A hyperbolic wind chime type sunshade system

By designing a hyperbolic wind chime-type sunshade system with hyperbolic diamond louvers and transmission connecting rod drive device, the wind resistance problem of sunshade curtain wall under strong wind is solved, and the sunlight intensity is adjusted, improving the stability and functionality of the sunshade system.

CN116591589BActive Publication Date: 2025-08-01SHANGHAI YUEBAI SHADING TECH CO LTD
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Patent Information

Application Number
CN202310562835.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-18
Publication Date
2025-08-01
Estimated Expiration
2043-05-18

AI Technical Summary

Technical Problem

The existing aluminum veneer sunshade curtain walls are subject to high pressure under strong winds and cannot adjust the sunlight intensity.

Method used

A hyperbolic wind chime-type sunshade system is designed, using hyperbolic diamond louvers, connected to the drive device through a transmission link, each louver can rotate 0-90 degrees, and the louver can be automatically adjusted in strong winds by using a wind sensing device to reduce wind resistance, and automatic adjustment of louvers is achieved through motor drive.

Benefits of technology

It effectively reduces the wind resistance of strong winds to the curtain wall, realizes adjustment of sunlight intensity, and improves the stability and functionality of the sunshade system.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a hyperbolic wind chime type sunshade system, which includes a mounting frame for louvers arranged outside the curtain wall. A plurality of cross beams are horizontally arranged in the mounting frame. A plurality of support rods are vertically arranged on the outer surface of each cross beam. Each support rod corresponds to a hyperbolic louver. The upper and lower adjacent hyperbolic louvers are connected by the same transmission connecting rod and are spaced apart. The upper and lower adjacent hyperbolic louvers on the adjacent transmission connecting rods are staggered. One end of a driving device is connected to the upper part of each transmission connecting rod, and the other end of the driving device is connected to the support rod on the mounting frame. The hyperbolic louver is a hyperbolic rhombus louver. The left and right sides of the hyperbolic louver are curved surfaces that bend towards the curtain wall. The upper and lower ends of the hyperbolic louver are curved surfaces that tilt away from the curtain wall and the middle part is parallel to the curtain wall or concave towards the curtain wall, so as to reduce wind resistance.
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Description

Technical Field

[0001] The present invention relates to the technical field of shutter installation, and more specifically, to a hyperbolic wind chime type sunshade system. Background Art

[0002] A curtain wall is the exterior enclosure of a building, which does not bear weight and is hung like a curtain, so it is also called a "curtain wall". It is a lightweight wall with a decorative effect commonly used in modern large-scale and high-rise buildings. It consists of a panel and a support structure system, and can have a certain displacement ability relative to the main structure or have a certain deformation ability itself, and does not bear the action of the main structure. The building exterior enclosure structure or decorative structure (the exterior wall frame support system is also a type of curtain wall system).

[0003] A curtain wall uses various strong, light and beautiful building materials to replace the traditional exterior wall construction method of bricks and stones or the combination of windows and walls. It surrounds the main structure and makes the whole building beautiful, with sound use functions and safety. In short, it is to put a beautiful coat on the building. The scope of the curtain wall mainly includes the exterior wall, daylighting roof (cover) and awning of the building.

[0004] The previous aluminum single-panel sunshade curtain wall has no curved surface effect, will bear greater pressure for strong winds, and cannot adjust the intensity of sunlight. For example, the patent number CN206829450U discloses a hyperbolic aluminum single-panel sunshade curtain wall, and curved aluminum plates are welded on both sides of the aluminum single panel. This kind of utility model can bear greater pressure and has an adjustment effect on the sunlight intensity. Just looking at the outer surface, this is just a single-curved shutter. Therefore, there will still be problems of bearing greater pressure for strong winds and being unable to adjust the intensity of sunlight. Summary of the Invention

[0005] In view of this, in order to solve the problems that the shutters of the existing curtain wall shutters will bear greater pressure for strong winds and cannot adjust the intensity of sunlight, the present invention proposes a hyperbolic wind chime type sunshade system, which includes an installation frame 1 for shutters arranged outside the curtain wall. A plurality of cross beams 2 are horizontally arranged in the installation frame 1. A plurality of support rods 3 are vertically arranged on the outer surface of each cross beam 2. Each support rod 3 corresponds to a hyperbolic shutter 4. The adjacent upper and lower hyperbolic shutters 4 are connected by the same transmission link 5 and are arranged at intervals. The adjacent upper and lower hyperbolic shutters 4 on the adjacent transmission links 5 are arranged staggeredly. One end of a driving device 6 is connected to the upper part of each transmission link 5, and the other end of the driving device 6 is connected to the support rod 3 on the installation frame 1. The hyperbolic shutter 4 is a hyperbolic rhombus shutter. The left and right sides of the hyperbolic shutter 4 are curved surfaces bending towards the curtain wall. The upper and lower ends of the hyperbolic shutter 4 are curved surfaces tilting away from the curtain wall and the middle part is parallel to the curtain wall or concave towards the curtain wall, so as to reduce the wind resistance.

[0006] A hyperboloid wind chime type sunshade system, including a mounting rack 1 for louvers arranged outside the curtain wall, is characterized in that: a plurality of cross beams 2 are horizontally arranged in the mounting rack 1, a plurality of support rods 3 are vertically arranged on the outer surface of each cross beam 2, each support rod 3 corresponds to a hyperboloid louver 4, the upper and lower adjacent hyperboloid louvers 4 are connected by the same transmission connecting rod 5 and the upper and lower adjacent hyperboloid louvers 4 are arranged at intervals, the upper and lower adjacent hyperboloid louvers 4 on the adjacent transmission connecting rods 5 are arranged staggeredly, one end of a driving device 6 is connected to the upper part of each transmission connecting rod 5, the other end of the driving device 6 is connected to the support rod 3 on the mounting rack 1, the hyperboloid louver 4 is a hyperboloid rhombus louver, the left and right sides of the hyperboloid louver 4 are curved surfaces bending towards the curtain wall, the upper and lower ends of the hyperboloid louver 4 are curved surfaces tilting away from the curtain wall and the middle part is parallel to the curtain wall or concave towards the curtain wall, so as to reduce wind resistance.

[0007] Further, the length and width of the hyperboloid louver 4 are both 700 - 900 mm.

[0008] Further, upper and lower parts of the surface of the hyperboloid louver 4 close to the cross beam 2 are respectively provided with louver seats oppositely, and the louver seats are sleeved with the transmission connecting rod 5.

[0009] Further, the side surface of the louver seat and the transmission connecting rod 5 are detachably connected by screws.

[0010] Further, the rotation angle of the hyperboloid louver 4 is 0 - 90 degrees.

[0011] Further, all the hyperboloid louvers 4 rotate the same angle during the movement process, so as to avoid interference between adjacent louvers.

[0012] In some embodiments, a fixed support 7 is provided at the connection between the support rod 3 and the hyperboloid louver 4 connected thereto, the fixed support 7 includes a connection seat 8 and a seat cover 9, one end of the connection seat 8 is fixed to the support rod 3 close to it, the other end of the connection seat 8 and the seat cover 9 are detachably connected by screws, first installation grooves are respectively provided in the upper and lower parts of the connection seat 8, second installation grooves 11 are provided at positions corresponding to the first installation grooves on the seat cover 9, and the transmission connecting rod 5 connected to the fixed support 7 is placed in the groove body formed by the first installation grooves and the second installation grooves 11.

[0013] Further, first bearings 12 are respectively provided in the first installation grooves, the first bearings 12 are sleeved with the transmission connecting rod 5 connected to the fixed support 7, and since the volume and mass of the hyperboloid louver 4 are both large, the friction force of the transmission connecting rod 5 in the fixed support 7 is reduced.

[0014] In some embodiments, the driving device 6 includes a motor 61 and a driving arm 62, one end of the motor 61 is connected to the support rod 3 closest to it, and the other end is rotatably connected to the driving arm 62, which is used to drive the driving arm 62 to rotate through the movement of the driving shaft of the motor 61, thereby driving the transmission connecting rod 5 to rotate.

[0015] Furthermore, an L-connector 65 is provided on the support rod 3 connected to the motor 61 , and one end of the motor 61 is connected to the support rod 3 closest to it through the L-connector 65 .

[0016] Furthermore, the support rod 3 connected to the motor 61 is a concave groove facing horizontally toward the mouth, and the motor 61 and the L-connecting member 65 are both placed in the concave groove to protect the motor 61.

[0017] Furthermore, the driving arm 62 is an arc-shaped corner piece, which includes two bending heads 63 bent toward the hyperbolic blind 4 and a connecting plate 64 connecting the two bending heads 63. One end of the two bending heads 63 is rotatably connected to the driving shaft of the motor 61 through a connecting rod, and the other end of the two bending heads 63 is socketed with the transmission connecting rod 5. The setting of the arc-shaped corner piece can increase the movement stroke of the driving shaft of the entire motor 61, thereby reducing the volume of the entire shading system.

[0018] Furthermore, the connecting plate 64 and the transmission connecting rod 5 are detachably connected via screws.

[0019] In some embodiments, wind sensing devices are installed at the four corners of the curtain wall, and the wind sensing devices are electrically connected to the motor 61. The wind sensing device can set a threshold. When the external wind force reaches the set threshold, the wind sensing device receives the signal and transmits it to the motor 61. The operation of the motor 61 drives the hyperbolic blinds 4 to rotate, thereby automatically releasing wind pressure.

[0020] The beneficial effect of the present invention is as follows: the present invention proposes a hyperbolic wind chime type sunshade system, comprising a mounting frame 1 for blinds arranged outside the curtain wall, a plurality of cross beams 2 are horizontally arranged in the mounting frame 1, and a plurality of support rods 3 are vertically arranged on the outer surface of each cross beam 2, each support rod 3 corresponds to a hyperbolic blind 4, and the upper and lower adjacent hyperbolic blinds 4 are connected by the same transmission connecting rod 5 and the upper and lower adjacent hyperbolic blinds 4 are arranged at intervals, and the upper and lower adjacent hyperbolic blinds 4 on adjacent transmission connecting rods 5 are staggered, and the upper part of each transmission connecting rod 5 is connected to one end of a driving device 6, and the other end of the driving device 6 is connected to the support rod 3 on the mounting frame 1, the hyperbolic blind 4 is a hyperbolic diamond blind, and the left and right sides of the hyperbolic blind 4 are curved surfaces curved toward the curtain wall, and the upper and lower ends of the hyperbolic blind 4 are curved surfaces that are tilted away from the curtain wall and the middle end is parallel to the curtain wall or concave toward the curtain wall, so as to reduce wind resistance. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 This is the structural diagram of the opening state of the hyperbolic wind chime type sunshade system of the present invention.

[0022] Figure 2 This is the top view of the closing state of the driving end of the hyperbolic wind chime type sunshade system of the present invention.

[0023] Figure 3 This is the front view of the closing state of the hyperbolic wind chime type sunshade system of the present invention.

[0024] Figure 4 This is the side view of the closing state of the hyperbolic wind chime type sunshade system of the present invention.

[0025] Figure 5 This is the structural diagram of the hyperbolic wind chime type sunshade system of the present invention.

[0026] Figure 6 This is the exploded view of the fixed seat of the hyperbolic wind chime type sunshade system of the present invention.

[0027] Figure 7 This is the structural diagram of the hyperbolic louvers of the hyperbolic wind chime type sunshade system of the present invention.

[0028] Figure 8 This is the side view of the opening state of the hyperbolic wind chime type sunshade system of the present invention.

[0029] Description of main component symbols

[0030] Mounting bracket 1 Cross beam 2 Support rod 3 Hyperbolic louvers 4 Drive connecting rod 5 Drive device 6 Motor 61 Drive arm 62 Bending elbow 63 Connecting plate 64 L-shaped connector 65 Fixed support 7 Connection seat 8 Seat cover 9 Second mounting groove 11 First bearing 12

[0031] The following specific embodiments will further illustrate the present invention in conjunction with the above-mentioned drawings. Specific embodiments

[0032] As Figure 1 shown, this is the structural diagram of the opening state of the hyperbolic wind chime type sunshade system of the present invention; as Figure 2 shown, this is the top view of the closing state of the driving end of the hyperbolic wind chime type sunshade system of the present invention; as Figure 3 shown, this is the front view of the closing state of the hyperbolic wind chime type sunshade system of the present invention; as Figure 4 shown, this is the side view of the closing state of the hyperbolic wind chime type sunshade system of the present invention; as Figure 8 shown, this is the side view of the opening state of the hyperbolic wind chime type sunshade system of the present invention; as Figure 7 shown, this is the structural diagram of the hyperbolic louvers of the hyperbolic wind chime type sunshade system of the present invention.

[0033] A hyperbolic wind chime type sunshade system, comprising a mounting rack 1 for louvers arranged outside a curtain wall. A plurality of cross beams 2 are horizontally arranged inside the mounting rack 1. A plurality of support rods 3 are vertically arranged on the outer surface of each cross beam 2. Each support rod 3 corresponds to a hyperbolic louver 4. The upper and lower adjacent hyperbolic louvers 4 are connected by the same transmission connecting rod 5 and the upper and lower adjacent hyperbolic louvers 4 are arranged at intervals. The upper and lower adjacent hyperbolic louvers 4 on adjacent transmission connecting rods 5 are arranged staggeredly. One end of a driving device 6 is connected to the upper part of each transmission connecting rod 5, and the other end of the driving device 6 is connected to the support rod 3 on the mounting rack 1. The hyperbolic louver 4 is a hyperbolic rhombic louver. The left and right sides of the hyperbolic louver 4 are curved surfaces bending towards the curtain wall. The upper and lower ends of the hyperbolic louver 4 are curved surfaces tilting away from the curtain wall and the middle part is parallel to the curtain wall or concave towards the curtain wall, so as to reduce wind resistance.

[0034] The length and width of the hyperbolic louver 4 are both 700 - 900 mm.

[0035] As Figure 5 shown, it is the structure diagram of the hyperbolic wind chime type sunshade system of the present invention.

[0036] Upper and lower parts of the side of the hyperbolic louver 4 close to the cross beam 2 are respectively provided with louver seats oppositely. The louver seats are sleeved with the transmission connecting rod 5. The side surface of the louver seat and the transmission connecting rod 5 are detachably connected by screws. The rotation angle of the hyperbolic louver 4 is 0 - 90 degrees. All the hyperbolic louvers 4 rotate the same angle during the movement, so as to avoid interference between adjacent louvers.

[0037] As Figure 6 shown, it is the exploded view of the fixed seat of the hyperbolic wind chime type sunshade system of the present invention.

[0038] A fixed support 7 is provided at the connection between the support rod 3 and the hyperbolic louvers 4 connected thereto. The fixed support 7 includes a connecting seat 8 and a seat cover 9. One end of the connecting seat 8 is fixed to the support rod 3 close to it, and the other end of the connecting seat 8 and the seat cover 9 are detachably connected by screws. First mounting grooves are provided in both the upper and lower parts of the connecting seat 8. Second mounting grooves 11 are provided at the positions of the seat cover 9 corresponding to the first mounting grooves. The transmission link 5 connected to the fixed support 7 is placed in the groove body formed by the first mounting grooves and the second mounting grooves 11. First bearings 12 are provided in the first mounting grooves. The first bearings 12 are sleeved on the transmission link 5 connected to the fixed support 7. Since the volume and mass of the hyperbolic louvers 4 are relatively large, the friction force of the transmission link 5 in the fixed support 7 is reduced. The driving device 6 includes a motor 61 and a driving arm 62. One end of the motor 61 is connected to the support rod 3 closest to it, and the other end is rotatably connected to the driving arm 62, for driving the driving arm 62 to rotate through the movement of the driving shaft of the motor 61, thereby driving the transmission link 5 to rotate. An L-shaped connector 65 is provided on the support rod 3 connecting the motor 61, and through the L-shaped connector 65, one end of the motor 61 is connected to the support rod 3 closest to it.

[0039] The support rod 3 connecting the motor 61 is a concave groove with a horizontal opening. The motor 61 and the L-shaped connector 65 are both placed in the concave groove to protect the motor 61. The driving arm 62 is an arc-shaped angle piece. The driving arm 62 includes two bent heads 63 bent towards the hyperbolic louvers 4 and a connecting plate 64 connecting the two bent heads 63. One ends of the two bent heads 63 are rotatably connected to the driving shaft of the motor 61 through a connecting rod, and the other ends of the two bent heads 63 are sleeved on the transmission link 5. The setting of the arc-shaped angle piece can increase the movement stroke of the driving shaft of the entire motor 61, thereby playing a role in reducing the volume of the entire sunshade system. The connecting plate 64 and the transmission link 5 are detachably connected by screws.

[0040] Wind sensing devices are installed at the four corners of the curtain wall. The wind sensing devices are electrically connected to the motor 61. The wind sensing devices can set thresholds. When the external wind force reaches the set threshold, after receiving the signal, the wind sensing devices transmit it to the motor 61, and the motor 61 operates to drive the hyperbolic louvers 4 to rotate, playing a role in automatically discharging wind pressure.

[0041] The beneficial effects of the present invention are as follows: The present invention provides a hyperbolic wind chime type sunshade system, which includes a mounting frame 1 for louvers arranged outside the curtain wall. A plurality of cross beams 2 are horizontally arranged inside the mounting frame 1. A plurality of support rods 3 are vertically arranged on the outer surface of each cross beam 2. Each support rod 3 corresponds to a hyperbolic louver 4. The upper and lower adjacent hyperbolic louvers 4 are connected by the same transmission connecting rod 5 and are arranged at intervals. The upper and lower adjacent hyperbolic louvers 4 on adjacent transmission connecting rods 5 are staggered. One end of a driving device 6 is connected to the upper part of each transmission connecting rod 5, and the other end of the driving device 6 is connected to the support rod 3 on the mounting frame 1. The hyperbolic louver 4 is a hyperbolic rhombic louver. The left and right sides of the hyperbolic louver 4 are curved surfaces bending towards the curtain wall. The upper and lower ends of the hyperbolic louver 4 are curved surfaces tilting away from the curtain wall and the middle part is parallel to the curtain wall or concave towards the curtain wall, so as to reduce wind resistance.

[0042] The above embodiments only represent several implementation manners of the present invention. The description is relatively specific and detailed, but it should not be construed as a limitation on the scope of the present invention patent. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present invention, several deformations and improvements can still be made, and these all belong to the protection scope of the present invention. Therefore, the protection scope of the present invention patent should be subject to the appended claims.

Claims

1. A hyperbolic wind chime type sunshade system, comprising a louver mounting frame (1) arranged outside the curtain wall, characterized in that: A plurality of cross beams (2) are horizontally arranged inside the mounting frame (1). A plurality of support rods (3) are vertically arranged on the outer surface of each cross beam (2). Each support rod (3) corresponds to a piece of hyperbolic louver (4). The adjacent upper and lower hyperbolic louvers (4) are connected by the same transmission connecting rod (5) and are arranged at intervals. The adjacent upper and lower hyperbolic louvers (4) on the adjacent transmission connecting rods (5) are staggered. One end of each transmission connecting rod (5) is connected to one end of a driving device (6), and the other end of the driving device (6) is connected to the support rod (3) on the mounting frame (1). The hyperbolic louver (4) is a hyperbolic diamond louver. The left and right sides of the hyperbolic louver (4) are curved surfaces bending towards the curtain wall. The upper and lower ends of the hyperbolic louver (4) are curved surfaces tilting away from the curtain wall with the middle parallel to the curtain wall or concave towards the curtain wall.

2. The hyperboloid wind chime type sunshade system according to claim 1, wherein: Upper and lower parts of the surface of the hyperbolic louver (4) close to the cross beam (2) are respectively provided with louver seats opposite to each other. The louver seats are sleeved on the transmission connecting rod (5).

3. The hyperbolic wind chime type sunshade system according to claim 2, wherein: The side surface of the louver seat is detachably connected to the transmission connecting rod (5) by screws.

4. The hyperbolic wind chime type sunshade system according to claim 1, characterized in that: The rotation angle of the hyperbolic louver (4) is 0 - 90 degrees.

5. The hyperbolic wind chime type sunshade system according to claim 1, characterized in that: All the hyperbolic louvers (4) rotate the same angle during the movement process.

6. The hyperboloid wind chime type sunshade system according to claim 1, characterized in that: A fixed support (7) is provided at the connection between the support rod (3) and the hyperbolic louver (4) connected thereto. The fixed support (7) includes a connection seat (8) and a seat cover (9). One end of the connection seat (8) is fixed to the support rod (3) close to it. The other end of the connection seat (8) and the seat cover (9) are detachably connected by screws. First mounting grooves are provided in both the upper and lower parts of the connection seat (8). Second mounting grooves (11) are provided at the positions corresponding to the first mounting grooves on the seat cover (9). The transmission connecting rod (5) connected to the fixed support (7) is placed in the groove body formed by the first mounting groove and the second mounting groove (11).

7. The hyperbolic wind chime type sunshade system according to claim 6, characterized in that: First bearings (12) are provided in the first mounting grooves. The first bearings (12) are sleeved on the transmission connecting rod (5) connected to the fixed support (7).

8. The hyperbolic wind chime type sunshade system according to claim 1, wherein: The driving device (6) includes a motor (61) and a driving arm (62). One end of the motor (61) is connected to the support rod (3) closest to it, and the other end is rotatably connected to the driving arm (62), for driving the driving arm (62) to rotate through the movement of the driving shaft of the motor (61), thereby driving the transmission connecting rod (5) to rotate.

9. The hyperbolic wind chime type sunshade system according to claim 8, wherein: An L-shaped connecting piece (65) is provided on the support rod (3) connected to the motor (61), and one end of the motor (61) is connected to the support rod (3) closest to it through the L-shaped connecting piece (65).

10. The hyperbolic wind chime type sunshade system according to claim 8, characterized in that: The driving arm (62) is an arc-shaped angle piece. The driving arm (62) includes two bent heads (63) bending towards the hyperbolic louver (4) and a connecting plate (64) connecting the two bent heads (63). One ends of the two bent heads (63) are rotatably connected to the driving shaft of the motor (61) through a connecting rod, and the other ends of the two bent heads (63) are sleeved on the transmission connecting rod (5).

Citation Information

Patent Citations

  • Hyperboloid aluminium veneer sunshade curtain

    CN206829450U

  • Automatic adjusting system and method for louver

    CN106639838A

  • Novel intelligent photovoltaic glass curtain wall

    CN113107116A