CN221031015U - Ceramic tile roof and glass shutter daylighting roof node structure - Google Patents

Ceramic tile roof and glass shutter daylighting roof node structure Download PDF

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Publication number
CN221031015U
CN221031015U CN202322877571.0U CN202322877571U CN221031015U CN 221031015 U CN221031015 U CN 221031015U CN 202322877571 U CN202322877571 U CN 202322877571U CN 221031015 U CN221031015 U CN 221031015U
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China
Prior art keywords
roof
ceramic tile
keel
sealing plate
rock wool
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Active
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CN202322877571.0U
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Chinese (zh)
Inventor
高兵
孙喜亮
梁添
戴君宝
朱琪
潘天佑
李俐
江超
万松麟
杨洪飞
唐杰
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China Construction First Group Corp Ltd
China Construction First Divison Group Huajiang Construction Co Ltd
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China Construction First Group Corp Ltd
China Construction First Divison Group Huajiang Construction Co Ltd
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Priority to CN202322877571.0U priority Critical patent/CN221031015U/en
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Publication of CN221031015U publication Critical patent/CN221031015U/en
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Abstract

The node structure of the ceramic tile roof and the glass shutter daylighting roof comprises a ceramic tile roof structure and a daylighting roof structure; a lighting opening is reserved on the ceramic tile roof structure, and a roof keel is arranged at the bottom of the ceramic tile roof structure; the side of the ceramic tile roof structure, which is close to the lighting opening, is provided with a side keel in a through length manner; a first edge sealing plate is arranged on one side of the edge keel close to the lighting opening; the daylighting roof structure is strip-shaped and is arranged along the slope direction of the roof in a through and long way; the daylighting roof structure comprises a bottom keel and a shutter; the bottom keel is of a strip rectangular sash structure, is connected to the lower part of one side of the main body structural beam close to the lighting opening, and is provided with struts at intervals along the gradient direction of the roof respectively at two sides of the top of the bottom keel; the shutter is arranged at the top of the pillar; a second edge sealing plate is arranged at the joint between the shutter and the main body structural beam; the upper end of the second edge sealing plate is connected with the first edge sealing plate, and the lower end of the second edge sealing plate is covered on the shutter. The utility model solves the technical problems of poor waterproof effect and easiness in water seepage at joint positions of the traditional structure.

Description

Ceramic tile roof and glass shutter daylighting roof node structure
Technical Field
The utility model belongs to the technical field of constructional engineering, and particularly relates to a ceramic tile roof and glass blind daylighting roof node structure.
Background
A building is a comprehensive building integrating office, business, catering and the like, and a roof of the building adopts a ceramic tile roof structure; meanwhile, in order to increase the lighting performance inside the building and the appearance effect of the building, the ceramic tile roof structure is provided with the glass blind daylighting roof, and the design of the roof structure meets the requirements of people on the functionality and the overall ornamental value of the modern building, and the urban characteristics are better reflected. The waterproof effect of the connection joint between the frame of the daylighting roof and the surrounding roof keels in the traditional daylighting roof structure is poor, and water seepage is easy to generate at the joint position.
Disclosure of utility model
The utility model aims to provide a ceramic tile roof and glass blind daylighting roof node structure, which aims to solve the technical problems that the traditional structure is poor in waterproof effect and water seepage is easy to generate at a joint position.
In order to achieve the above purpose, the present utility model adopts the following technical scheme.
The node structure of the ceramic tile roof and the glass blind daylighting roof comprises a ceramic tile roof structure and a daylighting roof structure; a lighting opening is reserved on the ceramic tile roof structure, and a roof keel is arranged at the bottom of the ceramic tile roof structure; the roof keels are erected on the main body structural beams; the side edge of the ceramic tile roof structure, which is close to one side of the lighting opening, is provided with a side keel in a through length manner; a first edge sealing plate is arranged on one side of the edge keel close to the lighting opening; the daylighting roof structure is strip-shaped, is arranged on the front side or the rear side of the ceramic tile roof structure along the gradient direction of the roof in a through manner, and the elevation of the top surface of the daylighting roof structure is matched with the elevation of the top of the main body structure beam, and the elevation of the bottom surface of the daylighting roof structure is matched with the elevation of the bottom of the main body structure beam; the daylighting roof structure comprises a bottom keel and a shutter; the bottom keels are of strip-shaped rectangular lattice structures, are connected to the lower part of one side of the main body structural beam, which is close to the lighting opening, and are respectively provided with struts at intervals along the gradient direction of the roof at the two sides of the top of each bottom keel; the support posts are arranged in the direction perpendicular to the roof; the shutter is arranged at the top of the pillar, and when the shutter is closed, the top surface of the shutter is adapted to the top of the main body structural beam; a second edge sealing plate is arranged at the joint between the shutter and the main body structural beam; the upper end of the second edge sealing plate is connected with the first edge sealing plate, and the lower end of the second edge sealing plate is covered on a window frame of the shutter.
Preferably, the ceramic tile roof structure comprises a profiled steel sheet, a rock wool layer, a corrugated waterproof sheet and a ceramic tile surface layer which are sequentially arranged from bottom to top; the profiled steel sheet is paved at the top of the roof keel, and the peripheral edges of the profiled steel sheet are positioned in the roof keel; the rock wool layer is paved on the top of the profiled steel sheet and is connected with the profiled steel sheet through the connecting component; a first sealing plate is arranged around the rock wool layer; the top of the first sealing plate is lapped on the top of the rock wool layer, and the bottom of the first sealing plate extends to the top of the roof keel; the wave-shaped waterproof board is paved on the top of the rock wool layer, and the edge of the wave-shaped waterproof board covers the top of the upper end of the first sealing plate; square through are arranged at the top of the wave-shaped waterproof plate at intervals along the gradient direction of the roof, and an additional waterproof layer is arranged at the joint of the wave-shaped waterproof plate and the first sealing plate; the lower end of the additional waterproof layer is covered on the joint of the first sealing plate and the roof keel; the ceramic tile surface layer is fixed on the square through an aluminum alloy hanging seat; a second sealing plate is arranged on one side of the ceramic tile surface layer close to the lighting opening; one end of the second sealing plate is lapped on the top of the ceramic tile surface layer, and the other end of the second sealing plate extends to the edge keel; the front side and the rear side of the ceramic tile roof structure are respectively provided with aluminum veneers along the front side and the rear side in a through length manner for watching.
Preferably, the rock wool layer comprises rock wool keels and rock wool blocks; the rock wool keels are of rectangular lattice structures, and rock wool blocks are filled in rectangular lattices of the rock wool keels; the connecting component comprises a supporting plate and a bolt; the two supporting plates are respectively clamped at two sides of the keel rod piece corresponding to the rock wool keel; the section of the supporting plate is in an inverted L shape, and the bottom of the supporting plate is supported on the profiled steel sheet; the bolts penetrate through the supporting plate and the rock wool keels to fix the supporting plate and the rock wool keels.
Preferably, the aluminum alloy hanging seats are provided with a plurality of groups and are arranged at intervals along the gradient direction of the roof; each group of aluminum alloy hanging seats are arranged at intervals along the direction parallel to the ridge; the aluminum alloy hanging seat is connected to the corrugated waterproof plate, a lower clamping groove is formed in one side, facing the cornice, of the aluminum alloy hanging seat, and an upper clamping groove is formed in one side, facing the ridge, of the aluminum alloy hanging seat; the ceramic tile surface layer comprises a plurality of ceramic tiles; each ceramic tile is arranged along the direction parallel to the ridge, adjacent ceramic tiles along the gradient direction of the roof are overlapped, and adjacent ceramic tiles along the direction parallel to the ridge are spliced; one side of the ceramic tile, which is close to the ridge, is clamped in the lower clamping groove of the aluminum alloy hanging seat at the corresponding side, and one side of the ceramic tile, which is close to the cornice, is clamped in the upper clamping groove of the aluminum alloy hanging seat at the corresponding side.
Preferably, the shutter is an aluminum alloy shutter or a glass shutter.
Compared with the prior art, the utility model has the following characteristics and beneficial effects.
1. According to the utility model, the bottom keel and the struts are arranged in the daylighting port, the bottom keel is correspondingly connected with the main structure beams at two sides of the daylighting port, and then the shutter is arranged at the top of the struts, so that the structural firmness of the daylighting well is ensured by the structural design; meanwhile, the top surface of the daylighting roof is lower than the top of the ceramic tile roof structure, so that the whole roof structure is layered, and the appearance effect of the whole roof structure is enhanced.
2. The daylighting roof is of a double-slope structure which is suitable for a ceramic tile roof structure, when rainwater flows into the daylighting roof, the rainwater can be left along a slope surface, a large amount of rainwater is not accumulated in the daylighting roof for a long time, and the possibility of water seepage is reduced; the waterproof sealing is carried out at the joint between the daylighting roof and the main body structural beam, so that a small amount of residual water is prevented from flowing into the gap from the joint, and the technical problems that the traditional structure is poor in waterproof effect and water seepage is easy to occur at the joint are well solved.
3. The edge of the ceramic tile roof close to one side of the daylighting roof is provided with an edge keel and a first edge sealing plate; wherein, the edge keels and the ceramic tile roof structure form a U-shaped structure together; meanwhile, the second sealing plate is arranged in the U-shaped structure to form a drainage groove for drainage, and rainwater on the roof can smoothly flow out of the drainage groove, so that water accumulation on the roof is avoided; in addition, an additional waterproof layer is arranged at the position of the drainage groove, so that the possibility of water seepage is further reduced; the multi-channel waterproof structure of the node structure part of the roof and the glass blind daylighting roof effectively improves the waterproof performance of the node position.
Drawings
The utility model is described in further detail below with reference to the accompanying drawings.
FIG. 1 is a schematic diagram of the structure of a ceramic tile roof and glass blind daylighting roof node of the present utility model.
Fig. 2 is a schematic view of the front structure of the ceramic tile roofing structure of the present utility model.
Fig. 3 is a schematic structural view of the aluminum alloy hanging seat connected to the square through in the utility model.
FIG. 4 is a schematic side view of a ceramic tile roofing structure according to the present utility model.
Reference numerals: 1-daylighting mouth, 2-roofing fossil fragments, 3-major structure roof beam, 4-limit fossil fragments, 5-first banding board, 6-end fossil fragments, 7-shutter, 8-pillar, 9-profiled steel sheet, 10-rock wool layer, 10.1-rock wool fossil fragments, 10.2-rock wool piece, 11-wave form waterproof board, 12-ceramic tile surface course, 13-coupling assembling, 13.1-backup pad, 13.2-bolt, 14-first closing plate, 15-second closing plate, 16-additional waterproof layer, 17-aluminum alloy hanging seat, 18-aluminum veneer looks face, 19-lower draw-in groove, 20-upper draw-in groove, 21-square, 22-rubber gasket, 23-second banding board.
Description of the embodiments
1-4, The ceramic tile roof and glass blind daylighting roof node structure comprises a ceramic tile roof structure and a daylighting roof structure; a lighting opening 1 is reserved on the ceramic tile roof structure, and a roof keel 2 is arranged at the bottom of the ceramic tile roof structure; the roof keel 2 is erected on the main body structural beam 3; the side edge of the ceramic tile roof structure, which is close to one side of the lighting opening 1, is provided with a side keel 4 in a through length manner; a first edge sealing plate 5 is arranged on one side of the edge keel 4 close to the lighting opening 1; the daylighting roof structure is strip-shaped, is arranged on the front side or the rear side of the ceramic tile roof structure along the gradient direction of the roof in a through manner, and the elevation of the top surface of the daylighting roof structure is matched with the elevation of the top of the main body structure beam 3, and the elevation of the bottom surface of the daylighting roof structure is matched with the elevation of the bottom of the main body structure beam 3; the daylighting roof structure comprises a bottom keel 6 and a shutter 7; the bottom keels 6 are of strip-shaped rectangular lattice structures, are connected to the lower part of one side of the main body structural beam 3 close to the daylighting port 1, and are provided with struts 8 at intervals along the gradient direction of the roof respectively on the two sides of the top of the bottom keels 6; the support posts 8 are arranged perpendicular to the roof; the shutter 7 is arranged at the top of the strut 8, and when the shutter 7 is closed, the top surface of the shutter 7 is matched with the top of the main structure beam 3; a second edge sealing plate 23 is arranged at the joint between the shutter 7 and the main body structural beam 3; the upper end of the second edge sealing plate 23 is connected with the first edge sealing plate 5, and the lower end of the second edge sealing plate 23 is covered on the window frame of the shutter 7.
In this embodiment, the daylighting roof structure is the strip, and along perpendicular and ridge direction logical long setting to the top surface shape of daylighting roof suits with the roofing shape, is double slope structure.
In the embodiment, the ceramic tile roof structure comprises a profiled steel sheet 9, a rock wool layer 10, a corrugated waterproof sheet 11 and a ceramic tile surface layer 12 which are sequentially arranged from bottom to top; the profiled steel sheet 9 is paved on the top of the roof keel 2, and the peripheral edges of the profiled steel sheet 9 are positioned in the roof keel 2; the rock wool layer 10 is paved on the top of the profiled steel sheet 9, and the rock wool layer 10 is connected with the profiled steel sheet 9 through a connecting component 13; a first sealing plate 14 is arranged around the rock wool layer 10; the top of the first sealing plate 14 is lapped on the top of the rock wool layer 10, and the bottom of the first sealing plate 14 extends to the top of the roof keel 2; the wave waterproof board 11 is paved on the top of the rock wool layer 10, and the edge of the wave waterproof board 11 is covered on the top of the upper end of the first sealing board 14; square through 21 are arranged at intervals along the gradient direction of the roof on the top of the corrugated waterproof board 11, and an additional waterproof layer 16 is arranged at the joint of the corrugated waterproof board 11 and the first sealing board 14; the lower end of the additional waterproof layer 16 is covered on the joint of the first sealing plate 14 and the roof keel 2; the ceramic tile surface layer 12 is fixed on a square through 21 through an aluminum alloy hanging seat 17; a second sealing plate 15 is arranged on one side of the ceramic tile surface layer 12 close to the lighting opening 1; one end of the second sealing plate 15 is lapped on the top of the ceramic tile surface layer 12, and the other end of the second sealing plate 15 extends to the edge keel 4; the front and rear sides of the ceramic tile roofing structure are respectively provided with aluminum veneer viewing surfaces 18 along the front and rear side edges.
In this embodiment, rubber gaskets 22 are respectively disposed in the lower clamping groove 19 and the upper clamping groove 20.
In this embodiment, the rock wool layer 10 includes a rock wool keel 10.1 and a rock wool block 10.2; the rock wool keel 10.1 is of a rectangular lattice structure, and the rock wool blocks 10.2 are filled in rectangular lattices of the rock wool keel 10.1; the connecting assembly 13 comprises a supporting plate 13.1 and a bolt 13.2; two supporting plates 13.1 are respectively clamped at two sides of a keel rod corresponding to the rock wool keel 10.1; the section of the supporting plate 13.1 is in an inverted L shape, and the bottom of the supporting plate 13.1 is supported on the profiled steel sheet 9; the bolts 13.2 are arranged in the supporting plate 13.1 and the rock wool keels 10.1 in a penetrating way, and fix the supporting plate 13.1 and the rock wool keels 10.1.
In this embodiment, the aluminum alloy hanging seats 17 are provided with a plurality of groups and are arranged at intervals along the gradient direction of the roof; each group of aluminum alloy hanging seats 17 are arranged at intervals along the direction parallel to the ridge; the aluminum alloy hanging seat 17 is connected to the corrugated waterproof plate 11, a lower clamping groove 19 is formed in one side of the aluminum alloy hanging seat 17 facing the cornice, and an upper clamping groove 20 is formed in one side of the aluminum alloy hanging seat 17 facing the ridge; the ceramic tile surface layer 12 comprises a plurality of ceramic tiles; each ceramic tile is arranged along the direction parallel to the ridge, adjacent ceramic tiles along the gradient direction of the roof are overlapped, and the lower part of the ceramic tile on the upper side of the slope is right above the upper part of the ceramic tile on the lower side of the slope; splicing adjacent ceramic tiles along the direction parallel to the ridge; the side edge of the ceramic tile, which is close to the ridge, is clamped in the lower clamping groove 19 of the aluminum alloy hanging seat 17 on the corresponding side, and the side edge of the ceramic tile, which is close to the cornice, is clamped in the upper clamping groove 20 of the aluminum alloy hanging seat 17 on the corresponding side.
In this embodiment, the shutter 7 is an aluminum alloy shutter or a glass shutter.
In this embodiment, the shutter 7 is a glass shutter, and a window opener and accessories thereof are disposed at the bottom of the shutter 7, and in other embodiments, the shutter may be an aluminum alloy shutter.
In the embodiment, the bottom of the edge keel 4 is fixedly connected with the roof keel 2, and a space is reserved between the edge keel 4 and the side edge of the corresponding side of the ceramic tile roof structure; the longitudinal section of the second sealing plate 15 is U-shaped and is arranged in the interval between the edge keel 4 and the ceramic tile roof structure; two ends of the top of the second sealing plate 15 are respectively and horizontally bent to form a joint edge; the overlap joint limit of second closing plate 15 one side is pressed at the top of ceramic tile roofing structure, and the overlap joint limit of second closing plate 15 opposite side is pressed at the top of limit fossil fragments 4.
In this embodiment, the upper end of the first edge sealing plate 5 is crimped on the top of the edge keel 4, and the lower end of the first edge sealing plate 5 is connected to the upper side of the roof keel 2.
In the embodiment, a connecting rod 24 is arranged on one side of the roof keel 2 close to the lighting opening 1; the cross section of the connecting rod 24 is in a horizontal U shape, and the lower end of the first edge sealing plate 5 is in press connection with the U-shaped groove.

Claims (5)

1. The node structure of the ceramic tile roof and the glass blind daylighting roof comprises a ceramic tile roof structure and a daylighting roof structure; the method is characterized in that: a lighting opening (1) is reserved on the ceramic tile roof structure, and a roof keel (2) is arranged at the bottom of the ceramic tile roof structure; the roof keel (2) is erected on the main body structural beam (3); the side edge of the ceramic tile roof structure, which is close to one side of the lighting opening (1), is provided with a side keel (4) in a through length manner; a first edge sealing plate (5) is arranged on one side of the edge keel (4) close to the lighting opening (1); the daylighting roof structure is strip-shaped, is arranged on the front side or the rear side of the ceramic tile roof structure along the gradient direction of the roof, and the elevation of the top surface of the daylighting roof structure is matched with the elevation of the top of the main body structure beam (3), and the elevation of the bottom surface of the daylighting roof structure is matched with the elevation of the bottom of the main body structure beam (3); the daylighting roof structure comprises a bottom keel (6) and a shutter (7); the bottom keels (6) are of strip-shaped rectangular sash structures, are connected to the lower part of one side, close to the lighting opening (1), of the main body structure beam (3), and are provided with struts (8) at intervals along the gradient direction of the roof respectively on two sides of the top of each bottom keel (6); the support column (8) is perpendicular to the roof; the shutter (7) is arranged at the top of the strut (8), and when the shutter (7) is closed, the top surface of the shutter (7) is matched with the top of the main structure beam (3); a second edge sealing plate (23) is arranged at the joint between the shutter (7) and the main body structural beam (3); the upper end of the second edge sealing plate (23) is connected with the first edge sealing plate (5), and the lower end of the second edge sealing plate (23) is covered on the window frame of the shutter (7).
2. The ceramic tile roofing and glass blind daylighting roof node structure of claim 1, wherein: the ceramic tile roof structure comprises a profiled steel sheet (9), a rock wool layer (10), a corrugated waterproof board (11) and a ceramic tile surface layer (12) which are sequentially arranged from bottom to top; the profiled steel sheet (9) is paved at the top of the roof keel (2), and the peripheral edges of the profiled steel sheet (9) are positioned in the roof keel (2); the rock wool layer (10) is paved on the top of the profiled steel sheet (9), and the rock wool layer (10) is connected with the profiled steel sheet (9) through the connecting component (13); a first sealing plate (14) is arranged around the rock wool layer (10); the top of the first sealing plate (14) is lapped on the top of the rock wool layer (10), and the bottom of the first sealing plate (14) extends to the top of the roof keel (2); the wave-shaped waterproof board (11) is paved on the top of the rock wool layer (10), and the edge of the wave-shaped waterproof board (11) is covered on the top of the upper end of the first sealing board (14); square through (21) are arranged at intervals along the gradient direction of the roof at the top of the wave-shaped waterproof board (11), and an additional waterproof layer (16) is arranged at the joint of the wave-shaped waterproof board (11) and the first sealing board (14); the lower end of the additional waterproof layer (16) is covered on the joint of the first sealing plate (14) and the roof keel (2); the ceramic tile surface layer (12) is fixed on the square through (21) through an aluminum alloy hanging seat (17); a second sealing plate (15) is arranged on one side of the ceramic tile surface layer (12) close to the lighting opening (1); one end of the second sealing plate (15) is lapped on the top of the ceramic tile surface layer (12), and the other end of the second sealing plate (15) extends to the edge keel (4); aluminum veneer viewing surfaces (18) are respectively arranged on the front side and the rear side of the ceramic tile roof structure along the front side and the rear side in a through length mode.
3. The ceramic tile roofing and glass blind daylighting roof node structure of claim 2, wherein: the rock wool layer (10) comprises a rock wool keel (10.1) and a rock wool block (10.2); the rock wool keel (10.1) is of a rectangular lattice structure, and rock wool blocks (10.2) are filled in rectangular lattices of the rock wool keel (10.1); the connecting component (13) comprises a supporting plate (13.1) and a bolt (13.2); two supporting plates (13.1) are respectively clamped at two sides of a keel rod piece corresponding to the rock wool keel (10.1); the section of the supporting plate (13.1) is in an inverted L shape, and the bottom of the supporting plate (13.1) is supported on the profiled steel sheet (9); the bolts (13.2) are arranged in the supporting plate (13.1) and the rock wool keels (10.1) in a penetrating mode, and the supporting plate (13.1) and the rock wool keels (10.1) are fixed.
4. The ceramic tile roofing and glass blind daylighting roof node structure of claim 2, wherein: the aluminum alloy hanging seats (17) are provided with a plurality of groups and are arranged at intervals along the gradient direction of the roof; each group of aluminum alloy hanging seats (17) are arranged at intervals along the direction parallel to the ridge; the aluminum alloy hanging seat (17) is connected to the corrugated waterproof board (11), a lower clamping groove (19) is formed in one side, facing the cornice, of the aluminum alloy hanging seat (17), and an upper clamping groove (20) is formed in one side, facing the ridge, of the aluminum alloy hanging seat (17); the ceramic tile surface layer (12) comprises a plurality of ceramic tiles; each ceramic tile is arranged along the direction parallel to the ridge, adjacent ceramic tiles along the gradient direction of the roof are overlapped, and adjacent ceramic tiles along the direction parallel to the ridge are spliced; one side of the ceramic tile, which is close to the ridge, is clamped in a lower clamping groove (19) of the aluminum alloy hanging seat (17) on the corresponding side, and one side of the ceramic tile, which is close to the cornice, is clamped in an upper clamping groove (20) of the aluminum alloy hanging seat (17) on the corresponding side.
5. The ceramic tile roofing and glass blind daylighting roof node structure of claim 1, wherein: the shutter (7) is an aluminum alloy shutter or a glass shutter.
CN202322877571.0U 2023-10-26 2023-10-26 Ceramic tile roof and glass shutter daylighting roof node structure Active CN221031015U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322877571.0U CN221031015U (en) 2023-10-26 2023-10-26 Ceramic tile roof and glass shutter daylighting roof node structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322877571.0U CN221031015U (en) 2023-10-26 2023-10-26 Ceramic tile roof and glass shutter daylighting roof node structure

Publications (1)

Publication Number Publication Date
CN221031015U true CN221031015U (en) 2024-05-28

Family

ID=91171130

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322877571.0U Active CN221031015U (en) 2023-10-26 2023-10-26 Ceramic tile roof and glass shutter daylighting roof node structure

Country Status (1)

Country Link
CN (1) CN221031015U (en)

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