CN214658098U - Aluminum plate and glass combined curtain wall corner node structure - Google Patents

Aluminum plate and glass combined curtain wall corner node structure Download PDF

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Publication number
CN214658098U
CN214658098U CN202120882432.5U CN202120882432U CN214658098U CN 214658098 U CN214658098 U CN 214658098U CN 202120882432 U CN202120882432 U CN 202120882432U CN 214658098 U CN214658098 U CN 214658098U
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aluminum plate
glass
rod
curtain wall
upright post
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CN202120882432.5U
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叶四泉
程俊婷
方坚
卜坤煜
赵崇权
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China Machinery Engineering Co ltd
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China Machinery Engineering Co ltd
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Abstract

The application relates to the field of building curtain walls, in particular to an aluminum plate and glass combined curtain wall corner node structure which comprises an aluminum plate, a glass plate and a mounting assembly, wherein the mounting assembly comprises a main upright post and an auxiliary upright post which are vertically arranged, cross rods are respectively hinged to two sides of the auxiliary upright post corresponding to the aluminum plate and the glass plate, and the aluminum plate and the glass plate are respectively fixedly connected to one side, away from the main upright post, of the corresponding cross rods; be equipped with the adjusting part who is used for changing contained angle between two horizontal poles on the head mast, adjusting part is including sliding respectively and inlaying the slider of establishing on two horizontal poles, and the direction of sliding of slider is the same with the length direction that corresponds the horizontal pole, all articulates between two sliders and the head mast has the traction lever, all is equipped with the mounting that the locking corresponds the slider on every horizontal pole. Compared with the prior art, the aluminum plate and glass plate combined curtain wall has the advantages that the included angle between the aluminum plate and the glass plate can be changed, and therefore the flexible adjustment of the corner angle of the aluminum plate and glass combined curtain wall can be achieved.

Description

Aluminum plate and glass combined curtain wall corner node structure
Technical Field
The application relates to the field of building curtain walls, in particular to an aluminum plate and glass combined curtain wall corner node structure.
Background
The curtain wall is an outer wall enclosure of a building and is a light wall with a decorative effect commonly used by modern large and high-rise buildings. The curtain comprises panel and supporting structure system, and aluminum plate or glass board are selected as the main material for the panel of curtain often, and aluminum plate curtain molding and colour are changeable, and the lines feel ten sufficiency, and glass curtain is modern to feel strong, and the outward appearance is showing gorgeous atmosphere. In order to improve the overall artistic aesthetic feeling of the building curtain wall, people often combine the aluminum plate curtain wall with the glass curtain wall to form an aluminum plate and glass combined curtain wall.
Because the panel needs to be parallel with the outer facade of building when the curtain is installed, aluminum plate and glass board at building corner both sides need fixed connection to get up, use the corner connecting piece to fix adjacent aluminum plate and glass board on same corner fossil fragments during concrete construction usually to make the contained angle between aluminum plate and the glass board accord with the angle of building corner. Because the structure of corner connecting piece is fixed, therefore the corner connecting piece can only be applicable to established angle, can't adjust the contained angle between aluminum plate and the glass board in a flexible way, when the facade exists the different corner of a plurality of angles outside the building, the curtain will not be installed smoothly.
SUMMERY OF THE UTILITY MODEL
In order to adjust the corner angle of aluminum plate and glass combination curtain in a flexible way, the application provides an aluminum plate and glass combination curtain corner node structure.
The application provides a pair of aluminum plate and glass combination curtain wall corner node structure adopts following technical scheme:
an aluminum plate and glass combined curtain wall corner node structure comprises an aluminum plate, a glass plate and a mounting assembly, wherein the mounting assembly comprises a main upright post and an auxiliary upright post which are vertically arranged, two sides of the auxiliary upright post are respectively hinged with a cross rod corresponding to the aluminum plate and the glass plate, and the aluminum plate and the glass plate are respectively fixedly connected to one side of the corresponding cross rod, which is far away from the main upright post; be equipped with the adjusting part who is used for changing contained angle between two horizontal poles on the head mast, adjusting part is including sliding respectively and inlaying the slider of establishing on two horizontal poles, and the direction of sliding of slider is the same with the length direction that corresponds the horizontal pole, all articulates between two sliders and the head mast has the traction lever, all is equipped with the mounting that the locking corresponds the slider on every horizontal pole.
Through adopting above-mentioned technical scheme, the back is fixed to the position of main tributary post and auxiliary column, can make the slider slide on the horizontal pole through rotating the traction lever, and the slider will drive the horizontal pole and rotate around auxiliary column, and aluminum plate and glass board will follow the horizontal pole rotation that corresponds, and the contained angle between aluminum plate and the glass board just can change to can realize adjusting aluminum plate and glass combination curtain's corner angle in a flexible way. After angle adjustment finishes between aluminum plate and the glass board, the position of fixed slider on the horizontal pole of rethread mounting, the rotation state of horizontal pole will be restricted, and the position of aluminum plate and glass board just can be stable.
Preferably, a linkage assembly is arranged between the two traction rods and comprises a linkage rod arranged between the two traction rods, two ends of the linkage rod are respectively embedded on the two traction rods in a sliding mode, and second sliding grooves for the corresponding end portions of the linkage rod to be embedded are formed in the traction rods.
By adopting the technical scheme, the two traction rods can be synchronously rotated through the sliding linkage rod, and the corresponding two cross rods can synchronously rotate around the auxiliary upright post, so that the operation of adjusting the included angle between the aluminum plate and the glass plate is more convenient.
Preferably, the linkage assembly further comprises a limiting rod arranged on the linkage rod in a penetrating mode, and the limiting rod is fixedly connected between the main stand column and the auxiliary stand column.
Through adopting above-mentioned technical scheme, the gag lever post can restrict the sliding of gangbar, reduces rocking of gangbar for the rotation of two traction rods is more smooth, and the gag lever post has still increased being connected between main column and the auxiliary column simultaneously, helps improving glass board or aluminum plate installation stability.
Preferably, two cross bars fixedly connected with the aluminum plate or the glass plate are vertically arranged, and the number of the adjusting assemblies and the number of the linkage assemblies are correspondingly set into two groups.
Through adopting above-mentioned technical scheme, the horizontal pole sets up to two, can increase aluminum plate and glass board and with the contact area of installation component, promotes the position stability after aluminum plate and the installation of glass board.
Preferably, a connecting rod is fixedly connected between the two linkage rods.
By adopting the technical scheme, the linkage assembly is set into two groups, and then the traction rods in the two groups of adjusting assemblies can smoothly rotate only by synchronously moving the two linkage rods, and the two linkage rods can be driven to synchronously move by moving the connecting rod, so that the angle adjustment of the included angle between the aluminum plate and the glass plate is further facilitated.
Preferably, a threaded rod is rotatably connected between the main upright post and the auxiliary upright post, and the threaded rod penetrates through the connecting rod and is in threaded fit with the connecting rod.
Through adopting above-mentioned technical scheme, drive the connecting rod through rotating the threaded rod and remove, can promote the precision that the connecting rod slided, the regulation precision of contained angle between final aluminum plate and the glass board will also promote.
Preferably, set up the first spout that supplies the slider to slip to inlay and establish on the horizontal pole, the mounting includes the bolt that runs through slider and horizontal pole simultaneously, and the threaded sleeve is equipped with the nut that supports tightly with the horizontal pole lateral wall on the bolt, and the horizontal pole is seted up the bar through-hole that supplies the bolt to wear out, and the length direction of through-hole is the same with the length direction of first spout.
Through adopting above-mentioned technical scheme, after the sliding of slider in the spout was ended, through wearing to establish the bolt and screwing up the nut alright realize the position of locking the slider, because the setting of through-hole bar, the mount can be on the horizontal pole the arbitrary position fixed slide block, has the effect of infinitely variable control slider position.
Preferably, the bolt is sleeved with a gasket, and the gasket is located between the nut and the outer side wall of the cross rod.
Through adopting above-mentioned technical scheme, the gasket can increase the area that the nut supports tight horizontal pole lateral wall, makes the nut more difficult not hard up to can promote the tight locking effect of mounting to the slider.
In summary, the present application includes at least one of the following advantageous technical effects;
1. through the arrangement of the main upright post, the auxiliary upright post and the cross rod in the mounting assembly as well as the arrangement of the traction rod, the sliding block and the fixing piece in the adjusting assembly, the included angle between the aluminum plate and the glass plate can be changed, and the flexible adjustment of the corner angle of the aluminum plate and glass combined curtain wall is realized;
2. through the arrangement of the linkage rod, the second chute and the limiting rod in the linkage assembly, two traction rods in the same group can be rotated, so that the angle between the aluminum plate and the glass plate can be conveniently adjusted;
3. through the setting of connecting rod and threaded rod, the gangbar in two sets of linkage assembly of synchronous motion can promote the precision of contained angle modulation between aluminum plate and the glass board simultaneously.
Drawings
FIG. 1 is a schematic structural diagram of a corner joint of an aluminum plate and glass combined curtain wall according to an embodiment of the present application;
FIG. 2 is a schematic view, partially in section, of an embodiment of the present application, showing primarily the adjustment assembly and the linkage assembly;
fig. 3 is an enlarged schematic view of a portion a in fig. 2, mainly showing the structure of the fixing member and the connection structure of the linkage rod and the traction rod.
Description of reference numerals: 1. an aluminum plate; 2. a glass plate; 3. mounting the component; 31. a main upright post; 32. a secondary upright post; 33. a cross bar; 4. an adjustment assembly; 41. a draw bar; 42. a slider; 43. a first chute; 44. a fixing member; 441. a bolt; 442. a nut; 443. a gasket; 444. a through hole; 5. a linkage assembly; 51. a linkage rod; 52. clamping the shaft; 53. a second chute; 54. a limiting rod; 6. a connecting rod; 7. a threaded rod.
Detailed Description
The present application is described in further detail below with reference to figures 1-3.
The embodiment of the application discloses aluminum plate and glass combination curtain wall corner node structure. Referring to fig. 1, the corner node structure comprises an aluminum plate 1 and a glass plate 2 which are arranged at an included angle, a mounting component 3 is arranged between the aluminum plate 1 and the glass plate 2, the mounting component 3 is used for being connected with a building facade, and the aluminum plate 1 and the glass plate 2 are mounted on the mounting component 3.
Referring to fig. 1, the mounting assembly 3 includes a main upright column 31 and an auxiliary upright column 32, the main upright column 31 and the auxiliary upright column 32 are both vertically arranged, the cross section of the main upright column 31 is in a square ring shape, the main upright column 31 is fixedly connected with the outer facade of the building, the cross section of the auxiliary upright column 32 is in a circular shape, the aluminum plate 1 and the glass plate 2 are distributed on both sides of the auxiliary upright column 32, two groups of cross bars 33 are respectively arranged on both sides of the auxiliary upright column 32, the two groups of cross bars 33 respectively correspond to the aluminum plate 1 and the glass plate 2, and two cross bars are vertically distributed in the same group of cross bars 33 for enhancing the position stability of the aluminum plate 1 or the glass plate 2 after being mounted. Each cross rod 33 is horizontally arranged, and two cross rods 33 in the two groups of cross rods 33 on the same row are at the same height in the horizontal direction. Aluminum plate 1 and glass plate 2 link firmly with a set of horizontal pole 33 that corresponds respectively to aluminum plate 1 and glass plate 2 all are located one side that horizontal pole 33 kept away from head mast 31. One end of each cross rod 33 close to the auxiliary upright post 32 is hinged with the auxiliary upright post 32, and the rotating axis of each cross rod 33 is vertically arranged.
Referring to fig. 1 and 2, two groups of adjusting assemblies 4 are vertically arranged on the main upright column 31, and the two groups of adjusting assemblies 4 respectively correspond to the two rows of cross bars 33. Each set of adjustment assemblies 4 is identical in construction. The adjusting assembly 4 comprises two traction rods 41 hinged on the main upright post 31, one end of each traction rod 41 far away from the main upright post 31 is hinged with a sliding block 42, the rotating axes of the two ends of each traction rod 41 are vertically arranged, the sliding blocks 42 are embedded in the corresponding cross rods 33 in a sliding manner, first sliding grooves 43 for the sliding blocks 42 to slide are formed in the cross rods 33, the cross sections of the first sliding grooves 43 are convex, the length directions of the sliding grooves are the same as the length directions of the corresponding cross rods 33, and the side walls of the sliding blocks 42 are attached to the inner side walls of the first sliding grooves 43.
When the two traction rods 41 positioned on the same side of the main upright column 31 rotate towards the same direction, the sliding block 42 hinged with the traction rods 41 slides in the first sliding groove 43 corresponding to the cross rod 33, the distance from the sliding block 42 to the hinged end of the cross rod 33 is changed, the cross rod 33 can be rotated, the included angle between the two cross rods 33 in the same row, namely the included angle between the aluminum plate 1 and the glass plate 2 can be changed, and therefore the flexible adjustment of the corner angle of the aluminum plate and glass combined curtain wall is realized.
Referring to fig. 2 and 3, the cross bar 33 is further provided with a fixing member 44 for locking the position of the slider 42, and the position of the slider 42 on the cross bar 33 is fixed by the fixing member 44, so that the rotation state of the cross bar 33 is restricted, and the positions of the aluminum plate 1 and the glass plate 2 are stabilized. The fixing member 44 includes a bolt 441 and a nut 442, the bolt 441 vertically penetrates through the cross bar 33 and the slider 42, a head of the bolt 441 abuts against an outer side wall of one side of the cross bar 33, and the nut 442 is threadedly sleeved on the bolt 441 and abuts against an outer side wall of the other side of the cross bar 33. The cross bar 33 is provided with a strip-shaped through hole 444 through which the bolt 441 passes, the length direction of the through hole 444 is the same as that of the cross bar 33, the sliding block 42 slides to any position, and the sliding block 42 can be locked by screwing the nut 442, so that the position of the sliding block 42 can be adjusted steplessly. The bolt 441 is further sleeved with a washer 443, the washer 443 is located between the nut 442 and the outer side wall of the cross bar 33, and the washer 443 can increase the abutting area between the nut 442 and the outer side wall of the cross bar 33 after the nut 442 is screwed, so that the nut 442 is less prone to loosening, and the locking effect of the fixing member 44 on the slider 42 is improved.
Referring to fig. 2, a set of linkage assemblies 5 is provided between two drawbars 41 in the same set. The linkage assembly 5 comprises a horizontal linkage rod 51 arranged between the two traction rods 41, and the linkage rod 51 is perpendicular to a plane defined by central axes of the main upright 31 and the auxiliary upright 32. Two ends of the linkage rod 51 are fixedly connected with a clamping shaft 52 respectively, the cross section of the clamping shaft 52 is circular, the axis of the clamping shaft 52 is vertically arranged, a second sliding groove 53 is formed in the side wall of one side, close to the linkage rod 51, of each traction rod 41, the cross section of each second sliding groove 53 is convex, the length direction of each second sliding groove 53 is the same as that of each traction rod 41, and the clamping shaft 52 is embedded in the second sliding groove 53 of the traction rod 41 on the same side in a sliding mode. A vertical connecting rod 6 is fixedly connected between the two linkage rods 51, and the two linkage rods 51 can be driven to slide simultaneously through the sliding connecting rod 6. The linkage rod 51 moves to change the included angle between the two traction rods 41 in the same group, so that the two traction rods 41 in the same group can synchronously rotate, and then the two cross rods 33 in the same row and the traction rods 33 in the two rows can synchronously rotate, thereby greatly facilitating the operation of constructors.
Referring to fig. 2, each linkage rod 51 is provided with a limiting rod 54 in a sliding and penetrating manner, the limiting rod 54 is horizontally arranged and is perpendicular to the linkage rod 51, and two ends of the limiting rod 54 are fixedly connected with the main upright column 31 and the auxiliary upright column 32 respectively. The limiting rod 54 can restrain the sliding of the linkage rod 51, so that the shaking of the linkage rod 51 can be reduced, the stability of the linkage rod 51 during moving is improved, and the linkage rod 51 can drive the traction rods 41 on the two sides to rotate more smoothly. In addition, the two limiting rods 54 can also improve the connection degree between the main upright column 31 and the auxiliary upright column 32, and the stability of the aluminum plate 1 or the glass plate 2 after installation is improved.
Referring to fig. 2, a threaded rod 7 is further rotatably connected between the main upright column 31 and the auxiliary upright column 32, the threaded rod 7 is parallel to the limiting rod 54, and the threaded rod 7 penetrates through the connecting rod 6 and is in threaded fit with the connecting rod 6. Drive connecting rod 6 through rotating threaded rod 7 and remove, can promote the precision of connecting rod 6 that slides, the regulation precision of contained angle will also promote between final aluminum plate 1 and the glass board 2.
The implementation principle of the embodiment of the application is as follows: when adjusting angle between aluminum plate 1 and the glass board 2, rotatory threaded rod 7 drives connecting rod 6 and removes, two upper and lower gangbar 51 will synchronous motion, two traction rods 41 that every gangbar 51 corresponds just can rotate in step, every slider 42 just can follow corresponding traction rod 41 and slide in first spout 43, slider 42 will drive corresponding horizontal pole 33 and take place to rotate, and then aluminum plate 1 and glass board 2 just can rotate, with the contained angle between changing aluminum plate 1 and the glass board 2, and then realize aluminum plate and glass combination curtain corner angle's nimble regulation.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. The utility model provides an aluminum plate and glass combination curtain wall corner node structure which characterized in that: the aluminum plate and glass plate combined mounting structure comprises an aluminum plate (1), a glass plate (2) and a mounting assembly (3), wherein the mounting assembly (3) comprises a main upright post (31) and an auxiliary upright post (32) which are vertically arranged, two sides of the auxiliary upright post (32) are respectively hinged with a cross rod (33) corresponding to the aluminum plate (1) and the glass plate (2), and the aluminum plate (1) and the glass plate (2) are respectively fixedly connected to one side, away from the main upright post (31), of the corresponding cross rod (33); be equipped with on main column (31) and be used for changing adjusting part (4) of contained angle between two horizontal poles (33), adjusting part (4) are including sliding respectively and inlay slider (42) of establishing on two horizontal poles (33), the glide direction of slider (42) is the same with the length direction who corresponds horizontal pole (33), all articulated between two slider (42) and main column (31) have traction lever (41), all be equipped with on every horizontal pole (33) and lock mounting (44) that correspond slider (42).
2. The aluminum plate and glass combined curtain wall corner node structure of claim 1, wherein: a linkage assembly (5) is arranged between the two traction rods (41), the linkage assembly (5) comprises a linkage rod (51) arranged between the two traction rods (41), two ends of the linkage rod (51) are respectively embedded on the two traction rods (41) in a sliding mode, and second sliding grooves (53) for the corresponding end portions of the linkage rod (51) to be embedded are formed in the traction rods (41).
3. The aluminum plate and glass combined curtain wall corner node structure of claim 2, wherein: the linkage assembly (5) further comprises a limiting rod (54) arranged on the linkage rod (51) in a penetrating mode, and the limiting rod (54) is fixedly connected between the main upright post (31) and the auxiliary upright post (32).
4. The aluminum plate and glass combined curtain wall corner node structure of claim 2, wherein: aluminum plate (1) or horizontal pole (33) vertical arrangement that glass board (2) linked firmly two, the quantity of adjusting part (4) and linkage assembly (5) all corresponds and sets up to two sets of.
5. The aluminum plate and glass combined curtain wall corner node structure of claim 4, wherein: a connecting rod (6) is fixedly connected between the two linkage rods (51).
6. The aluminum plate and glass combined curtain wall corner node structure of claim 5, wherein: the main upright post (31) and the auxiliary upright post (32) are rotatably connected with a threaded rod (7), and the threaded rod (7) penetrates through the connecting rod (6) and is in threaded fit with the connecting rod (6).
7. The aluminum plate and glass combined curtain wall corner node structure of claim 1, wherein: offer on horizontal pole (33) and supply first spout (43) that slider (42) slip were inlayed and are established, mounting (44) are including running through slider (42) and horizontal pole (33) bolt (441) simultaneously, and the threaded sleeve is equipped with and supports tight nut (442) with horizontal pole (33) lateral wall on bolt (441), and horizontal pole (33) are offered and are supplied bar through-hole (444) that bolt (441) wore out, and the length direction of through-hole (444) is the same with the length direction of first spout (43).
8. The aluminum plate and glass combined curtain wall corner node structure of claim 7, wherein: the bolt (441) is sleeved with a gasket (443), and the gasket (443) is located between the nut (442) and the outer side wall of the cross rod (33).
CN202120882432.5U 2021-04-27 2021-04-27 Aluminum plate and glass combined curtain wall corner node structure Active CN214658098U (en)

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CN202120882432.5U CN214658098U (en) 2021-04-27 2021-04-27 Aluminum plate and glass combined curtain wall corner node structure

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114319668A (en) * 2021-12-30 2022-04-12 江苏晶天建设工程有限公司 Glass-aluminum plate double-layer curtain wall
CN115198944A (en) * 2022-08-25 2022-10-18 深圳市瑞玮工程有限公司 Saving type glass curtain wall corner structure
CN115596130A (en) * 2022-11-09 2023-01-13 中建三局集团华南有限公司(Cn) Light-shading curtain wall capable of controlling lighting
CN116517167A (en) * 2023-07-05 2023-08-01 中国建筑第五工程局有限公司 Be used for green building engineering negative and positive angle curtain installation device

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114319668A (en) * 2021-12-30 2022-04-12 江苏晶天建设工程有限公司 Glass-aluminum plate double-layer curtain wall
CN114319668B (en) * 2021-12-30 2024-04-09 江苏晶天建设工程有限公司 Glass-aluminum plate double-layer curtain wall
CN115198944A (en) * 2022-08-25 2022-10-18 深圳市瑞玮工程有限公司 Saving type glass curtain wall corner structure
CN115198944B (en) * 2022-08-25 2023-06-13 深圳市瑞玮工程有限公司 Economical glass curtain wall corner structure
CN115596130A (en) * 2022-11-09 2023-01-13 中建三局集团华南有限公司(Cn) Light-shading curtain wall capable of controlling lighting
CN116517167A (en) * 2023-07-05 2023-08-01 中国建筑第五工程局有限公司 Be used for green building engineering negative and positive angle curtain installation device
CN116517167B (en) * 2023-07-05 2023-09-19 中国建筑第五工程局有限公司 Be used for green building engineering negative and positive angle curtain installation device

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