CdTe power glass curtain wall mounting structure and construction method thereof

By designing a modular curtain wall frame structure and protective frame, the problem of low applicability of cadmium telluride power generation glass curtain wall installation structures was solved, enabling flexible assembly and efficient installation, and reducing costs.

CN117418632BActive Publication Date: 2026-03-24浙江新银百幕墙装饰有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-10-19
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

The existing cadmium telluride power generation glass curtain wall installation structure has low applicability, resulting in high manufacturing costs.

Method used

Design a modular curtain wall frame structure, including sub-frames connected by columns, beams and U-shaped blocks, and achieve flexible combination of frames through adjustable clamps and connecting blocks, combined with protective frames and elastic components to adapt to cadmium telluride photovoltaic glass of different sizes.

Benefits of technology

It enables flexible assembly of the curtain wall frame, adapts to various glass sizes, reduces installation errors, saves installation time, improves installation efficiency, and reduces costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to a cadmium telluride power generation glass curtain wall mounting structure and a construction method thereof, and aims to solve the technical problem of high manufacturing cost caused by low applicability of the current cadmium telluride power generation glass curtain wall mounting structure, comprising a curtain wall frame; the curtain wall frame is composed of a plurality of sub-frames; the sub-frame is composed of two vertical columns and two cross beams, the vertical columns and the cross beams are connected through U-shaped blocks, two adjacent vertical columns in the vertical direction are connected through an insertion block, and the vertical columns and the cross beams are provided with mounting grooves on the side close to the U-shaped blocks relative to the positions of the insertion grooves; the mounting grooves are movably provided with clamping plates; four clamping plates on the two vertical columns and the two cross beams of the sub-frame form a first clamping cavity; at least one first sliding groove is formed in the mounting groove; the clamping plates are fixedly provided with first sliding blocks relative to the positions of the first sliding grooves; and the first sliding blocks are slidably connected with the first sliding grooves. The application has the advantages of clear and compact structure design and high applicability.
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Description

Technical Field

[0001] This invention relates to the field of glass curtain wall installation technology, and in particular to a cadmium telluride power generation glass curtain wall installation structure and its construction method. Background Technology

[0002] Cadmium telluride photovoltaic glass is an organic combination of traditional photovoltaics and architecture, expanding the application fields of photovoltaic products. It has high-efficiency power generation performance, conforms to modern architectural aesthetics, is greener, more environmentally friendly, lower carbon and pollution-free, radiation-free, fireproof, and truly green and clean energy. It meets building requirements by being installed on a curtain wall.

[0003] A curtain wall is the exterior cladding of a building. It is non-load-bearing and hangs up like a curtain, hence the name "curtain wall". It is a common structure in modern large and high-rise buildings. The installation of cadmium telluride power generation glass curtain walls requires building surveying and layout, installation of embedded parts, installation of connecting brackets, installation of columns, installation of beams, and fabrication and installation of cadmium telluride power generation glass assembly components. Among them, the columns and beams form the installation cavity for cadmium telluride power generation glass after installation.

[0004] However, cadmium telluride (CTD) power generation glass comes in various sizes, and most existing CTD power generation glass curtain wall installation structures are not adjustable and have low applicability. This results in the need to design the size of the columns and beams of the curtain wall structure separately according to the building, leading to high manufacturing costs for CTD power generation glass curtain wall installation structures. In view of this, we propose a CTD power generation glass curtain wall installation structure and its construction method. Summary of the Invention

[0005] The purpose of this invention is to overcome the shortcomings of the prior art, adapt to practical needs, and provide an installation structure and construction method for cadmium telluride power generation glass curtain walls, so as to solve the technical problem of low applicability of current cadmium telluride power generation glass curtain wall installation structures leading to high manufacturing costs.

[0006] To achieve the objective of this invention, the technical solution adopted by this invention is as follows: designing an installation structure and construction method for a cadmium telluride power generation glass curtain wall, including a curtain wall frame;

[0007] The curtain wall frame is composed of several sub-frames;

[0008] The sub-frame consists of two uprights and two crossbeams. The uprights and crossbeams are connected by U-shaped blocks. Two adjacent uprights in the vertical direction are connected by plug-in blocks. Slots are symmetrically provided at both ends of the uprights and crossbeams, and the plug-in blocks are inserted into the slots on the uprights. The U-shaped blocks are threaded to the uprights by several first bolts, with the ends of the first bolts extending through the uprights into the slots and pressing against the plug-in blocks. The U-shaped blocks are inserted into the slots on the crossbeams. Mounting grooves are provided on the side of the uprights and crossbeams near the U-shaped blocks, opposite the slots. Clamping plates are movably mounted in the mounting grooves. The four clamping plates on the two uprights and two crossbeams of the sub-frame form... The first clamping cavity has at least one first sliding groove in the mounting groove. A first slider is fixedly mounted on the clamping plate relative to the first sliding groove. The first slider is slidably connected to the first sliding groove. A countersunk hole B is opened on the clamping plate relative to the first slider. A clamping bolt is threaded into the countersunk hole B. The end of the clamping bolt passes through the first slider and is embedded with a rubber pad. The rubber pad is pressed and connected to the bottom end of the first sliding groove. A pressure plate is rotatably connected to the mounting groove at the end away from the clamping plate. At least one countersunk groove is opened on the pressure plate. A second bolt is movably mounted on the countersunk groove. The end of the second bolt passes through the countersunk groove and is threadedly connected to the clamping plate. Mounting blocks are detachably fixedly connected to both ends of the column on the side away from the pressure plate.

[0009] Preferably, one of the columns of the sub-frame is provided with a connecting groove, and a connecting block is detachably and fixedly connected to the connecting groove.

[0010] Preferably, one of the columns of the sub-frame is provided with a connecting groove, and a connecting block is detachably and fixedly connected to the connecting groove.

[0011] Preferably, the connecting block is composed of a connecting part, a guiding part, and a columnar limiting part. The connecting part has a plurality of countersunk holes A evenly distributed on it. Bolts A are provided on the countersunk holes A. The bolts A are threadedly connected to the bottom end of the connecting groove. The guiding part is integrally connected to the connecting part. The bottom end of the guiding part is V-shaped. The limiting part is integrally connected to the side of the guiding part away from the connecting part. The bottom end of the limiting part has a hemispherical structure, and the length of the limiting part is less than the length of the guiding part.

[0012] Preferably, a functional slot is provided on another column of the sub-frame, and the functional slot is slidably connected to the guide part and the limiting part of the connecting block.

[0013] Preferably, it further includes a protective frame; the protective frame includes four right-angled rods, the four right-angled rods form a second clamping cavity, and two adjacent right-angled rods are connected by an elastic component, the elastic component being in contact with the clamping plate.

[0014] Preferably, a limiting slide bar is fixed on one side of the right-angle rod, and semi-rings are fixed on both ends of the right-angle rod.

[0015] Preferably, the elastic component includes an L-shaped rod, a connecting seat is fixedly provided in the middle of the inner side of the L-shaped rod, and tension springs are symmetrically connected to both ends of the connecting seat. The ends of the tension springs are hooked and connected to the semi-ring. Sliding rod grooves are provided at both ends of the inner side of the L-shaped rod, and the limiting sliding rod is slidably connected to the sliding rod grooves.

[0016] Preferably, the L-shaped rod has a fine-tuning plate on its outer side, and at least one second slide groove is formed on the outer side of the L-shaped rod. The fine-tuning plate is fixed with a second slider at a position relative to the second slide groove. The second slider is slidably connected to the second slide groove. The end of the second slider is elastically connected to the bottom of the second slide groove by a spring A. The bottom end of the fine-tuning plate has an arc-shaped structure.

[0017] Preferably, a guide angle is provided on the inner side of the top of the clamping plate, and the guide angles on the four clamping plates of the first clamping cavity form a guide cavity.

[0018] Preferably, the mounting block has two sets of countersunk holes B arranged in a centrally symmetrical structure. A fourth bolt is provided in each countersunk hole B, and the end of the fourth bolt passes through the countersunk hole B and is connected to the column by a thread.

[0019] A method for constructing a cadmium telluride power generation glass curtain wall includes the following steps:

[0020] S1, Measurement and Setting Out

[0021] Lay out lines on the exterior wall of the building and measure the installation corner points;

[0022] S2. Installation of mounting blocks and U-shaped blocks

[0023] Secure the mounting blocks at both ends of all columns using the fourth bolt.

[0024] The U-shaped block is connected to the column by several threaded first bolts.

[0025] S3, Adjustment of clamp position

[0026] Adjust the position of the clamping plates on all columns and beams according to the size of the cadmium telluride power generation glass and protective frame. By rotating the clamping bolts, the rubber pads are disengaged from the bottom of the first slide groove. The sliding clamping plates allow the first slider to slide along the first slide groove to adjust the clamping plates to the appropriate position, so that the four clamping plates on the two columns and two beams of the subframe form the first clamping cavity of appropriate size.

[0027] S4. Installation of connecting blocks

[0028] All connecting parts of the connecting blocks are installed one by one on the column with connecting grooves using bolts A;

[0029] S5. Installation of curtain wall frame

[0030] Prioritize installing the columns with functional slots located at the bottom edge of the curtain wall frame. Fix the mounting blocks at both ends of the columns to the exterior wall of the building using the fourth bolts. Insert the plug-in block into the slot at the top of the column. Insert the slot at the bottom of the other column into the plug-in block. Rotate the first bolts on the two U-shaped blocks at the connection end of the two columns so that the ends of the first bolts press against the plug-in block to complete the initial fixing. Fix the mounting blocks at both ends of the other column to the exterior wall of the building using the fourth bolts.

[0031] Insert the slots of the crossbeams into the U-shaped blocks from bottom to top. The slots at the other end of the two crossbeams of the same subframe form a new slot unit. Align the U-shaped blocks at the top and bottom of the column with functional slots at the bottom edge with the upper and lower slots of the slot unit and insert them. Install the mounting blocks at both ends of the column to the exterior wall of the building with the fourth bolt.

[0032] Insert a column with a connecting block into the functional slot along the guide part of the connecting block until the limiting part is also inserted into the functional slot, until the guide part and the limiting part of the connecting block are fully inserted into the functional slot. The guide part of the connecting block provides a guiding function for the two columns, and the limiting part of the connecting block provides a connecting function for the two columns, which facilitates the installation of two vertically adjacent columns. After installation, fix the mounting blocks at both ends of the column to the exterior wall of the building using the fourth bolt.

[0033] The entire curtain wall frame will be installed using the same steps as described above.

[0034] S6. Assembly of the protective frame

[0035] Slide the limiting slide bars of the two right-angle rods into the slide bar grooves on the inner side of the L-shaped rod of the elastic component. Hook the ends of the two tension springs with the semi-rings at the ends of the two right-angle rods. Similarly, install another U-shaped combination of two right-angle rods and one elastic component. Place the two U-shaped combinations symmetrically. Slide the slide bar grooves on one side of the L-shaped rod of the two elastic components with the limiting slide bars at the ends of the two right-angle rods on both sides of the U-shape. Hook the ends of the two tension springs of the elastic component with the semi-rings at the ends of the two right-angle rods. Complete the installation of the other U-shaped combination in the same way.

[0036] S7, Installation of Cadmium Telluride Photovoltaic Glass and Protective Frame

[0037] Grasp the two corner points of the two symmetrical right-angled rods on the protective frame and pull them outward along the diagonal to enlarge the entire protective frame. Then, put the cadmium telluride power generation glass into the second clamping cavity formed by the four right-angled rods on the inner side of the protective frame. Slowly move the two corner points of the two right-angled rods inward along the diagonal until the second clamping cavity clamps the cadmium telluride power generation glass. Under the elastic force of the tension spring, the protective frame clamps the cadmium telluride power generation glass.

[0038] The protective frame containing the cadmium telluride power generation glass is placed into the first clamping cavity formed by the four clamping plates on the two columns and two beams of the sub-frame. During this process, the arc-shaped structure at the bottom of the four fine-tuning plates makes contact with the guide angles on the four clamping plates of the first clamping cavity. The second slider of the fine-tuning plate slides along the second slide groove to guide the entire protective frame into the first clamping cavity. This allows the protective frame to have a fine-tuning function after assembly, preventing the protective frame from being difficult to put into the first clamping cavity. Under the elastic force of spring A, the four fine-tuning plates are in tight contact with the opposite ends of the four clamping plates.

[0039] Rotate the pressure plate to make it contact the clamping plate, connect the second bolt on the countersunk groove to the threaded clamping plate, and fix the pressure plate in place. Similarly, fix the other three pressure plates on this subframe.

[0040] Similarly, all the cadmium telluride photovoltaic glass can be installed on several sub-frames of the curtain wall frame.

[0041] S8, Weather-resistant Silicone Sealant for Sealing

[0042] Apply weather-resistant silicone sealant evenly to all gaps in the curtain wall frame to ensure the device is sealed and waterproof; then scrape and repair the weather-resistant silicone sealant in the gaps to make them look neat.

[0043] S9, Cleaning Inspection

[0044] A cleanliness check was performed on the entire curtain wall frame, and any dirt or grime generated during the installation process was cleaned.

[0045] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0046] 1. Thanks to the modular combination structure design of the curtain wall frame, the storage and transportation of curtain wall frame components are convenient, and the size of the curtain wall frame can be combined according to actual conditions. The columns and beams near the U-shaped block have mounting grooves relative to the slot positions. Clamping plates are movably installed within the mounting grooves. The four clamping plates on the two columns and two beams of the sub-frame form a first clamping cavity. At least one first sliding groove is provided within the mounting groove. A first slider is fixed to the clamping plate relative to the first sliding groove position. The first slider is slidably connected to the first sliding groove. The first slider has a countersunk hole B, and a clamping bolt is internally threaded into the countersunk hole B. The end of the clamping bolt passes through the first slider and is fitted with a rubber pad. The rubber pad is clamped to the bottom of the first groove, allowing the position of the clamping plates on all columns and beams to be adjusted according to the size of the cadmium telluride photovoltaic glass. By rotating the clamping bolt, the rubber pad is disengaged from the bottom of the first groove, and the sliding clamping plate allows the first slider to slide along the first groove to adjust the clamping plate to an appropriate position. This ensures that the four clamping plates on the two columns and two beams of the subframe form a first clamping cavity of suitable size, accommodating a wider range of cadmium telluride photovoltaic glass sizes.

[0047] 2. Thanks to the design of the two columns and connecting blocks of the sub-frame, a column with a connecting block installed can be inserted into the functional slot along the guide part of the connecting block until the limiting part is also inserted into the functional slot, until the guide part and the limiting part of the connecting block are fully inserted into the functional slot. The guide part of the connecting block provides guidance for the two columns, and the limiting part of the connecting block provides connection for the two columns, which facilitates the installation of two horizontally adjacent columns, reduces gaps after installation, and makes the bottom of the guide part into an 8-shape and the bottom of the limiting part into a hemispherical structure, making the installation smoother and saving installation time.

[0048] 3. Thanks to the design of the protective frame, by grasping the two corner points of the two symmetrical right-angled rods on the protective frame and pulling them outward along the diagonal, the entire protective frame is enlarged. The cadmium telluride power generation glass is then fitted into the second clamping cavity formed by the four right-angled rods on the inner side of the protective frame. The two corner points of the two right-angled rods are slowly moved inward along the diagonal until the second clamping cavity holds the cadmium telluride power generation glass. Under the elastic force of the tension spring, the protective frame clamps the cadmium telluride power generation glass tightly. By setting up the protective frame, it is possible to adapt to cadmium telluride power generation glass of different sizes, such as square and rectangular, and to provide protection for the installation of cadmium telluride power generation glass.

[0049] 4. Thanks to the design of the elastic components, the protective frame has a fine-tuning function. The four fine-tuning plates are located in the four clamping plates and can slide along the second slide groove with the second slider. Under the elastic force of spring A, the four fine-tuning plates and the four clamping plates are in tight contact at their opposite ends, which is convenient for installation and prevents errors in the adjustment of the clamping plate position, which would cause the protective frame containing the cadmium telluride power generation glass to be unable to be installed in the first clamping cavity.

[0050] 5. Thanks to the design of the fine-tuning plate and clamping plate, in order to facilitate the placement of the protective frame containing the cadmium telluride power generation glass into the first clamping cavity formed by the four clamping plates on the two columns and two crossbeams of the sub-frame, the arc-shaped structure at the bottom of the four fine-tuning plates forms a guide cavity contact with the guide angle on the four clamping plates of the first clamping cavity, which can cause the four fine-tuning plates to automatically adjust under the force of the four clamping plates. Attached Figure Description

[0051] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0052] Figure 2 This is a partial cross-sectional diagram of the present invention;

[0053] Figure 3 for Figure 2 A magnified schematic diagram of a local structure;

[0054] Figure 4 for Figure 1 A partial structural breakdown diagram;

[0055] Figure 5 for Figure 4 A magnified schematic diagram of a local structure;

[0056] Figure 6 for Figure 1 A structural diagram of the mounting block section;

[0057] Figure 7 This is a schematic diagram of the cross-sectional structure of the mounting block of the present invention;

[0058] Figure 8 This is a schematic diagram showing the cross-sectional structure of the protective frame of the present invention.

[0059] Figure 9 for Figure 8 A magnified schematic diagram of a local structure;

[0060] Figure 10 This is a schematic diagram of the elastic component structure of the present invention;

[0061] Figure 11 for Figure 10 A magnified schematic diagram of a local structure;

[0062] In the diagram: 1. Curtain wall frame; 2. Sub-frame; 3. Column; 4. Beam; 5. U-shaped block; 6. Insert block; 7. Slot; 8. Mounting groove; 9. Clamping plate; 10. First sliding groove; 11. First sliding block; 12. Clamping bolt; 13. Rubber pad; 14. Pressure plate; 15. Countersunk groove; 16. Protective frame; 17. Mounting block;

[0063] 301. Connecting slot; 302. Connecting block; 303. Functional slot;

[0064] 901, Guide Angle;

[0065] 3021. Connecting part; 3022. Guiding part; 3023. Limiting part;

[0066] 1601, Right-angle bar; 1602, Elastic component;

[0067] 16011, Limiting slide bar; 16012, Semi-ring;

[0068] 16021, L-shaped rod; 16022, connecting seat; 16023, tension spring; 16024, fine-tuning plate; 16025, second slide groove; 16026, second slider; 16027, slide bar groove; 16028, spring A. Implementation

[0069] The present invention will be further described below with reference to the accompanying drawings and embodiments:

[0070] Example 1: An installation structure for a cadmium telluride power generation glass curtain wall, see [link / reference] Figure 1 , Figure 2 , Figure 3 , Figure 6 , Figure 7 It includes a curtain wall frame 1, which is composed of several sub-frames 2.

[0071] The sub-frame 2 consists of two columns 3 and two beams 4. The columns 3 and beams 4 are connected by U-shaped blocks 5. Two adjacent columns 3 in the vertical direction are connected by plug-in blocks 6. Slots 7 are symmetrically opened at both ends of the columns 3 and beams 4, and the plug-in blocks 6 are plugged into the slots 7 on the columns 3. The U-shaped blocks 5 are threadedly connected to the columns 3 by several first bolts, and the ends of the first bolts extend through the columns 3 into the slots 7 and are pressed together with the plug-in blocks 6. The U-shaped blocks 5 are plugged into the slots 7 on the beams 4. The columns 3 and beams 4 are provided with mounting grooves 8 on the side near the U-shaped blocks 5, opposite the slots 7. Clamping plates 9 are movably installed in the mounting grooves 8. The four clamping plates 9 on the two columns 3 and two beams 4 of the sub-frame 2 form the first clamping cavity.

[0072] At least one first sliding groove 10 is provided in the mounting groove 8. A first slider 11 is fixedly provided in the clamping plate 9 relative to the first sliding groove 10. The first slider 11 is slidably connected to the first sliding groove 10. A countersunk hole B is provided in the clamping plate 9 relative to the first slider 11. A clamping bolt 12 is threaded in the countersunk hole B. The end of the clamping bolt 12 passes through the first slider 11 and is embedded with a rubber pad 13. The rubber pad 13 is clamped to the bottom end of the first sliding groove 10. A pressure plate 14 is rotatably connected to the end of the mounting groove 8 away from the clamping plate 9. At least one countersunk groove 15 is provided in the pressure plate 14. A second bolt is movably provided in the countersunk groove 15. The end of the second bolt passes through the countersunk groove 15 and is threadedly connected to the clamping plate 9. Mounting blocks 17 are detachably fixedly connected to the two ends of the column 3 away from the pressure plate 14.

[0073] The mounting block 17 has two sets of countersunk holes B arranged in a centrally symmetrical structure. A fourth bolt is installed in the countersunk hole B, and the end of the fourth bolt passes through the countersunk hole B and is threadedly connected to the column 3. Mounting grooves 8 are provided on the side of the column 3 and the crossbeam 4 near the U-shaped block 5, opposite the slot 7. A clamping plate 9 is movably installed in the mounting groove 8. The four clamping plates 9 on the two columns 3 and two crossbeams 4 of the sub-frame 2 form a first clamping cavity. At least one first sliding groove 10 is provided in the mounting groove 8. A first slider 11 is fixedly installed on the clamping plate 9 relative to the first sliding groove 10. The first slider 11 is slidably connected to the first sliding groove 10. A countersunk hole B is provided on the clamping plate 9 relative to the first slider 11. A clamping bolt 12 is threadedly connected in the countersunk hole B, and the end of the clamping bolt 12 passes through the slot 7. A first slider 11 is fitted with a rubber pad 13, which is pressed and connected to the bottom of the first slide groove 10. This allows the position of the clamping plates 9 on all the columns 3 and crossbeams 4 to be adjusted according to the size of the cadmium telluride power generation glass. By rotating the clamping bolt 12, the rubber pad 13 is disengaged from the bottom of the first slide groove 10, and the sliding clamping plates 9 allow the first slider 11 to slide along the first slide groove 10 to adjust the clamping plates 9 to the appropriate position. This ensures that the four clamping plates 9 on the two columns 3 and two crossbeams 4 of the subframe 2 form a first clamping cavity of suitable size, which is suitable for more sizes of cadmium telluride power generation glass.

[0074] See Figures 1 to 7 To facilitate the installation of two adjacent columns 3 of two horizontally adjacent sub-frames 2 and to minimize the gap, a connecting groove 301 is provided on one of the columns 3 of the sub-frame 2, and a connecting block 302 is detachably and fixedly connected to the connecting groove 301.

[0075] The connecting block 302 is composed of a connecting part 3021, a guide part 3022, and a columnar limiting part 3023. The connecting part 3021 has several countersunk holes A evenly distributed on it. Bolts A are provided on the countersunk holes A. The bolts A are threadedly connected to the bottom end of the connecting groove 301. The guide part 3022 is integrally connected to the connecting part 3021. The bottom end of the guide part 3022 is V-shaped. The limiting part 3023 is integrally connected to the side of the guide part 3022 away from the connecting part 3021. The bottom end of the limiting part 3023 has a hemispherical structure, and the length of the limiting part 3023 is less than the length of the guide part 3022.

[0076] Another column 3 of the sub-frame 2 has a functional slot 303, which is slidably connected to the guide part 3022 and the limiting part 3023 of the connecting block 302. A column 3 with the connecting block 302 installed is inserted into the functional slot 303 along the guide part 3022 until the limiting part 3023 is also inserted, until both the guide part 3022 and the limiting part 3023 of the connecting block 302 are fully inserted into the functional slot 303. The guide part 3022 of the connecting block 302 provides guidance for the two columns 3, and the limiting part 3023 of the connecting block 302 provides connection for the two columns 3, facilitating the installation of two horizontally adjacent columns. Furthermore, the bottom end of the guide part 3022 is shaped like an "8" and the bottom end of the limiting part 3023 is hemispherical, making installation smoother and saving installation time.

[0077] Furthermore, refer to Figures 1 to 10 It also includes a protective frame 16; the protective frame 16 includes four right-angle rods 1601, the four right-angle rods 1601 form a second clamping cavity, and two adjacent right-angle rods 1601 are connected by an elastic component 1602, and the elastic component 1602 is in contact with the clamping plate 9.

[0078] A limiting slide bar 16011 is fixed on one side of the right-angle bar 1601, and semi-rings 16012 are fixed at both ends of the right-angle bar 1601. A fine-tuning plate 16024 is provided on the outside of the L-shaped bar 16021, and at least one second slide groove 16025 is opened on the outside of the L-shaped bar 16021. A second slider 16026 is fixed on the fine-tuning plate 16024 relative to the position of the second slide groove 16025. The second slider 16026 is slidably connected to the second slide groove 16025, and the end of the second slider 16026 is elastically connected to the bottom of the second slide groove 16025 by a spring A16028.

[0079] The elastic component 1602 includes an L-shaped rod 16021. A connecting seat 16022 is fixedly provided in the middle of the inner side of the L-shaped rod 16021. A tension spring 16023 is symmetrically connected to both ends of the connecting seat 16022. The end of the tension spring 16023 is hooked and connected to the semi-ring 16012. A sliding rod groove 16027 is provided at both ends of the inner side of the L-shaped rod 16021. The limiting sliding rod 16011 is slidably connected to the sliding rod groove 16027. Grasp the two corner points of the two symmetrical right-angle rods 1601 on the protective frame 16 and pull them outward along the diagonal, thus enlarging the entire protective frame 16. Place the cadmium telluride power generation glass onto the second clamping cavity formed by the four right-angle rods 1601 on the inner side of the protective frame 16. Slowly move the two corner points of the two right-angle rods 1601 inward along the diagonal until the second clamping cavity holds the cadmium telluride power generation glass. Under the elastic force of the tension spring 16023, the protective frame 16 clamps the cadmium telluride power generation glass. By setting the protective frame 16, it can adapt to cadmium telluride power generation glass of different sizes, including square and rectangular shapes, and provides protection for the installation of the cadmium telluride power generation glass.

[0080] Furthermore, refer to Figures 8 to 11 To facilitate the placement of the protective frame 16 containing the cadmium telluride power generation glass into the first clamping cavity formed by the four clamping plates 9 on the two uprights 3 and two crossbeams 4 of the sub-frame 2, a fine-tuning plate 16024 is provided on the outer side of the L-shaped rod 16021. At least one second sliding groove 16025 is provided on the outer side of the L-shaped rod 16021. A second slider 16026 is fixedly mounted on the fine-tuning plate 16024 relative to the second sliding groove 16025. The second slider 16026 is slidably connected to the second sliding groove 16025. The end of the second slider 16026 is elastically connected to the bottom of the second sliding groove 16025 via a spring A16028. The second slider 16026 of 6024 slides along the second slide groove 16025 to guide the entire protective frame 16 into the first clamping cavity. After the protective frame 16 is assembled, it has a fine-tuning function. The four fine-tuning plates 16024 are positioned so that the four clamping plates 9 can slide along the second slide groove 16025 with the second slider 16026. Under the elastic force of the spring A16028, the four fine-tuning plates 16024 and the four clamping plates 9 are in tight contact at their opposite ends, which is convenient for installation and prevents errors in the adjustment of the clamping plate 9 position, which would cause the protective frame 16 containing the cadmium telluride power generation glass to be unable to be installed into the first clamping cavity.

[0081] In addition, refer to Figure 3 and Figure 11To facilitate the placement of the protective frame 16 containing the cadmium telluride power-generating glass into the first clamping cavity formed by the four clamping plates 9 on the two uprights 3 and two crossbeams 4 of the sub-frame 2, the bottom end of the fine-tuning plate 16024 has an arc-shaped structure, and a guide angle 901 is provided on the inner side of the top end of the clamping plate 9. The guide angle 901 on the four clamping plates 9 of the first clamping cavity forms a guide cavity. The arc-shaped structure at the bottom end of the four fine-tuning plates 16024 contacts the guide angle 901 on the four clamping plates 9 of the first clamping cavity, which allows the four fine-tuning plates 16024 to automatically adjust under the force of the four clamping plates 9.

[0082] Example 2: A construction method for a cadmium telluride power generation glass curtain wall, comprising the following steps:

[0083] S1, Measurement and Setting Out

[0084] Lay out lines on the exterior wall of the building and measure the installation corner points;

[0085] Installation of S2, mounting block 17 and U-shaped block 5

[0086] Secure the mounting block 17 to both ends of all columns 3 using the fourth bolt;

[0087] The U-shaped block 5 is connected to the column 3 by several first bolts threaded together.

[0088] Adjustment of S3 and clamp 9 positions

[0089] Adjust the position of the clamping plates 9 on all columns 3 and crossbeams 4 according to the size of the cadmium telluride power generation glass and protective frame 16. By rotating the clamping bolts 12, the rubber pads 13 are disengaged from the bottom of the first slide groove 10. The sliding clamping plates 9 allow the first slider 11 to slide along the first slide groove 10 to adjust the clamping plates 9 to the appropriate position, so that the four clamping plates 9 on the two columns 3 and two crossbeams 4 of the subframe 2 form the first clamping cavity of appropriate size.

[0090] S4. Installation of connecting block 302

[0091] All connecting parts 3021 of the connecting blocks 302 are installed one by one on the column with connecting grooves 301 by bolts A;

[0092] Installation of S5 and curtain wall frame 1

[0093] First, install the column 3 with functional slot 303 located at the bottom edge of the curtain wall frame 1. Fix the mounting blocks 17 at both ends of the column 3 to the exterior wall of the building with the fourth bolt. Insert the plug block 6 into the slot 7 at the top of the column 3. Insert the slot 7 at the bottom of the other column 3 into the plug block 6. Rotate the first bolts on the two U-shaped blocks 5 at the connection end of the two columns 3 so that the ends of the first bolts press against the plug block 6 to complete the initial fixation. Fix the mounting blocks 17 at both ends of the other column 3 to the exterior wall of the building with the fourth bolt.

[0094] Insert the slots 7 of the crossbeam 4 into the U-shaped blocks 5 from bottom to top. The slots 7 at the other end of the two crossbeams 4 of the same subframe 2 form a new slot unit. Align the U-shaped blocks 5 at the top and bottom ends of the column 3 with the functional slots 303 at the bottom edge with the upper and lower slots 7 of the slot unit and insert them. Fix the mounting blocks 17 at both ends of the column 3 to the exterior wall of the building with the fourth bolt.

[0095] A column 3 with a connecting block 302 is inserted into the functional slot 303 along the guide part 3022 of the connecting block 302 until the limiting part 3023 is also inserted into the functional slot 303, until the guide part 3022 and the limiting part 3023 of the connecting block 302 are fully inserted into the functional slot 303. The guide part 3022 of the connecting block 302 provides a guiding function for the two columns 3, and the limiting part 3023 of the connecting block 302 provides a connecting function for the two columns 3, which facilitates the installation of two horizontally adjacent columns. After installation, the mounting blocks 17 at both ends are fixed to the outer wall of the building with the fourth bolt.

[0096] The entire curtain wall frame 1 will be installed using the same steps as described above;

[0097] Assembly of S6 and protective frame 16

[0098] Slide the limiting slide rods 16011 of the two right-angle rods 1601 into the slide rod grooves 16027 inside the L-shaped rods 16021 of the elastic component 1602. Hook the ends of the two tension springs 16023 with the semi-rings 16012 at the ends of the two right-angle rods 1601. Similarly, install another U-shaped combination of two right-angle rods 1601 and one elastic component 1602. Place the two U-shaped combinations symmetrically. Slide the slide rod grooves 16027 on one side of the L-shaped rods 16021 of the two elastic components 1602 with the limiting slide rods 16011 at the ends of the two right-angle rods 1601 on both sides of the U-shape. Hook the ends of the two tension springs 16023 of the elastic component 1602 with the semi-rings 16012 at the ends of the two right-angle rods 1601. Similarly, complete the installation of the other U-shaped combination.

[0099] Installation of S7, cadmium telluride power generation glass and protective frame 16

[0100] Grasp the two corner points of the two symmetrical right-angle rods 1601 on the protective frame 16 and pull them outward along the diagonal, making the entire protective frame 16 enlarge. Then, put the cadmium telluride power generation glass into the second clamping cavity formed by the four right-angle rods 1601 on the inner side of the protective frame 16. Slowly move the two corner points of the two right-angle rods 1601 inward along the diagonal until the second clamping cavity clamps the cadmium telluride power generation glass. Under the elastic force of the tension spring 16023, the protective frame 16 clamps the cadmium telluride power generation glass.

[0101] The protective frame 16 containing the cadmium telluride power generation glass is placed into the first clamping cavity formed by the four clamping plates 9 on the two columns 3 and two crossbeams 4 of the sub-frame 2. During this process, the arc-shaped structure at the bottom of the four fine-tuning plates 16024 forms a guide cavity contact with the guide angle 901 on the four clamping plates 9 of the first clamping cavity. The second slider 16026 of the fine-tuning plate 16024 slides along the second slide groove 16025 to guide the entire protective frame 16 into the first clamping cavity. After the protective frame 16 is assembled, the protective frame 16 has a fine-tuning function to avoid the protective frame 16 being difficult to put into the first clamping cavity. Under the elastic force of the spring A16028, the four fine-tuning plates 16024 and the four clamping plates 9 are in tight contact at their opposite ends.

[0102] Rotate the pressure plate 14 to make it contact the clamping plate 9, and connect the second bolt on the countersunk groove 15 to the clamping plate 9 with the thread, so that the pressure plate 9 is installed and fixed. Similarly, install and fix the other three pressure plates 9 on this subframe 2.

[0103] Similarly, all the cadmium telluride power-generating glass can be installed on several sub-frames 2 of the curtain wall frame 1.

[0104] S8, Weather-resistant Silicone Sealant for Sealing

[0105] Apply weather-resistant silicone sealant evenly to all gaps in the curtain wall frame 1 to make the device waterproof; and scrape and repair the weather-resistant silicone sealant in the gaps to make them look neat.

[0106] S9, Cleaning Inspection

[0107] A cleanliness check was performed on the entire curtain wall frame 1, and any dirt or grime generated during the installation process was cleaned.

[0108] The embodiments disclosed in this invention are preferred embodiments, but are not limited thereto. Those skilled in the art can easily understand the spirit of this invention based on the above embodiments and make different extensions and variations, but as long as they do not depart from the spirit of this invention, they are all within the protection scope of this invention.

Claims

1. A cadmium telluride power generation glass curtain wall installation structure, comprising a curtain wall frame (1), characterized in that, The curtain wall frame (1) is composed of several sub-frames (2); The subframe (2) consists of two columns (3) and two beams (4). The columns (3) and beams (4) are connected by U-shaped blocks (5). Two adjacent columns (3) in the vertical direction are connected by plug-in blocks (6). Slots (7) are symmetrically provided at both ends of the columns (3) and beams (4), and the plug-in blocks (6) are plugged into the slots (7) on the columns (3). The U-shaped blocks (5) and the columns (3) are connected by several first... The bolt is threaded and the end of the first bolt passes through the column (3) and extends into the slot (7) and is pressed together with the plug block (6). The U-shaped block (5) is plugged into the slot (7) on the crossbeam (4). The column (3) and the crossbeam (4) are provided with mounting grooves (8) on the side near the U-shaped block (5) relative to the slot (7). A clamping plate (9) is movably installed in the mounting groove (8). The clamping plate (9) in the sub-frame (2) The first clamping cavity is formed. At least one first sliding groove (10) is provided in the mounting groove (8). A first slider (11) is fixed on the clamping plate (9) relative to the first sliding groove (10). A countersunk hole B is provided on the clamping plate (9) relative to the first slider (11). A clamping bolt (12) is threaded in the countersunk hole B. The end of the clamping bolt (12) passes through the first slider (11) and is fitted with a rubber pad (13). The rubber pad (13) is pressed and connected to the bottom end of the first sliding groove (10). A pressure plate (14) is rotatably connected to the mounting groove (8) away from the clamping plate (9). At least one countersunk groove (15) is provided on the pressure plate (14). A second bolt is movably provided on the countersunk groove (15). The end of the second bolt passes through the countersunk groove (15) and is threadedly connected to the clamping plate (9). Mounting blocks (17) are detachably connected to both ends of the column (3) away from the pressure plate (14). A connecting groove (301) is provided on one of the columns (3) of the subframe (2), and a connecting block (302) is detachably connected to the connecting groove (301).

2. The cadmium telluride power generation glass curtain wall installation structure as described in claim 1, characterized in that, The connecting block (302) is composed of a connecting part (3021), a guide part (3022) and a columnar limiting part (3023). The connecting part (3021) is provided with a plurality of countersunk holes A evenly distributed on it. The countersunk holes A are provided with bolts A, and the bolts A are threadedly connected to the bottom end of the connecting groove (301). The bottom end of the guide part (3022) is shaped like the number eight, and the bottom end of the limiting part (3023) is a hemispherical structure, and the length of the limiting part (3023) is less than the length of the guide part (3022).

3. The cadmium telluride power generation glass curtain wall installation structure as described in claim 2, characterized in that, A functional slot (303) is provided on another column (3) of the subframe (2), and the functional slot (303) slides in cooperation with the guide part (3022) and the limiting part (3023).

4. The cadmium telluride power generation glass curtain wall installation structure as described in claim 3, characterized in that, It also includes a protective frame (16); the protective frame (16) includes a plurality of right-angle rods (1601), the plurality of right-angle rods (1601) form a second clamping cavity, and two adjacent right-angle rods (1601) are connected by an elastic component (1602), the elastic component (1602) is in contact with the clamping plate (9).

5. The cadmium telluride power generation glass curtain wall installation structure as described in claim 4, characterized in that, A limiting slide rod (16011) is fixed on one side of the right-angle rod (1601), and semi-rings (16012) are fixed at both ends of the right-angle rod (1601).

6. The cadmium telluride power generation glass curtain wall installation structure as described in claim 5, characterized in that, The elastic component (1602) includes an L-shaped rod (16021), a connecting seat (16022) is fixedly provided in the middle of the inner side of the L-shaped rod (16021), and tension springs (16023) are symmetrically connected to both ends of the connecting seat (16022). The ends of the tension springs (16023) are hooked and connected to the semi-ring (16012). Both ends of the inner side of the L-shaped rod (16021) are provided with sliding rod grooves (16027), and the limiting sliding rod (16011) is slidably connected to the sliding rod grooves (16027).

7. The cadmium telluride power generation glass curtain wall installation structure as described in claim 6, characterized in that, The L-shaped rod (16021) is provided with a fine-tuning plate (16024) on its outer side. At least one second sliding groove (16025) is provided on the surface of the L-shaped rod (16021). A second slider (16026) is fixedly provided on the fine-tuning plate (16024) relative to the second sliding groove (16025). The second slider (16026) is slidably connected to the second sliding groove (16025). The end of the second slider (16026) is elastically connected to the bottom of the second sliding groove (16025) by a spring A (16028). The bottom of the fine-tuning plate (16024) has an arc-shaped structure.

8. The cadmium telluride power generation glass curtain wall installation structure as described in claim 7, characterized in that, The clamping plate (9) has a guide angle (901) on the inner side of its top end, and the guide angle (901) of the first clamping cavity constitutes the guide cavity.

9. The cadmium telluride power generation glass curtain wall installation structure as described in claim 8, characterized in that, The mounting block (17) has two sets of countersunk holes B in a centrally symmetrical structure. A fourth bolt is provided in the countersunk hole B. The end of the fourth bolt passes through the countersunk hole B and is connected to the column (3) by thread.

10. A construction method for a cadmium telluride power generation glass curtain wall, using the cadmium telluride power generation glass curtain wall installation structure as described in claim 9, characterized in that... Includes the following steps: S1. Measurement and layout; Lay out lines on the exterior wall of the building and measure the installation corner points; S2, Installation of mounting block (17) and U-shaped block (5); Install and fix the mounting blocks (17) at both ends of all columns (3) using the fourth bolts; The U-shaped block (5) is connected to the column (3) by several first bolts threaded together; S3, Adjustment of the position of clamp (9); Adjust the position of the clamping plates (9) on all columns (3) and beams (4) according to the size of the cadmium telluride power generation glass and protective frame (16). By rotating the clamping bolts (12), the rubber pads (13) are disengaged from the bottom of the first slide groove (10). The clamping plates (9) are slid so that the first slider (11) slides along the first slide groove (10) to adjust the clamping plates (9) to the appropriate position, so that the four clamping plates (9) on the two columns (3) and two beams (4) of the subframe (2) form the first clamping cavity of appropriate size. S4. Installation of connecting block (302); All connecting parts (3021) of the connecting blocks (302) are installed one by one on the column with connecting groove (301) by bolts A; S5. Installation of the curtain wall frame (1); Prioritize installing the column (3) with functional slots (303) at the bottom edge of the curtain wall frame (1), and fix the mounting blocks (17) at both ends of the column (3) to the exterior wall of the building with the fourth bolt. Insert the plug block (6) into the slot (7) at the top of the column (3), insert the slot (7) at the bottom of the other column (3) into the plug block (6), rotate the first bolt on the two U-shaped blocks (5) at the connection end of the two columns (3) so that the end of the first bolt presses against the plug block (6) to complete the initial fixation. Fix the mounting blocks (17) at both ends of the other column (3) to the exterior wall of the building with the fourth bolt. Insert the slots (7) of the crossbeams (4) into the U-shaped blocks (5) from bottom to top. The slots (7) at the other end of the two crossbeams (4) of the same subframe (2) form a new slot unit. Align the U-shaped blocks (5) at the top and bottom of the column (3) with the functional slots (303) at the bottom edge with the upper and lower slots (7) of the slot unit and insert them. Fix the mounting blocks (17) at both ends of the column (3) to the exterior wall of the building with the fourth bolt. Insert a column (3) with a connecting block (302) into the functional slot (303) along the guide part (3022) of the connecting block (302) until the limiting part (3023) is also inserted into the functional slot (303), until the guide part (3022) and the limiting part (3023) of the connecting block (302) are completely inserted into the functional slot (303). The guide part (3022) of the connecting block (302) provides a guiding function for the two columns (3), and the limiting part (3023) of the connecting block (302) provides a connecting function for the two columns (3), which facilitates the installation of two horizontally adjacent columns. After installation, the mounting blocks (17) at both ends are fixed to the outer wall of the building by the fourth bolt. The entire curtain wall frame (1) is installed using the same steps as described above; S6. Assembly of the protective frame (16); Slide the limiting slide rods (16011) of the two right-angle rods (1601) into the slide rod grooves (16027) inside the L-shaped rod (16021) of the elastic component (1602). Hook the ends of the two tension springs (16023) with the semi-rings (16012) at the ends of the two right-angle rods (1601). Similarly, install a U-shaped combination of two right-angle rods (1601) and one elastic component (1602). Place them symmetrically, slide the slide groove (16027) on one side of the L-shaped rod (16021) of the two elastic components (1602) to the limiting slide rod (16011) at the ends of the two right-angle rods (1601) on both sides of the U-shape respectively, and hook the ends of the two tension springs (16023) of the elastic component (1602) to the semi-rings (16012) at the ends of the two right-angle rods (1601) respectively. Complete the installation of the other U-shaped assembly in the same way. S7, Installation of cadmium telluride power generation glass and protective frame (16); Grasp the two corner points of the two symmetrical right-angle rods (1601) on the protective frame (16) and pull them outward along the diagonal to enlarge the entire protective frame (16). Put the cadmium telluride power generation glass into the second clamping cavity formed by the four right-angle rods (1601) on the inner side of the protective frame (16). Slowly move the two corner points of the two right-angle rods (1601) inward along the diagonal until the second clamping cavity clamps the cadmium telluride power generation glass. Under the elastic force of the tension spring (16023), the protective frame (16) clamps the cadmium telluride power generation glass. The protective frame (16) containing the cadmium telluride power generation glass is placed into the first clamping cavity formed by the four clamping plates (9) on the two columns (3) and two crossbeams (4) of the sub-frame (2). During this process, the arc-shaped structure at the bottom of the four fine adjustment plates (16024) forms a guide cavity contact with the guide angle (901) on the four clamping plates (9) of the first clamping cavity. The second slider (16026) of the fine adjustment plate (16024) slides along the second slide groove (16025) to guide the entire protective frame (16) into the first clamping cavity. After the protective frame (16) is assembled, the protective frame (16) has a fine adjustment function to avoid the protective frame (16) being difficult to put into the first clamping cavity. Under the elastic force of the spring A (16028), the four fine adjustment plates (16024) and the four clamping plates (9) are in tight contact with each other. Rotate the pressure plate (14) to make the pressure plate (14) contact the clamping plate (9), and thread the second bolt on the countersunk groove (15) to the clamping plate (9) so that the pressure plate (14) is installed and fixed. Similarly, install and fix the other three pressure plates (14) on this subframe (2). As above, all the cadmium telluride power-generating glass can be installed on several sub-frames (2) of the curtain wall frame (1); S8, weather-resistant silicone sealant for caulking; Apply weather-resistant silicone sealant evenly to all gaps in the curtain wall frame (1) to make the device waterproof; and scrape and repair the weather-resistant silicone sealant in the gaps to make them look neat. S9. Cleaning inspection; The cleanliness of the entire curtain wall frame (1) was checked, and dirt caused during the installation process was cleaned.

Citation Information

Patent Citations

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