CN211114366U - Double-clamping high-strength aluminum alloy keel - Google Patents

Double-clamping high-strength aluminum alloy keel Download PDF

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Publication number
CN211114366U
CN211114366U CN201921770375.0U CN201921770375U CN211114366U CN 211114366 U CN211114366 U CN 211114366U CN 201921770375 U CN201921770375 U CN 201921770375U CN 211114366 U CN211114366 U CN 211114366U
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groove
assembly
keel
frame body
clamping groove
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CN201921770375.0U
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Chinese (zh)
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李星明
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Shenzhen Airkey Environmental Technology & Engineering Co ltd
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Shenzhen Airkey Environmental Technology & Engineering Co ltd
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Abstract

The utility model discloses a double-clip high-strength aluminum alloy keel, which comprises a main keel assembly, a first clip groove, a second clip groove, a first bottom plate, a first notch, a cavity, a frame assembly and a clip lock, wherein the main keel assembly comprises an outer frame body, a first clip groove, a second clip groove, a first bottom plate, a first clip groove, a cavity, a frame assembly and a clip lock; firstly, the lock is arranged at the corresponding position of the main keel assembly and the side keel assembly, so that the lock is clamped between the main keel assembly and the auxiliary keel assembly to form a stable and firm structure, the lock tongue of the main keel assembly is inserted into the third clamping groove and the fourth clamping groove of the side keel assembly to complete the connection of the main keel assembly and the side keel assembly, the lock tongue of the lock of the auxiliary keel assembly is inserted into the notches of the first clamping groove and the second clamping groove of the main keel assembly to complete the connection of the auxiliary keel assembly and the main keel connecting assembly, the bearing is realized without suspension, the height of the aluminum die cavity of the main keel is increased, the strength of the keel is increased, and two locks can be placed at the same time; two kaysers are connected with the limit fossil fragments simultaneously, do not need other installation frames or accessory to connect again, have improved connection efficiency.

Description

Double-clamping high-strength aluminum alloy keel
Technical Field
The utility model relates to a clean room furred ceiling fossil fragments technical field specifically is a two calorie of high strength aluminum alloy fossil fragments.
Background
Due to a modularized or integral clean room or other fabricated house wall frame or ceiling with air purification function; or a modular house or a metal structure house with an air purification function in the industries of medical treatment, electronics, laboratories and the like; or a modular or integral clean room (clean shed), or a structural house or a small box body with an air purification function; suspended ceilings in industries such as clean workbenches and frame structures of clean units require attractive appearance and simultaneous sealing and bearing requirements, and the main suspended ceiling structure in the market at present is in a wine glass shape or a square shape; the disadvantages are that 1, the load bearing is low, the suspension is needed, and the suspended ceiling structure can not be supported independently; 2. the connecting efficiency is low, the number of accessories is large, the number of screws is large, and the number of installation workers is large; 3. the suspended ceiling bottom is uneven and inconvenient to clean, and therefore the double-clamp high-strength aluminum alloy keel is provided.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a two calorie of high strength aluminum alloy fossil fragments to solve the problem that proposes in the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: a dual-clamp high strength aluminum alloy keel comprising:
the main keel assembly comprises an outer frame body, a first clamping groove, a second clamping groove, a first bottom plate, a first notch, a cavity, a frame assembly and a clamping lock;
the side keel assembly comprises a first frame body, a third clamping groove and a fourth clamping groove, and the outer wall of the first frame body is sequentially provided with the third clamping groove and the fourth clamping groove;
the auxiliary keel assembly comprises a second frame body, a third through groove and a third notch, the upper surface of the second frame body is provided with the third notch, and the third through grooves are oppositely arranged on two sides of the second frame body;
the two ends of the auxiliary keel assembly are connected with the main keel assembly through clamping locks;
one end of the main keel assembly is connected with the side keel assembly through a clamping lock.
As further preferable in the present technical solution: the frame component comprises an inner frame body, a first through groove and a second through groove, the first through groove is oppositely arranged on two sides of the upper portion of the inner frame body, and the second through groove is oppositely arranged on two sides of the bottom of the inner frame body.
As further preferable in the present technical solution: the inside in third logical groove is installed with the kayser, one side of kayser is connected in the inside of first draw-in groove.
As further preferable in the present technical solution: the inside in first logical groove and second logical groove is installed the kayser relatively, one side of kayser is connected in the inside of third draw-in groove and fourth draw-in groove respectively.
As further preferable in the present technical solution: the first notch is formed in the top of the outer frame body, the first clamping groove and the second clamping groove are formed in one side of the outer frame body respectively, the cavity is formed in the outer frame body, and the frame assembly is installed in the cavity.
As further preferable in the present technical solution: the bottom welding of interior framework has the second bottom plate, the second notch has been seted up to the bottom of second bottom plate.
As further preferable in the present technical solution: the both sides of second bottom plate weld in the both sides inner wall of outer frame body, the bottom of second bottom plate welds in the inner wall bottom of outer frame body, the bottom of main joist subassembly, limit fossil fragments subassembly and false keel subassembly all is provided with first bottom plate.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the load bearing is high, the large span 6M can be independently supported, external suspension is not needed, and the workload of the suspended ceiling is reduced;
2. the self-connection efficiency is high, the number of accessories is small, and the installation labor is small;
3. the suspended ceiling bottom is smooth, beautiful and convenient to clean.
Firstly, the lock is arranged at the corresponding position of the main keel assembly and the side keel assembly, so that the lock is clamped between the main keel assembly and the auxiliary keel assembly to form a stable and firm structure, the lock tongue of the main keel assembly is inserted into the third clamping groove and the fourth clamping groove of the side keel assembly to complete the connection of the main keel assembly and the side keel assembly, the lock tongue of the lock of the auxiliary keel assembly is inserted into the notches of the first clamping groove and the second clamping groove of the main keel assembly to complete the connection of the auxiliary keel assembly and the main keel connecting assembly, the keel has high strength, can bear load without suspension, increases the height of the aluminum cavity of the main keel, increases the strength of the keel, and can be provided with two locks; two kaysers are connected with the limit fossil fragments simultaneously, have increased joint strength, do not need other installation frames or accessories to connect again, have improved connection efficiency.
Drawings
Fig. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic diagram of the explosion structure of the present invention;
fig. 3 is a schematic structural view of the side keel assembly of the present invention;
fig. 4 is a schematic structural view of the false keel assembly of the present invention;
fig. 5 is a schematic structural view of the main keel assembly of the present invention;
fig. 6 is a schematic structural view of the inner frame body of the present invention;
fig. 7 is a schematic structural diagram of the outer frame body of the present invention.
In the figure: 10. a main keel assembly; 11. an outer frame body; 12. a first card slot; 13. a second card slot; 14. a first base plate; 15. a first notch; 16. a cavity; 20. a frame assembly; 21. an inner frame body; 22. a first through groove; 23. a second through groove; 31. a second base plate; 32. a second notch; 40. a side keel assembly; 41. a first frame body; 42. a third card slot; 43. a fourth card slot; 50. a false keel assembly; 51. a second frame body; 53. a third through groove; 54. a third notch; 60. and (4) locking.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Examples
Referring to fig. 1-7, the present invention provides a technical solution: a dual-clamp high strength aluminum alloy keel comprising:
a main runner assembly 10, the main runner assembly 10 including an outer frame 11, a first slot 12, a second slot 13, a first base plate 14, a first notch 15, a cavity 16, a frame assembly 20, and a latch 60;
the side keel assembly 40 comprises a first frame body 41, a third clamping groove 42 and a fourth clamping groove 43, wherein the third clamping groove 42 and the fourth clamping groove 43 are sequentially formed in the outer wall of the first frame body 41;
the cross keel assembly 50 comprises a second frame body 51, a third through groove 53 and a third groove 54, the third groove 54 is formed in the upper surface of the second frame body 51, and the third through grooves 53 are oppositely formed in two sides of the second frame body 51;
the two ends of the cross keel assembly 50 are connected with the main keel assembly 10 through latches 60;
one end of the main runner assembly 10 is connected to the side runner assembly 40 by a latch 60.
In this embodiment, specifically: the frame assembly 20 comprises an inner frame body 21, a first through groove 22 and a second through groove 23, the first through groove 22 is oppositely arranged on two sides of the upper portion of the inner frame body 21, the second through groove 23 is oppositely arranged on two sides of the bottom portion of the inner frame body 21, and through the arrangement, the first through groove 22 and the second through groove 23 are used for installing a clamping lock 60 and then are connected with the side keel assembly 40 through the clamping lock 60.
In this embodiment, specifically: the inside of the third through-groove 53 is provided with the latch 60, one side of the latch 60 is connected to the inside of the first slot 12, and through the above arrangement, the latch 60 is installed in the third through-groove 53, so that the latch 60 is installed in the first slot 12, and the cross runner assembly 50 is connected with the main runner assembly 10.
In this embodiment, specifically: the first through groove 22 and the second through groove 23 are provided with the locking latch 60 in the opposite directions, one side of the locking latch 60 is respectively connected to the inside of the third clamping groove 42 and the inside of the fourth clamping groove 43, and through the arrangement, the locking latch 60 is arranged in the first through groove 22 and the second through groove 23, so that the locking latch 60 is respectively connected to the inside of the third clamping groove 42 and the inside of the fourth clamping groove 43, and the side keel assembly 40 is connected with the main keel assembly 10.
In this embodiment, specifically: the first notch 15 is arranged at the top of the outer frame body 11, the first clamping groove 12 and the second clamping groove 13 are respectively arranged at one side of the outer frame body 11, the cavity 16 is arranged in the outer frame body 11, the frame assembly 20 is arranged in the cavity 16, and through the arrangement, the first clamping groove 12 and the second clamping groove 13 are arranged on the main keel assembly 10, so that the clamping lock 60 on the auxiliary keel assembly 50 is connected with the first clamping groove 12 and the second clamping groove 13, and the main keel assembly 10 is further connected with the side keel assembly 40.
In this embodiment, specifically: the bottom welding of interior framework 21 has second bottom plate 31, second notch 32 has been seted up to the bottom of second bottom plate 31, and through above setting, second notch 32 is the hoist and mount notch down, is convenient for carry out hoist and mount work.
In this embodiment, specifically: the both sides of second bottom plate 31 weld in the both sides inner wall of outer frame body 11, the bottom of second bottom plate 31 welds in the inner wall bottom of outer frame body 11, the bottom of main joist subassembly 10, limit fossil fragments subassembly 40 and false keel subassembly 50 all is provided with first bottom plate 14, and through above setting, first bottom plate 14 is the seal installation limit for main joist subassembly 10, limit fossil fragments subassembly 40 and false keel subassembly 50 all possess seal installation.
The types of the latch 60 are: 222, locking the card three times;
working principle or structure principle, during the use, at first install kayser 60 in the corresponding position of main joist subassembly 10 and false keel subassembly 50, kayser 60 is three kaysers, make kayser 60 card form stable firm structure at main joist subassembly 10 and false keel subassembly 50, insert the kayser 60 spring bolt of main joist subassembly 10 in third draw-in groove 42 and fourth draw-in groove 43 of limit fossil fragments subassembly 40, the spring bolt of kayser 60 opens simultaneously and retracts and catches on the third draw-in groove 42 and the fourth draw-in groove 43 of limit main joist subassembly 10 in, accomplish main joist subassembly 10 and limit fossil fragments subassembly 40 and connect, insert the spring bolt of false keel subassembly 50 kayser 60 in the notch of first draw-in groove 12 and the second draw-in groove 13 of main joist subassembly 10, the spring bolt of kayser 60 opens and retracts and catches on the notch inner side of first draw-in groove 12 and the second draw-in groove 13 of main joist subassembly 10 simultaneously, accomplish false keel subassembly 50 and main joist subassembly 10.
The utility model provides a double-clamp high-strength aluminum alloy keel, which has high installation efficiency, and the installation structure and the installation method only need one or two clamps, and the number of screws and accessories is 5-10 times that of other ceiling keels, so the efficiency is 5-10 times that of other methods; the special cavity structure is used for installing the clamping lock, and is provided with a sealing installation edge and an interconnection notch, various installation elements are integrated, and the installation is completed by using the least fittings; greatly improving the installation efficiency. The special cavity for the main keel, which can be used for placing 2 locks, is high in height and large in size, two locks are simultaneously connected, the strength is 2-3 times that of other structures, and the special cavity can bear load without suspension; the keel is provided with an integrally formed mounting edge, and the bottom of the ceiling structure is flat, attractive and easy to clean after the ceiling structure is formed; the connecting lock is hidden in the aluminum product cavity, and the structure is simple and attractive.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. The utility model provides a two calorie of high strength aluminum alloy fossil fragments, its characterized in that includes:
the main keel assembly (10) comprises an outer frame body (11), a first clamping groove (12), a second clamping groove (13), a first bottom plate (14), a first notch (15), a cavity (16), a frame assembly (20) and a clamping lock (60);
the side keel assembly (40) comprises a first frame body (41), a third clamping groove (42) and a fourth clamping groove (43), wherein the third clamping groove (42) and the fourth clamping groove (43) are sequentially formed in the outer wall of the first frame body (41);
the auxiliary keel assembly (50) comprises a second frame body (51), a third through groove (53) and a third notch (54), the third notch (54) is formed in the upper surface of the second frame body (51), and the third through groove (53) is oppositely formed in two sides of the second frame body (51);
the two ends of the auxiliary keel assembly (50) are connected with the main keel assembly (10) through clamping locks (60);
one end of the main keel assembly (10) is connected with the side keel assembly (40) through a clamping lock (60).
2. The double-clamp high-strength aluminum alloy keel according to claim 1, wherein: the frame assembly (20) comprises an inner frame body (21), a first through groove (22) and a second through groove (23), wherein the first through groove (22) is oppositely arranged on two sides of the upper part of the inner frame body (21), and the second through groove (23) is oppositely arranged on two sides of the bottom of the inner frame body (21).
3. The double-clamp high-strength aluminum alloy keel according to claim 1, wherein: a clamping lock (60) is installed inside the third through groove (53), and one side of the clamping lock (60) is connected to the inside of the first clamping groove (12).
4. The double-clamp high-strength aluminum alloy keel according to claim 2, wherein: and the insides of the first through groove (22) and the second through groove (23) are oppositely provided with a clamping lock (60), and one side of the clamping lock (60) is respectively connected to the insides of the third clamping groove (42) and the fourth clamping groove (43).
5. The double-clamp high-strength aluminum alloy keel according to claim 1, wherein: the frame is characterized in that the first notch (15) is formed in the top of the outer frame body (11), the first clamping groove (12) and the second clamping groove (13) are formed in one side of the outer frame body (11) respectively, a cavity (16) is formed in the outer frame body (11), and the frame assembly (20) is installed in the cavity (16).
6. The double-clamp high-strength aluminum alloy keel according to claim 2, wherein: the bottom welding of interior framework (21) has second bottom plate (31), second notch (32) have been seted up to the bottom of second bottom plate (31).
7. The double-clamp high-strength aluminum alloy keel according to claim 6, wherein: the both sides of second bottom plate (31) weld in the both sides inner wall of outer frame body (11), the bottom of second bottom plate (31) welds in the inner wall bottom of outer frame body (11), the bottom of main joist subassembly (10), limit fossil fragments subassembly (40) and false keel subassembly (50) all is provided with first bottom plate (14).
CN201921770375.0U 2019-10-22 2019-10-22 Double-clamping high-strength aluminum alloy keel Active CN211114366U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921770375.0U CN211114366U (en) 2019-10-22 2019-10-22 Double-clamping high-strength aluminum alloy keel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921770375.0U CN211114366U (en) 2019-10-22 2019-10-22 Double-clamping high-strength aluminum alloy keel

Publications (1)

Publication Number Publication Date
CN211114366U true CN211114366U (en) 2020-07-28

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113863562A (en) * 2021-11-16 2021-12-31 安徽福瑞尔铝业科技有限公司 Keel-connected slot nail-hidden type aluminum veneer and implementation process thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113863562A (en) * 2021-11-16 2021-12-31 安徽福瑞尔铝业科技有限公司 Keel-connected slot nail-hidden type aluminum veneer and implementation process thereof

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