An ultra-wide and ultra-long stone-like honeycomb aluminum plate eaves mouth curtain wall node
By designing ultra-wide and ultra-long imitation stone honeycomb aluminum panel eaves curtain wall nodes, combined with a stable keel frame and sealing structure, the problems of cumbersome installation and poor waterproofing of aluminum panels for large building eaves have been solved, achieving efficient installation and good sealing effect.
Patent Information
- Application Number
- CN202522119543.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-30
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-09-30
AI Technical Summary
In existing technologies, the installation of aluminum panels used for the eaves of large buildings is cumbersome, involves many seams, makes it difficult to guarantee waterproofing, and has low installation efficiency.
The curtain wall features ultra-wide and ultra-long imitation stone honeycomb aluminum panel eaves nodes. Through a stable structure composed of eaves grid, transfer layer frame, bottom keel frame, lower additional grid, upper additional grid and inclined facade keel frame, the number of aluminum panels installed and the number of seams are reduced. Combined with the edge finishing structure, the use of I-shaped sealing strips and Z-shaped hangers and other sealing components improves the sealing performance.
This reduces the number of aluminum panels required and the number of seams, improves construction efficiency, effectively solves the waterproofing problem, and ensures overall sealing and aesthetics.
Smart Images

Figure CN224678951U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of curtain walls, and in particular to an ultra-wide and ultra-long imitation stone honeycomb aluminum panel eaves curtain wall node. Background Technology
[0002] For example, Chinese Utility Model Patent Publication No. CN 222252680 U discloses an installation structure for a honeycomb aluminum panel imitation stone curtain wall, including a keel frame, a connecting frame, an aluminum panel body, and a sealing component. The connecting frame has screw holes and is fixedly connected to the keel frame, located on the outside of the keel frame. The aluminum panel body is threadedly connected to the connecting frame and located on the outside of the connecting frame. The sealing component includes a fixing member and two sets of locking members. The fixing member and the locking member are engaged and located on the outside of the locking member. The two sets of locking members are symmetrically arranged, and the locking members are slidably connected to the connecting frame and located inside the connecting frame. The aluminum panels used are relatively small in size. When used for the eaves of large buildings, too many aluminum panels will result in many seams, making installation cumbersome. Many seams make it difficult to guarantee the waterproof effect, and a large number of panels will make it difficult to improve installation efficiency. Utility Model Content
[0003] The technical problem to be solved by this utility model is to provide an ultra-wide and ultra-long imitation stone honeycomb aluminum panel eaves curtain wall node. The use of ultra-wide and ultra-long imitation stone honeycomb aluminum panels is beneficial to reducing the number of aluminum panels to be installed and reducing the number of joints, which can improve construction efficiency and solve the waterproofing problem.
[0004] To address the aforementioned issues, an ultra-wide and ultra-long imitation stone honeycomb aluminum panel eaves curtain wall node was adopted, comprising: The eaves space frame cantilevered outwards, and its nodes are bolted ball joints. Supports are installed at the bottom of the bolted ball joints on the bottom surface of the eaves space frame. The transfer layer frame is installed below the support by the first angle steel, and its bottom surface is spaced with hanging components; The bottom keel frame is installed below the transfer layer frame by hangers, and its bottom surface is spaced with corner brackets. The bottom surface is a continuous imitation stone honeycomb aluminum panel, which is installed under the bottom keel frame by corner brackets; The lower additional space frame is installed on the bolt ball joint on the outside of the eaves space frame. The outer additional joint extends horizontally to the outside to form the first cantilever. The first cantilever is distributed vertically at intervals, and the outer end node of the lower first cantilever is closer to the interior direction than the outer end node of the upper first cantilever. The inclined facade keel frame is installed on the outer end node of the first cantilever rod, and corner brackets are also distributed at intervals on its outer side; The sloping facade features a continuous imitation stone honeycomb aluminum panel, which is also installed on the outside of the sloping facade keel frame via corner brackets. The upper auxiliary space frame is fixed to the top node of the lower auxiliary space frame by the lower uprights; it is fixed to the bolt ball node on the outer top surface of the eaves space frame by the diagonal web members; and the outer node extends outward to the outside with a second cantilever. The front facade keel frame is installed on the outer end node of the second cantilever rod, and corner brackets are also distributed at intervals on its outer side; The front facade features imitation stone honeycomb aluminum panels, which are installed on the front facade keel frame using corner brackets.
[0005] This structure divides the eaves curtain wall into three sections: front facade imitation stone honeycomb aluminum panel, sloping facade continuous imitation stone honeycomb aluminum panel, and bottom continuous imitation stone honeycomb aluminum panel. This greatly reduces horizontal seams, which are only found at the ends of the panels, eliminating seams in the middle. Due to the large span of the sloping facade continuous imitation stone honeycomb aluminum panel, it is angled to mitigate wind resistance and prevent excessive bending moments in the middle of the panel due to wind loads, thus preventing deformation. The transfer layer frame facilitates the even distribution of hanging points and supports before installing the bottom keel frame, resulting in a more stable installation. The bottom continuous imitation stone honeycomb aluminum panel is then installed on the bottom surface of the bottom keel frame, extending directly to the vicinity of the glass curtain wall.
[0006] The additional space frame also helps to ensure the even distribution of installation points, so as to stabilize the installation of the inclined facade keel frame; The addition of a space frame also helps to ensure the even distribution of installation points, so as to stabilize the installation of the front facade keel frame.
[0007] The stable keel frame can reliably install extra-wide and extra-long imitation stone honeycomb aluminum panels. The extra-wide and extra-long features not only ensure the beauty and grandeur of the eaves and facilitate jointing, but also help reduce the number of installation panels and splicing seams, thereby improving efficiency and ensuring overall sealing.
[0008] As a further improvement of this utility model, a top keel frame is fixed on the front facade keel frame. The top keel frame is inclined downward and extends towards the interior. An inclined support rod is fixed at the root of the upper frame rod. The inclined support rod is fixed at the root of the upper upright of the upper auxiliary grid frame. A transverse frame beam is provided at the upper end of the upper upright. An extension upright is provided at the end node of the transverse frame beam. The extension upright is fixed on the top keel frame.
[0009] This structure helps ensure greater stability of the overall structure of the upper-mounted grid frame, thereby providing more stable installation points for the front facade keel frame to stably install the front facade imitation stone honeycomb aluminum panels. The top keel frame is inclined downwards and extends towards the interior, which is conducive to slope. When installing the wall and top panels later, it can guide the water to the gutter on the eaves for convenient drainage.
[0010] As a further improvement of this utility model, the edge finishing structure between the front facade imitation stone honeycomb aluminum panel and the inclined facade continuous imitation stone honeycomb aluminum panel includes: The first L-shaped folded edge is integrally formed at the bottom of the imitation stone honeycomb aluminum panel on the front facade. It includes a first straight edge and a first bent edge. The first straight edge extends toward the interior direction in a manner perpendicular to the outside of the keel frame of the sloping facade, and the first bent edge extends toward the entire length of the imitation stone honeycomb aluminum panel on the sloping facade in a manner parallel to the outside of the keel frame of the sloping facade. The first folded edge is integrally formed on the top of the inclined vertical continuous imitation stone honeycomb aluminum panel, and extends inward in a manner parallel to the first straight edge, and abuts against the side of the first folded edge. The edge trim includes a U-shaped portion, an outer folded edge, and an inner folded edge; the U-shaped portion is into which a first bent edge extends; a T-groove is formed on the inner wall of the U-shaped portion; an I-shaped sealing strip is filled between the inner wall of the U-shaped portion and the first bent edge; the I-shaped sealing strip is adapted to the T-groove; the outer folded edge is integrally formed on the outdoor side of the U-shaped portion, and the outer folded edge is tightly attached to the bottom surface of the first folded edge; and is fixed by a back bolt; the inner folded edge is integrally formed on the indoor side of the U-shaped portion; the inner folded edge is parallel to the outer side of the inclined facade keel frame, and a first sealing gasket is filled between the inner folded edge and the inclined facade keel frame, and is fixed by a stud.
[0011] With this structure, the entire edge trim can avoid being directly exposed to the wind, reducing rainwater intrusion. The edge trim covers both sides of the first bent edge, and the gaps are filled with I-shaped sealing strips to further improve the sealing performance. The outer folded edge fixes the first straight edge, and the U-shaped part has reserved space inside so that the first bent edge can extend further when it expands and contracts with temperature. The first straight edge and the first folded edge are parallel and spaced apart, and expansion joints are also reserved. The inner folded edge is fixed to the inclined vertical keel frame with studs to ensure the overall installation stability of the edge trim structure.
[0012] As a further improvement of this utility model, the edge finishing structure between the inclined vertical continuous imitation stone honeycomb aluminum panel and the bottom continuous imitation stone honeycomb aluminum panel includes: The second L-shaped folded edge is integrally formed on the bottom of the inclined vertical continuous imitation stone honeycomb aluminum panel. It includes a second straight edge and a second bent edge. The second straight edge is flush with and spaced from the bottom surface of the bottom continuous imitation stone honeycomb aluminum panel. The second bent edge extends upward and fixes the second angle steel. The second angle steel is spaced on the second bent edge. A second sealing gasket is provided between the second angle steel and the bottom keel frame and is fixed by studs. The Z-shaped bracket has a right-angle bend. Its lower plate is fixed at intervals to the edge of the bottom continuous imitation stone honeycomb aluminum plate. Its upper plate extends into the interval of the second angle steel. It is staggered with the second angle steel on the second sealing gasket. The upper plate and the second sealing gasket of the Z-shaped bracket are also fixed to the bottom of the inclined vertical keel frame by studs. Structural adhesive is applied between the second angle steel and the Z-shaped hanger, directly covering the studs; Sealant, which covers the structural adhesive.
[0013] With this structure, the Z-shaped hangers and the second angle steel are arranged alternately, so that they do not hinder each other's thermal expansion and contraction. The gaps are filled with structural adhesive and sealant to ensure the stability of the expansion joint.
[0014] This utility model uses ultra-wide and ultra-long imitation stone honeycomb aluminum panels, which helps to reduce the number of aluminum panels to be installed and reduce the number of seams, thereby improving construction efficiency and solving waterproofing problems. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of an embodiment.
[0016] Figure 2 This is a schematic elevation view of an embodiment.
[0017] Figure 3 This is a schematic diagram of the structure of the attached space frame.
[0018] Figure 4 This is a schematic diagram of the structure with the attached space frame.
[0019] Figure 5 This is a schematic diagram of the edge finishing structure of the imitation stone honeycomb aluminum panel on the front facade and the continuous imitation stone honeycomb aluminum panel on the sloping facade.
[0020] Figure 6 This is a schematic diagram of the edge finishing structure of the continuous imitation stone honeycomb aluminum panel on the sloping facade and the continuous imitation stone honeycomb aluminum panel on the bottom.
[0021] Attached reference numerals: 1. Eaves space frame; 101. Bolted ball joint; 102. Support; 2. Transfer layer frame; 201. Hanging components; 3. Bottom keel frame; 4. Lower auxiliary space frame; 401. Additional node; 402. First cantilever; 5. Upper auxiliary space frame; 501. Lower upright; 502. Diagonal web member; 503. Second cantilever member; 504. Upper upright; 505. Transverse frame beam; 506. Extended upright; 507. Diagonal support member 6. Sloping facade keel frame; 7. Horizontal sloping facade imitation stone honeycomb aluminum panel; 8. Front facade keel frame; 9. Front facade imitation stone honeycomb aluminum panel; 10. Top keel frame; 1001. Upper frame rod; 11. Angle steel; 12. Angle bracket; 13. Continuous imitation stone honeycomb aluminum panel on the bottom surface; 14. First L-shaped fold; 1401. First straight edge; 1402. First bent edge; 15. First fold; 16. Edge trim; 1601. U-shaped section; 1602. Outer fold; 1603. Inner fold; 1604. T-slot; 1605. I-beam sealing strip; 17. Back bolt; 18. First sealing gasket; 19. Stud; 20. Second L-shaped fold; 2001. Second straight edge; 2002. Second bent edge; 21. Second angle steel; 22. Second sealing gasket; 23. Z-shaped hanger; 24. Structural adhesive; 25. Sealant. Detailed Implementation
[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0023] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this utility model and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. The terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance. Furthermore, unless otherwise explicitly specified and limited, the terms "installed," "connected," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0024] Example 1 like Figures 1-6 As shown, an ultra-wide and ultra-long imitation stone honeycomb aluminum panel eaves curtain wall node includes: The eaves space frame 1 cantilevered outwards, and its nodes adopted bolt ball nodes 101. Supports 102 were installed at the bottom of the bolt ball nodes 101 on the bottom surface of the eaves space frame 1. The conversion layer frame 2 is installed below the support 102 by the first angle steel 11, and the bottom surface of the frame is distributed with hanging parts 201 at intervals. The bottom keel frame 3 is installed below the transfer layer frame 2 via hangers 201, and its bottom surface is spaced with corner brackets 12. A continuous imitation stone honeycomb aluminum panel 13 is installed below the bottom keel frame 3 via corner brackets 12; The lower additional space frame 4 is installed on the bolt ball node 101 on the outside of the eaves space frame 1. The outer additional node 401 extends horizontally to the outside to form a first cantilever rod 402. The first cantilever rods 402 are distributed vertically at intervals, and the outer end node of the lower first cantilever rod 402 is closer to the interior direction than the outer end node of the upper first cantilever rod 402. The inclined facade keel frame 6 is installed on the outer end node of the first cantilever rod 402, and corner brackets 12 are also distributed at intervals on its outer side; The sloping facade features a continuous imitation stone honeycomb aluminum panel 7, which is also installed on the outside of the sloping facade keel frame 6 via corner brackets 12. The upper auxiliary space frame 5 is fixed to the top node of the lower auxiliary space frame 4 by the lower upright 501; it is fixed to the bolt ball node 101 on the outer top surface of the eaves space frame 1 by the diagonal web 502; and the outer node extends outward to the outside with a second cantilever 503. The front facade keel frame 8 is installed on the outer end node of the second cantilever 503, and corner brackets 12 are also distributed at intervals on its outer side; The front facade features a stone-like honeycomb aluminum panel 9, which is installed on the front facade keel frame 8 via corner brackets 12.
[0025] This structure divides the eaves curtain wall into three sections: the front facade imitation stone honeycomb aluminum panel 9, the inclined facade continuous imitation stone honeycomb aluminum panel 7, and the bottom continuous imitation stone honeycomb aluminum panel 13. This greatly reduces horizontal seams, which are only at the ends of the panels, eliminating seams in the middle. The inclined facade continuous imitation stone honeycomb aluminum panel 7, due to its large span, is inclined to prevent excessive bending moments in the middle of the panel caused by wind loads, thus preventing deformation. The transfer layer frame 2 facilitates the even distribution of hanging points 201, allowing for the installation of the bottom keel frame 3, resulting in a more stable installation. The bottom continuous imitation stone honeycomb aluminum panel 13 is then installed on the bottom surface of the bottom keel frame 3, extending directly to a point close to the glass curtain wall.
[0026] The additional space frame 4 also helps to ensure the even distribution of installation points, so as to stabilize the installation of the inclined facade keel frame 6; The additional space frame 5 also helps to ensure the even distribution of installation points, so as to stabilize the installation of the front facade keel frame 8.
[0027] The stable keel frame can reliably install extra-wide and extra-long imitation stone honeycomb aluminum panels. The extra-wide and extra-long features not only ensure the beauty and grandeur of the eaves and facilitate jointing, but also help reduce the number of installation panels and splicing seams, thereby improving efficiency and ensuring overall sealing.
[0028] In this embodiment, a top keel frame 10 is fixed on the front facade keel frame 8. The top keel frame 10 is inclined downward and extends towards the interior. An inclined support rod 507 is fixed at the root of the upper frame rod 1001. The inclined support rod 507 is fixed at the root of the upper upright rod 504 of the upper auxiliary grid frame 5. A transverse frame beam 505 is provided at the upper end of the upper upright rod 504. An extension upright rod 506 is provided at the end node of the transverse frame beam 505. The extension upright rod 506 is fixed on the top keel frame 10.
[0029] This structure helps to ensure the overall stability of the upper additional grid frame 5, thereby providing more stable installation points for the front facade keel frame 8 to stably install the front facade imitation stone honeycomb aluminum panel 9. The top keel frame 10 is inclined downward and extends into the interior, which is conducive to the slope. When installing the wall and top panels later, it can guide the water to the gutter on the eaves for convenient drainage.
[0030] In this embodiment, the edge finishing structure between the front facade imitation stone honeycomb aluminum panel 9 and the inclined facade continuous imitation stone honeycomb aluminum panel 7 includes: The first L-shaped folded edge 14 is integrally formed at the bottom of the imitation stone honeycomb aluminum panel 9 on the front facade. It includes a first straight edge 1401 and a first bent edge 1402. The first straight edge 1401 extends toward the interior direction in a manner perpendicular to the outside of the inclined facade keel frame 6, and the first bent edge 1402 extends toward the inclined facade continuous imitation stone honeycomb aluminum panel 7 in a manner parallel to the outside of the inclined facade keel frame 6. The first folded edge 15 is integrally formed on the top of the inclined vertical continuous imitation stone honeycomb aluminum panel 7. It extends inward in a manner parallel to the first straight edge 1401 and abuts against the side of the first bent edge 1402. The edge trimming part 16 includes a U-shaped portion 1601, an outer folded edge 1602, and an inner folded edge 1603; the U-shaped portion 1601 is into which a first bent edge 1402 extends; a T-shaped groove 1604 is formed on the inner wall of the U-shaped portion 1601; an I-shaped sealing strip 1605 is filled between the inner wall of the U-shaped portion 1601 and the first bent edge 1402; the I-shaped sealing strip 1605 is adapted to the T-shaped groove 1604; the outer folded edge 1602... The outer folded edge 1602 is integrally formed on the side of the U-shaped part 1601 facing the outside, and is tightly attached to the bottom surface of the first folded edge 15; and is fixed by the back bolt 17; the inner folded edge 1603 is integrally formed on the side of the U-shaped part 1601 facing the inside; the inner folded edge 1603 is parallel to the outer side of the inclined vertical keel frame 6, and the inner folded edge 1603 and the inclined vertical keel frame 6 are filled with a first sealing gasket 18 and fixed by the stud 19.
[0031] With this structure, the entire edge trimming structure can avoid being directly exposed to the wind, reducing rainwater intrusion. The edge trimming piece 16 covers both sides of the first bent edge 1402, and the gap is filled with an I-shaped sealing strip 1605 to further improve the sealing performance. The outer folded edge 1602 fixes the first straight edge 1401, and the U-shaped part 1601 has reserved space inside so that the first bent edge 1402 can extend further when it expands and contracts with heat. The first straight edge 1401 and the first folded edge 15 are parallel and spaced apart, and expansion joints are also reserved. The inner folded edge 1603 is fixed to the inclined vertical keel frame 6 by studs 19 to ensure the overall installation stability of the edge trimming structure.
[0032] In this embodiment, the edge finishing structure between the inclined vertical continuous imitation stone honeycomb aluminum panel 7 and the bottom continuous continuous imitation stone honeycomb aluminum panel 13 includes: The second L-shaped folded edge 20 is integrally formed on the bottom of the inclined vertical continuous imitation stone honeycomb aluminum panel 7. It includes a second straight edge 2001 and a second bent edge 2002. The second straight edge 2001 is flush with and spaced from the bottom surface of the bottom continuous imitation stone honeycomb aluminum panel 13. The second bent edge 2002 extends upward and fixes the second angle steel 21. The second angle steel 21 is spaced on the second bent edge 2002. A second sealing gasket 22 is provided between the second angle steel 21 and the bottom keel frame 3 and fixed by a stud 19. Z-shaped hanger 23 has a right angle bend. Its lower plate is fixed at intervals to the edge of the bottom continuous imitation stone honeycomb aluminum plate 13. Its upper plate extends into the interval of the second angle steel 21. It is staggered with the second angle steel 21 on the second sealing gasket 22. The upper plate of the Z-shaped hanger 23 and the second sealing gasket 22 are also fixed to the bottom of the inclined vertical keel frame 6 by studs 19. Structural adhesive 24 is applied between the second angle steel 21 and the Z-shaped hanger 23, directly covering the stud 19; Sealant 25 covers structural adhesive 24.
[0033] With this structure, the Z-shaped hanger 23 and the second angle steel 21 are arranged in an alternating manner, so that they do not hinder each other's thermal expansion and contraction. The gaps are filled with structural adhesive 24 and sealant 25 to ensure the stability of the expansion joint.
[0034] This utility model uses ultra-wide and ultra-long imitation stone honeycomb aluminum panels, which helps to reduce the number of aluminum panels to be installed and reduce the number of seams, thereby improving construction efficiency and solving waterproofing problems.
[0035] The above description, in conjunction with specific preferred embodiments, provides a further detailed explanation of the present invention. It should not be construed that the specific implementation of the present invention is limited to these descriptions. For those skilled in the art, several equivalent substitutions or obvious modifications can be made without departing from the concept of the present invention, and all such modifications, with identical performance or use, should be considered within the protection scope of the present invention.
Claims
1. A super-wide and super-long imitation stone honeycomb aluminum panel eaves curtain wall node, characterized in that... include: The eaves space frame (1) cantilevered outwards, and its nodes adopted bolt ball nodes (101). Supports (102) were installed at the bottom of the bolt ball nodes (101) on the bottom surface of the eaves space frame (1). The conversion layer frame (2) is installed below the support (102) by the first angle steel (11), and the bottom surface is provided with hanging parts (201) at intervals. The bottom keel frame (3) is installed below the conversion layer frame (2) by means of hangers (201), and its bottom surface is spaced with corner brackets (12). A continuous imitation stone honeycomb aluminum panel (13) is installed under the bottom keel frame (3) via corner brackets (12); The lower additional space frame (4) is installed on the bolt ball node (101) on the outside of the eaves space frame (1). The additional node (401) on the outside extends horizontally to the outside to form a first cantilever rod (402). The first cantilever rod (402) is distributed vertically at intervals, and the outer end node of the lower first cantilever rod (402) is closer to the interior direction than the outer end node of the upper first cantilever rod (402). The inclined facade keel frame (6) is installed on the outer end node of the first cantilever rod (402), and corner brackets (12) are also distributed at intervals on its outer side. The sloping facade is a continuous imitation stone honeycomb aluminum panel (7), which is also installed on the outside of the sloping facade keel frame (6) by corner brackets (12); The upper auxiliary space frame (5) is fixed to the top node of the lower auxiliary space frame (4) by the lower upright (501); it is fixed to the bolt ball node (101) on the outer top surface of the eaves space frame (1) by the diagonal web member (502); and the outer node extends outward to the outside with a second cantilever (503). The front facade keel frame (8) is installed on the outer end node of the second cantilever (503), and corner brackets (12) are also distributed at intervals on its outer side. The front facade features a stone-like honeycomb aluminum panel (9), which is installed on the front facade keel frame (8) via corner brackets (12).
2. The ultra-wide and ultra-long imitation stone honeycomb aluminum panel eaves curtain wall node according to claim 1, characterized in that... A top keel frame (10) is fixed on the front facade keel frame (8). The top keel frame (10) is inclined downward and extends towards the interior. An inclined support rod (507) is fixed at the root of the upper frame rod (1001). The inclined support rod (507) is fixed at the root of the upper upright rod (504) of the upper auxiliary grid frame (5). A transverse frame beam (505) is provided at the upper end of the upper upright rod (504). An extension upright rod (506) is provided at the end node of the transverse frame beam (505). The extension upright rod (506) is fixed on the top keel frame (10).
3. The ultra-wide and ultra-long imitation stone honeycomb aluminum panel eaves curtain wall node according to claim 1, characterized in that... The edge finishing structure between the front facade imitation stone honeycomb aluminum panel (9) and the sloping facade continuous imitation stone honeycomb aluminum panel (7) includes: The first L-shaped fold (14) is integrally formed at the bottom of the front facade imitation stone honeycomb aluminum panel (9). It includes a first straight edge (1401) and a first bent edge (1402). The first straight edge (1401) extends toward the interior in a manner perpendicular to the outside of the sloping facade keel frame (6), and the first bent edge (1402) extends toward the sloping facade continuous imitation stone honeycomb aluminum panel (7) in a manner parallel to the outside of the sloping facade keel frame (6). The first folded edge (15) is integrally formed on the top of the inclined vertical continuous imitation stone honeycomb aluminum panel (7), and extends inward in a manner parallel to the first straight edge (1401), and abuts against the side of the first bent edge (1402). The edge trimming part (16) includes a U-shaped portion (1601), an outer folded edge (1602), and an inner folded edge (1603); the U-shaped portion (1601) is into which the first bent edge (1402) extends; a T-shaped groove (1604) is formed on the inner wall of the U-shaped portion (1601); an I-shaped sealing strip (1605) is filled between the inner wall of the U-shaped portion (1601) and the first bent edge (1402); the I-shaped sealing strip (1605) is adapted to the T-shaped groove (1604); the outer folded edge (1603) 1602) The outer fold (1602) is integrally formed on the side of the U-shaped part (1601) facing the outside, and is closely attached to the bottom surface of the first fold (15); and is fixed by a back bolt (17); the inner fold (1603) is integrally formed on the side of the U-shaped part (1601) facing the inside; the inner fold (1603) is parallel to the outer side of the inclined facade keel frame (6), and the inner fold (1603) and the inclined facade keel frame (6) are filled with a first sealing gasket (18) and fixed by a stud (19).
4. The ultra-wide and ultra-long imitation stone honeycomb aluminum panel eaves curtain wall node according to claim 1, characterized in that... The edge finishing structure between the inclined vertical continuous imitation stone honeycomb aluminum panel (7) and the bottom continuous imitation stone honeycomb aluminum panel (13) includes: The second L-shaped fold (20) is integrally formed at the bottom of the inclined vertical continuous imitation stone honeycomb aluminum panel (7). It includes a second straight edge (2001) and a second bent edge (2002). The second straight edge (2001) is flush with and spaced from the bottom surface of the bottom continuous imitation stone honeycomb aluminum panel (13). The second bent edge (2002) extends upward and fixes the second angle steel (21). The second angle steel (21) is spaced on the second bent edge (2002). A second sealing gasket (22) is provided between the second angle steel (21) and the bottom keel frame (3) and fixed by studs (19). Z-shaped bracket (23) has a right angle bend. Its lower plate is fixed at intervals on the edge of the bottom continuous imitation stone honeycomb aluminum plate (13). Its upper plate extends into the interval of the second angle steel (21). It is staggered with the second angle steel (21) on the second sealing gasket (22). The upper plate and the second sealing gasket (22) of the Z-shaped bracket (23) are also fixed to the bottom of the inclined vertical keel frame (6) by studs (19). Structural adhesive (24) is applied between the second angle steel (21) and the Z-shaped hanger (23), directly covering the stud (19); Sealant (25) covers the structural adhesive (24).
Citation Information
Patent Citations
Honeycomb aluminum plate imitation stone curtain wall mounting structure
CN222252680U