CN216516844U - Pre-buried connecting plate of aluminum mould board - Google Patents
Pre-buried connecting plate of aluminum mould board Download PDFInfo
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- CN216516844U CN216516844U CN202122388975.4U CN202122388975U CN216516844U CN 216516844 U CN216516844 U CN 216516844U CN 202122388975 U CN202122388975 U CN 202122388975U CN 216516844 U CN216516844 U CN 216516844U
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Abstract
The utility model provides an aluminum template pre-embedded connecting plate. The utility model provides an embedded connecting plate of aluminum mould board, includes square template body, template body openly opens there is square groove, be equipped with the strengthening rib in the recess, the reverse side of template body is dull and stereotyped face, the both sides limit department of template body opens there are to pierce through a plurality of perforation of template body positive and negative. According to the utility model, the square groove is formed in the front surface of the connecting plate, the size of the square groove is slightly smaller than that of the template body, so that a large part of material can be saved, the screw holes are preset in the two sides, so that repeated punching can be avoided, and the repeated utilization rate of the whole embedded connecting plate can be increased; the reinforcing ribs are arranged in the grooves, so that the strength of the whole plate can be improved; in addition, due to the blocking effect of the reinforcing ribs in the grooves, the flowing of cement mortar in the front groove can be obviously reduced when the front groove is used.
Description
Technical Field
The utility model relates to the field of aluminum template building materials, in particular to an aluminum template embedded connecting plate.
Background
In the process of building a house structure by using the aluminum template, a groove needs to be reserved at some position, and the depth of the groove is a little deeper than that of the outer wall surface, so that the subsequent installation of other structures is facilitated; for example, a wire groove is reserved firstly, and wires are laid in the groove subsequently, so that the groove does not need to be dug; a door frame groove is reserved firstly, and the door frame is convenient to mount subsequently.
The means of reserving the recess is directly to stay the relevant position at the aluminium template through the screw as pre-buried connecting plate through a plank, plastic board or aluminum plate now, after the aluminium template frame is built, can pull down pre-buried connecting plate, just leaves a recess at the relevant position, follow-up just can install corresponding structure in this recess, couples together the structure on both sides. However, in the method, a whole plate is used for connection, and most plates cannot be reused after being screwed for several times; the embedded connecting plate has a plurality of places, so that great material waste is caused; and, because there is not the connecting plate of standard specification, lead to when installing, highly differ, reserve the recess effect less than ideal.
SUMMERY OF THE UTILITY MODEL
The utility model aims to overcome the defects that the whole plate is used for connection, and most plates cannot be reused after being screwed for several times; the embedded connecting plate has a plurality of places, so that great material waste is caused; and, because there is not the connecting plate of standard specification, when leading to the installation, highly differ, the reservation recess effect is less ideal, provides an aluminum mould pre-buried connecting plate.
In order to solve the technical problems, the utility model adopts the technical scheme that: the utility model provides an embedded connecting plate of aluminum mould board, includes square template body, it has square groove to open on the terminal surface of template, on the template body with a terminal surface that square groove is relative is dull and stereotyped face, open the both sides limit department of template body has and pierces through a plurality of screws of template body. Therefore, the front surface of the template body is provided with the square groove, the size of the square groove is slightly smaller than that of the template body, a large part of materials can be saved, through holes are preset at two sides and used for connecting bolts or other connecting pieces, repeated punching can be avoided, and the repeated utilization rate of the whole embedded connecting plate can be increased; the reinforcing ribs are arranged in the grooves, so that the strength of the whole plate can be increased; and whole template body forms through mould processing according to certain standard specification, when specifically using, according to the different condition, cuts into different length cooperations and uses for the recess of reservation is more level and more smooth.
Furthermore, reinforcing ribs are arranged in the square grooves. In addition, due to the blocking effect of the reinforcing ribs in the grooves, the flow of cement mortar in the front grooves can be obviously reduced when the cement mortar is used, and the cement mortar is convenient to recover in the follow-up process.
Furthermore, a separating cross rod parallel to the wide edge of the template body is arranged in the square groove, the square groove is divided into a plurality of concave areas by the separating cross rod, and the reinforcing ribs are arranged in the concave areas. Therefore, the separating cross rod separates the long square groove into a plurality of short square grooves so as to increase the stability of the whole template body.
Further, the reinforcing ribs are connected in a grid shape in the concave area in a crossed mode. The reinforcing ribs are flaky and are arranged in a crossed manner, the mold is generally arranged into a standard grid shape, and the grid structure can prevent fluid such as cement mortar and the like from flowing in the grooves to a great extent to increase the weight of the template body; the strengthening rib is also parallel with the limit of square template body, can prevent like this that follow-up cutting time from just cutting on the strengthening rib, increases the degree of difficulty of cutting.
Further, the depth of each grid in the grid-shaped reinforcing ribs is the same as the depth of the grooves. Therefore, the depth of each grid of the latticed reinforcing ribs is consistent with the depth of the grooves, so that the front surface of the whole template body is also very flat, the depth of the reserved grooves is also consistent, and the surface is flat.
Furthermore, the template body is of a cuboid structure, the width B of the template body is 80mm or more and is less than or equal to 200mm, the length A of the template body satisfies that A is greater than B, and the thickness of the template body is 8mm or more and is less than or equal to 25 mm. Thus, in order to be matched with the existing aluminum template for use, the width of the template body is set to be very standard, generally between 80mm and 200mm, the thickness is set according to different groove conditions and between 8mm and 25mm, and the length can be set to be any length to be matched with the use under different conditions; generally, the cutting tool is set to a longer standard length when being delivered from a factory, and then corresponding cutting is carried out according to different conditions.
Further, the size of the width B of the template body is 120mmm, and the size of the thickness of the template body is 20 mm. Thus, the most common standard size is 120mmm of width and 20mm of thickness of the template body; the depth of the groove reserved by the template body is 20mm, and the width of the groove is 120mm, so that most of operation requirements are met.
Further, the through hole is a screw hole with an internal thread. In this way, the threaded bore can be used to screw on a bolt having an external thread, making the bolted connection more secure.
Preferably, the formwork body is made of polyvinyl chloride. Like this, whole pre-buried connecting plate is made by polyvinyl chloride or equivalent material, and intensity is higher, and use cost is also lower.
Compared with the prior art, the beneficial effects are:
the front surface of the connecting plate is provided with the square groove, the size of the square groove is slightly smaller than that of the template body, a large part of materials can be saved, screw holes are preset on two sides, repeated punching can be avoided, and the repeated utilization rate of the whole embedded connecting plate can be increased; the reinforcing ribs are arranged in the grooves, so that the strength of the whole plate can be increased; in addition, due to the blocking effect of the reinforcing ribs in the grooves, the flow of cement mortar in the front groove can be obviously reduced when the front groove is used.
Drawings
Fig. 1 is a schematic structural view of the front surface of the present invention.
Fig. 2 is a schematic view of the structure of the reverse side of the present invention.
Detailed Description
The drawings are for illustrative purposes only and are not to be construed as limiting the patent; for the purpose of better illustrating the embodiments, certain features of the drawings may be omitted, enlarged or reduced, and do not represent the size of an actual product; it will be understood by those skilled in the art that certain well-known structures in the drawings and descriptions thereof may be omitted. The positional relationships depicted in the drawings are for illustrative purposes only and are not to be construed as limiting the present patent.
The same or similar reference numerals in the drawings of the embodiments of the present invention correspond to the same or similar components; in the description of the present invention, it should be understood that if there are terms such as "upper", "lower", "left", "right", "long", "short", etc., indicating orientations or positional relationships based on the orientations or positional relationships shown in the drawings, it is only for convenience of description and simplicity of description, but does not indicate or imply that the device or element referred to must have a specific orientation, be constructed in a specific orientation, and be operated, and therefore, the terms describing the positional relationships in the drawings are only used for illustrative purposes and are not to be construed as limitations of the present patent, and specific meanings of the terms may be understood by those skilled in the art according to specific situations.
The technical scheme of the utility model is further described in detail by the following specific embodiments in combination with the attached drawings:
as shown in fig. 1 and 2, the aluminum template embedded connecting plate comprises a square template body 1, wherein the template body 1 is of a cuboid structure, the width B of the template body 1 is 120mmm, and the thickness of the template body 1 is 20 mm; the front surface of the template body 1 is provided with a square groove 2, a separating cross rod 3 parallel to the wide edge of the template body 1 is arranged in the square groove 2, the square groove 2 is divided into a plurality of concave areas 4 by the separating cross rod 3, and the reinforcing ribs 5 are arranged in the concave areas 4; the reverse side of the template body 1 is a flat plate surface, and a plurality of screw holes 6 penetrating through the front side and the reverse side of the template body 1 are arranged at the two side edges of the template body 1; the reinforcing ribs 5 are crossed and connected into a grid shape in the concave area 4; the depth of each grid area in the grid-shaped reinforcing ribs 5 is the same as the depth of the grooves; the formwork body 1 is made of polyvinyl chloride.
The present embodiment uses the most common standard size: the width B of the cuboid template body 1 is 120mmm, the thickness is 20mm, and the length A is more than B; the depth of the groove reserved by the template body 1 is 20mm, and the width of the groove is 120mm, so that most of operation requirements are met; the whole embedded connecting plate is made of polyvinyl chloride, so that the strength is high, and the use cost is low; in the embodiment, the front surface of the template body 1 is provided with the square groove 2, the size of the square groove 2 is slightly smaller than that of the template body 1 and is in a strip shape, the square groove 2 is divided into a plurality of concave areas 4 by the dividing cross rod 3, and a large part of materials can be saved by adopting the hollow design; the screw holes 6 are preset on the two sides, so that repeated punching can be avoided, and the repeated utilization rate of the whole embedded connecting plate can be increased; the reinforcing ribs 5 are arranged in the grooves, so that the strength of the whole plate can be increased; in addition, due to the blocking effect of the reinforcing ribs 5 in the grooves, the flow of cement mortar in the grooves on the front surface can be obviously reduced when the cement mortar is used, and the subsequent recovery is convenient; and whole template body 1 forms through mould processing according to certain standard specification, when specifically using, according to the different condition, cuts into different length cooperation and uses for the recess of reservation is more level and more smooth. The reinforcing ribs 5 are in a sheet shape and are arranged in a crossed manner, the mold is generally arranged into a standard grid shape, and the grid structure can prevent fluid such as cement mortar and the like from flowing in the grooves to a great extent to increase the weight of the template body 1; the strengthening rib 5 is also not parallel with the limit of square template body 1, can prevent like this that follow-up cutting time from just cutting on strengthening rib 5, increases the degree of difficulty of cutting. The depth of each grid of the grid-shaped reinforcing ribs 5 is consistent with that of the grooves, so that the front surface of the whole template body 1 is also very flat, the depth of the reserved grooves is also consistent, and the surface is flat.
During the use, be equipped with the front of square groove 2 with template body 1 and paste on the aluminium template that corresponds, twist screw or bolt through the screw 6 of square groove 2, also have screw 6 in the corresponding position on the aluminium template, fix the aluminium membrane connecting plate on the aluminium lamina membranacea through screw or bolt. After whole wall body erects, the both sides of pre-buried connecting plate are laid into and are connected with pre-buried connecting plate parallel and level, then demolish the bolt or the screw of pre-buried connecting plate, just formed a recess in this indent region 4, can lay the pipeline or install other structures.
It should be understood that the above-described embodiments of the present invention are merely examples for clearly illustrating the present invention, and are not intended to limit the embodiments of the present invention. Other variations and modifications will be apparent to persons skilled in the art in light of the above description. And are neither required nor exhaustive of all embodiments. Any modification, equivalent replacement, and improvement made within the spirit and principle of the present invention should be included in the protection scope of the claims of the present invention.
Claims (9)
1. The utility model provides an embedded connecting plate of aluminum mould board, its characterized in that includes square template body, it has square groove to open on the one side of template, back of the body of template is to square groove's one side is dull and stereotyped face, the both sides limit department of template body opens has and pierces through a plurality of perforation of two faces of template body.
2. The aluminum formwork pre-buried connecting plate as claimed in claim 1, wherein reinforcing ribs are arranged in the square grooves.
3. The aluminum template embedded connecting plate as claimed in claim 2, wherein a plurality of separating cross bars parallel to the wide sides of the template body are arranged in the square grooves, the square grooves are divided into a plurality of concave areas by the separating cross bars, and the reinforcing ribs are arranged in the concave areas.
4. The aluminum template embedded connecting plate as claimed in claim 3, wherein the reinforcing ribs are connected in a grid shape in the concave area in a cross manner.
5. The aluminum formwork embedded connecting plate as claimed in claim 4, wherein the depth of each grid in the latticed reinforcing ribs is the same as the depth of the grooves.
6. The aluminum template embedded connecting plate as claimed in claim 1, wherein the template body is of a cuboid structure, the width B of the template body is 80mm or more and B or less than 200mm, the length A of the template body satisfies A & gtB, and the thickness of the template body is 8mm or more and 25mm or less.
7. The aluminum template embedded connecting plate as claimed in claim 5, wherein the width B of the template body is 120mmm, and the thickness of the template body is 20 mm.
8. The aluminum formwork pre-buried connecting plate as claimed in claim 1, wherein the formwork body is made of polyvinyl chloride.
9. The aluminum formwork pre-buried connecting plate of claim 1, wherein the through holes are screw holes with internal threads.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122388975.4U CN216516844U (en) | 2021-09-29 | 2021-09-29 | Pre-buried connecting plate of aluminum mould board |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122388975.4U CN216516844U (en) | 2021-09-29 | 2021-09-29 | Pre-buried connecting plate of aluminum mould board |
Publications (1)
Publication Number | Publication Date |
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CN216516844U true CN216516844U (en) | 2022-05-13 |
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CN202122388975.4U Active CN216516844U (en) | 2021-09-29 | 2021-09-29 | Pre-buried connecting plate of aluminum mould board |
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2021
- 2021-09-29 CN CN202122388975.4U patent/CN216516844U/en active Active
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