Multi-angle adjustable photovoltaic curtain wall framework

Through the multi-angle adjustable photovoltaic curtain wall structure, the linkage of adjustment components, telescopic components and stable components is used to solve the problems of small angle adjustment range and insufficient stability of photovoltaic curtain walls, and achieve efficient light energy recovery and enhanced safety.

CN120768232AActive Publication Date: 2025-10-10FAR EAST PHOTOVOLTAIC TECHNOLOGY (GUANGDONG) CO LTD
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Patent Information

Application Number
CN202511280522.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-09
Publication Date
2025-10-10
Estimated Expiration
2045-09-09

AI Technical Summary

Technical Problem

The existing photovoltaic curtain walls have a small angle adjustment range, resulting in low light energy recovery efficiency, and lack of stability measures, making them prone to swaying or falling in strong winds.

Method used

The multi-angle adjustable photovoltaic curtain wall structure is adopted, including adjustment components, telescopic components and stable components. Multi-directional angle adjustment is achieved through the linkage of motor-driven connecting frame and connecting arm. The telescopic structure and I-shaped stable structure are combined to enhance the adjustment stability.

Benefits of technology

It realizes multi-directional angle adjustment of the photovoltaic curtain wall, improves the efficiency of light energy recovery, reduces the risk of shaking and falling under strong wind conditions, and enhances the safety of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a multi-angle adjustable photovoltaic curtain wall framework, and relates to the technical field of photovoltaic curtain walls, and the multi-angle adjustable photovoltaic curtain wall framework comprises a metal frame and an adjustable device; by arranging the adjustable device, under linkage adjustment cooperation of the connecting frame, the first connecting arm and the second connecting arm in the adjusting assembly, multi-directional angle adjustment of the photovoltaic curtain wall can be indirectly achieved, the photovoltaic curtain wall can flexibly face the illumination direction, the light energy recycling effect is guaranteed, and through cooperation of a telescopic structure arranged in a connecting cylinder, the adjustable device can be used for adjusting the angle of the photovoltaic curtain wall. Two-stage telescopic adjustment of the photovoltaic curtain wall can be met, the photovoltaic curtain wall can move outwards to be away from an installation position, the adjustment activity space of the photovoltaic curtain wall is enhanced, the orientation angle range is enlarged, the use effect of the photovoltaic curtain wall is further improved, meanwhile, after the angle of the photovoltaic curtain wall is adjusted, an I-shaped stable structure formed in the stable assembly can be matched, the adjustment stability of the photovoltaic curtain wall is enhanced, and the photovoltaic curtain wall is more stable. The shaking problem is reduced, and the use safety is ensured.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of photovoltaic curtain wall, in particular to a multi-angle adjustable photovoltaic curtain wall architecture. BACKGROUND

[0002] The photovoltaic curtain wall uses special resin to paste solar cells on glass and inlay between two pieces of glass, and converts light energy into electrical energy through the battery. It integrates photovoltaic power generation technology and curtain wall technology to fully utilize the surface and space of buildings and convert the solar energy outside the building, which the traditional curtain wall tries to shield, into useful electrical energy. The biggest feature is ventilation, environmental protection and energy saving function. It saves the consumption of precious fossil energy on earth and reduces environmental pollution, and provides a new aesthetic decoration effect for modern buildings.

[0003] At present, in order to facilitate the use of photovoltaic curtain wall, an adjustable support is usually used to connect with the photovoltaic curtain wall, which facilitates the adjustment of the angle of the photovoltaic curtain wall in the later period, thereby improving the practicability of the photovoltaic curtain wall. However, the angle adjustment of the current photovoltaic curtain wall is not comprehensive, which makes the light energy recovery efficiency low.

[0004] The existing Chinese patent CN218526276U discloses a BIPV photovoltaic curtain wall adjustable support, which belongs to the field of photovoltaic curtain wall and comprises a frame, a support frame, a mounting table, a limiting plate, a supporting mechanism and a connecting pin. The mounting table is arranged on the support frame. The frame is provided with a mounting groove and a storage groove. The limiting plate is rotatably arranged in the storage groove and located at the mounting groove. The frame is provided with a torsional spring for driving the limiting plate to rotate. The limiting plate is connected with the frame. The mounting table is slidably arranged in the mounting groove. The mounting table is detachably connected with the frame. The supporting mechanism is arranged on the frame. The output end of the supporting mechanism is connected with the support frame. The frame is provided with an adjusting mechanism for driving the adjusting mechanism to move. The support frame is detachably connected with the supporting mechanism. The support frame is rotatably connected with the supporting mechanism through the connecting pin. The adjustable support can adjust the installation angle and can be disassembled.

[0005] The above-mentioned adjustable support adjusts the angle of the photovoltaic curtain wall through the thread transmission of the driving motor and the screw rod. However, the angle adjustment of the adjustable support is consistent with the defects of the existing adjusting support, that is, the adjustable range is low, and the light energy recovery is low. In addition, there is a lack of certain stability measures to improve the adjustment stability and avoid the shaking and falling of the photovoltaic curtain wall in strong wind. SUMMARY

[0006] The present application aims to provide a multi-angle adjustable photovoltaic curtain wall architecture to solve the problems raised in the background art.

[0007] In order to achieve the above object, the present application adopts the following technical scheme: a multi-angle adjustable photovoltaic curtain wall structure, comprising a metal frame, a photovoltaic glass body is installed inside the metal frame, a light sensor is arranged at the lower end of the front side of the metal frame, a controller is installed at the lower right end of the metal frame, and an adjustable device is arranged at the rear side of the metal frame, the adjustable device comprises a mounting plate, an adjusting assembly, an extension assembly and a stabilizing assembly, the adjusting assembly is arranged on the front side of the mounting plate, the adjusting assembly is connected with the outer side of the extension assembly, the front side of the extension assembly is connected with the stabilizing assembly, and the stabilizing assembly is arranged on the rear side of the metal frame.

[0008] Preferably, the photovoltaic glass body comprises a cell piece, the cell piece is arranged in the middle, high-transparency adhesive films are arranged on both sides of the cell piece, the outer end of the high-transparency adhesive film on one side is connected with the light-transmitting glass, the outer end of the high-transparency adhesive film on the other side is connected with the light-transmitting glass, and the cell piece, the high-transparency adhesive films, the light-transmitting glass and the back plate glass are all installed inside the metal frame.

[0009] Preferably, the adjusting assembly comprises a first connecting plate and a second connecting plate, the first connecting plate is fixedly arranged on the front side of the mounting plate, a first motor is arranged on one side of the front end of the first connecting plate, a connecting frame is connected to the output end of the first motor, one end of the connecting frame away from the first motor is connected with the extension assembly, the second connecting plate is fixedly arranged on the lower end of the front side of the mounting plate, a second motor is arranged on the lower end of the front side of the second connecting plate, the output end of the second motor is connected with a first connecting arm, the upper end of the first connecting arm is connected with a second connecting arm, and the front side of the second connecting arm is connected with the outer side of the extension assembly.

[0010] Preferably, the extension assembly comprises a connecting cylinder, three sides of the outer end of the connecting cylinder are provided with connecting shafts, the connecting shafts on each side are respectively connected with the connecting frame and the second connecting arm, a telescopic structure is installed inside the connecting cylinder, and the front side of the telescopic structure is connected with the stabilizing assembly.

[0011] Preferably, the telescopic structure comprises a servo motor, the servo motor is arranged inside the connecting cylinder, a screw rod is connected to the output end of the servo motor, an outer cylinder is threadedly connected to the outer side of the screw rod, the outer cylinder is arranged inside the connecting cylinder, a plurality of balls are embedded at equal intervals on the outer part of the outer cylinder, the balls are connected with an inner cylinder on the outer side, a telescopic cylinder is threadedly connected to the outer part of the inner cylinder, the telescopic cylinder is sleeved with the inner part of the outer cylinder, a connecting strip is connected to the outer part of the telescopic cylinder, limiting rods are arranged on both sides of the connecting strip, the limiting rods are inserted into the connecting cylinder, the left and right sides of the outer cylinder are limited and connected with limiting grooves, the limiting grooves are fixedly arranged on both sides of the connecting cylinder, and the screw rod is inserted into the inner part of the inner cylinder and is limited and connected with the inner part of the inner cylinder.

[0012] Preferably, the stabilizing assembly comprises a horizontal plate, the horizontal plate is connected with the outside of the telescopic cylinder, vertical frames are fixedly arranged on both sides of the horizontal plate, limit blocks are arranged on the upper and lower ends of the vertical frames, the limit blocks are connected with the inside of the butt joint blocks, the butt joint blocks are fixedly arranged on the four sides of the rear end of the metal frame, lock rods are inserted into the inside of the butt joint blocks, and lock sleeves are threadedly connected with the outside of the lock rods.

[0013] Preferably, the left side of the connecting frame is rotationally connected with the upper and lower ends of the connecting cylinder through the butt joint shafts arranged on the upper and lower ends of the connecting cylinder, and the connecting frame is reversely connected with the connecting cylinder.

[0014] Preferably, the inside of the inner cylinder is provided with internal threads, and the inner cylinder is threadedly connected with the outside of the screw rod through the internal threads.

[0015] Preferably, the outside of the outer cylinder is provided with external threads, and the outer cylinder is threadedly connected with the inside of the telescopic cylinder through the external threads.

[0016] Preferably, the vertical frames are fixedly arranged along the horizontal plate and are symmetrical relative to the horizontal plate, and the vertical frames on the two sides and the horizontal plate form an inverted I-shaped structure.

[0017] Compared with the prior art, the present application has the following advantages:

[0018] By arranging the adjustable device, that is, through the linkage adjustment cooperation of the connecting frame, the first connecting arm and the second connecting arm in the adjusting assembly, the multi-azimuth angle adjustment of the photovoltaic curtain wall can be indirectly realized, so that the photovoltaic curtain wall can be flexibly oriented to the light direction, the light energy recovery effect is ensured, and the secondary telescopic adjustment of the photovoltaic curtain wall can be met through the telescopic structure arranged in the connecting cylinder, so that the photovoltaic curtain wall can be moved outward away from the installation position, the adjustment activity space is strengthened, the orientation angle range is expanded, the use effect is further improved, and after the angle adjustment of the photovoltaic curtain wall, the I-shaped stable structure formed in the stabilizing assembly can be used to strengthen the adjustment stability, reduce the shaking problem, and ensure the use safety.

[0019] The adjusting assembly is arranged, that is, the first motor can drive the connecting frame to reversely rotate, so that the connecting cylinder can be reversely rotated synchronously, thereby indirectly realizing the forward and backward rotation adjustment of the photovoltaic assembly, and when the second motor drives the first connecting arm and the second connecting arm to rotate, the left and right rotation of the connecting cylinder can be met, thereby indirectly realizing the left and right rotation adjustment of the photovoltaic assembly, so that through the linkage adjustment cooperation of the connecting frame, the first connecting arm and the second connecting arm, the multi-azimuth angle adjustment of the photovoltaic assembly can be efficiently realized, the photovoltaic assembly can be flexibly adapted to different light angles, and the light energy recovery effect is improved.

[0020] The setting of the telescopic assembly, i.e. the servo motor arranged in the inner connecting barrel, can realize the driving of the screw rod, and when the screw rod rotates, the outer barrel connected with the outer end can be threadedly driven, the inner barrel is moved outward, and meanwhile, when the screw rod rotates, the rotation of the inner barrel can be limited by the abutting outer barrel, so that the telescopic barrel connected with the outer end of the inner barrel can be threadedly driven to move outward, thereby, two-stage telescopic operation can be realized to indirectly realize the outward pushing of the photovoltaic curtain wall, so that the photovoltaic curtain wall is far away from the installation position, the adjusting space is strengthened, and flexible adjustment of different use angles is achieved.

[0021] The setting of the stable assembly, i.e. the abutting effect of the abutting blocks arranged on the four sides of the rear end of the metal frame and the limiting blocks installed on the upper and lower ends of the vertical frames arranged on the two sides, can satisfy the quick abutting of the photovoltaic curtain wall and the adjustable device, and the penetration of the lock rod and the locking of the lock sleeve can ensure the firm connection of the abutting blocks and the vertical frames, and meanwhile, the horizontal plate and the vertical frames arranged on the two sides can form an inverted I-shaped stable structure to strengthen the installation stability of the photovoltaic curtain wall, reduce the shaking problem in use, and ensure the use safety. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 It is a structural schematic view of the present application;

[0023] Figure 2 It is a split structural schematic view of the photovoltaic curtain wall and the adjustable device of the present application;

[0024] Figure 3 It is a right view of the main body of the photovoltaic glass of the present application;

[0025] Figure 4 It is a structural schematic view of the adjustable device of the present application;

[0026] Figure 5 It is a structural schematic view of the adjusting assembly of the present application;

[0027] Figure 6 It is a structural schematic view of the telescopic assembly of the present application;

[0028] Figure 7 It is a structural schematic view of the telescopic structure of the present application;

[0029] Figure 8 It is a structural schematic view of the telescopic structure of the present application;

[0030] Figure 9 It is a split structural schematic view of the stable assembly of the present application.

[0031] In the figure: metal frame-1, photovoltaic glass main body-2, cell piece-21, high-transparency adhesive film-22, light-transmitting glass-23, backboard glass-24, light sensor-3, controller-4, adjustable device-5, mounting plate-51, adjusting assembly-52, first connecting plate-521, first motor-522, connecting frame-523, second connecting plate-524, second motor-525, first connecting arm-526, second connecting arm-527, telescopic assembly-53, connecting barrel-531, butt joint shaft-532, telescopic structure-533, servo motor-5331, screw rod-5332, outer barrel-5333, ball-5334, inner barrel-5335, telescopic barrel-5336, connecting strip-5337, limiting rod-5338, limiting groove-5339, stabilizing assembly-54, horizontal plate-541, vertical frame-542, limiting block-543, butt joint block-544, locking rod-545, locking sleeve-546. DETAILED DESCRIPTION

[0032] In order to further explain the technical solutions of the present application, the following specific embodiments are described in detail.

[0033] Please refer to Figure 1-Figure 3 The present application provides a multi-angle adjustable photovoltaic curtain wall structure, which comprises a metal frame 1, a photovoltaic glass main body 2 is installed inside the metal frame 1, a light sensor 3 is installed at the lower end of the front side of the metal frame 1, and a controller 4 is installed at the lower right end of the metal frame 1. The adjustable device 5 is arranged on the back side of the metal frame 1.

[0034] The photovoltaic glass main body 2 comprises a cell piece 21, which is arranged in the middle part. High-transparency adhesive films 22 are arranged on the left and right sides of the cell piece 21. The outer end of the left high-transparency adhesive film 22 is connected with a light-transmitting glass 23, and the outer end of the right high-transparency adhesive film 22 is also connected with the light-transmitting glass 23. The cell piece 21, the high-transparency adhesive films 22, the light-transmitting glass 23 and a backboard glass 24 are all installed inside the metal frame 1.

[0035] Please refer to Figure 4 The adjustable device 5 in the embodiment comprises a mounting plate 51, an adjusting assembly 52, a telescopic assembly 53 and a stabilizing assembly 54. The adjusting assembly 52 is arranged on the front side of the mounting plate 51. The adjusting assembly 52 is connected with the outer side of the telescopic assembly 53. The front side of the telescopic assembly 53 is connected with the stabilizing assembly 54. The stabilizing assembly 54 is arranged on the back side of the metal frame 1.

[0036] Please refer to Figure 5The adjusting assembly 52 in this embodiment includes a first connecting plate 521 and a second connecting plate 524. The first connecting plate 521 is longitudinally fixedly connected to the right side of the front side of the mounting plate 51. The first motor 522 is installed on the right side of the front end of the first connecting plate 521. The output end of the first motor 522 is connected to the connecting frame 523. The end of the connecting frame 523 away from the first motor 522 is connected to the telescopic assembly 53. The second connecting plate 524 is longitudinally fixedly connected to the lower end of the front side of the mounting plate 51. The second motor 525 is installed at the lower end of the front side of the second connecting plate 524. The output end of the second motor 525 is connected to the first connecting arm 526. The front side of the upper end of the first connecting arm 526 is rotatably connected to the second connecting arm 527, and the front side of the second connecting arm 527 is connected to the outer side of the telescopic assembly 53. In combination with the linkage effect of the first connecting arm 526 and the second connecting arm 527, the left and right flipping of the connecting tube 531 can be driven.

[0037] Among them, the upper and lower ends of the left side of the connecting frame 523 are rotatably connected to the docking shafts 532 provided at the upper and lower ends of the connecting tube 531, and the connecting frame 523 flips the connecting tube 531 back and forth. Therefore, the back and forth flipping action of the connecting frame 523 can be combined with the left and right flipping action of the first connecting arm 526 and the second connecting arm 527 to meet the multi-directional adjustment of the photovoltaic curtain wall, ensure its high efficiency in light energy recovery, enable it to face the sunlight in real time, and ensure its power generation efficiency.

[0038] Specifically, when the angle of the photovoltaic curtain wall needs to be adjusted, the light sensor 3 provided at the lower end of the front side of the metal frame 1 can monitor the light data. The detected light data can be used by the controller 4 to realize the operation of the first motor 522 and the second motor 525 provided inside the adjustment component 52, that is, when the first motor 522 is running, the connecting frame 523 connected to the output end can be driven, so that the connecting frame 523 can rotate accordingly to realize the front and back flipping of the connecting tube 531 connected to the left side, thereby indirectly realizing the front and back flipping of the entire photovoltaic curtain wall. Rotation adjustment, and when the second motor 525 is running, the first connecting arm 526 and the second connecting arm 527 can be rotated, so that the first connecting arm 526 and the second connecting arm 527 can cooperate to meet the left and right flipping of the connecting tube 531, that is, the left and right flipping adjustment of the photovoltaic curtain wall is indirectly realized. Therefore, through the flip adjustment of the connecting frame 523, the first connecting arm 526 and the second connecting arm 527, the multi-directional adjustment of the entire photovoltaic curtain wall can be met, so that the angle of the photovoltaic curtain wall can be flexibly adjusted to ensure that it is facing the direction of light and to ensure the efficient recycling of light energy.

[0039] See also Figure 6-Figure 8 The telescopic component 53 in this embodiment includes a connecting tube 531, and docking shafts 532 are installed at the upper and lower ends and the left side of the connecting tube 531, and the docking shafts 532 on each side are respectively rotatably connected to the connecting frame 523 and the second connecting arm 527. A telescopic structure 533 is installed inside the connecting tube 531, and the front side of the telescopic structure 533 is connected to the stabilizing component 54.

[0040] The telescopic structure 533 comprises a servo motor 5331 arranged on the inner upper end of the connecting cylinder 531, the output end of the servo motor 5331 is connected with a screw rod 5332, the outer side of the screw rod 5332 is connected with an outer cylinder 5333, the outer cylinder 5333 is arranged in the connecting cylinder 531, the outer upper end of the outer cylinder 5333 is embedded with a ball 5334, the outer side of the ball 5334 is connected with an inner cylinder 5335, so that the inner cylinder 5335 can rotate, the outer side of the inner cylinder 5335 is connected with a telescopic cylinder 5336, the telescopic cylinder 5336 is sleeved in the inner side of the outer cylinder 5333, so that the telescopic cylinder 5336 can rotate when it is driven to extend or retract, the outer side of the telescopic cylinder 5336 is connected with a connecting strip 5337, the left and right sides of the connecting strip 5337 are vertically connected with limiting rods 5338, so that the telescopic assembly 53 and the stable assembly 54 can be quickly connected, the left and right sides of the limiting rods 5338 are vertically inserted into the left and right sides of the connecting cylinder 531, the left and right sides of the outer cylinder 5333 are connected with limiting grooves 5339, the limiting grooves 5339 are arranged on the left and right sides of the connecting cylinder 531, so that the outer cylinder 5333 can be stably moved in and out, the screw rod 5332 is inserted into the inner side of the inner cylinder 5335 and is connected with the inner side of the inner cylinder 5335, so that the inner cylinder 5335 can rotate when the screw rod 5332 rotates.

[0041] The inner side of the inner cylinder 5335 is connected with the outer side of the screw rod 5332 through the inner thread arranged on the inner cylinder 5335, so that the screw rod 5332 and the inner cylinder 5335 can be driven by the thread when the screw rod 5332 rotates; the outer side of the outer cylinder 5333 is connected with the inner side of the telescopic cylinder 5336 through the outer thread arranged on the outer cylinder 5333, so that the outer cylinder 5333 and the telescopic cylinder 5336 can be driven by the thread when the outer cylinder 5333 rotates.

[0042] Specifically, to further enhance its adjusting effect, the photovoltaic curtain is provided with a certain telescopic adjusting function. A telescopic structure 533 is arranged inside the connecting cylinder 531. That is, by operating the servo motor 5331 arranged inside the connecting cylinder 531, the screw rod 5332 connected to the output end of the servo motor 5331 can be rotated. When the screw rod 5332 rotates, the outer cylinder 5333 connected to the outside of the screw rod 5332 and limited by the limiting groove strips 5339 arranged on both sides of the inside of the connecting cylinder 531 will move outward. At the same time, the screw rod 5332 extends into the inside of the inner cylinder 5335 and is limited by the inside of the inner cylinder 5335. In this way, the inner cylinder 5335 can be driven synchronously to rotate along the inside of the outer cylinder 5333 in cooperation with the ball bearings 5334 arranged on the inner side of the upper end. By moving the outer cylinder 5333 outward, the movement of the inner cylinder 5335 can be realized synchronously. During the rotation and outward movement of the outer cylinder 5333, the telescopic cylinder 5336 connected to the outside of the outer cylinder 5333 can be pushed as a whole through the linkage effect of the outward movement of the stable assembly 54, and thus the multi-stage outward movement of the photovoltaic curtain is indirectly realized, so that the photovoltaic curtain moves away from the installation position, the adjusting space of the photovoltaic curtain is further expanded, and the angle adjusting effect of the photovoltaic curtain in a larger range is realized, so that the photovoltaic curtain is more suitable for different illumination angles.

[0043] At the same time, when the telescopic cylinder 5336 moves outward, the connecting strip 5337 connected to the front end of the telescopic cylinder 5336 can move synchronously, and in cooperation with the limiting rods 5338 arranged on both sides and the plug-in effect of the connecting cylinder 531, the telescopic guiding and supporting stability can be realized, so that the stability of the telescopic position is ensured. Thus, the multi-stage outward adjustment of the photovoltaic curtain is realized, and the angle adjusting range is expanded.

[0044] Please refer to Figure 9 The stable assembly 54 in the embodiment includes a horizontal plate 541 arranged on the front side of the telescopic cylinder 5336, and the middle part of the horizontal plate 541 is connected to the outer end of the telescopic cylinder 5336. The locking movement is realized through the connecting strip 5337 and the limiting rod 5338. The left and right sides of the horizontal plate 541 are fixedly connected with vertical frames 542. The upper and lower ends of the inside of the vertical frames 542 on both sides are fixedly connected with limiting blocks 543 in the shape of rectangular blocks. The limiting blocks 543 on each side are sleeved and connected with the inside of the corresponding connecting blocks 544. The connecting blocks 544 are fixedly arranged on the four sides of the rear end of the metal frame 1. In this way, in cooperation with the connecting effect of the connecting blocks 544 and the limiting blocks 543, the positioning and connecting movement can be realized. The lock rods 545 are vertically inserted between the inside of the upper and lower connecting blocks 544. The outer threads are arranged on the upper and lower ends of the outside of the lock rods 545. The lock sleeves 546 are arranged on the outer threaded ends on the upper and lower sides of the lock rods 545. In this way, the locking movement of the upper and lower connecting blocks 544 and the corresponding vertical frames 542 is ensured.

[0045] The vertical frame 542 is symmetrically arranged on the left and right of the horizontal plate 541, and the two vertical frames 542 and the horizontal plate 541 form an inverted I-shaped structure, that is, the inverted I-shaped structure formed by the vertical frame 542 and the horizontal plate 541 can improve the stability of the photovoltaic curtain installation, and reduce the problem of large wind blowing and large shaking during use.

[0046] Specifically, when the photovoltaic curtain and the adjustable device 5 are connected, the butt joint block 544 arranged on the rear end of the metal frame 1 can be positioned and connected with the vertical frame 542 arranged on the left and right sides of the horizontal plate 541, that is, the butt joint block 544 can be positioned and connected with the limiting block 543 arranged on the upper and lower ends of the vertical frame 542, thereby improving the assembly efficiency. After positioning and connecting, the lock rod 545 is inserted into the upper end of the vertical frame 542 and penetrates through the middle part of the upper and lower butt joint blocks 544 to realize the series connection, and after the connection is completed, the lock sleeve 546 is screwed into the upper and lower ends of the lock rod 545 to lock the upper and lower ends of the vertical frame 542 and the butt joint block 544, thereby quickly completing the connection of the photovoltaic curtain and the adjustable device 5.

[0047] When the horizontal plate 541 and the vertical frames 542 on the left and right sides are combined, an inverted I-shaped stable structure is formed to improve the structural strength of the connection position, so that the photovoltaic curtain can reduce the problem of large shaking and falling caused by strong wind.

[0048] The above description is only a preferred example of the present application and is not used to limit the present application. Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or replace some technical features with equivalent ones. Any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. A photovoltaic curtain wall structure with multi-angle adjustment, comprising a metal frame (1), a photovoltaic glass body (2) installed inside the metal frame (1), a light sensor (3) installed at the lower end of the front side of the metal frame (1), and a controller (4) installed at the lower right end of the metal frame (1); Its characteristics are: The metal frame (1) further comprises an adjustable device (5) provided on the rear side of the metal frame (1), the adjustable device (5) comprising a mounting plate (51), an adjusting component (52), a telescopic component (53), and a stabilizing component (54), the front side of the mounting plate (51) being provided with an adjusting component (52), the adjusting component (52) being connected to the outer side of the telescopic component (53), the front side of the telescopic component (53) being connected to the stabilizing component (54), the stabilizing component (54) being installed on the rear side of the metal frame (1), the adjusting component (52) comprising a first connecting plate (521) and a second connecting plate (524), the first connecting plate (521) being fixed to the front side of the mounting plate (51), the second connecting plate (524) being fixed to the front side of the mounting plate (51), and the first connecting plate (521) being fixed to the front side of the mounting plate (51). A first motor (522) is installed at one side of the front end of a connecting plate (521); an output end of the first motor (522) is connected to a connecting frame (523); an end of the connecting frame (523) away from the first motor (522) is connected to the telescopic assembly (53); a second connecting plate (524) is fixed to the lower end of the front side of the mounting plate (51); a second motor (525) is installed at the lower end of the front side of the second connecting plate (524); an output end of the second motor (525) is connected to the first connecting arm (526); an upper end of the first connecting arm (526) is connected to the second connecting arm (527); and a front side of the second connecting arm (527) is connected to the outer side of the telescopic assembly (53).

2. The multi-angle adjustable photovoltaic curtain wall structure according to claim 1, characterized in that: The photovoltaic glass body (2) includes a cell (21), the cell (21) is placed in the middle, and high-transmittance adhesive films (22) are provided on both sides of the cell (21). The outer end of the high-transmittance adhesive film (22) on one side is connected to the light-transmitting glass (23), and the outer end of the high-transmittance adhesive film (22) on the other side is connected to the light-transmitting glass (23). The cell (21), the high-transmittance adhesive film (22), the light-transmitting glass (23) and the back panel glass (24) are all installed inside the metal frame (1).

3. The multi-angle adjustable photovoltaic curtain wall structure according to claim 1, characterized in that: The telescopic assembly (53) comprises a connecting tube (531), and docking shafts (532) are installed on three sides of the outer end of the connecting tube (531), and the docking shafts (532) on each side are respectively connected to the connecting frame (523) and the second connecting arm (527). A telescopic structure (533) is installed inside the connecting tube (531), and the front side of the telescopic structure (533) is connected to the stabilizing assembly (54).

4. The multi-angle adjustable photovoltaic curtain wall structure according to claim 3, characterized in that: The telescopic structure (533) includes a servo motor (5331), the servo motor (5331) is installed inside the connecting tube (531), the output end of the servo motor (5331) is connected to a screw (5332), the outer side of the screw (5332) is connected to an outer tube (5333) through a thread, and the outer tube (5333) is installed inside the connecting tube (531), the outer side of the outer tube (5333) is equidistantly embedded with balls (5334), and the outer side of the balls (5334) is connected to the inner tube (5335), and the outer side of the inner tube (5335) is connected to the telescopic tube (5336) through a thread. The telescopic cylinder (5336) is sleeved with an inner limit sleeve of the outer cylinder (5333), the outer portion of the telescopic cylinder (5336) is locked and connected with a connecting strip (5337), and limiting rods (5338) are provided on both sides of the connecting strip (5337), and the limiting rods (5338) on both sides are inserted into the interior of the connecting cylinder (531), and the left and right sides of the outer cylinder (5333) are both limit-jointed with the limiting groove strip (5339), and the limiting groove strip (5339) is fixed on both sides of the interior of the connecting cylinder (531), and the screw rod (5332) extends into the interior of the inner cylinder (5335) and is limit-jointed with the interior of the inner cylinder (5335).

5. The multi-angle adjustable photovoltaic curtain wall structure according to claim 1, characterized in that: The stabilizing assembly (54) includes a transverse plate (541), the transverse plate (541) is connected to the outside of the telescopic cylinder (5336), vertical frames (542) are fixed on both sides of the transverse plate (541), and limit blocks (543) are installed on the upper and lower ends of the vertical frames (542), the limit blocks (543) are internally connected and docked with the docking blocks (544), and the docking blocks (544) are fixed on the four sides of the rear end of the metal frame (1), a locking rod (545) is inserted into the interior of the docking block (544), and the locking rod (545) is externally threaded and docked with a locking sleeve (546).

6. The multi-angle adjustable photovoltaic curtain wall structure according to claim 3, characterized in that: The upper and lower ends of the left side of the connecting frame (523) are rotatably connected to the docking shafts (532) provided at the upper and lower ends of the connecting tube (531), and the connecting frame (523) flips the connecting tube (531) forward and backward.

7. The multi-angle adjustable photovoltaic curtain wall structure according to claim 4, characterized in that: The inner cylinder (5335) is provided with an internal thread, and the inner cylinder (5335) is threadedly connected to the outside of the screw rod (5332) via the internal thread.

8. The multi-angle adjustable photovoltaic curtain wall structure according to claim 4, characterized in that: The outer cylinder (5333) is provided with an external thread on the outside, and the outer cylinder (5333) is threadedly connected to the inside of the telescopic cylinder (5336) via the provided external thread.

9. The multi-angle adjustable photovoltaic curtain wall structure according to claim 5, characterized in that: The vertical frames (542) are fixed symmetrically along the horizontal plate (541) on the left and right sides, and the vertical frames (542) and the horizontal plate (541) on both sides form an inverted I-shape.

Citation Information

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