Node structure of transverse oversized sun-shading photovoltaic decorative wing for unit type curtain wall

By designing a modular sunshade photovoltaic decorative wing node structure on the unit curtain wall, and using the connection of multiple sets of sunshade photovoltaic decorative wing units, the problem that traditional systems cannot design super-large sunshade lines is solved, achieving better sunshade, photovoltaic power generation and installation convenience.

CN222893832UActive Publication Date: 2025-05-23DECORATION CO LTD OF CHINA CONSTR 3RD ENG BUREAU
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Patent Information

Application Number
CN202421720105.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-19
Publication Date
2025-05-23
Estimated Expiration
2034-07-19

AI Technical Summary

Technical Problem

The traditional unit curtain wall horizontal exterior decoration system is limited by the profile extrusion mold size, wind pressure and stress characteristics, and cannot design suitable ultra-large sunshade lines, resulting in the inability to achieve the effects of sunshade and photovoltaic power generation.

Method used

The node structure includes a sunshade photovoltaic decorative wing unit is adopted, and the sunshade photovoltaic decorative wing unit is connected in pairs through multiple sets of sunshade photovoltaic decorative wing units. A modular system is formed by using components such as unit columns, beams and decorative wing horn connectors to achieve super-large sunshade and photovoltaic decorative effects.

Benefits of technology

It achieves better photoelectric conversion, sunshade and heat dissipation effects. At the same time, due to the modular design, high processing accuracy and convenient transportation and installation, the problems of wind pressure and stress characteristics are solved.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a node structure of a transverse oversized sun-shading photovoltaic decorative wing for a unit-type curtain wall, which comprises a plurality of groups of sun-shading photovoltaic decorative wing units which are connected pairwise, and a unit-type upright post which is connected with the sun-shading photovoltaic decorative wing units, an upper cross beam, a first middle cross beam, a second middle cross beam and a lower cross beam are arranged between the two unit type stand columns, the four cross beams are respectively provided with a solar photovoltaic decorative wing plate, each solar photovoltaic decorative wing plate comprises two decorative wing bracket connecting pieces, and a decorative wing rear cross beam and a decorative wing front cross beam are arranged between the two decorative wing bracket connecting pieces. The photovoltaic glass is arranged above the decorative wing rear cross beam and the decorative wing front cross beam, the decorative wing aluminum plate is arranged below the decorative wing rear cross beam and the decorative wing front cross beam, the light-facing face of the solar photovoltaic decorative wing plate is the photovoltaic glass, the shady face of the solar photovoltaic decorative wing plate is the decorative wing aluminum plate, and the solar photovoltaic decorative wing plate has better photoelectric conversion, sunshade and heat dissipation effects.
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Description

Technical Field

[0001] The utility model relates to the technical field of curtain wall construction, in particular to a node structure of a transverse super-large sunshade photovoltaic decorative wing for a unit curtain wall. Background Art

[0002] With the increasing requirements of the country for green buildings, energy conservation and carbon reduction, and the continuous development of curtain wall technology, the number of domestic unitized curtain wall projects is increasing, and the requirements for the appearance, energy-saving shading and green emission reduction of unitized curtain walls are also getting higher and higher. For the traditional unitized curtain wall horizontal exterior decoration system, due to the limitations of conditions such as profile extrusion mold size, wind pressure and unitized curtain wall force characteristics, the size of the shading line should not be too large, otherwise it will not have the effect of shading and photovoltaic power generation. Utility Model Content

[0003] The utility model aims to provide a node structure of a transverse super-large sunshade photovoltaic decorative wing for a unitized curtain wall, so as to solve the above-mentioned problems of the prior art.

[0004] In order to achieve the above-mentioned purpose, the utility model provides the following technical solutions: a node structure of a transverse super-large sunshade photovoltaic decorative wing for a unitized curtain wall, comprising a sunshade photovoltaic decorative wing unit, wherein the sunshade photovoltaic decorative wing unit is provided with a plurality of groups, and the plurality of groups of sunshade photovoltaic decorative wing units are connected in pairs, and the sunshade photovoltaic decorative wing unit comprises a unitized column, and an upper crossbeam, a first middle crossbeam, a second middle crossbeam and a lower crossbeam are provided between two unitized columns, the upper crossbeam is provided at the upper ends of the two unitized columns, the first middle crossbeam is provided below the upper crossbeam, the second middle crossbeam is provided below the first middle crossbeam, and the lower crossbeam is provided at the lower ends of the two unitized columns, and the unitized columns comprise a unitized public column. The columns and the unitized female columns, the unitized male columns and the unitized female columns are plug-connected, and solar photovoltaic decorative wing panels are respectively arranged at the positions of the upper crossbeam, the first middle crossbeam and the second middle crossbeam. The solar photovoltaic decorative wing panels include two decorative wing corbel connectors, a decorative wing rear crossbeam and a decorative wing front crossbeam are arranged between the two decorative wing corbel connectors, photovoltaic glass is arranged above the decorative wing rear crossbeam and the decorative wing front crossbeam, and a decorative wing aluminum plate is arranged below the decorative wing rear crossbeam and the decorative wing front crossbeam. The two decorative wing corbel connectors are respectively fixedly connected to the two unitized columns, and the decorative wing corbel connectors of two adjacent sunshade photovoltaic decorative wing units are fixedly connected by stainless steel pins.

[0005] In a preferred embodiment, two unitized male columns are arranged on the inner side of the unitized columns, and two unitized female columns are arranged on the outer side of the unitized columns. The two decorative wing corbel connectors of each set of solar photovoltaic decorative wing panels are fixedly connected to the side of the two unitized male columns close to the unitized female columns by machine screws.

[0006] In a preferred embodiment, the rear cross beam of the decorative wing is arranged at one end of the two decorative wing corbel connectors close to the unit column, and the front cross beam of the decorative wing is arranged at one end of the two decorative wing corbel connectors away from the unit column. The rear cross beam of the decorative wing and the front cross beam of the decorative wing are fixedly connected to the two decorative wing corbel connectors by machine screws.

[0007] In a preferred embodiment, photovoltaic glass edge guards are arranged between the two sides of the photovoltaic glass and the two decorative wing corbel connectors, a transverse decorative grille is arranged between the upper crossbeam and the first middle crossbeam, and the transverse decorative grille is located between two unit columns, a unit upper cross decorative line hanger is arranged above the transverse decorative grille and above the photovoltaic glass, and the first upper cross decorative line and the second upper cross decorative line are hung on the unit upper cross decorative line hanger; a first middle cross decorative line is arranged on the outside of the first middle crossbeam and above the photovoltaic glass; a second middle cross decorative line is arranged on the outside of the second middle crossbeam and above the photovoltaic glass.

[0008] In a preferred embodiment, a glass auxiliary frame is arranged on the outer side of the photovoltaic glass, and the glass auxiliary frame is hung with the front cross beam of the decorative wing and the rear cross beam of the decorative wing.

[0009] In a preferred embodiment, an aluminum plate is arranged between the upper crossbeam and the first middle crossbeam, a first glass plate is arranged between the first middle crossbeam and the second middle crossbeam, a second glass plate is arranged below the second middle crossbeam, and the lower end of the second glass plate is arranged in front of the lower crossbeam.

[0010] In a preferred embodiment, first vertical buckle covers are respectively arranged between the two sides of the aluminum panel and the unitized columns, second vertical buckle covers are respectively arranged between the two sides of the first glass panel and the unitized columns, and third vertical buckle covers are respectively arranged between the two sides of the second glass panel and the unitized columns.

[0011] Compared with the prior art, the utility model has the following characteristics and beneficial effects:

[0012] 1. The light-facing side of the solar photovoltaic decorative wing panel of the utility model is photovoltaic glass, and the backlight side is a decorative wing aluminum plate, which has better photoelectric conversion, sunshade and heat dissipation effects.

[0013] 2. The utility model is processed and assembled in a processing plant, and connected and installed with the unit body at the construction site. It adopts a unit-type module design, has high processing accuracy, and is convenient for transportation and installation.

[0014] 3. The utility model utilizes the cross-sectional characteristics and stress characteristics of the decorative wing corbel connector to cleverly solve the technical problem of excessive wind pressure on super-large lines. The aluminum alloy corbel has good anti-corrosion performance and appearance effect.

[0015] 4. The decorative wing corbel connectors of two adjacent sunshade photovoltaic decorative wing units of the utility model are fixedly connected by stainless steel pins to ensure the horizontality after installation, achieving better effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] The utility model is further described in detail below in conjunction with the accompanying drawings.

[0017] Figure 1 is an overall schematic diagram of the utility model;

[0018] Figure 2 It is a connection diagram of the unit-type public column of the utility model with the upper crossbeam, the first middle crossbeam, the second middle crossbeam and the lower crossbeam;

[0019] Figure 3 It is a connection diagram of the horizontal decorative grille and the first upper horizontal decorative line and the second upper horizontal decorative line of the utility model;

[0020] Figure 4 It is a connection diagram of a unit-type public column, a decorative wing corbel connector, a decorative wing front crossbeam and a decorative wing rear crossbeam of the utility model;

[0021] Figure 5 It is a connection diagram of the decorative wing corbel connector, the decorative wing front crossbeam and the decorative wing rear crossbeam of the utility model;

[0022] Figure 6 This is a connection diagram of a solar photovoltaic decorative wing plate and two unit-type columns of the utility model.

[0023] In the figure: 1-unit public column, 2-unit female column, 3-upper crossbeam, 4-first middle crossbeam, 5-lower crossbeam, 6-first upper cross decorative line, 7-second upper cross decorative line, 8-first middle cross decorative line, 9-second middle cross decorative line, 10-decorative wing corbel connector, 11-second middle crossbeam, 12-decorative wing front crossbeam, 13-decorative wing rear crossbeam, 14-decorative wing aluminum plate, 15-photovoltaic glass, 16-photovoltaic glass edge guard, 17-unit upper cross decorative line pendant, 18-horizontal decorative grille, 19-glass frame, 20-aluminum single plate, 21-stainless steel pins, 22-first glass plate, 23-second glass plate. DETAILED DESCRIPTION

[0024] The technical solutions in the embodiments of the utility model are described clearly and completely below. The embodiments of the utility model and all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0025] Embodiment 1:

[0026] See the examples Figures 1 to 6As shown, the node structure of the transverse super-large sunshade photovoltaic decorative wing for the unitized curtain wall of the utility model includes: a sunshade photovoltaic decorative wing unit, a plurality of sunshade photovoltaic decorative wing units are provided, and the plurality of sunshade photovoltaic decorative wing units are connected in pairs, and the sunshade photovoltaic decorative wing units include unitized columns, and an upper crossbeam 3, a first middle crossbeam 4, a second middle crossbeam 11 and a lower crossbeam 5 are provided between two unitized columns, the upper crossbeam 3 is provided at the upper ends of the two unitized columns, the first middle crossbeam 4 is provided below the upper crossbeam 3, the second middle crossbeam 11 is provided below the first middle crossbeam 4, and the lower crossbeam 5 is provided at the lower ends of the two unitized columns.

[0027] An aluminum single plate 20 is arranged between the upper cross beam 3 and the first middle cross beam 4, a first glass panel 22 is arranged between the first middle cross beam 4 and the second middle cross beam 11, a second glass panel 23 is arranged from the bottom of the second middle cross beam 11 to the lower ends of the two unit columns, and the lower end of the second glass panel 23 is arranged in front of the lower cross beam 5, and a transverse decorative grille 18 is arranged between the upper cross beam 3 and the first middle cross beam 4 and between the two unit columns, and the transverse decorative grille 18 is arranged in front of the aluminum single plate 20.

[0028] A first vertical buckle cover is respectively arranged between the two sides of the aluminum single plate 20 and the unit columns on both sides of the aluminum single plate 20, a second vertical buckle cover is respectively arranged between the two sides of the first glass plate 22 and the unit columns on both sides of the first glass plate 22, and a third vertical buckle cover is respectively arranged between the two sides of the second glass plate 23 and the unit columns on both sides of the second glass plate 23.

[0029] The unitized columns include unitized male columns 1 and unitized female columns 2. The two unitized male columns 1 are arranged on the inner side of the unitized columns, and the two unitized female columns 2 are arranged on the outer side of the unitized columns. The unitized male columns 1 and the unitized female columns 2 are clamped together. The upper crossbeam 3, the first middle crossbeam 4, and the second middle crossbeam 11 are respectively provided with solar photovoltaic decorative wing panels. The solar photovoltaic decorative wing panels include two decorative wing corbel connectors 10. The two decorative wing corbel connectors of each group of solar photovoltaic decorative wing panels are respectively fixedly connected to the side of the two unitized male columns 1 close to the unitized female columns 2 through machine screws.

[0030] A decorative wing rear cross beam 13 and a decorative wing front cross beam 12 are arranged between the two decorative wing corbel connectors 10. The decorative wing rear cross beam 13 is arranged at one end of the two decorative wing corbel connectors close to the unit column, and the decorative wing front cross beam 12 is arranged at one end of the two decorative wing corbel connectors away from the unit column. The decorative wing rear cross beam 13 and the decorative wing front cross beam 12 are fixedly connected to the two decorative wing corbel connectors by machine screws. The cross-sectional characteristics and stress characteristics of the decorative wing corbel connector are used to cleverly solve the technical problem of excessive wind pressure on super-large lines. The aluminum alloy corbel has good anti-corrosion performance and appearance effect.

[0031] Photovoltaic glass 15 is arranged above the decorative wing rear crossbeam 13 and the decorative wing front crossbeam 12, photovoltaic glass edge guards 16 are arranged between the two sides of the photovoltaic glass 15 and the two decorative wing corbel connectors, and a glass auxiliary frame 19 is arranged on the outside of the photovoltaic glass 15, and the glass auxiliary frame 19 is hung with the decorative wing front crossbeam 12 and the decorative wing rear crossbeam 13.

[0032] A unit upper horizontal decorative line hanger 17 is arranged above the transverse decorative grille 18 and above the photovoltaic glass 15, and a first upper horizontal decorative line 6 and a second upper horizontal decorative line 7 are hung on the unit upper horizontal decorative line hanger 17. A first middle horizontal decorative line 8 is arranged outside the first middle horizontal beam 4 and above the photovoltaic glass 15, and a second middle horizontal decorative line 9 is arranged outside the second middle horizontal beam 11 and above the photovoltaic glass 15.

[0033] A decorative wing aluminum plate 14 is arranged under the decorative wing rear beam 13 and the decorative wing front beam 12, the light-facing side is photovoltaic glass 15, and the backlight side is the decorative wing aluminum plate 14, which has better photoelectric conversion, sunshade and heat dissipation effects.

[0034] The two decorative wing corbel connectors 10 are fixedly connected to the two unit columns respectively, and the decorative wing corbel connectors 10 of the two adjacent sunshade photovoltaic decorative wing units are fixedly connected by stainless steel pins 21 to ensure the horizontality after installation, achieving better effect.

[0035] Embodiment 2:

[0036] The specific installation steps of this utility model are as follows:

[0037] Step 1: An upper crossbeam 3, a first middle crossbeam 4, a second middle crossbeam 11 and a lower crossbeam 5 are arranged between two unit columns, an aluminum single plate 20 is arranged between the upper crossbeam 3 and the first middle crossbeam 4, a first glass plate 22 is arranged between the first middle crossbeam 4 and the second middle crossbeam 11, a second glass plate 23 is arranged between the second middle crossbeam 11 and the lower crossbeam 5, and a transverse decorative grille 18 is arranged in front of the aluminum single plate 20;

[0038] Step 2: a decorative wing front crossbeam 12 and a decorative wing rear crossbeam 13 are arranged between two decorative wing corbel connectors 10, a glass auxiliary frame 19 is arranged outside the photovoltaic glass 15, the photovoltaic glass 15 and the glass auxiliary frame 19 are arranged above the decorative wing front crossbeam 12 and the decorative wing rear crossbeam 13, photovoltaic glass edge guards 16 are arranged between the two sides of the photovoltaic glass 15 with the glass auxiliary frame 19 and the two decorative wing corbel connectors, and a decorative wing aluminum plate 14 is arranged below the decorative wing front crossbeam 12 and the decorative wing rear crossbeam 13 to assemble into a photovoltaic decorative wing panel;

[0039] Step 3: Each set of solar photovoltaic decorative wing panels is fixedly connected to the upper crossbeam 3, the first middle crossbeam 4 and the second middle crossbeam 11 respectively, and the two decorative wing corbel connectors 10 of the upper crossbeam 3, the first middle crossbeam 4 and the second middle crossbeam 11 are fixedly connected to the two unit-type public columns 1 respectively;

[0040] Step 4: Arrange a unit upper horizontal decorative line hanger 17 above the horizontal decorative grille 18 and above the photovoltaic glass 15, hang the first upper horizontal decorative line 6 and the second upper horizontal decorative line 7 on the unit upper horizontal decorative line hanger 17, arrange a first middle horizontal decorative line 8 outside the first middle horizontal beam 4 and above the photovoltaic glass 15, and arrange a second middle horizontal decorative line 9 outside the second middle horizontal beam 11 and above the photovoltaic glass 15;

[0041] Step 5: A first vertical buckle cover is respectively arranged between the unit columns on both sides of the aluminum veneer 20 and the aluminum veneer 20, a second vertical buckle cover is respectively arranged between the unit columns on both sides of the first glass panel 22 and the first glass panel 22, and a third vertical buckle cover is respectively arranged between the unit columns on both sides of the second glass panel 23 and the second glass panel 23 to complete the sunshade photovoltaic decorative wing unit;

[0042] Step six: fix two adjacent sunshade photovoltaic decorative wing units through the decorative wing corbel connector 10 and the stainless steel pin 21 to complete the connection of multiple sunshade photovoltaic decorative wing units.

[0043] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A node structure for a transverse oversized sunshade photovoltaic decorative wing for a unitized curtain wall, characterized in that: include: A sunshade photovoltaic decorative wing unit, wherein the sunshade photovoltaic decorative wing unit is provided in a plurality of groups, and the plurality of groups of sunshade photovoltaic decorative wing units are connected in pairs, and the sunshade photovoltaic decorative wing unit comprises a unit column, and an upper crossbeam (3), a first middle crossbeam (4), a second middle crossbeam (11) and a lower crossbeam (5) are provided between two of the unit columns, the upper crossbeam (3) is provided at the upper ends of the two unit columns, the first middle crossbeam (4) is provided below the upper crossbeam (3), the second middle crossbeam (11) is provided below the first middle crossbeam (4), and the lower crossbeam (5) is provided at the lower ends of the two unit columns, and the unit columns comprise a unit male column (1) and a unit female column (2), and the unit male column (1) and the unit female column (2) are plug-connected, Solar photovoltaic decorative wing panels are respectively arranged at the positions of the upper crossbeam (3), the first middle crossbeam (4), and the second middle crossbeam (11), and the solar photovoltaic decorative wing panels include two decorative wing corbel connectors (10), a decorative wing rear crossbeam (13) and a decorative wing front crossbeam (12) are arranged between the two decorative wing corbel connectors (10), photovoltaic glass (15) is arranged above the decorative wing rear crossbeam (13) and the decorative wing front crossbeam (12), and a decorative wing aluminum plate (14) is arranged below the decorative wing rear crossbeam (13) and the decorative wing front crossbeam (12), and the two decorative wing corbel connectors (10) are respectively fixedly connected to two unit-type columns; the decorative wing corbel connectors (10) of two adjacent sunshade solar photovoltaic decorative wing units are fixedly connected by stainless steel pins (21).

2. The node structure of the transverse super-large sunshade photovoltaic decorative wing for the unitized curtain wall according to claim 1 is characterized in that: The two unitized male columns (1) are arranged on the inner side of the unitized columns, and the two unitized female columns (2) are arranged on the outer side of the unitized columns. The two decorative wing bracket connectors (10) of each set of solar photovoltaic decorative wing panels are respectively fixedly connected to the two unitized male columns (1) on one side close to the unitized female columns (2) by machine screws.

3. The node structure of the transverse super-large sunshade photovoltaic decorative wing for the unitized curtain wall according to claim 2 is characterized in that: The decorative wing rear cross beam (13) is arranged at one end of the two decorative wing corbel connectors (10) close to the unit column, and the decorative wing front cross beam (12) is arranged at one end of the two decorative wing corbel connectors (10) away from the unit column. The decorative wing rear cross beam (13) and the decorative wing front cross beam (12) are both fixedly connected to the two decorative wing corbel connectors (10) by machine screws.

4. The node structure of the transverse super-large sunshade photovoltaic decorative wing for the unitized curtain wall according to claim 3 is characterized in that: Photovoltaic glass edge guards (16) are arranged between the two sides of the photovoltaic glass (15) and the two decorative wing bracket connectors (10); a transverse decorative grille (18) is arranged between the upper crossbeam (3) and the first middle crossbeam (4), and the transverse decorative grille (18) is located between the two unit-type columns; a unit upper cross decorative line hanger (17) is arranged above the transverse decorative grille (18) and above the photovoltaic glass (15); a first upper cross decorative line (6) and a second upper cross decorative line (7) are hung on the unit upper cross decorative line hanger (17); a first middle cross decorative line (8) is arranged outside the first middle crossbeam (4) and above the photovoltaic glass (15); and a second middle cross decorative line (9) is arranged outside the second middle crossbeam (11) and above the photovoltaic glass (15).

5. The node structure of the transverse super-large sunshade photovoltaic decorative wing for the unitized curtain wall according to claim 4, characterized in that: A glass auxiliary frame (19) is arranged on the outside of the photovoltaic glass (15), and the glass auxiliary frame (19) is hung with the front crossbeam (12) of the decorative wing and the rear crossbeam (13) of the decorative wing.

6. The node structure of the transverse super-large sunshade photovoltaic decorative wing for the unitized curtain wall according to claim 5, characterized in that: An aluminum plate (20) is arranged between the upper crossbeam (3) and the first middle crossbeam (4), a first glass plate (22) is arranged between the first middle crossbeam (4) and the second middle crossbeam (11), a second glass plate (23) is arranged below the second middle crossbeam (11), and the lower end of the second glass plate (23) is arranged in front of the lower crossbeam (5).

7. The node structure of the transverse super-large sunshade photovoltaic decorative wing for the unitized curtain wall according to claim 6, characterized in that: First vertical buckle covers are respectively arranged between the two sides of the aluminum plate (20) and the unitized columns, second vertical buckle covers are respectively arranged between the two sides of the first glass plate (22) and the unitized columns, and third vertical buckle covers are respectively arranged between the two sides of the second glass plate (23) and the unitized columns.