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CN221256123U - Hydrophobic aluminum alloy building template - Google Patents

Hydrophobic aluminum alloy building template Download PDF

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Publication number
CN221256123U
CN221256123U CN202322119168.1U CN202322119168U CN221256123U CN 221256123 U CN221256123 U CN 221256123U CN 202322119168 U CN202322119168 U CN 202322119168U CN 221256123 U CN221256123 U CN 221256123U
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CN
China
Prior art keywords
plate
locking
hydrophobic
template
clamping
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CN202322119168.1U
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Chinese (zh)
Inventor
毕昇
毕雪微
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Jiangsu Caifa Aluminum Co ltd
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Jiangsu Caifa Aluminum Co ltd
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Priority to CN202322119168.1U priority Critical patent/CN221256123U/en
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Abstract

The utility model belongs to the technical field of aluminum alloy templates, and particularly relates to a hydrophobic aluminum alloy building template, which comprises a locking device, wherein the locking device comprises a sliding plate, locking plates, a rubber layer, clamping plates and clamping air bags, the sliding plate is cuboid, the sliding plate is positioned in a sliding groove and is in sliding connection with the sliding groove, the length of the sliding groove is longer than that of the sliding plate, the surface of the sliding plate, which is close to the upper surface of the hydrophobic template, is fixedly connected with the locking plates at equal intervals, the arc surface of each locking plate is fixedly connected with the rubber layer, the surface of the sliding plate, which is close to the upper surface of the hydrophobic template, is fixedly connected with the clamping plates at equal intervals, the shape and the size of the clamping plates are identical to those of the locking plates, the circular arcs of the clamping plates and the clamping plates form a ring shape, and the concave surfaces of each locking plate and the clamping air bags are fixedly connected at equal intervals. The problem that the locking device and the limiting block are worn or even broken under the condition that the template is subjected to severe impact or repeatedly swaying is solved, and the use safety and the service life of the template are improved.

Description

Hydrophobic aluminum alloy building template
Technical Field
The utility model belongs to the technical field of aluminum alloy templates, and particularly relates to a hydrophobic aluminum alloy building template.
Background
The aluminum templates are all called aluminum alloy templates for building. The aluminum alloy template is extruded by special equipment and can be freely combined according to different structural sizes, and the aluminum alloy template can be recycled for multiple times, and the existing aluminum alloy template is mostly fixed by adopting a plurality of bolts during installation, so that the bolts are required to be continuously screwed down in the process of disassembling and assembling the aluminum alloy template, the operation is complex, and the time consumption is high.
In order to solve the problems, as in the patent in China, CN218970613U, an aluminum alloy template convenient to detach is provided, and a limiting block is inserted into a corresponding limiting opening to rapidly assemble through a limiting short plate.
The greatest disadvantage is that: after the aluminum alloy template is assembled, when the template is subjected to severe impact or repeated shaking after the aluminum alloy template is assembled, the locking device and the limiting block are worn or even broken, so that the fixing effect cannot be achieved, and the use safety and the practicability of the aluminum alloy template are greatly reduced.
Disclosure of utility model
Aiming at the situation, in order to overcome the defects of the prior art, the utility model provides the hydrophobic aluminum alloy building template, which solves the problems that the locking device and the limiting block are worn or even broken under the condition that the template is subjected to severe impact or repeatedly swaying, and improves the use safety and the service life of the template.
The technical scheme adopted by the utility model is as follows: the utility model provides a hydrophobic aluminum alloy building template, which comprises a hydrophobic template and a rotating plate;
The hydrophobic template is cuboid, the lower surface of the hydrophobic template is of a concave cavity structure, and the hydrophobic template is made of an aluminum alloy material;
The inner cavity of the hydrophobic template is fixedly connected with reinforcing ribs, and two ends of each reinforcing rib are vertically and fixedly connected with two long side walls of the hydrophobic template.
The rotating plate comprises a rotating shaft, a locking lug and a limiting hole;
The rotary plate is cuboid, one rotary plate is arranged, and the rotary plate is fixedly connected with the rotary shaft;
one end of the rotating shaft, which is far away from the rotating plate, is movably connected with one side wall of the hydrophobic template;
The length of the side wall of the rotating plate, which is longer than that of the hydrophobic template, is the same;
The surface of the rotating plate far away from the hydrophobic template is fixedly connected with locking convex blocks at equal intervals, and the locking convex blocks are cylindrical;
Limiting holes are symmetrically formed in the rotating plate, and two limiting holes are formed.
The side wall equidistance that the hydrophobic template kept away from the rotor plate is offered the locking hole, the locking hole is the same with locking lug size and the position corresponds.
The side wall of the hydrophobic template far away from the rotating plate is symmetrically provided with two limiting holes;
The hydrophobic template is far away from the inboard fixed connection sliding tray of lateral wall of rotor plate, the sliding tray is cuboid.
The distance of the sliding groove approaching the upper surface of the hydrophobic template is larger than the distance of the locking hole approaching the upper surface of the hydrophobic template.
The locking device comprises a sliding plate, a locking plate and a rubber layer;
The sliding plate is cuboid and is positioned in the sliding groove and is in sliding connection with the sliding groove;
limiting holes are symmetrically formed in the surface, close to the locking holes, of the sliding plate;
the length of the sliding groove is longer than that of the sliding plate.
The surface of the sliding plate, which is close to the upper surface of the hydrophobic template, is equidistantly and fixedly connected with a locking plate, and the section of the locking plate is semicircular;
and each locking plate is fixedly connected with a rubber layer on the arc surface.
The surface of the sliding plate, which is close to the upper surface of the hydrophobic template, is fixedly connected with the clamping plate at equal intervals, the shape and the size of the clamping plate are the same as those of the locking plate, the section of the clamping plate is in a semicircular arc shape, and the clamping plate and the circular arc of the locking plate form a ring shape;
Each locking plate is fixedly connected with a clamping air bag with equal distance from the concave surface of each clamping plate, and the clamping air bags are made of nitrile rubber.
The distance between each set of opposing clamping plates and the locking plate is equal to the diameter of the locking hole.
The sliding groove, the locking plate and the clamping plate are of a cavity structure;
the connecting surface of each clamping air bag and the locking plate is provided with a pressure release hole;
The connecting surface of each clamping air bag and the clamping plate is provided with a pressure release hole;
And through holes are formed in the connecting surfaces of the locking plate, the clamping plate and the sliding groove.
The beneficial effects obtained by the utility model by adopting the structure are as follows:
Firstly, through the face fixed connection rubber layer at locking plate contact locking lug, both can absorb the striking that the hydrophobic template received in the use and rock the damage to locking lug, also reduced the rigid friction harm of locking plate to locking lug, also can carry out the effect that a reduction range of motion was gone on to the locking lug and the locking hole that have worn and produced the activity space simultaneously, and then increased the locking effect between the hydrophobic template.
Secondly, increase grip block collocation locking plate and form better centre gripping fixed effect to locking lug, after grip block or locking plate any one of them receive the damage, the locking that also can form locking limiting effect to locking lug left, simultaneously grip block and grip block collocation centre gripping gasbag can absorb frictional force and the impact that the locking lug produced in the installation, simultaneously after grip block, locking plate and locking lug produced the clearance, the impact of locking lug in the movable groove can be absorbed to the centre gripping gasbag, also can play limiting effect, locking mechanism's locking effect has been improved, the structural stability of hydrophobic template has been improved simultaneously.
Thirdly, when the centre gripping gasbag receives the extrusion, the inside gas of centre gripping gasbag passes through pressure release hole, through-hole in proper order and enters into the centre gripping gasbag that does not receive the extrusion, further laminating locking lug, and reduce locking lug's movable range, when locking lug produces irregular wearing and tearing to locking plate and grip block, add when holding the gasbag also can be fixed the effect to locking lug through the activity at pressure release hole, through-hole, the effectual wearing and tearing space according to laminating irregularity, the effectual hydrophobic template that has reduced is receiving under the circumstances that violent striking or rocks repeatedly the frictional force that produces between locking device and the locking lug, the structural stability and the safety in utilization of hydrophobic template have been further improved simultaneously.
Drawings
FIG. 1 is a schematic diagram of a hydrophobic aluminum alloy building template according to the present utility model;
FIG. 2 is a schematic diagram of a hydrophobic aluminum alloy building template according to the present utility model;
FIG. 3 is a schematic structural view of a hydrophobic aluminum alloy building template according to the present utility model;
FIG. 4 is a schematic view of a locking device according to the present utility model;
FIG. 5 is a schematic diagram of a second embodiment of the present utility model;
Fig. 6 is a schematic diagram of a third embodiment of the present utility model.
100 Parts of a hydrophobic template, 101 parts of a reinforcing rib, 200 parts of a rotating plate, 201 parts of a rotating shaft, 202 parts of a locking lug, 203 parts of a limiting hole, 300 parts of a locking hole, 400 parts of a sliding groove;
500. Locking device 501, sliding plate 502, locking plate 503, rubber layer 504, clamping plate 505, clamping airbag 506, pressure release hole 507, through hole.
The accompanying drawings are included to provide a further understanding of the utility model and are incorporated in and constitute a part of this specification, illustrate the utility model and together with the embodiments of the utility model, serve to explain the utility model.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and fully with reference to the accompanying drawings, in which it is evident that the embodiments described are only some, but not all embodiments of the utility model; all other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Example 1
As shown in fig. 1 to 4, the hydrophobic aluminum alloy building template provided by the utility model comprises a hydrophobic template 100 and a rotating plate 200;
the hydrophobic template 100 is cuboid, the lower surface of the hydrophobic template 100 is of a concave cavity structure, and the hydrophobic template 100 is made of an aluminum alloy material;
the inner cavity of the hydrophobic template 100 is fixedly connected with a reinforcing rib 101, and two ends of the reinforcing rib 101 are vertically and fixedly connected with two long side walls of the hydrophobic template 100.
The rotating plate 200 comprises a rotating shaft 201, a locking lug 202 and a limiting hole 203;
The rotating plate 200 is rectangular, one rotating plate 200 is arranged, and the rotating plate 200 is fixedly connected with a rotating shaft 201;
One end of the rotating shaft 201 far away from the rotating plate 200 is movably connected with the longer side wall of the hydrophobic template 100;
The length of the side wall of the rotating plate 200, which is the same as the length of the hydrophobic template 100;
The surface of the rotating plate 200 far away from the hydrophobic template 100 is fixedly connected with locking convex blocks 202 at equal intervals, and the locking convex blocks 202 are cylindrical;
the rotating plate 200 is symmetrically provided with two limiting holes 203, and the number of the limiting holes 203 is two.
The hydrophobic template 100 is provided with locking holes 300 at equal intervals on the side wall of the rotating plate 200, and the locking holes 300 are the same as the locking protrusions 202 in size and corresponding in position.
The side wall of the hydrophobic template 100 far away from the rotating plate 200 is also symmetrically provided with two limiting holes 203;
The inner side of the side wall of the hydrophobic template 100 far away from the rotating plate 200 is fixedly connected with a sliding groove 400, and the sliding groove 400 is cuboid.
The sliding groove 400 is located closer to the upper surface of the hydrophobic template 100 than the locking hole 300 is located closer to the upper surface of the hydrophobic template 100.
The locking device 500 comprises a sliding plate 501, a locking plate 502 and a rubber layer 503;
The sliding plate 501 is rectangular, and the sliding plate 501 is located in the sliding groove 400 and is slidably connected with the sliding groove 400;
the surface of the sliding plate 501 close to the locking hole 300 is also symmetrically provided with a limiting hole 203;
The sliding groove 400 has a length greater than that of the sliding plate 501.
The surface of the sliding plate 501, which is close to the upper surface of the hydrophobic template 100, is equidistantly and fixedly connected with a locking plate 502, and the section of the locking plate 502 is in a semicircular arc shape;
each locking plate 502 is fixedly connected with a rubber layer 503 on the circular arc surface.
When the hydrophobic template is specifically used, a user inserts the locking protrusions 202 of one hydrophobic template 100 into the locking holes 300 on one side of the other hydrophobic template 100 respectively, then drives the rotating plate 200 to do circular motion through the rotating shaft 201, so that the two hydrophobic templates 100 can be spliced at different angles, and the locking plates 502 push the locking protrusions 202 to be attached to the locking holes 300 through the sliding of the sliding plate 501 in the sliding groove 400, and finally the rotating plate 200 is completely attached to the hydrophobic template 100 and the limiting holes 203 on the sliding plate 501, and finally a bolt is inserted into the limiting holes 203, so that the sliding block 501 does not slide any more.
The beneficial effects are that: through the surface fixed connection rubber layer 503 that contacts locking lug 202 at locking plate 502, both can absorb the striking rocking that hydrophobic form 100 received in the use and to the damage of locking lug 202, also reduced the rigid friction harm of locking plate 502 to locking lug 202, also can carry out a reduction activity scope's effect to locking lug 202 and locking hole 300 that has worn and produced the activity space simultaneously, and then increased the locking effect between the hydrophobic form 100.
Example two
When the assembled hydrophobic template 100 is subjected to severe repeated impact, the locking convex blocks 202 and the locking plates 502 are mutually impacted and rubbed, so that the locking plates 502 are broken and cannot play a role of fixing and limiting the locking convex blocks 202, and thus the second embodiment is further improved from the first embodiment.
As shown in fig. 5, the surface of the sliding plate 501 close to the upper surface of the hydrophobic template 100 is equidistantly and fixedly connected with a clamping plate 504, the shape and the size of the clamping plate 504 are the same as those of the locking plate 502, the cross section of the clamping plate 504 is in a semicircular arc shape, and the circular arcs of the clamping plate 504 and the locking plate 502 form a ring shape;
Each locking plate 502 and each clamping plate 504 are fixedly connected with a clamping airbag 505 at equal intervals, and the clamping airbag 505 is made of nitrile rubber.
The distance between each set of opposing clamping plates 504 and locking plate 502 is equal to the diameter of locking hole 300 so as not to interfere with the insertion of locking tab 202 into locking hole 300.
The specific application is as follows: the operator aligns the ring shape between the clamp plate 504 and the lock plate 502 with the lock hole 300 by pushing the displacement of the slide plate 501 in the slide groove 400, and then the operator inserts the lock projection 202 into the lock hole 300, the clamp plate 504 and the lock plate 502 cooperate to fix the lock projection 202, and the clamp airbag 505 can absorb the friction force between the lock projection 202 and the clamp plate 504 and the lock plate 502 while reducing the movable range of the lock projection 202.
The beneficial effects are that: the clamping plate 504 is added to match the locking plate 502 to form a better clamping and fixing effect on the locking convex block 202, after any one of the clamping plate 504 or the locking plate 502 is damaged, the rest of the clamping plate can also form a locking and limiting effect on the locking convex block 202, meanwhile, the clamping plate 502 and the clamping plate 504 are matched with the clamping air bag 505 to absorb friction force and impact force generated by the locking convex block 202 in the installation process, and meanwhile, after the clamping plate 504, the locking plate 502 and the locking convex block 202 generate a movable gap, the clamping air bag 505 can absorb the impact force of the locking convex block 202 in the movable groove 400, the limiting effect can be achieved, the locking effect of the locking mechanism 500 is improved, and meanwhile, the structural stability of the hydrophobic template 100 is improved.
Example III
When the hydrophobic template 100 is impacted greatly, the clamping airbag 505 may explode directly, so that the locking limit effect of the locking lug 202 cannot be achieved, and meanwhile, the impact abrasion of the locking lug 202 to the sliding groove 400, the locking plate 502 and the clamping plate 504 may be uneven, so that the third embodiment is further improved.
As shown in fig. 6, the sliding groove 400, the locking plate 502, and the clamping plate 504 are all hollow structures;
The connection surface of each clamping airbag 505 and the locking plate 502 is provided with a pressure release hole 506;
The connecting surface of each clamping airbag 505 and the clamping plate 504 is provided with a pressure release hole 506;
Through holes 507 are formed on the connection surfaces of the locking plate 502, the clamping plate 504 and the sliding groove 400.
The specific implementation is as follows: when the clamping airbag 505 is extruded, the gas inside the clamping airbag 505 sequentially enters the non-extruded clamping airbag 505 through the pressure release holes 506 and the through holes 507, the locking convex blocks 202 are further attached, the moving range of the locking convex blocks 202 is reduced, when the locking convex blocks 202 irregularly abrade the locking plate 502 and the clamping plate 504, the locking airbag 505 can also effectively fix the locking convex blocks 202 according to the attaching irregular abrasion space through the movements of the pressure release holes 506 and the through holes 507, the friction force generated between the locking device 500 and the locking convex blocks 202 under the condition that the hydrophobic template 100 is impacted severely or swayed repeatedly is effectively reduced, and meanwhile, the structural stability and the use safety of the hydrophobic template 100 are further improved.
It is noted that relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.
The utility model and its embodiments have been described above with no limitation, and the actual construction is not limited to the embodiments of the utility model as shown in the drawings. In summary, if one of ordinary skill in the art is informed by this disclosure, a structural manner and an embodiment similar to the technical solution should not be creatively devised without departing from the gist of the present utility model.

Claims (7)

1. A hydrophobic aluminum alloy building template comprises a hydrophobic template (100) and a rotating plate (200);
The hydrophobic template (100) is cuboid, the lower surface of the hydrophobic template (100) is of a concave cavity structure, and the hydrophobic template (100) is made of an aluminum alloy material;
The rotating plate (200) is movably connected with one long side wall of the hydrophobic template (100);
The inner side of the side wall of the hydrophobic template (100) far away from the rotating plate (200) is fixedly connected with a sliding groove (400), and the sliding groove (400) is cuboid;
The method is characterized in that: the device also comprises a locking device (500), wherein the locking device (500) comprises a sliding plate (501), a locking plate (502), a rubber layer (503), a clamping plate (504) and a clamping air bag (505);
the sliding plate (501) is cuboid, and the sliding plate (501) is positioned in the sliding groove (400) and is in sliding connection with the sliding groove (400);
the length of the sliding groove (400) is longer than that of the sliding plate (501);
The sliding plate (501) is fixedly connected with the locking plate (502) at equal intervals on the surface close to the upper surface of the hydrophobic template (100), and the cross section of the locking plate (502) is in a semicircular arc shape;
The arc surface of each locking plate (502) is fixedly connected with a rubber layer (503);
The sliding plate (501) is close to the surface of the upper surface of the hydrophobic template (100) and is fixedly connected with the clamping plate (504) at equal intervals, the shape and the size of the clamping plate (504) are the same as those of the locking plate (502), the section of the clamping plate (504) is in a semicircular arc shape, and the circular arcs of the clamping plate (504) and the locking plate (502) form a ring shape;
Each locking plate (502) is fixedly connected with a clamping air bag (505) at equal intervals with the concave surface of each clamping plate (504).
2. A hydrophobic aluminum alloy construction form as claimed in claim 1 wherein: the clamping airbag (505) is made of nitrile rubber.
3. A hydrophobic aluminum alloy construction form as claimed in claim 1 wherein: the distance between each set of opposing clamping plates (504) and the locking plate (502) is equal to the diameter of the locking hole (300).
4. A hydrophobic aluminum alloy construction form as claimed in claim 1 wherein: the sliding groove (400), the locking plate (502) and the clamping plate (504) are all of cavity structures;
The connecting surface of each clamping airbag (505) and the locking plate (502) is provided with a pressure release hole (506);
the connecting surface of each clamping airbag (505) and the clamping plate (504) is provided with a pressure release hole (506);
And through holes (507) are formed on the connecting surfaces of the locking plate (502), the clamping plate (504) and the sliding groove (400).
5. A hydrophobic aluminum alloy construction form as claimed in claim 1 wherein: the hydrophobic template (100) is made of an aluminum alloy structure;
The inner cavity of the hydrophobic template (100) is fixedly connected with a reinforcing rib (101), and two ends of the reinforcing rib (101) are vertically and fixedly connected with two long side walls of the hydrophobic template (100).
6. A hydrophobic aluminum alloy construction form as claimed in claim 5 wherein: the rotating plate (200) comprises a rotating shaft (201), a locking lug (202) and a limiting hole (203);
The rotating plate (200) is cuboid, one rotating plate (200) is arranged, and the rotating plate (200) is fixedly connected with the rotating shaft (201);
one end of the rotating shaft (201) far away from the rotating plate (200) is movably connected with the longer side wall of the hydrophobic template (100);
the length of the longer side wall of the rotary plate (200) is the same as that of the hydrophobic template (100);
The surface of the rotating plate (200) far away from the hydrophobic template (100) is fixedly connected with locking convex blocks (202) at equal intervals, and the locking convex blocks (202) are cylindrical;
limiting holes (203) are symmetrically formed in the rotating plate (200), and two limiting holes (203) are formed.
7. A hydrophobic aluminum alloy construction form as claimed in claim 6 wherein: the side wall of the hydrophobic template (100) far away from the rotating plate (200) is provided with locking holes (300) at equal intervals, and the locking holes (300) are the same as the locking convex blocks (202) in size and corresponding to the locking convex blocks in position;
The surface of the sliding plate (501) close to the locking hole (300) is symmetrically provided with limiting holes (203);
The sliding groove (400) is closer to the upper surface of the hydrophobic template (100) than the locking hole (300).
CN202322119168.1U 2023-08-08 2023-08-08 Hydrophobic aluminum alloy building template Active CN221256123U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322119168.1U CN221256123U (en) 2023-08-08 2023-08-08 Hydrophobic aluminum alloy building template

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322119168.1U CN221256123U (en) 2023-08-08 2023-08-08 Hydrophobic aluminum alloy building template

Publications (1)

Publication Number Publication Date
CN221256123U true CN221256123U (en) 2024-07-02

Family

ID=91629448

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322119168.1U Active CN221256123U (en) 2023-08-08 2023-08-08 Hydrophobic aluminum alloy building template

Country Status (1)

Country Link
CN (1) CN221256123U (en)

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