CN208718111U - The recessed catching groove structure of aluminium alloy element biconvex - Google Patents
The recessed catching groove structure of aluminium alloy element biconvex Download PDFInfo
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- CN208718111U CN208718111U CN201821284768.6U CN201821284768U CN208718111U CN 208718111 U CN208718111 U CN 208718111U CN 201821284768 U CN201821284768 U CN 201821284768U CN 208718111 U CN208718111 U CN 208718111U
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Abstract
The utility model relates to a kind of recessed catching groove structures of aluminium alloy element biconvex, it includes the pressed end of component and member supporting end, and the pressed end of component is arranged in a mutually vertical manner with member supporting end;The end at the pressed end of component is equipped with two hooked scarfs extended downward vertically, and two hooked scarfs are arranged above and below spaced reciprocally, and the extension edge of two hooked scarfs is vertical edges, and horizontal-extending locking muscle is arranged above hooked scarf;The end at the member supporting end is equipped with main convex block, side convex block is equipped with above main convex block, the horizontal sides of side convex block are component top, and buckling groove is respectively set in main convex block two sides;Two hooked scarfs at the pressed end of component are fastened in two buckling grooves at member supporting end, and implement to fasten in the superimposed pressed end locking muscle of component and the horizontal top in member supporting end with screw, complete the interpolation connection of two components.Using the recessed catching groove structure of the aluminium alloy element biconvex of the utility model, the waterproof ability of aluminium alloy element can be further increased, there is waterproof, moisture-proof role.
Description
Technical field
The utility model belongs to building structure field, in particular to a kind of recessed catching groove structure of the biconvex of aluminium alloy element.
Background technique
There are many shapes for the catching groove structure of aluminium alloy element, are generally used for the interconnection of two components.It is closed building aluminium
When golden house, for roof and wall, more need to prevent rainwater from penetrating within doors and causing moist within doors.
In view of this, field technical staff is dedicated to researching and developing a kind of aluminium alloy element for waterproof, it is existing to solve
The problems of technology.
Summary of the invention
The task of the utility model is to provide a kind of recessed catching groove structure of aluminium alloy element biconvex, is arranged two in the end of component
A convex-concave catching groove structure solves rainwater and penetrates within doors so that the interpolation connection of two components is even closer securely, waterproof wind resistance
Lead to the problem of humidity.
The technical solution of the utility model is as follows:
A kind of recessed catching groove structure of aluminium alloy element biconvex, it includes the pressed end of component and member supporting end, the pressed end of component
It is arranged in a mutually vertical manner with member supporting end;
The end at the pressed end of component is equipped with two hooked scarfs extended downward vertically, and two hooked scarfs are upper and lower spaced reciprocally
The extension edge of arrangement, two hooked scarfs is vertical edges, and horizontal-extending locking muscle is arranged above hooked scarf;
The end at the member supporting end is equipped with main convex block, and side convex block, the horizontal sides of side convex block are equipped with above main convex block
For component top, buckling groove is respectively set in main convex block two sides;
Two hooked scarfs at the pressed end of component are fastened in two buckling grooves at member supporting end, and are being stacked with screw
The pressed end locking muscle of the component added and the horizontal top in member supporting end implement to fasten, and complete the interpolation connection of two components.
The bill of two hooked scarfs at the pressed end of component is in the shape that is upturned.
The inside at the pressed end of component is equipped with reinforcing rib.
The recessed catching groove structure of the aluminium alloy element biconvex of the utility model is the two of the setting bearing of an end of component
Two pressed hooked scarf structures are arranged in another end of component for a convex-concave catching groove structure, and two components are carried out interpolation
Connection, then it is subject to screws tighten, even closer secured, waterproof windproof component disjunctor is formed, sealant, sealing strip are not being used
In the case of, there is waterproof, humidity resistance.
The recessed catching groove structure of the biconvex of the utility model can be set in one end of aluminium alloy element, also can be set and closes in aluminium
Two are completed as long as the pressed end hook block of aluminium alloy element is fastened in the convex-concave catching groove of supported end in the both ends of golden component
The interpolation of component connects.Two convex-concave catching groove structures, which are arranged, in the utility model can further increase the anti-water energy of aluminium alloy element
Power.
The recessed catching groove structure of the aluminium alloy element biconvex of the utility model can be used for the aluminium roofing sheet and aluminium in aluminium alloy house
Wallboard, it can also be used to the aluminium floor in aluminium alloy house and aluminium corner binder, it may also be used for the aluminum deck of other purposes, it is same to have
There are waterproof, moisture-proof role.
It is the recessed catching groove structure of the aluminium alloy element biconvex anti-bending strength with higher that is designed and produced using aluminium alloy extrusions, anti-
Performance, anti-collision performance and overall stability are turned round, has that structure strong applicability, fire prevention, waterproof, humidity resistance be good, manual operation
Simply, many advantages, such as packaging efficiency is high, bearing capacity is high.
Detailed description of the invention
Fig. 1 is a kind of recessed catching groove structural schematic diagram of aluminium alloy element biconvex of the utility model.
Appended drawing reference:
1 is the pressed end of component, and 11 be hooked scarf, and 12 be locking muscle;
2 be member supporting end, and 21 be main convex block, and 22 be side convex block, and 23 be buckling groove;
3 be screw;4 be reinforcing rib.
Specific embodiment
The utility model is described in detail with reference to the accompanying drawings and examples.
Referring to Fig. 1, the utility model provides a kind of recessed catching groove structure of aluminium alloy element biconvex, sets in an end of component
Two convex-concave catching groove structures for setting bearing, two pressed hooked scarf structures are arranged in another end of component.Component pressure
End 1 is set to be arranged in a mutually vertical manner with member supporting end 2.
Two hooked scarfs 11 extended downward vertically are arranged in the end at the pressed end 1 of component, and two hooked scarfs 11 are spaced apart from each other on the ground
Lower arrangement, the extension edge of two hooked scarfs 11 are vertical edges.Horizontal-extending locking muscle 12 is set above hooked scarf 11.
Main convex block 21 is arranged in the end at member supporting end 2, and side convex block 22, the water of side convex block 22 are arranged above main convex block 21
Pingbian is component top.Buckling groove 23 is respectively set in main 21 two sides of convex block.
When two component interpolation connections, two hooked scarfs 11 at the pressed end 1 of component are fastened on two fastenings at member supporting end 2
In slot 23, and implemented admittedly with screw 3 in the locking muscle 12 at the superimposed pressed end 1 of component and the horizontal top at member supporting end 2
Tightly, the interpolation connection of two components is thus completed.
As shown in fig. 1, the bill of two hooked scarfs 11 at the pressed end 1 of component is in being upturned shape, and the bill of tilting can be with
It is locked in the buckling groove 23 at member supporting end 2.
Again as shown in fig. 1, the inside at the pressed end 1 of component is equipped with reinforcing rib 4, with this reinforcement members structure.
In conclusion two convex-concave catching groove structures of the recessed catching groove structure setting of the aluminium alloy element biconvex of the utility model, it can
Further to increase the waterproof ability of aluminium alloy element.The recessed catching groove structure of the aluminium alloy element biconvex of the utility model can be used for
The aluminium roofing sheet and aluminum wallboard in aluminium alloy house, it can also be used to which the aluminium floor in aluminium alloy house and aluminium corner binder also can be used
In the aluminum deck of other purposes, equally there is waterproof, moisture-proof role.
Certainly, those skilled in the art in the art are it should be appreciated that above-described embodiment is intended merely to illustrate this reality
With novel, and it is not used as the restriction to the utility model, as long as in the spirit of the utility model, to above-mentioned reality
Variation, the modification etc. for applying example will all be fallen in the range of the utility model claims.
Claims (3)
1. a kind of recessed catching groove structure of aluminium alloy element biconvex, it is characterised in that: it includes the pressed end of component (1) and member supporting end
(2), the pressed end of component (1) is arranged in a mutually vertical manner with member supporting end (2);
The end of the pressed end of component (1) is equipped with two hooked scarfs (11) extended downward vertically, and two hooked scarfs (11) are mutual
It is arranged above and below every ground, the extension edge of two hooked scarfs (11) is vertical edges, and horizontal-extending locking muscle is arranged above hooked scarf (11)
(12);
The end of the member supporting end (2) is equipped with main convex block (21), is equipped with side convex block (22) above main convex block (21), side is convex
The horizontal sides of block (22) are component top, and buckling groove (23) are respectively set in main convex block (21) two sides;
Two hooked scarfs (11) of the pressed end of component (1) are fastened in two buckling grooves (23) at member supporting end (2), are used in combination
Screw (3) is implemented to fasten in the superimposed horizontal top of the pressed end of component (1) locking muscle (12) and member supporting end (2), completes
The interpolation connection of two components.
2. the recessed catching groove structure of aluminium alloy element biconvex according to claim 1, it is characterised in that: the pressed end of component
(1) bill of two hooked scarfs (11) is in the shape that is upturned.
3. the recessed catching groove structure of aluminium alloy element biconvex according to claim 1, it is characterised in that: the pressed end of component
(1) inside is equipped with reinforcing rib (4).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201821284768.6U CN208718111U (en) | 2018-08-10 | 2018-08-10 | The recessed catching groove structure of aluminium alloy element biconvex |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201821284768.6U CN208718111U (en) | 2018-08-10 | 2018-08-10 | The recessed catching groove structure of aluminium alloy element biconvex |
Publications (1)
Publication Number | Publication Date |
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CN208718111U true CN208718111U (en) | 2019-04-09 |
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CN201821284768.6U Active CN208718111U (en) | 2018-08-10 | 2018-08-10 | The recessed catching groove structure of aluminium alloy element biconvex |
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CN (1) | CN208718111U (en) |
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2018
- 2018-08-10 CN CN201821284768.6U patent/CN208718111U/en active Active
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