CN214461806U - Gang-arranged type standardized lacing wire group - Google Patents

Gang-arranged type standardized lacing wire group Download PDF

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Publication number
CN214461806U
CN214461806U CN202022696343.XU CN202022696343U CN214461806U CN 214461806 U CN214461806 U CN 214461806U CN 202022696343 U CN202022696343 U CN 202022696343U CN 214461806 U CN214461806 U CN 214461806U
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China
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lacing wire
panel
rolling
side plate
gang
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CN202022696343.XU
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Chinese (zh)
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陆正争
程媛
侯文帅
来明
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China United Engineering Corp Ltd
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China United Engineering Corp Ltd
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Priority to CN202022696343.XU priority Critical patent/CN214461806U/en
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Abstract

The utility model provides a standardized lacing wire group of formula of ally oneself with arranging has avoided the production of on-the-spot clout building rubbish, has guaranteed simultaneously through the product specification model that dispatches from the factory that lacing wire crotch straight section length must satisfy the national standard to product standardization, modularization do benefit to on-the-spot storehouse and transportation pile, also provide the condition for the operation of adopting industrial robot to standardize. The utility model comprises a groove steel component, the groove steel component comprises a panel, and two sides of the panel are bent in the same direction to form side plates; a chamfer is arranged at the joint of the panel and the side plate; rolling marks are arranged on the upper surface and the lower surface of the channel steel member and extend from the end part of the side plate on one side to the end part of the side plate on the other side; the rolling marks are multiple and are arranged in parallel at equal intervals; the part of the channel-shaped steel member between the two rolling marks forms a single lacing wire.

Description

Gang-arranged type standardized lacing wire group
Technical Field
The utility model relates to a ally oneself with standardized lacing wire group of formula of arranging.
Background
The lacing wire that present building engineering structure construction was used is mostly hot rolling plain steel muscle. Because the diameter is thin, the product is naturally coiled and rolled for hand-over transportation when leaving the factory. During construction, the steel bar shed is cut into sections on site according to the length requirement.
The mode of producing the lacing wire by field cutting is extensive and the years are long. Among the problems of exposure are:
1) cutting to produce residual material. The prior art method is to cut the reinforcing steel bar and must produce excess reinforcing steel bar head.
2) The length of the bent section of the lacing wire does not accord with the national standard problem. The prior art means adopts manual cutting, the subjectivity is large, especially in order to save materials, the straight section length of the hook often can not meet the design length requirement of 5 times of the diameter, so that the structure has potential safety hazards.
3) The appearance of the steel bars is scattered and indefinite, which is not beneficial to stacking operation and stacking transportation. The reinforcing bar is the wire rod and piles up under the prior art condition, can't the direction of height stack.
4) And the method is not beneficial to standardization, intellectualization, green energy conservation and more advanced construction method equipment development. The materials used in the prior art are bulk reinforcing steel bars which are scattered and irregular on site.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to overcome the above-mentioned not enough that exists among the prior art, and provide a standardized lacing wire group of row's formula of ally oneself with that structural design is reasonable, avoided the production of on-the-spot clout construction waste, guaranteed simultaneously through the product specification model that dispatches from the factory that lacing wire crotch straight section length must satisfy the national standard to product standardization, modularization do benefit to on-the-spot storehouse and transportation pile, also provide the condition for adopting industrial robot to carry out standardized operation.
The utility model provides a technical scheme that above-mentioned problem adopted is: the utility model provides a standard lacing wire group of formula of ally oneself with arranging which characterized in that: the steel plate comprises a groove-shaped steel component, wherein the groove-shaped steel component comprises a panel, and two sides of the panel are bent in the same direction to form side plates; a chamfer is arranged at the joint of the panel and the side plate; rolling marks are arranged on the upper surface and the lower surface of the channel steel member and extend from the end part of the side plate on one side to the end part of the side plate on the other side; the rolling marks are multiple and are arranged in parallel at equal intervals; the part of the channel-shaped steel member between the two rolling marks forms a single lacing wire.
Curb plate and panel set up perpendicularly.
Cell type steel member pass through hot rolling one shot forming.
The utility model discloses be provided with the chamfer on the cell type steel member of rolling trace both sides.
The upper and lower surfaces of the lacing wire monomer are arc-shaped.
Compared with the prior art, the utility model, have following advantage and effect:
1) the utility model discloses lacing wire monomer length that the product obtained is for the specification decision that dispatches from the factory, avoids cutting the clout.
2) The utility model discloses the product specification of dispatching from the factory has satisfied the national standard requirement, exempts from repeated cutting, need not the recheck.
3) The utility model discloses be a whole before the product segmentation uses, the form side is just fixed, can pile up at the direction of height multilayer.
4) And the adoption of the row-type standardized lacing wire group can promote the appearance of industrial robots due to the standardized and modularized product characteristics.
Drawings
Fig. 1 is a schematic perspective view of an embodiment of the present invention.
Fig. 2 is a schematic view of the structure of the embodiment of the present invention.
Fig. 3 is a schematic diagram of a right-view structure of an embodiment of the present invention.
Fig. 4 is a left side view structure diagram of the embodiment of the present invention.
Fig. 5 is a schematic bottom view of the embodiment of the present invention.
Fig. 6 is a schematic top view of the embodiment of the present invention.
Detailed Description
The present invention will be described in further detail by way of examples with reference to the accompanying drawings, which are illustrative of the present invention and are not intended to limit the present invention.
The utility model discloses a channel steel component 1, channel steel component 1 include panel 2, and the same direction bending in both sides of panel 2 forms curb plate 3, and curb plate 3 and panel 2 set up perpendicularly. The channel-shaped steel member 1 is formed at one time by hot rolling.
A chamfer is provided at the junction a of the face plate 2 and the side plate 3.
Rolling marks B are provided on both upper and lower surfaces of the channel steel member 1, and extend from an end of one side plate 3 to an end of the other side plate 3. The rolling marks B are a plurality of strips which are arranged in parallel at equal intervals and have a certain depth. The plane surrounded by each rolling mark B is perpendicular to the axis of the component.
The portions of the channel steel members 1 on both sides of the rolling mark B are provided with chamfers.
The part of the channel-shaped steel member 1 between the two rolling marks B forms a single tie bar 4. The upper and lower surfaces of the lacing wire monomer 4 are arc-shaped.
The groove-shaped steel member 1 is integrated when not used, and is required to be disassembled into a plurality of independent tie bar monomers 4 when used. When the component is disassembled, the thickness of the component weakened by the rolling mark B is thinner, the component can be cut along the rolling mark B through a low-power machine on a construction site, the single lacing wire 4 is obtained through separation, and the cross section of the single lacing wire obtained through separation is approximately circular.
The thickness T of the hot-rolled groove-shaped steel component, the length L (or the number N of designed cutting pieces) along the axis, the flange length F and the height H of the groove-shaped arm are product delivery parameters and can be set according to actual requirements.
Example 1: the combined 100-piece lacing wire group is suitable for the construction of the reinforced concrete shear wall. The thickness of the shear wall in the design blueprint is 200mm, and the specification of the lacing wire is d8@ 450.
The product is designed into a 100-piece product, and the delivery parameters of the product T =8mm, L =850mm (8.5 mm/PC, 100 PCS), F =56mm, and H =170 mm. The chamfer radius of the joint A is 8 mm. The distance between the rolling traces B is 8.5mm, the thickness of the narrow part is rolled from normal T =8mm to 1mm, and the chamfer radius of the part of the channel steel member 1 on both sides of the rolling traces B is 4 mm. And cutting at the narrow part of the rolling mark B on site, wherein 100 pieces of lacing wire monomers 4 can be provided after cutting.
Example 2: the combined 40-piece lacing wire group is suitable for the construction of reinforced concrete frame columns. The section of the frame column in the blueprint is designed to be 400mm, and the specification of the lacing wire is d10@ 100.
The product is a 40-piece product, and the delivery parameters of the product T =10mm, L =420mm (10.5 mm/PC, 40 PCS), F =70mm, and H =360 mm. The chamfer radius at the joint A is 13 mm. The distance between the rolling traces B is 10.5mm, the thickness of the narrow part is rolled from T =10mm to 1mm, and the chamfer radius of the part of the channel steel member 1 on both sides of the rolling traces B is 5 mm. And cutting at the narrow part of the rolling mark B on site, wherein 40 pieces of lacing wire monomers 4 can be provided after cutting.
In addition, it should be noted that the specific embodiments described in the present specification may be different in the components, the shapes of the components, the names of the components, and the like, and the above description is only an example of the structure of the present invention. All the equivalent changes or simple changes made according to the structure, characteristics and principle of the utility model are included in the protection scope of the utility model. Various modifications, additions and substitutions may be made by those skilled in the art without departing from the scope of the invention as defined in the accompanying claims.

Claims (5)

1. The utility model provides a standard lacing wire group of formula of ally oneself with arranging which characterized in that: the steel plate comprises a groove-shaped steel component, wherein the groove-shaped steel component comprises a panel, and two sides of the panel are bent in the same direction to form side plates; a chamfer is arranged at the joint of the panel and the side plate; rolling marks are arranged on the upper surface and the lower surface of the channel steel member and extend from the end part of the side plate on one side to the end part of the side plate on the other side; the rolling marks are multiple and are arranged in parallel at equal intervals; the part of the channel-shaped steel member between the two rolling marks forms a single lacing wire.
2. The gang standardized set of tie bars of claim 1 wherein: the side plates and the panel are vertically arranged.
3. The gang standardized set of tie bars of claim 1 wherein: the channel-shaped steel member is formed in one step through hot rolling.
4. The gang standardized set of tie bars of claim 1 wherein: and chamfer angles are arranged on the groove-shaped steel members on two sides of the rolling mark.
5. The gang standardized set of tie bars of claim 1 wherein: the upper surface and the lower surface of each lacing wire monomer are arc-shaped.
CN202022696343.XU 2020-11-19 2020-11-19 Gang-arranged type standardized lacing wire group Active CN214461806U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022696343.XU CN214461806U (en) 2020-11-19 2020-11-19 Gang-arranged type standardized lacing wire group

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022696343.XU CN214461806U (en) 2020-11-19 2020-11-19 Gang-arranged type standardized lacing wire group

Publications (1)

Publication Number Publication Date
CN214461806U true CN214461806U (en) 2021-10-22

Family

ID=78183353

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022696343.XU Active CN214461806U (en) 2020-11-19 2020-11-19 Gang-arranged type standardized lacing wire group

Country Status (1)

Country Link
CN (1) CN214461806U (en)

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