, made things convenient for assembly type structure's construction, stopped doing over again.
Distance bar (2 and 3) and the vertical parallel of frame 1 and along the vertical logical long setting of frame 1, distance bar (2 and 3) both ends respectively are half constant head tank, as shown in fig. 2, when steel reinforcement cage design frock is vertically long-pending, two adjacent steel reinforcement cage design frock vertical contact aligns (each steel reinforcement cage design frock vertical length is not necessarily the same, can have the length difference). The steel reinforcement cage shaping tool is longitudinally lengthened, and the overlong longitudinal ribs 4 are conveniently fixed and formed.
As shown in fig. 3, when the reinforcement cage shaping tools are transversely lengthened, two adjacent reinforcement cage shaping tools are transversely contacted and aligned, the side surface of the first reinforcement cage shaping tool is retained, and the side surfaces of the other reinforcement cage shaping tools are removed (the transverse lengths of the reinforcement cage shaping tools are not necessarily equal, and a length difference can exist). The steel reinforcement cage shaping tool is transversely lengthened, and the ultra-wide stirrup 5 is conveniently fixed and shaped.
As shown in fig. 4, in this embodiment, the positioning groove a is V-shaped, and the V-shaped positioning groove a can adapt to reinforcing bars of various sizes and ensure the position accuracy.
As shown in fig. 1 to 4, in this embodiment, at least two rows of mounting holes b are uniformly distributed in the front-back direction on the table top, at least two rows of mounting holes b are uniformly distributed in the up-down direction on the side surface, the mounting holes b are respectively arranged at positions other than the positioning grooves a at the two ends of the distance bars (2 and 3), and when the distance bars (2 and 3) are mounted, the mounting holes b at the two ends of the distance bars (2 and 3) are fixedly connected with the mounting holes b on the rack 1 through bolts. Distance bar (2 and 3) are installed and the adjustment position through mounting hole b and bolt complex mode, and convenient operation is swift, can also adopt other installation and adjustment mode certainly, for example, distance bar (2 and 3) both ends cover slides on frame 1, and rethread screw locking.
As shown in fig. 1 to 3, in the present embodiment, the rack 1 is a frame structure, and the top and the side surfaces are both hollow planes. The frame structure is simple to manufacture, low in cost and light in weight, the table top and the side faces are hollow, a panel is not required to be arranged, and material and time cost is saved.
As shown in fig. 1 to 4, in the present embodiment, the frame structure includes uprights 11 and crossbars 12 constituting a frame body and braces 13 reinforcing the frame body, and the uprights 11, the crossbars 12 and the braces 13 are all standard members and are connected to each other by bolts. Each part of the frame structure adopts a standard part, so that the frame structure is simple to manufacture and good in universality.
It will be understood that modifications and variations can be made by persons skilled in the art in light of the above teachings and all such modifications and variations are considered to be within the scope of the invention as defined by the following claims.

Claims (7)

1. The utility model provides a steel reinforcement cage design frock which characterized in that: including frame and distance, frame upper portion has the side of mesa and perpendicular to mesa, the distance is established on mesa and side and the position is adjustable around on the mesa, position is adjustable about on the side, the distance that the distance has constant head tank and two adjacent constant head tanks along the length direction equipartition equals the minimum interval between the stirrup, parallel and the constant head tank notch of all distance in the frame align, when the steel reinforcement cage is stereotyped, the stirrup bottom card is put in the constant head tank of the distance on the mesa, in the constant head tank of the distance on the side is put to one side card, the stirrup is simultaneously at least with three distance cooperation and vertical not falling.
2. The reinforcement cage shaping tool of claim 1, wherein: the distance bar is vertically parallel with the frame and sets up along the vertical logical length of frame, and the distance bar both ends respectively are half constant head tank, and when steel reinforcement cage design frock vertically connects the long term, two adjacent steel reinforcement cage design frock vertical contact aligns.
3. The reinforcement cage shaping tool of claim 1, wherein: when the steel reinforcement cage shaping tools are transversely connected, the two adjacent steel reinforcement cage shaping tools are transversely contacted and aligned, the side face of the first steel reinforcement cage shaping tool is reserved, and the side faces of the other steel reinforcement cage shaping tools are removed.
4. The reinforcement cage shaping tool of claim 1, wherein: the locating slot is V-shaped.
5. The reinforcement cage shaping tool of claim 1, wherein: the front and back direction equipartition has two row at least mounting holes, the upper and lower direction equipartition has two row at least mounting holes on the side on the mesa, and the position beyond the distance strip both ends constant head tank all is equipped with the mounting hole, and during the distance strip installation, the mounting hole at distance strip both ends passes through the bolt with the mounting hole in the frame to be connected fixedly.
6. The reinforcement cage shaping tool of claim 1, wherein: the frame is a frame structure, and the table top and the side surfaces are both hollow planes.
7. The reinforcement cage shaping tool according to claim 6, wherein: the frame structure comprises a vertical rod and a cross rod which form a frame main body and an inclined strut for reinforcing the frame main body, wherein the vertical rod, the cross rod and the inclined strut are all standard parts and are mutually connected through bolts.
CN201920782350.6U 2019-05-28 2019-05-28 Reinforcing cage shaping tool Active CN211638155U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920782350.6U CN211638155U (en) 2019-05-28 2019-05-28 Reinforcing cage shaping tool

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920782350.6U CN211638155U (en) 2019-05-28 2019-05-28 Reinforcing cage shaping tool

Publications (1)

Publication Number Publication Date
CN211638155U true CN211638155U (en) 2020-10-09

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920782350.6U Active CN211638155U (en) 2019-05-28 2019-05-28 Reinforcing cage shaping tool

Country Status (1)

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CN (1) CN211638155U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110102677A (en) * 2019-05-28 2019-08-09 美好建筑装配科技有限公司 Steel reinforcement cage method for shaping and tooling

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110102677A (en) * 2019-05-28 2019-08-09 美好建筑装配科技有限公司 Steel reinforcement cage method for shaping and tooling

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