Building curtain wall based on solar radiation intensity
By designing the combined structure of the lower connecting rod, installation block, limit block and sleeve, the problems of inconvenient installation and poor limiting effect of the sun visor are solved, convenient installation and effective limit of the sun visor are achieved, and the aesthetics and economics of the building curtain wall are improved.
Patent Information
- Application Number
- CN202422394696.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-29
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-09-29
AI Technical Summary
The installation method of existing building curtain walls has problems such as inconvenient installation and poor limiting effect, especially the nut connection method causes angle deviation, and the spline structure increases processing difficulty and cost.
The structural design of the first fixing assembly and the second fixing assembly is adopted, including a combination of a lower connecting rod, a mounting block, a limiting block, a mounting plate and a sleeve. The angle adjustment and limiting of the sun visor are realized through the coordination of the limiting block and the special-shaped hole, and the connection of the positioning nails and threaded parts is used to improve the installation convenience and limiting effect.
It realizes convenient installation and effective limit of the sun visor, reduces installation difficulty, and improves the angle positioning accuracy and overall aesthetics of the sun visor.
Smart Images

Figure CN223240904U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to an outdoor sunshade curtain wall, in particular to a building curtain wall based on solar radiation intensity. Background Art
[0002] In order to block external sunlight and prevent it from directly penetrating the glass into the interior, current buildings install sun visors on the outside of the glass curtain wall. During installation, the sun visors are vertically positioned and spaced apart on the outside of the glass curtain wall. The ends of the sun visors are fixed to the main building structure via a mounting frame. Furthermore, to adjust the angle of the sun visor, the sun visor is connected to the mounting frame primarily through two fixing methods. The first method uses nuts to connect the two ends of the sun visor through the mounting frame and then connect the fixing nuts. The height and angle of the sun visor are limited by tightening the fixing nuts on both sides of the mounting frame, achieving a fixed effect. However, this connection method does not, on the one hand, provide a rigid limit on the sun visor, meaning that the sun visor is prone to angle deviation after long-term use, thus affecting its shading effect. On the other hand, once any sun visor is positioned at an angle, it is difficult for other sun visors to be installed with reference to the angle of that sun visor, increasing the difficulty of installing the sun visor.
[0003] The second connection method uses a spline structure, which involves installing splines at both ends of the sun visor and creating corresponding spline grooves on the external mounting frame. These interlocking splines achieve an angular positioning effect. While this connection method can avoid angular deviation of the sun visor, the spline structure increases the difficulty and precision of machining the mounting parts, thereby increasing the overall cost of the facility and failing to meet the manufacturer's economic needs.
[0004] Therefore, the existing installation method of the sunshade panel on the outdoor sunshade curtain wall has the problems of inconvenient installation and poor limiting effect. Utility Model Content
[0005] The purpose of the utility model is to provide a building curtain wall based on solar radiation intensity, which has the characteristics of good limiting effect and convenient installation.
[0006] The technical solution of the utility model: a building curtain wall based on solar radiation intensity, including a plurality of mounting platforms distributed side by side on the building wall along the height direction, sun visors are connected between adjacent mounting platforms, the number of sun visors is multiple and spaced apart along the length direction of the mounting platform, the lower end of the sun visor is connected to the mounting platform via a first fixing component, and the upper end of the sun visor is connected to the mounting platform via a second fixing component; the first fixing component includes a lower connecting rod fixedly connected to the bottom of the sun visor, the lower end of the lower connecting rod is snap-connected with a mounting block, the lower end of the mounting block is threadedly connected to a limiting block, the lower end of the limiting block is snap-connected to the mounting platform, a mounting plate is connected between the mounting block and the limiting block, and the outside of the mounting plate is detachably connected to the mounting platform.
[0007] In the aforementioned building curtain wall based on solar radiation intensity, a sleeve connected to a limit block is provided on the mounting platform, the limit block and the sleeve are nested inside and outside, a threaded part is provided on the mounting platform outside the limit block, and the outside of the mounting plate is connected to the mounting platform via a threaded bolt.
[0008] In the aforementioned building curtain wall based on solar radiation intensity, the mounting block is buckled and connected to the lower connecting rod via the special-shaped groove, and the lower connecting rod and the mounting block are rotated and limited to each other after being buckled.
[0009] In the aforementioned building curtain wall based on solar radiation intensity, the middle part of the sleeve is snap-fitted to the mounting platform through a special-shaped hole, and a positioning pin is connected to the bottom of the special-shaped groove. The end of the positioning pin passes through the mounting block and is fixedly connected to the limit block.
[0010] In the aforementioned building curtain wall based on solar radiation intensity, the second fixing component includes an upper connecting rod fixedly connected to the top of the sun visor, the upper end of the upper connecting rod is slidably connected to a connecting flange, the middle part of the connecting flange forms a through hole for snap-fitting and connecting the upper connecting rod, the top of the through hole forms a sliding groove for the upper connecting rod to slide and lift, and the outside of the connecting flange is connected to the mounting platform via threaded bolts.
[0011] In the aforementioned building curtain wall based on solar radiation intensity, the installation platform is formed by splicing profiles, the inner end of the installation platform is fixedly connected to the building exterior wall, and an inspection channel for maintenance is formed between the sun visor and the building exterior wall.
[0012] In the aforementioned building curtain wall based on solar radiation intensity, the outer end of the installation platform is fixedly connected to the glass curtain wall via a curtain wall connector.
[0013] Compared with the prior art, the present invention has the following features:
[0014] (1) The present invention defines the structure of the first fixing assembly so that when the sun visor is adjusted in angle, the limiting block can be loosened to allow the mounting block to rotate synchronously with the sun visor; and when the angle of the sun visor is positioned, the operator can tighten the limiting block to connect and fix it with the mounting block and the mounting plate, and use the mounting plate to fix the first fixing assembly to the mounting platform, thereby achieving angle limitation of the sun visor; on this basis, when any first fixing assembly is positioned in angle, the operator can also take out the first fixing assembly and adjust the angles of other first fixing assemblies based on the first fixing assembly, so that the remaining sun visors can be quickly positioned by the first fixing assembly, that is, the convenience of installing the sun visor is improved;
[0015] (2) Through the structural coordination of the sleeve and the limit block, as well as the coordination setting of the positioning pin, the limit block can also be raised and lowered in the special-shaped hole as the mounting block rotates; and after the angle of the mounting block is positioned, the operator can remove the first fixing component and insert the positioning pin, thereby using the positioning pin to fix the angle between the mounting block and the limit block, and using the coordination of the special-shaped hole and the limit block to achieve a hard limit on the mounting block, thereby improving the limiting effect of the sun visor;
[0016] (3) By coordinating the second fixing assembly and the installation platform, the sun visor can be raised and lowered during the installation of the first fixing assembly, further improving the convenience of disassembling and assembling the first fixing assembly; by limiting the structure of the installation platform and the glass curtain wall, the facade of the building wall can also form a glass curtain wall structure, thereby improving the aesthetics of the sun visor after installation;
[0017] Therefore, the utility model has the characteristics of good limiting effect and convenient installation. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a structural diagram of the utility model;
[0019] Figure 2 is a schematic structural diagram of the first fixing assembly in Example 1;
[0020] Figure 3 is a schematic structural diagram of the second fixing assembly in Example 1 and Example 2;
[0021] Figure 4 is a schematic structural diagram of the first fixing assembly in Example 2;
[0022] Figure 5 This is a cross-sectional view of Example 2.
[0023] The marks in the accompanying drawings are: 1-installation platform, 2-sun visor, 3-lower connecting rod, 4-installation block, 5-limit block, 6-installation plate, 7-sleeve, 8-threaded part, 9-positioning pin, 10-upper connecting rod, 11-connecting flange, 12-maintenance passage, 13-glass curtain wall, 401-special-shaped groove, 701-special-shaped hole. DETAILED DESCRIPTION
[0024] The present invention will be further described below with reference to the accompanying drawings and embodiments, but they are not intended to limit the present invention.
[0025] Example 1. A building curtain wall based on solar radiation intensity, comprising: Figure 1-3 As shown, it includes multiple mounting platforms 1 distributed side by side on the building wall along the height direction, and sun visors 2 are connected between adjacent mounting platforms 1. The number of sun visors 2 is multiple and they are spaced apart along the length direction of the mounting platform 1. The lower end of the sun visor 2 is connected to the mounting platform 1 via a first fixing component, and the upper end of the sun visor 2 is connected to the mounting platform 1 via a second fixing component; the first fixing component includes a lower connecting rod 3 fixedly connected to the bottom of the sun visor 2, the lower end of the lower connecting rod 3 is snap-connected with a mounting block 4, the lower end of the mounting block 4 is threadedly connected to a limiting block 5, the lower end of the limiting block 5 is snap-connected to the mounting platform 1, a mounting plate 6 is snap-connected between the mounting block 4 and the limiting block 5, and the outside of the mounting plate 6 is detachably connected to the mounting platform 1.
[0026] The mounting platform 1 is provided with a sleeve 7 connected to the limit block 5, and the limit block 5 and the sleeve 7 are nested inside and outside. A threaded part 8 is provided on the mounting platform 1 outside the limit block 5, and the outside of the mounting plate 6 is bolted to the mounting platform 1 via the threaded part 8.
[0027] The mounting block 4 is buckled and connected to the lower connecting rod 3 via a special-shaped groove 401. The special-shaped groove 401 can be a polygonal groove. After being buckled, the lower connecting rod 3 and the mounting block 4 are rotated and limited to each other.
[0028] The limit block 5 is made of nylon, and the middle part of the sleeve 7 is snap-fitted and connected to the limit block 5 through the special-shaped hole 701. The bottom of the special-shaped groove 401 is connected with a positioning pin 9. The end of the positioning pin 9 passes through the mounting block 4 and is fixedly connected to the limit block 5. The mounting block 4 is provided with a through hole that cooperates with the positioning pin 9; the positioning pin 9 is matched on site after the installation angle of the mounting block 4 is determined.
[0029] The second fixing component includes an upper connecting rod 10 fixedly connected to the top of the sun visor 2, and the upper end of the upper connecting rod 10 is slidably connected to a connecting flange 11. The middle part of the connecting flange 11 forms a through hole for snap-fitting and connecting the upper connecting rod 10, and the top of the through hole forms a sliding groove for the upper connecting rod 10 to slide and lift. The outside of the connecting flange 11 is bolted to the mounting platform 1 via a threaded member 8.
[0030] During installation of this embodiment, the operator first connects the mounting block 4, the stop block 5, and the mounting plate 6 to form a single-piece first fixing assembly. The stop block 5 and the mounting block 4 are loosely connected, allowing the mounting block 4 to rotate freely on the mounting plate 6. After assembling the first fixing assembly, the operator bolts the connecting flange 11 to the upper mounting platform 1. The operator then fastens the upper end of the sun visor 2 to the connecting flange 11 via the upper connecting rod 10. The operator then lifts the sun visor 2 and inserts the first fixing assembly into the irregularly shaped hole 701 below the sun visor 2. Finally, the sun visor 2 is lowered, allowing the lower connecting rod 3 to be inserted into the irregularly shaped groove 401.
[0031] After the sun visor 2 is installed, the operator adjusts the angle of the sun visor 2 on the mounting platform 1 as needed. The sun visor 2 rotates, driving the mounting block 4 in sync with its rotation. The stop block 5, held in place by the shaped hole 701, rises and falls with the rotation of the mounting block 4. Once the mounting block 4 is in position, the operator lifts the sun visor 2, removes the first fixing assembly, and then drives the locating pins 9 directly into the mounting block 4 and the stop block 5. This pin 9 secures the rotational position of the two, preventing relative rotation between the mounting block 4 and the stop block 5.
[0032] Once the first fixing assembly is determined, the operator can assemble the remaining first fixing assemblies according to the limiting angle of the first fixing assembly, so that the relative angles of the mounting block 4 and the limiting block 5 in each first fixing assembly are consistent. After the first fixing assemblies are assembled, the operator re-inserts the first fixing assembly into the sleeve 7 in the above manner and completes the buckling of the sun visor 2, thereby achieving the installation and angle limiting functions of the sun visor 2.
[0033] Example 2. A building curtain wall based on solar radiation intensity, comprising: Figure 1 、 3 As shown in , 4 and 5, it includes a plurality of mounting platforms 1 distributed side by side on the building wall along the height direction, and sun visors 2 are connected between adjacent mounting platforms 1. The number of sun visors 2 is multiple and they are spaced apart along the length direction of the mounting platform 1. The lower end of the sun visor 2 is connected to the mounting platform 1 via a first fixing component, and the upper end of the sun visor 2 is connected to the mounting platform 1 via a second fixing component; the first fixing component includes a lower connecting rod 3 fixedly connected to the bottom of the sun visor 2, the lower end of the lower connecting rod 3 is snap-connected with a mounting block 4, the lower end of the mounting block 4 is threadedly connected to a limiting block 5, the lower end of the limiting block 5 is snap-connected with the mounting platform 1, a mounting plate 6 is snap-connected between the mounting block 4 and the limiting block 5, the outside of the mounting plate 6 is detachably connected to the mounting platform 1, and a spring washer can be installed between the mounting plate 6 and the limiting block 5 as needed.
[0034] A sleeve 7 is provided on the mounting platform 1 for rotatably connecting the limit block 5. The middle part of the sleeve 7 is interlocked with the limit block 5 through a circular hole passing through it. The limit block 5 and the sleeve 7 are nested inside and outside. A threaded part 8 is provided on the mounting platform 1 outside the limit block 5. The outside of the mounting plate 6 is bolted to the mounting platform 1 via the threaded part 8.
[0035] The mounting block 4 is buckled and connected to the lower connecting rod 3 via a special-shaped groove 401. The special-shaped groove 401 can be a polygonal groove. After being buckled, the lower connecting rod 3 and the mounting block 4 are rotated and limited to each other.
[0036] The second fixing component includes an upper connecting rod 10 fixedly connected to the top of the sun visor 2, and the upper end of the upper connecting rod 10 is slidably connected to a connecting flange 11. The middle part of the connecting flange 11 forms a through hole for snap-fitting and connecting the upper connecting rod 10, and the top of the through hole forms a sliding groove for the upper connecting rod 10 to slide and lift. The outside of the connecting flange 11 is bolted to the mounting platform 1 via a threaded member 8.
[0037] The installation platform 1 is formed by splicing profiles, and the inner end of the installation platform 1 is fixedly connected to the outer wall of the building. An inspection channel 12 for maintenance is formed between the sun visor 2 and the outer wall of the building.
[0038] The outer end of the installation platform 1 is fixedly connected to the glass curtain wall 13 via a curtain wall connector.
[0039] Compared to Example 1, this embodiment rotates the stopper block 5 within the sleeve 7 and removes the positioning pins 9 between the mounting block 4 and the stopper block 5. This allows the mounting block 4 to be positioned after its angle is set by tightening the stopper block 5 to squeeze and limit the position between the mounting block 4 and the mounting plate 6, thereby utilizing the mounting plate 6 to limit the angle of the mounting block 4. Furthermore, the provision of the glass curtain wall 13 not only improves the aesthetics of the building's exterior, but also protects the sun visor 2 from displacement caused by external impacts.
[0040] When the angle of the sun visor needs to be adjusted later, the operator can directly rotate the sun visor, which facilitates the operator's secondary adjustment of the sun visor.
Claims
1. A building curtain wall based on solar radiation intensity, characterized by: The invention comprises a plurality of mounting platforms (1) distributed side by side on a building wall along a height direction, sun visors (2) are connected between adjacent mounting platforms (1), the number of sun visors (2) is multiple and spaced apart along the length direction of the mounting platform (1), the lower end of the sun visor (2) is connected to the mounting platform (1) via a first fixing component, and the upper end of the sun visor (2) is connected to the mounting platform (1) via a second fixing component; the first fixing component comprises a lower connecting rod (3) fixedly connected to the bottom of the sun visor (2), the lower end of the lower connecting rod (3) is buckled and connected to a mounting block (4), the lower end of the mounting block (4) is threadedly connected to a limit block (5), the lower end of the limit block (5) is buckled and connected to the mounting platform (1), a mounting plate (6) is connected between the mounting block (4) and the limit block (5), and the outside of the mounting plate (6) is detachably connected to the mounting platform (1).
2. The building curtain wall based on solar radiation intensity according to claim 1, characterized in that: The mounting platform (1) is provided with a sleeve (7) connected to the limit block (5), the limit block (5) and the sleeve (7) are nested inside and outside, a threaded member (8) is provided on the mounting platform (1) outside the limit block (5), and the outside of the mounting plate (6) is bolted to the mounting platform (1) via the threaded member (8).
3. The building curtain wall based on solar radiation intensity according to claim 2, characterized in that: The mounting block (4) is buckled and connected to the lower connecting rod (3) via the special-shaped groove (401); the lower connecting rod (3) and the mounting block (4) are mutually rotated and limited after being buckled.
4. The building curtain wall based on solar radiation intensity according to claim 3, characterized in that: The middle portion of the sleeve (7) is buckled and connected to the limiting block (5) through the special-shaped hole (701), and the bottom of the special-shaped groove (401) is connected to a positioning pin (9), and the end of the positioning pin (9) passes through the mounting block (4) and is fixedly connected to the limiting block (5).
5. The building curtain wall based on solar radiation intensity according to claim 2, characterized in that: The second fixing assembly includes an upper connecting rod (10) fixedly connected to the top of the sun visor (2), the upper end of the upper connecting rod (10) is slidably connected to a connecting flange (11), the middle of the connecting flange (11) forms a through hole for snap-fitting and connecting the upper connecting rod (10), the top of the through hole forms a sliding groove for the upper connecting rod (10) to slide and rise, and the outside of the connecting flange (11) is bolted to the mounting platform (1) via a threaded member (8).
6. The building curtain wall based on solar radiation intensity according to claim 1, characterized in that: The installation platform (1) is formed by splicing profiles, and the inner end of the installation platform (1) is fixedly connected to the building exterior wall, and an inspection channel (12) for inspection is formed between the sunshade (2) and the building exterior wall.
7. The building curtain wall based on solar radiation intensity according to claim 6, characterized in that: The outer end of the installation platform (1) is fixedly connected to a glass curtain wall (13) via a curtain wall connector.