CN219671832U - Aluminum alloy grid system that wafts - Google Patents

Aluminum alloy grid system that wafts Download PDF

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Publication number
CN219671832U
CN219671832U CN202320971584.1U CN202320971584U CN219671832U CN 219671832 U CN219671832 U CN 219671832U CN 202320971584 U CN202320971584 U CN 202320971584U CN 219671832 U CN219671832 U CN 219671832U
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China
Prior art keywords
vertical
grid system
arc
arc portion
decorative sheet
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Application number
CN202320971584.1U
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Chinese (zh)
Inventor
廖绍庆
刘为鑫
林永秋
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Guangdong Xingfa Aluminium Co ltd
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Guangdong Xingfa Aluminium Co ltd
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Priority to CN202320971584.1U priority Critical patent/CN219671832U/en
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Publication of CN219671832U publication Critical patent/CN219671832U/en
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Abstract

The utility model relates to a fluttering aluminum alloy grid system, which comprises a horizontal pipe and a vertical pipe which are mutually spliced, wherein an aeolian bell curtain is slidably arranged on the horizontal pipe, the aeolian bell curtain comprises a main beam part arranged on the horizontal pipe, the bottom end of the main beam part is provided with a spherical hook end which is arranged towards the top, a decorative sheet is hung on the hook end, the decorative sheet comprises a first arc part and a vertical part at the bottom end of the first arc part, the first arc part is matched with the top arc surface of the spherical hook end, and a limiting pressing block arranged on the main beam part is arranged at the top side of the first arc part and is provided with a second arc part positioned at the top side of the first arc part. According to the utility model, through the structural combination of the hook end, the decorative sheet and the limiting pressing block, the wind bell curtain rotates within a certain angle, the problem of single look and feel of the traditional grid system is solved, and the beautiful appearance of the building is improved.

Description

Aluminum alloy grid system that wafts
Technical Field
The utility model belongs to the technical field of aluminum alloy grid systems, and particularly relates to a drifting aluminum alloy grid system.
Background
The prior grid for the roof or the suspended ceiling is square, diamond or shuttle, has a fixed and invariable section form and is installed and positioned, can cause the condition of covering failure in a plurality of angle ranges, and has larger grid material consumption and higher cost.
The roof and the suspended ceiling grid are positioned at the position with larger air flow, for example, the kinetic energy of wind can be effectively utilized to increase the visual aesthetic feeling caused by grid waving, and particularly, the appearance effect of dragon scale fluctuation can be more created when the suspended ceiling grid is suitable for the plane contour of a building roof or a local suspended ceiling.
Based on the above, the essential requirement of how to reduce the cost of the grid material and improve the overall aesthetic property of the building is a problem to be solved in the industry.
Disclosure of Invention
The utility model provides a fluttering aluminum alloy grid system, which enables an aeolian bell curtain to rotate in a certain angle through the structural combination of a hook end, a decorative sheet and a limiting pressing block, solves the problem of single look and feel of the traditional grid system, and improves the beautiful appearance of a building.
The technical means adopted by the utility model are as follows:
the utility model provides a fluttering aluminum alloy grid system, including horizontal pipe and the vertical pipe of pegging graft each other, the slip is provided with the wind bell curtain on this horizontal pipe, this wind bell curtain is including setting up the girder spare on the horizontal pipe, this girder spare bottom has a spherical couple end that sets up towards the top, hang on this couple end and be provided with the decorative sheet, this decorative sheet includes the vertical portion of first arc portion and first arc portion bottom, this first arc portion and the top cambered surface assorted of spherical couple end, and have the spacing briquetting of setting at the girder spare in the top side of first arc portion, this spacing briquetting has the second arc portion that is located first arc portion top side.
Preferably, the bottom of the main beam member is provided with a U-shaped member, the hook end is arranged at the top end of the side edge of the U-shaped member, which is far away from the main beam member, and an inclined part which is arranged at an included angle with the side edge of the U-shaped member, which is provided with the hook end, is also arranged between the first arc part and the vertical part of the decorative sheet, the top end of the inclined part is connected with the first arc part, the bottom end of the inclined part is connected with the vertical part through a straight part, and the length of the inclined part is larger than that of the side edge of the U-shaped member, which is provided with the hook end.
Preferably, a connecting piece is paved on the horizontal pipe, U-shaped angle steel with an upward opening is arranged on the connecting piece in a sliding mode, anti-slip rubber sheets are fixedly arranged on two side edges of the U-shaped angle steel, and a main beam piece of the wind bell curtain is arranged in the U-shaped angle steel.
Preferably, at the plugging position of the horizontal pipe and the vertical pipe, a sleeve pipe which is opened upwards is arranged on the inner side of the vertical pipe, and a cannula which can be plugged in the sleeve pipe is arranged at the bottom of one end of the horizontal pipe, which is close to the sleeve pipe.
Compared with the prior art, the utility model has the following beneficial technical effects:
(1) The grid system has the advantages of large moment of inertia, difficult deformation, long service life, reduced replacement frequency and saved use cost.
(2) The decorative blades of the grid system have larger length, can improve the proportion of vision shielding at the same interval, and also improve the ventilation performance of the grid system.
(3) The grid system has uniform appearance at all angles in a windless state, and improves the overall aesthetic property of the building.
(4) In the windy state, the decorative blades float in a rotatable angle range, so that the unique appearance characteristic of dragon scale fluctuation is reflected.
Drawings
FIG. 1 is a schematic view of the rotational structure of the windbell screen of the present utility model.
Fig. 2 is a schematic view of a structure in which U-shaped angle steel is provided on a horizontal pipe.
Fig. 3 is a schematic view of the structure of the horizontal pipe and the vertical pipe before being inserted.
FIG. 4 is a schematic structural view of the wind bell curtain installed after the insertion of the horizontal pipe and the vertical pipe.
Fig. 5 is a schematic view of a transverse arrangement of two steel frames.
Fig. 6 is a schematic view of the vertical arrangement of two steel frames.
Wherein:
1 horizontal pipe, 11 intubate, 2 vertical pipes, 21 sleeve pipes, 3 angle steel, 31 anti-slip rubber, 4 wind bell curtain, 41 girder piece, 411U-shaped piece, 412 couple end, 42 decorative piece, 421 first arc portion, 422 inclined part, 423 straight part, 424 vertical part, 43 spacing briquetting, 431 second arc part, 5 connecting piece, 6 screw.
Detailed Description
The utility model provides a drifting aluminum alloy grid system, which comprises a horizontal pipe 1 and a vertical pipe 2 which are mutually spliced, wherein the horizontal pipe 1 and the vertical pipe 2 are preferably made of aluminum alloy materials, a wind bell curtain 4 is slidably arranged on the horizontal pipe 1, the wind bell curtain 4 comprises a main beam piece 41 arranged on the horizontal pipe 1, the bottom end of the main beam piece 41 is provided with a spherical hook end 412 which is arranged towards the top, a decorative sheet 42 is hung on the hook end 412, the decorative sheet 42 comprises a first arc part 421 and a vertical part 424 at the bottom end of the first arc part 421, the first arc part 421 is matched with the top arc surface of the spherical hook end 412, a limiting pressing block 43 arranged on the top side of the first arc part 421 is provided with a second arc part 431 arranged on the top side of the first arc part 421, and is used for limiting the decorative sheet 42 when the decorative sheet 41 is outwards turned, and the limiting pressing block 43 is fixed on the main beam piece 41 by a connecting plate connected with the first arc part 421 through a screw 6, as shown in fig. 1.
Preferably, as shown in fig. 1, the bottom end of the main beam member 41 has a U-shaped member 411, the hook end 412 is disposed at the top end of the side edge of the U-shaped member 411 away from the main beam member 41, and an inclined portion 422 disposed at an angle with the side edge of the U-shaped member 411 where the hook end 412 is disposed is further disposed between the first arc portion 421 and the vertical portion 424, the top end of the inclined portion 422 is connected with the first arc portion 421, the bottom end of the inclined portion 422 is connected with the vertical portion 424 through a straight portion 423, and the length of the inclined portion 422 is greater than that of the side edge of the U-shaped member 411 where the hook end 412 is disposed.
Fig. 1 shows a schematic view of the structure of the decorative sheet 42 in a neutral rest state, with a minimum left side varus angle and a maximum right side valgus angle. The first arc portion 421 and the second arc portion 431 are preferably acute corresponding arc or semicircular arc, and when the decorative sheet 42 is turned over to the maximum angle as shown in the right decorative sheet 42 in fig. 1, the inclined portion 422 of the decorative sheet 42 abuts against the bottom end of the first arc portion 421 to perform limiting; and the first arc portion 421 of the decorative sheet 42 is not directly connected with the vertical portion 424, and is connected with the vertical portion 423 through the inclined portion 422 and the flat portion 423, so that the decorative sheet 42 can be turned inwards to the left side by a certain angle due to the included angle between the inclined portion 422 and the right side of the U-shaped piece 411, and the rotation range of the decorative sheet 42 is enlarged. In one embodiment, the left side decorative sheet 42 in fig. 1 is preferably turned in an angle of-20 ° for the minor viewing surface, and the right side decorative sheet 42 in fig. 1 is preferably turned out in an angle of 60 ° for the major viewing surface, wherein the turned in and turned out angles refer to the angles between the decorative sheet 42 and the frame surface formed by the horizontal tube 1 and the vertical tube 2.
As shown in fig. 2-4, a connecting piece 5 is laid on the horizontal pipe 1, a U-shaped angle steel 3 with an upward opening is slidingly arranged on the connecting piece 5, anti-slip rubber 31 is fixedly arranged on two side edges of the U-shaped angle steel 3 through screws 6, a main beam part 41 of the bell curtain 4 is arranged in the U-shaped angle steel 3, the bell curtain 4 is mainly arranged in the U-shaped angle steel 3 by means of self gravity, the anti-slip rubber strips on two sides play a role of preventing the bell curtain 4 from reversing, and the main beam part 41 can be fixed on the angle steel 3 by means of screws, clamping parts and the like for stability.
And as shown in fig. 3, a manner of plugging the horizontal pipe 1 and the vertical pipe 2 is provided, a sleeve 21 which is opened upwards is arranged on the inner side of the vertical pipe 2 at the plugging position of the horizontal pipe 1 and the vertical pipe 2, and a cannula 11 which can be plugged in the sleeve 21 is arranged at the bottom of one end of the horizontal pipe 1 close to the sleeve 21 so as to keep the whole frame stable.
And as shown in fig. 5 and 6, the two steel frames are respectively arranged transversely and vertically, wherein the actual length of the bell curtain 4 is also shown, and the decorative sheet 42 is long, so that the shielding proportion is good, and the ventilation performance can be correspondingly improved.
The square or diamond grid system solves the problems that the square or diamond grid system is single in appearance and high in material content, and the aluminum alloy grid system capable of drifting improves the aesthetic feeling of the building with the unique characteristic of agility, saves the use cost, and is long in practical life and strong in maintainability.
The above only shows the preferred embodiments, and the setting angles, materials and the like of the specific components can be adjusted according to the actual engineering requirements, and the utility model also belongs to the protection scope of the utility model.

Claims (4)

1. The utility model provides an aluminum alloy grid system that wafts, a serial communication port, including horizontal tube (1) and vertical pipe (2) of pegging graft each other, slide on this horizontal tube (1) and be provided with wind bell curtain (4), this wind bell curtain (4) are including setting up girder spare (41) on horizontal tube (1), this girder spare (41) bottom has a spherical couple end (412) that set up towards the top, hang on this couple end (412) and be provided with decorative sheet (42), this decorative sheet (42) include first arc portion (421) and vertical portion (424) of first arc portion (421) bottom, this first arc portion (421) and the top cambered surface phase-match of spherical couple end (412), and have at the top of first arc portion (421) and set up spacing briquetting (43) at girder spare (41), this spacing briquetting (43) have second arc portion (431) that are located first arc portion (421) top side.
2. A drifting aluminum alloy grid system according to claim 1, wherein the bottom end of the main beam member (41) is provided with a U-shaped member (411), the hook end (412) is arranged at the top end of the side edge of the U-shaped member (411) far away from the main beam member (41), and a diagonal portion (422) arranged at an angle with the side edge of the U-shaped member (411) where the hook end (412) is arranged is further arranged between the first arc portion (421) and the vertical portion (424), the top end of the diagonal portion (422) is connected with the first arc portion (421), the bottom end of the diagonal portion (422) is connected with the vertical portion (424) through a straight portion (423), and the length of the diagonal portion (422) is longer than the length of the side edge of the U-shaped member (411) where the hook end (412) is arranged.
3. A drifting aluminum alloy grid system according to claim 1, wherein a connecting piece (5) is laid on the horizontal pipe (1), a U-shaped angle steel (3) with an upward opening is slidingly arranged on the connecting piece (5), anti-slip rubber sheets (31) are fixedly arranged on two side edges of the U-shaped angle steel (3), and a main girder piece (41) of the windbell curtain (4) is arranged in the U-shaped angle steel (3).
4. A drifting aluminium alloy grid system according to claim 1, characterized in that at the junction of the horizontal tube (1) and the vertical tube (2), a sleeve (21) is provided which is open upwards inside the vertical tube (2), and that at the bottom of the end of the horizontal tube (1) near the sleeve (21) a cannula (11) is provided which can be plugged into the sleeve (21).
CN202320971584.1U 2023-04-25 2023-04-25 Aluminum alloy grid system that wafts Active CN219671832U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320971584.1U CN219671832U (en) 2023-04-25 2023-04-25 Aluminum alloy grid system that wafts

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320971584.1U CN219671832U (en) 2023-04-25 2023-04-25 Aluminum alloy grid system that wafts

Publications (1)

Publication Number Publication Date
CN219671832U true CN219671832U (en) 2023-09-12

Family

ID=87926771

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320971584.1U Active CN219671832U (en) 2023-04-25 2023-04-25 Aluminum alloy grid system that wafts

Country Status (1)

Country Link
CN (1) CN219671832U (en)

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