CN220882790U - Simple and easy superimposed sheet napping device - Google Patents

Simple and easy superimposed sheet napping device Download PDF

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Publication number
CN220882790U
CN220882790U CN202322564583.8U CN202322564583U CN220882790U CN 220882790 U CN220882790 U CN 220882790U CN 202322564583 U CN202322564583 U CN 202322564583U CN 220882790 U CN220882790 U CN 220882790U
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China
Prior art keywords
transverse tube
roughening
fixing
stacked plate
shaped frame
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CN202322564583.8U
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Chinese (zh)
Inventor
曾维巍
贾凤亮
张思博
陈日棒
李�杰
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Hunan Jiangong Wujian Building Industrialization Co ltd
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Hunan Jiangong Wujian Building Industrialization Co ltd
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Abstract

The application provides a simple laminated slab roughening device, which comprises: the device comprises a fixed rod, an n-shaped frame connected to the fixed rod, fixed rings connected to two sides of the open end of the n-shaped frame, and transverse tube napping pieces rotatably connected to the two fixed rings; the horizontal pipe napping piece includes: a transverse tube penetrating the two fixing rings, and a plurality of metal disks equidistantly distributed on the transverse tube; the diameter of any one metal disc is larger than that of any one fixing ring. According to the application, a rolling roughening mode is adopted to replace a blade roughening mode, so that quality defects caused by stone flooding in concrete are avoided, and the roughening is smoother, straight and smooth in lines and consistent in depth; the roughness forming effect of the laminated plate is improved; meanwhile, the simple laminated plate roughening device has the advantages of simple processing and forming mode, low manufacturing cost, common required material processing, high labor saving and production efficiency improvement after forming.

Description

Simple and easy superimposed sheet napping device
Technical Field
The application relates to the technical field of construction machinery, in particular to a simple laminated slab roughening device.
Background
The laminated slab is a reinforced concrete precast slab for building floor boards and roof boards, and in order to increase the binding force between the laminated slab and upper cast-in-place concrete, the upper surface of the laminated slab needs to be napped in industrial production.
Because assembly type component factories generally have two production modes of assembly line and fixed line, and the fixed line can't be like the assembly line, through the mode of purchasing fixed napping machine, the mould platform flows and carries out superimposed sheet napping and handle, then the fixed line needs simple and easy operating napping device to carry out manual operation. The prior simple laminated slab roughening device is shown in fig. 1, and comprises a main pipe 10 with the length of about 3m and a transverse pipe piece 20 connected to the bottom end of the main pipe 10; the cross pipe 20 and the main pipe 10 are integrally connected in a welded connection manner, the cross pipe 20 can be a round pipe or a rectangular pipe, and a plurality of blades 30 are welded on the cross pipe 20 at equal intervals. Thereby forming a blade type simple laminated slab roughening device.
However, the existing blade type simple roughening device has poor forming effect, the blade has quality defects caused by stone in concrete rising in the roughening process, the artificial efficiency is low, and the use effect of improving quality and enhancing efficiency cannot be achieved.
Disclosure of utility model
The application provides a simple superimposed sheet roughening device, which adopts a rolling roughening mode to avoid quality defects caused by stone flooding in concrete, wherein the roughening is smoother, lines are straight and smooth and the depth is consistent; the roughness forming effect of the laminated plate is improved; meanwhile, the processing mode is simple, the manufacturing cost is low, local materials can be used for processing, the manpower is saved, and the production efficiency is improved.
The application provides a simple laminated slab roughening device which comprises a fixed rod, an n-shaped frame connected to the fixed rod, fixed rings connected to two sides of an open end of the n-shaped frame, and transverse pipe roughening pieces rotatably connected to the two fixed rings; wherein,
The horizontal pipe napping piece includes: a transverse tube penetrating the two fixing rings, and a plurality of metal disks equidistantly distributed on the transverse tube;
the diameter of any one metal disc is larger than that of any one fixing ring.
According to the application, a rolling roughening mode is adopted to replace a blade roughening mode, so that quality defects caused by stone flooding in concrete are avoided, roughening is smoother, lines are straight and smooth and the depth is consistent, and the roughness forming effect of the laminated slab is improved; meanwhile, the simple laminated plate roughening device has the advantages of simple processing and forming mode, low manufacturing cost, common required material processing, high labor saving and production efficiency improvement after forming.
In a specific embodiment, the top end of the fixing rod is fixedly connected with a lateral holding rod. Is convenient for manual operation.
In a specific embodiment, the n-shaped frame is fixedly connected with the bottom end of the fixing rod. The positioning stability of the n-shaped frame is ensured.
In a specific embodiment, the middle position of the closed end of the n-shaped frame is welded with the bottom end of the fixing rod. The n-shaped frame is welded and connected to the bottom end of the fixing rod, so that a reliable fulcrum is provided for the rotation of the transverse tube napping piece.
In a specific embodiment, the cross tube is a circular tube body;
The circle center of each fixing ring is provided with a through hole matched with the transverse tube. The transverse tube penetrates through the through hole to form a rotary connection relationship with the two fixed rings.
In a specific embodiment, two fixing rings are rotatably connected with the transverse tube, and two ends of the transverse tube are blocked. In the process of transverse tube rotation, a plurality of metal disks realize the effect of rolling and napping.
In a specific implementation mode, the circle center of each metal disc is provided with a mounting hole matched with the transverse tube. Is sleeved and positioned on the transverse tube through the mounting hole.
In a specific embodiment, each metal disc is sleeved on the transverse tube through the mounting hole and is welded with the transverse tube. The welding positioning effect is stable, and the transverse tube drives a plurality of metal discs to synchronously rotate in the rotating process.
In a specific embodiment, the spacing between any two adjacent metal discs is 2cm;
Each fixing ring is attached to and rotates with two adjacent metal discs correspondingly. The fixed ring is positioned between two adjacent metal discs to rotate, the rotating effect is smooth and stable, the quality defect caused by stone rising in concrete is avoided by a rolling napping mode, and the napping is smoother.
In a specific embodiment, the diameter of each of the metal discs is 1cm to 1.5cm greater than the diameter of each of the retaining rings. The lines are straight and smooth and the depth is consistent, so that the roughness forming effect of the laminated plate is improved.
Drawings
FIG. 1 is a schematic structural view of a prior art simple laminated board roughening device provided by the application;
Fig. 2 is a schematic structural diagram of a simple stacked plate roughening device according to an embodiment of the present application;
Fig. 3 is an explosion schematic diagram of a simple stacked plate roughening device according to an embodiment of the present application.
Reference numerals:
A main pipe-10, a transverse pipe-20 and a blade-30;
The fixing rod comprises a fixing rod body 100, a transverse holding rod 200, an n-shaped frame 300, a transverse tube 400, a fixing ring 500, a through hole 510, a metal disc 600 and a mounting hole 610.
Detailed Description
For the purposes of promoting an understanding of the principles and advantages of the disclosure, reference will now be made to the embodiments illustrated in the drawings and specific language will be used to describe the same.
It is noted that unless otherwise defined, technical or scientific terms used in one or more embodiments of the present disclosure should be taken in a general sense as understood by one of ordinary skill in the art to which the present disclosure pertains. The use of the terms "first," "second," and the like in one or more embodiments of the present description does not denote any order, quantity, or importance, but rather the terms "first," "second," and the like are used to distinguish one element from another. The word "comprising" or "comprises", and the like, means that elements or items preceding the word are included in the element or item listed after the word and equivalents thereof, but does not exclude other elements or items. The terms "connected" or "connected," and the like, are not limited to physical or mechanical connections, but may include electrical connections, whether direct or indirect. "upper", "lower", "left", "right", etc. are used merely to indicate relative positional relationships, which may also be changed when the absolute position of the object to be described is changed.
In order to facilitate understanding of the simple stacked plate roughening device provided by the embodiment of the application, an application scene is described first, and as assembly type component factories generally have two production modes of assembly lines and fixing lines, the fixing lines cannot be like the assembly lines, and the mode of purchasing a fixed roughening machine is adopted to carry out stacked plate roughening treatment by flowing a die bench, the fixing lines need to be manually operated by the simple and easy-to-operate roughening device. The prior simple laminated slab roughening device is shown in fig. 1, and comprises a main pipe 10 with the length of about 3m and a transverse pipe piece 20 connected to the bottom end of the main pipe 10; the cross pipe 20 and the main pipe 10 are integrally connected in a welded connection manner, the cross pipe 20 can be a round pipe or a rectangular pipe, and a plurality of blades 30 are welded on the cross pipe 20 at equal intervals. Thereby forming a blade type simple laminated slab roughening device. However, the existing blade type simple roughening device has poor forming effect, the blade has quality defects caused by stone in concrete rising in the roughening process, the artificial efficiency is low, and the use effect of improving quality and enhancing efficiency cannot be achieved. In view of the above, the application provides a simple laminated slab roughening device, which adopts a rolling roughening mode to avoid quality defects caused by stone rising in concrete, wherein the roughening is smoother, lines are straight and smooth and the depth is consistent; the roughness forming effect of the laminated plate is improved; meanwhile, the processing mode is simple, the manufacturing cost is low, local materials can be used for processing, the manpower is saved, and the production efficiency is improved.
Referring to fig. 2, the simple laminated slab roughening apparatus provided by the embodiment of the present application includes a fixing rod 100; the fixing rod 100 adopts a round pipe or square pipe with a cutting length of 3 m-3.5 m as the fixing rod 100, and a transverse holding rod 200 is welded and connected to the top end of the fixing rod 100. Through the setting of horizontal holding rod 200, it is whole comparatively light, be convenient for the manual force application to operate.
The bottom end of the fixing rod 100 is welded to the n-shaped frame 300. The n-shaped frame 300 is integrally formed by bending a round pipe or a square pipe. Such that n-shaped shelf 300 has an open end and a closed end.
The open end of the n-shaped frame 300 is provided with two vertical pipes, and the vertical pipes on two sides of the open end of the n-shaped frame 300 are welded with fixing rings 500; the middle position of the closed end of the n-shaped frame 300 is welded to the bottom end of the fixing rod 100. By welding the n-shaped frame 300 to the bottom end of the fixed bar 100, a reliable fulcrum is provided for rotation of the cross tube napping member.
Therefore, the transverse tube napping piece is connected to the fixed ring 500 in a rotating connection mode, and the rolling transverse tube napping piece is used for replacing blade napping, so that quality defects caused by stone rising in concrete are avoided; the napping is smoother, and the lines are straight and smooth.
As shown in connection with fig. 3, the cross tube roughening includes: a cross tube 400 penetrating the two fixing rings 500, and a plurality of metal disks 600 equally distributed on the cross tube 400; the transverse tube 400 is a circular tube body; the center of each fixing ring 500 is provided with a through hole 510 matched with the cross tube 400. The cross tube 400 passes through the through-hole 510 in a rotationally coupled relationship with the two stationary rings 500. It can be seen that after the fixing rings 500 are welded to the two vertical pipes, the transverse pipe 400 is inserted through the through-holes of the fixing rings 500 at one side thereof by previously placing a plurality of metal disks 600 between the two fixing rings 500, and the mounting holes 610 of the metal disks 600 are sequentially inserted during the process of inserting the transverse pipe 400 until the through-holes of the two fixing rings 500 are completely inserted, and the position adjustment of the exposed length of the transverse pipe 400 is performed,
The two fixing rings 500 are rotatably connected with the transverse tube 400, and both ends of the transverse tube 400 are blocked. The hollow transverse tube 400 is convenient to obtain materials, reduces the overall weight and is convenient for manual operation. The center of each metal disc 600 is provided with a mounting hole 610 which is matched with the transverse tube 400. Is positioned on the cross tube 400 by being sleeved with the mounting holes 610. And, the diameter of any one of the metal discs 600 is larger than the diameter of any one of the fixing rings 500.
Each metal disc 600 is sleeved on the cross tube 400 through the mounting hole 610 and is welded with the cross tube 400. The welding positioning effect is stable, and the transverse tube 400 drives the plurality of metal discs 600 to synchronously rotate in the rotating process.
In the specific transfer process, the interval between any two adjacent metal discs 600 is 2cm; for example, when the distance between the two fixing rings 500 is 14cm, six metal discs 600 are reserved between the two fixing rings 500, the thickness of the six metal discs 600 plus the movable space reserved for the fixing rings 500 realizes that one metal disc 600 is welded and positioned every 2cm, the thickness of the fixing rings 500 is about 1.8cm, and then the metal discs 600 are continuously welded at the exposed ends of the fixing rings 500 at the two sides of the transverse tube 400 at a distance of 2cm until the metal discs 600 are welded comprehensively according to the length of the cut transverse tube 400, and the corresponding number of metal discs 600 can be welded for the transverse tubes 400 with different lengths, so that the application range is wider.
So that each fixing ring 500 rotates in contact with the corresponding adjacent two metal disks 600. The fixing ring 500 is positioned between two adjacent metal discs 600 to rotate, the rotation effect is smooth and stable, the quality defect caused by stone rising in the concrete is avoided by rolling roughening, and roughening is smoother.
And, the diameter of each metal disc 600 is 1cm to 1.5cm greater than the diameter of each fixing ring 500. The lines are straight and smooth and the depth is consistent, so that the roughness forming effect of the laminated plate is improved. For example, when the diameter of the fixing ring 500 is 5cm, the diameter of the metal disc 600 is 6cm, drawing materials and punching are convenient, and the rolling napping effect of a plurality of metal discs 600 is achieved in the rotation process of the transverse tube 400.
According to the application, a rolling roughening mode is adopted to replace a blade roughening mode, so that quality defects caused by stone flooding in concrete are avoided, roughening is smoother, lines are straight and smooth and the depth is consistent, and the roughness forming effect of the laminated slab is improved; meanwhile, the simple laminated plate roughening device has the advantages of simple processing and forming mode, low manufacturing cost, common required material processing, high labor saving and production efficiency improvement after forming.
Those of ordinary skill in the art will appreciate that: the discussion of any of the embodiments above is merely exemplary and is not intended to suggest that the scope of the disclosure, including the claims, is limited to these examples; the technical features of the above embodiments or in the different embodiments may also be combined under the idea of the present disclosure, the steps may be implemented in any order, and there are many other variations of the different aspects of one or more embodiments of the present description as above, which are not provided in details for the sake of brevity.
Furthermore, where specific details are set forth in order to describe example embodiments of the disclosure, it should be apparent to one skilled in the art that one or more embodiments of the disclosure can be practiced without, or with variation of, these specific details. Accordingly, the description is to be regarded as illustrative in nature and not as restrictive.
The present disclosure is intended to embrace all such alternatives, modifications and variances which fall within the broad scope of the appended claims. Any omissions, modifications, equivalents, improvements, and the like, which are within the spirit and principles of the one or more embodiments of the disclosure, are therefore intended to be included within the scope of the disclosure.

Claims (10)

1. A simple laminated board roughening device, comprising: the device comprises a fixed rod, an n-shaped frame connected to the fixed rod, fixed rings connected to two sides of the open end of the n-shaped frame, and transverse tube napping pieces rotatably connected to the two fixed rings; wherein,
The horizontal pipe napping piece includes: a transverse tube penetrating the two fixing rings, and a plurality of metal disks equidistantly distributed on the transverse tube;
the diameter of any one metal disc is larger than that of any one fixing ring.
2. The simple stacked plate napping device of claim 1, wherein a lateral holding rod is fixedly connected to the top end of the fixing rod.
3. The simple stacked plate roughening device of claim 2, wherein the n-shaped frame is fixedly connected to the bottom end of the fixing rod.
4. A simple stacked plate roughening apparatus according to claim 3, wherein the middle position of the closed end of the n-shaped frame is welded to the bottom end of the fixing rod.
5. The simple stacked plate roughening device of claim 1, wherein the transverse tube is a circular tube body;
the circle center of each fixing ring is provided with a through hole matched with the transverse tube.
6. The simple stacked plate roughening device of claim 5, wherein two of the fixing rings are rotatably connected to the transverse tube, and both ends of the transverse tube are blocked.
7. The simple stacked plate roughening device of claim 6, wherein each metal disc has a mounting hole at its center for mating with the transverse tube.
8. The simple stacked plate roughening device of claim 7, wherein each metal disc is sleeved on and welded to the cross tube through the mounting hole.
9. The simple stacked plate roughening apparatus of claim 8, wherein a spacing between any adjacent two of the metal discs is 2cm;
each fixing ring is attached to and rotates with two adjacent metal discs correspondingly.
10. The simple stacked plate roughening apparatus of claim 9, wherein the diameter of each of the metal discs is 1cm to 1.5cm greater than the diameter of each of the fixing rings.
CN202322564583.8U 2023-09-20 2023-09-20 Simple and easy superimposed sheet napping device Active CN220882790U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322564583.8U CN220882790U (en) 2023-09-20 2023-09-20 Simple and easy superimposed sheet napping device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322564583.8U CN220882790U (en) 2023-09-20 2023-09-20 Simple and easy superimposed sheet napping device

Publications (1)

Publication Number Publication Date
CN220882790U true CN220882790U (en) 2024-05-03

Family

ID=90841266

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322564583.8U Active CN220882790U (en) 2023-09-20 2023-09-20 Simple and easy superimposed sheet napping device

Country Status (1)

Country Link
CN (1) CN220882790U (en)

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