CN209874085U - Detachable movable aluminum plate's wall structure - Google Patents

Detachable movable aluminum plate's wall structure Download PDF

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Publication number
CN209874085U
CN209874085U CN201920312229.7U CN201920312229U CN209874085U CN 209874085 U CN209874085 U CN 209874085U CN 201920312229 U CN201920312229 U CN 201920312229U CN 209874085 U CN209874085 U CN 209874085U
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plate body
stopper
groove
plate
wall structure
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CN201920312229.7U
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陆正刚
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Shanghai Modern Architecture Decoration Environment Design Institute Co Ltd
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Shanghai Modern Architecture Decoration Environment Design Institute Co Ltd
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Abstract

The utility model discloses a can dismantle movable aluminum plate's wall structure, including first plate body, second plate body and first fastener, first fastener includes first spacing groove and first stopper, and first spacing groove is located first plate body and the relative terminal surface of second plate body, and first stopper is located the second plate body and the relative terminal surface of first plate body, and first stopper has elasticity, is provided with the elastic groove on the first stopper, and the elastic groove inserts the terminal surface backward extension of first spacing groove from first stopper. Realize detachable connections through first fastener and second fastener between first plate body and the second plate body respectively, effectively promoted the stability of connecting, prolonged life.

Description

Detachable movable aluminum plate's wall structure
Technical Field
The utility model belongs to the building field especially relates to a can dismantle movable aluminum plate's wall structure.
Background
Along with the development of building trade, more and more building external surface is provided with aluminum plate curtain wall, and aluminum plate curtain wall includes a plurality of mutual splices and connects in aluminum plate together, and the concatenation of two adjacent aluminum plates passes through the fix with screw. Because aluminum plate curtain wall can bear the solarization and rain of nature, consequently aluminum plate can appear the edge shrink because of expend with heat and contract with cold, takes place to warp even, and then has shortened life.
In order to solve the above technical problems, the conventional aluminum plates are detachably connected, for example, patent No. 201810866059.7, entitled combined aluminum plate curtain wall, which discloses an aluminum plate curtain wall including a frame strip, a first aluminum plate and a second aluminum plate, wherein the first aluminum plate and the second aluminum plate are spliced together by the frame strip, a first engaging member and a second engaging member are respectively disposed on two opposite sides of the first aluminum plate and the second aluminum plate, the first engaging member of the first aluminum plate is fixed on the frame strip, and the second engaging member of the second aluminum plate is movably inserted into the first engaging member of the first aluminum plate. Through the small displacement in the relative first fastener of second fastener for first aluminum plate and second aluminum plate can freely extend or contract, and then can not cause the extrusion of first aluminum plate and second aluminum plate, prevent the extrusion deformation at first aluminum plate and second aluminum plate's edge.
Therefore, a gap exists between the first clamping piece and the second clamping piece, so that the connection strength of the first aluminum plate and the second aluminum plate is greatly reduced, the stability of the aluminum plate curtain wall is influenced, and even potential safety hazards can occur.
SUMMERY OF THE UTILITY MODEL
In order to solve the problem, the utility model provides a high movable aluminum plate's of dismantling wall structure of joint strength.
The utility model provides a can dismantle activity aluminum plate's wall structure, includes first plate body, second plate body and first fastener, first fastener includes first spacing groove and first stopper, first spacing groove is located first plate body with on the relative terminal surface of second plate body, first stopper is located the second plate body with on the relative terminal surface of first plate body, first stopper has elasticity, be provided with the elastic groove on the first stopper, the elastic groove is followed first stopper inserts the terminal surface of first spacing groove extends backward.
Further, the elastic groove is Z-shaped.
Further, a spring is arranged in the elastic groove.
Furthermore, a convex part is arranged on the first limiting block, and a concave part matched with the convex part is arranged on the first limiting groove.
Furthermore, two sides of the convex part are respectively provided with an inclined plane.
Further, the slope of the left side inclined surface of the convex part is smaller than the slope of the right side inclined surface of the convex part.
Further, the novel plate fixing device further comprises a second fastener, wherein the second fastener comprises a second limiting groove and a second limiting block, the second limiting groove is located on the end face of the first limiting groove, the first plate body is arranged on the end face of the first limiting groove, the second limiting block is located on the end face of the first limiting block, and a rubber ring matched with the second limiting block is arranged in the second limiting groove.
Furthermore, the convex part is perpendicular to the second limiting block.
Further, a through hole is formed in the first plate body, the through hole is communicated with the first limiting groove and is opposite to the concave portion, and a sliding block is further arranged in the through hole.
Furthermore, the through hole is perpendicular to the first limiting groove.
Due to the adoption of the technology, the utility model has the advantages of it is following:
the utility model discloses a realize detachable connections through first fastener and second fastener between first plate body and the second plate body respectively, effectively promoted the stability of connecting, prolonged life.
The present invention will be further described with reference to the accompanying drawings and examples.
Drawings
FIG. 1 is a schematic structural view of a wall structure of the detachable movable aluminum plate of the present invention;
fig. 2 is a schematic structural view of a first embodiment of the first plate of the present invention;
fig. 3 is a schematic structural view of the second plate of the present invention;
fig. 4 is a schematic structural view of a second embodiment of the first plate of the present invention.
In the figure: 100 a first plate body, 200 a second plate body, 300 a first fastener, 310 a first limit groove, 311 a concave part, 312 a through hole, 320 a first limit block, 321 an elastic groove, 322 a convex part, 323 an inclined plane, 400 a second fastener, 410 a second limit groove, 420 a second limit block.
Detailed Description
First embodiment
As shown in fig. 1, the wall structure of the detachable movable aluminum plate includes a first plate 100, a second plate 200 and a first fastener 300, and the first plate 100 and the second plate 200 are detachably connected through the first fastener 300. In the present embodiment, the first plate body 100 and the second plate body 200 are both aluminum plates. The first plate body 100 or the second plate body 200 is fixedly mounted on the frame strip, and is spliced with the second plate body 200 through the first plate body 100 so as to realize the assembly and construction of the aluminum plate wall surface.
As shown in fig. 1 to 3, the first fastener 300 includes a first limiting groove 310 and a first limiting block 320, the first limiting groove 310 is located on the end surface of the first board 100 opposite to the second board 200, the first limiting block 320 is located on the end surface of the second board 200 opposite to the first board 100, the shape of the first limiting groove 310 is adapted to the shape of the first limiting block 320, and the first limiting block 320 has elasticity. When the first plate body 100 and the second plate body 200 are spliced, the first limiting block 320 on the second plate body 200 is inserted into the first limiting groove 310 on the first plate body 100, and because the first limiting block 320 has elasticity, the first limiting block 320 is inserted into the first limiting groove 310 and then is propped open and tensioned, so that the movable connection between the first plate body 100 and the second plate body 200 is realized, and the connected first plate body 100 and the connected second plate body 200 are connected stably. In addition, after the first plate 100 and the second plate 200 are deformed by the expansion and contraction of the natural factors, the first limiting block 320 has elasticity, so that the mutual extrusion between the first plate 100 and the second plate 200 can be offset, and the extrusion deformation of the edges of the first plate 100 and the second plate 200 can be effectively prevented.
The first stopper 320 is provided with an elastic groove 321, and the elastic groove 321 extends backwards from the end surface of the first stopper 320 inserted into the first stopper groove 310. The elastic groove 321 is in a Z-shape or a straight shape.
In this embodiment, the first stopper 320 is made of stainless steel. The first stopper 320 has elasticity by providing the elastic groove 321.
In other embodiments, a spring is disposed within the resilient slot 321. By arranging the spring, the first stoppers 320 positioned at both sides of the elastic groove 321 are inserted into the first stopper groove 310 against the elastic force of the spring, and then the spring makes the first stoppers 320 open and cooperate with the first stopper groove 310.
The number of the springs may be plural, and the springs may be arranged along the length direction of the elastic groove 321.
As shown in fig. 1 to 3, a convex portion 322 is disposed on the first limiting block 320, and a concave portion 311 matched with the convex portion 322 is disposed on the first limiting groove 310, so that when the first limiting block 320 is inserted into the first limiting groove 310 by overcoming the elastic force, the first limiting block 320 is reset and the convex portion 322 slides into the concave portion 311, so as to prevent the first limiting block 320 from sliding out of the first limiting groove 310, and further prevent the first plate 100 and the second plate 200 from being separated.
As shown in fig. 3, the two sides of the protrusion 322 are respectively provided with an inclined surface 323, the inclined surface 323 positioned at the left side of the protrusion 322 is adjacent to the end of the first stopper 320 inserted into the first stopper groove 310, and the inclination of the inclined surface 323 at the left side of the protrusion 322 is smaller than that of the inclined surface 323 at the right side of the protrusion 322.
Since the two sides of the protrusion 322 are respectively provided with the inclined planes 323, the first plate 100 and the second plate 200 can be disassembled. Specifically, a force is applied to the first plate 100 or the second plate 200 to pull the first stopper 320 out of the first stopper groove 321, wherein the first stopper 320 is pressed at an outlet of the first stopper groove 321, and two sides of the protrusion 322 are inclined planes 323, so that the first stopper 320 slides out of the first stopper groove 321, thereby detaching the first plate 100 and the second plate 200.
In the present embodiment, the number of the convex portions 322 is one.
In other embodiments, the number of projections 322 is plural. Preferably, the number of the protruding portions 322 is two, and the two protruding portions are respectively located at the upper and lower sides of the first stopper 320.
As shown in fig. 1, the wall structure of the detachable movable aluminum plate further includes a second fastener 400, and the first plate 100 and the second plate 200 are detachably connected by the second fastener 400.
As shown in fig. 1 to 3, the second fastening member 400 includes a second limiting groove 410 and a second limiting block 420, in this embodiment, the second limiting groove 410 is located on the end surface of the first board 100 disposed with the first limiting groove 310, and the second limiting block 420 is located on the end surface of the second board 200 disposed with the first limiting block 320.
In other embodiments, the second limiting groove 410 is located on the end surface of the second board 200 where the first limiting block 320 is disposed, and the second limiting block 420 is located on the end surface of the first board 100 where the first limiting groove 310 is disposed.
A rubber ring matched with the second limiting block 420 is arranged in the second limiting groove 410, that is, after the first limiting block 321 is inserted into the first limiting groove 310, the end surface of the first limiting groove 310 of the first plate body 100 is abutted to the end surface of the first limiting block 320 arranged on the second plate body 200, and the second limiting block 420 is inserted into the rubber ring in the second limiting groove 410. That is, the second limiting groove 410 and the second limiting block 420 allow elastic deformation therebetween, so that mutual compression between the first plate body 100 and the second plate body 200 can be offset, and compression deformation of the edges of the first plate body 100 and the second plate body 200 can be effectively prevented.
Preferably, the protrusion 322 and the second stopper 420 are perpendicular to each other, and the lateral and longitudinal compression deformation of the first plate 100 and the second plate 200 is offset.
The number of the convex portions 322 may be plural. In this embodiment, the number of the protruding portions 322 is two, and the two protruding portions 322 are respectively disposed on the upper and lower sides of the second stopper 420.
By providing the second fastener 400, the connection strength between the first board body 100 and the second board body 200 is improved. To sum up, detachable connections are realized through first fastener 300 and second fastener 400 between first plate body 100 and the second plate body 200 respectively, have effectively promoted the stability of connection, have prolonged life.
It should be noted that one first board 100 may be respectively connected to a plurality of second boards 200, and each first board 100 is respectively connected to one second board 200 through a first fastener 300 and a second fastener 400. Similarly, one second board 200 may be connected to a plurality of first boards 100, and each second board 200 is connected to one first board 100 through a first fastener 300 and a second fastener 400.
Second embodiment
The difference from the first embodiment is in the structure of the first plate body 100.
As shown in fig. 4, the first plate 100 is provided with a through hole 312, and the through hole 312 is communicated with the first limiting groove 310 and is disposed opposite to the concave portion 311. A sliding block is arranged in the through hole 312, and when the first plate body 100 and the second plate body 200 are disassembled, the sliding block is pushed to move downwards, so that the convex portion 322 on the first limiting block 320 slides out of the concave portion 311 on the first limiting groove 310, and the first plate body 100 and the second plate body 200 are conveniently disassembled.
Preferably, the through hole 312 is perpendicular to the first limiting groove 310.
The above-mentioned embodiments are only used for illustrating the technical ideas and features of the present invention, and the purpose thereof is to enable those skilled in the art to understand the contents of the present invention and to limit the scope of the present invention in terms of implementation, which is not limited by the present embodiment, i.e. all equivalent changes or modifications made in accordance with the spirit disclosed by the present invention still fall within the scope of the present invention.

Claims (10)

1. The utility model provides a can dismantle activity aluminum plate's wall structure, a serial communication port, including first plate body, second plate body and first fastener, first fastener includes first spacing groove and first stopper, first spacing groove is located first plate body with on the relative terminal surface of second plate body, first stopper is located the second plate body with on the relative terminal surface of first plate body, first stopper has elasticity, be provided with the elastic groove on the first stopper, the elastic groove is followed first stopper inserts the terminal surface of first spacing groove extends backward.
2. A wall structure of removable activity aluminum plate as recited in claim 1, wherein said elastic groove is Z-shaped.
3. A wall structure of removable activity aluminum plate as recited in claim 1, wherein said elastic groove is provided with a spring.
4. The wall structure of a detachable movable aluminum plate as claimed in claim 2 or 3, wherein the first stopper is provided with a convex portion, and the first stopper groove is provided with a concave portion engaged with the convex portion.
5. A wall structure of removable activity aluminum plate as claimed in claim 4, wherein both sides of said convex portion are respectively inclined.
6. A wall structure of a removable aluminum sheet as recited in claim 5, wherein the slope of the left side slope of said protrusion is less than the slope of the right side slope of said protrusion.
7. The wall structure of claim 4, further comprising a second fastener, wherein the second fastener comprises a second limiting groove and a second limiting block, the second limiting groove is located on the end face of the first plate body, the first limiting groove is formed in the end face of the first limiting groove, the second limiting block is located on the end face of the second plate body, the first limiting block is arranged in the end face of the second plate body, and a rubber ring matched with the second limiting block is arranged in the second limiting groove.
8. A wall structure of a removable activity aluminum plate as recited in claim 7, wherein said protrusion is perpendicular to said second stopper.
9. A wall structure of a detachable movable aluminum plate as recited in claim 5, wherein said first plate body is provided with a through hole, said through hole is communicated with said first limiting groove and is disposed opposite to said recess, and a slider is further disposed in said through hole.
10. A wall structure of removable aluminum panels as claimed in claim 9, wherein said through holes are perpendicular to said first retaining grooves.
CN201920312229.7U 2019-03-12 2019-03-12 Detachable movable aluminum plate's wall structure Active CN209874085U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920312229.7U CN209874085U (en) 2019-03-12 2019-03-12 Detachable movable aluminum plate's wall structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920312229.7U CN209874085U (en) 2019-03-12 2019-03-12 Detachable movable aluminum plate's wall structure

Publications (1)

Publication Number Publication Date
CN209874085U true CN209874085U (en) 2019-12-31

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Application Number Title Priority Date Filing Date
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114351916A (en) * 2022-01-26 2022-04-15 中国建筑第八工程局有限公司 Ceramsite plate curtain wall mounting device convenient to mount

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114351916A (en) * 2022-01-26 2022-04-15 中国建筑第八工程局有限公司 Ceramsite plate curtain wall mounting device convenient to mount

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