A constructed wind-resistant curtain wall

By combining clamping positioning components, positioning pre-adjustment components, and locking control components, the problems of inconvenient assembly and disassembly and poor sealing of modular wind-resistant curtain walls in rainy and snowy weather are solved, achieving stable installation and convenient disassembly of glass, and ensuring the cleanliness and safety of the glass.

CN120625779BActive Publication Date: 2025-11-25GUIZHOU GUICAI INNOVATION TECH (GRP) CO LTD
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Patent Information

Application Number
CN202511130655.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-08-13
Publication Date
2025-11-25
Estimated Expiration
2045-08-13

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Abstract

The application discloses a kind of construction wind-resistant curtain wall, it is related to construction curtain wall technical field;Including hollow glass piece, the clamping positioning piece is installed on the hollow glass piece, hollow test piece is installed in the hollow glass piece;The hollow test piece is used to scrape the inside of hollow glass piece;Positioning pre-adjusting piece is installed on the clamping positioning piece;The position of hollow glass piece is pre-adjusted by the positioning pre-adjusting piece;Rain and snow control piece is installed on the clamping positioning piece;Locking control piece is installed on the clamping positioning piece;Locking control piece can be used to control and limit the disassembly and replacement work of double-layer hollow glass body when rain and snow exist;To solve the problem that the current construction wind-resistant curtain wall is not convenient to limit the disassembly and replacement of curtain wall in rainy and snowy weather, it is inconvenient to understand the neatness inside and outside double glazing.
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Description

Technical Field

[0001] This invention relates to the field of structural curtain wall technology, specifically a structural wind-resistant curtain wall. Background Technology

[0002] Modular curtain walls are one of the main types of building curtain walls. Their core feature is on-site assembly of individual components. Benefiting from their high installation flexibility, they are widely used in glass curtain wall installation. Typically, double-layer glass panels are fastened to pre-reserved horizontal and vertical mounting frames on the outside of the building using clamping plates and bolts, followed by sealing with adhesive. Currently, modular wind-resistant curtain walls are usually installed by directly pressing the glass panels together, which puts a lot of pressure on the glass and is not convenient for disassembling and replacing the curtain wall in rainy or snowy weather. Rain and snow can easily cause the adhesive to weaken, which also increases the safety hazards for workers. It is also not convenient for workers to check the sealing effect inside the double-layer curtain wall at any time, and it is not convenient to understand the cleanliness of the inside and outside of the double-layer glass.

[0003] Therefore, we propose a structural wind-resistant curtain wall. Summary of the Invention

[0004] The purpose of this invention is to provide a modular wind-resistant curtain wall to solve the problems mentioned in the background art, such as the inconvenience of restricting the disassembly and replacement of the curtain wall in rainy or snowy weather, and the inconvenience of understanding the cleanliness of the inside and outside of the double-glazed windows.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a modular wind-resistant curtain wall, comprising a double-glazed unit, wherein a clamping and positioning component is installed on the double-glazed unit, and a hollow test component is installed inside the double-glazed unit; the hollow test component is used to scrape the inside of the double-glazed unit; a positioning pre-adjustment component is installed on the clamping and positioning component; the positioning pre-adjustment component is used to pre-adjust the position of the double-glazed unit; a rain and snow control component is installed on the clamping and positioning component; a locking control component is installed on the clamping and positioning component; the locking control component is used to prevent rain and snow from interfering with the bonding; the double-glazed unit comprises: a double-glazed main body and an outer frame, wherein the double-glazed main body is a double-glazed sealed structure; and an outer frame is fixedly installed on the outer side of the double-glazed main body.

[0006] Preferably, the insulated glass component further includes a handheld magnet, which is located on the outside of the double-layer insulated glass body and is attached to the double-layer insulated glass body.

[0007] Preferably, the clamping and positioning component includes: a fixed mounting plate, a sliding column, a pressure plate, and a locking electromagnet. The fixed mounting plate has four rows, and the four rows of fixed mounting plates have the same structure. The four rows of fixed mounting plates are respectively used for fixed installation on the curtain wall mounting frame. A sliding column is fixedly installed on the fixed mounting plate, and a pressure plate is slidably inserted into each of the four rows of sliding columns. A tension spring is sleeved on the sliding column. The tension spring on the sliding column is connected between the fixed mounting plate and the pressure plate. A threaded hole is provided on the inner side of the sliding column. A locking electromagnet is fixedly installed on the pressure plate. The inner side of the pressure plate presses against the outer frame. A ratchet strip is provided on both sides of the pressure plate.

[0008] Preferably, the clamping and positioning component further includes: limiting teeth, locking bolts, and sealing covers. A ring of limiting teeth is formed on the pressure plate; a locking bolt is inserted into the pressure plate; the locking bolt is threaded onto the sliding post; the locking bolt presses against the pressure plate; three sealing covers are provided, and the three sealing covers are respectively slidably engaged with the two rows of pressure plates on both sides and the ratchet strips on both sides of the upper row of pressure plates; the sealing covers are used to shield and protect the pressure plates.

[0009] Preferably, the hollow test piece includes: a sliding frame, a test magnet, and a scratching blade. The sliding frame is located inside the double-glazed insulating glass body; the test magnet is fixedly installed inside the sliding frame; two scratching blades are fixedly installed on the sliding frame, and the two scratching blades are respectively attached to the inner side of the double-glazed insulating glass body; the handheld magnet magnetically attracts the test magnet; the sliding frame is used to slide inside the double-glazed insulating glass body.

[0010] Preferably, the positioning pre-adjustment component includes: pre-adjustment bolts and limiting wedges. Two pre-adjustment bolts are threaded onto each of the four rows of pressure plates, and the tails of the two pre-adjustment bolts are respectively provided with hexagonal holes. The ends of the four rows of pre-adjustment bolts are respectively used to press and fit against the adjacent outer frame sides. Limiting wedges are slidably inserted into the inner sides of the through holes on the four rows of pressure plates. The sides of the four rows of limiting wedges are inclined structures. The inner sides of the four rows of limiting wedges are respectively inclined structures. The sides of the four rows of limiting wedges are respectively attached to the pre-adjustment bolts. The locking bolt is used to cover the pre-adjustment bolts.

[0011] Preferably, the positioning pre-adjustment component further includes: a compensation spring, wherein a compensation spring is fixedly installed on each of the two limiting wedges, and the two compensation springs are elastically attached to the side of the locking bolt on the same side.

[0012] Preferably, the rain and snow control component includes: a lower protective cover, a collection trough, and an electric heating wire. The lower protective cover is slidably engaged with the ratchet strips on both sides of a row of pressure plates below. A collection trough is provided on the top of the lower protective cover. The lower protective cover is attached to the sides of two adjacent closed covers. An electric heating wire is fixedly installed inside the collection trough. The electric heating wire is connected to a power source. The collection trough is used to collect rain and snow.

[0013] Preferably, the rain and snow control component further includes: an absorbent sponge and a contact plate; the absorbent sponge is fixedly installed inside the collection trough; two contact plates are fixedly installed at the bottom inside the collection trough, with a gap between the two contact plates; the contact plates are located below the absorbent sponge; the two contact plates are used to electrically connect to a locking electromagnet; the absorbent sponge is used to absorb rain and snow water.

[0014] Preferably, the locking control component includes: a locking mounting plate, locking blocks, and pull-back springs. The locking mounting plate has four rows, and the four rows of locking mounting plates have the same structure. The four rows of locking mounting plates are respectively fixedly mounted on four rows of locking bolts. Two locking blocks are slidably inserted into the locking mounting plate. Each of the two locking blocks has a row of notches on its inner side, and the row of notches on the inner side of the two locking blocks are respectively used to insert limiting teeth. Two pull-back springs are fixedly mounted on the inner side of the locking mounting plate, and the ends of the two pull-back springs are respectively fixedly mounted on the locking blocks. The pull-back springs are V-shaped springs. The locking electromagnet is used to magnetically attract the two locking blocks on the same side.

[0015] Compared with the prior art, the beneficial effects of the present invention are:

[0016] The invention employs a locking control component that can be used to control and restrict the disassembly and replacement of double-glazed insulated glass units during rain and snow. This makes it more suitable for standardizing the operation of workers when replacing double-glazed insulated glass units, ensuring the installation quality of the double-glazed insulated glass units, and preventing rain and snow from affecting the adhesion of the adhesive applied during installation.

[0017] The use of pre-adjustment positioning components allows for easy adjustments to the position of the double-glazed unit before tightening during installation. This ensures the stability of the double-glazed unit and allows the locking bolts to cover the pre-adjustment bolts, preventing adjustments after the locking bolts are installed. Furthermore, it ensures the safety of subsequent locking control components. This structure allows for precise adjustment before tightening, enabling the pressure plate to be pressed down directly after the double-glazed unit is accurately positioned, reducing frictional damage to the outer frame.

[0018] Using a hollow test piece allows staff to easily confirm whether there is a leak in the double-glazed insulated glass unit. It also serves to clean the double-glazed insulated glass unit. Once there is a leak in the double-glazed insulated glass unit, it is easy to cause fogging, which affects its transparency and also causes dust to adhere to the inside. This structure can be used to temporarily clean the double-glazed insulated glass unit and avoid the interference of dust and impurities on the outside of the double-glazed insulated glass unit with the judgment. It also avoids the problem that once there is a leak in the traditional double-glazed insulated glass unit, the dust inside cannot be cleaned. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of a modular wind-resistant curtain wall installed behind a curtain wall mounting frame according to the present invention;

[0020] Figure 2 This is a schematic diagram of the bottom structure of a modular wind-resistant curtain wall according to the present invention;

[0021] Figure 3 This is a cross-sectional view of the hollow glass component structure of the present invention;

[0022] Figure 4 This is a schematic diagram showing the position of the main body of the double-layer hollow glass of the present invention;

[0023] Figure 5 For the present invention Figure 4 Enlarged view of the structure of region C in the middle;

[0024] Figure 6 This is a cross-sectional view of the positioning pre-adjustment component structure of the present invention;

[0025] Figure 7 For the present invention Figure 2 Enlarged view of the structure of region H in the middle;

[0026] Figure 8 This is a schematic diagram of the locking control component of the present invention;

[0027] Figure 9 This is a schematic diagram of the rain and snow control component of the present invention;

[0028] Figure 10 This is a schematic diagram of the locking control component of the present invention.

[0029] In the diagram: 1. Insulating glass component; 101. Double-glazed insulating glass body; 102. Outer frame; 103. Handheld magnet; 2. Clamping and positioning component; 201. Fixed mounting plate; 202. Sliding column; 203. Pressure plate; 204. Locking electromagnet; 205. Limiting tooth; 206. Locking bolt; 207. Enclosed cover; 3. Insulating glass test component; 301. Sliding frame; 302. Test magnet; 303. Scraper; 4. Positioning pre-adjustment component; 401. Pre-adjustment bolt; 402. Limiting wedge; 403. Compensating spring; 5. Rain and snow control component; 501. Lower protective cover; 502. Collection tank; 503. Electric heating wire; 504. Absorbing sponge; 505. Electrical contact plate; 6. Locking control component; 601. Locking mounting plate; 6011. Locking block; 602. Pull-back spring. Detailed Implementation

[0030] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0031] Example 1: Please refer to Figures 1 to 10 As shown:

[0032] This invention provides a technical solution: a modular wind-resistant curtain wall, comprising an insulated glass element 1, a clamping and positioning element 2 installed on the insulated glass element 1, and an insulated test element 3 installed inside the insulated glass element 1; the insulated test element 3 is used to scrape the inside of the insulated glass element 1; a positioning pre-adjustment element 4 is installed on the clamping and positioning element 2; the positioning pre-adjustment element 4 is used to pre-adjust the position of the insulated glass element 1; a rain and snow control element 5 is installed on the clamping and positioning element 2; a locking control element 6 is installed on the clamping and positioning element 2; the locking control element 6 is used to prevent rain and snow from interfering with the bonding; the insulated glass element 1 includes: a double-layer insulated glass body 101 and an outer frame 102, the double-layer insulated glass body 101 is a double-layer insulated sealed structure; the outer frame 102 is fixedly installed on the outside of the double-layer insulated glass body 101.

[0033] The insulating glass component 1 further includes: a handheld magnet 103, which is located on the outside of the double-glazed insulating glass body 101 and is attached to the double-glazed insulating glass body 101; the clamping and positioning component 2 includes: a fixed mounting plate 201, a sliding column 202, a pressure plate 203, and a locking electromagnet 204. The fixed mounting plate 201 has four rows, and the four rows of fixed mounting plates 201 have the same structure; the four rows of fixed mounting plates 201 are respectively used to be fixedly installed on the curtain wall mounting frame; the sliding column 202 is fixedly installed on the fixed mounting plate 201, and the pressure plate 203 is slidably inserted into the four rows of sliding columns 202, and a tension spring is sleeved on the sliding column 202; the tension spring on the sliding column 202 is connected between the fixed mounting plate 201 and the pressure plate 203; the sliding column 202 has a threaded hole on its inner side; the locking electromagnet 204 is fixedly installed on the pressure plate 203; the inner side of the pressure plate 203 is squeezed The clamping and positioning component 2 further includes: limiting teeth 205, locking bolts 206, and sealing covers 207. A ring of limiting teeth 205 is provided on the clamping plate 203; locking bolts 206 are inserted into the clamping plate 203; the locking bolts 206 are threaded onto the sliding column 202; the locking bolts 206 press and adhere to the clamping plate 203; three sealing covers 207 are provided, each slidingly engaging with the two rows of clamping plates 203 on both sides and the ratchet strips on both sides of the top row of clamping plates 203; the sealing covers 207 are used to shield and protect the clamping plates 203. Using the clamping and positioning component 2 in conjunction with the insulating glass component 1 facilitates stable positioning of the double-glazed insulating glass body 101, while the pressure acts on the outer frame 102, preventing squeezing damage to the double-glazed insulating glass body 101, improving the safety of curtain wall installation, and simplifying operation.

[0034] The positioning pre-adjustment component 4 includes: pre-adjustment bolts 401 and limiting wedges 402. Two pre-adjustment bolts 401 are threaded onto each of the four rows of pressure plates 203, and each of the two pre-adjustment bolts 401 has a hexagonal hole at its tail. The ends of the four rows of pre-adjustment bolts 401 are respectively used to press and adhere to the sides of adjacent outer frames 102. Limiting wedges 402 are slidably inserted into the through holes on the four rows of pressure plates 203. The sides of the four rows of limiting wedges 402 have a beveled structure. The inner sides of the four rows of limiting wedges 402 also have beveled structures. The sides of the four rows of limiting wedges 402 are respectively attached to the pre-adjustment bolts 401. Locking bolts 206 are used to cover the pre-adjustment bolts 401. The positioning pre-adjustment component 4 also... Includes: a compensating spring 403, with each of the two limiting wedges 402 fixedly mounted with a compensating spring 403, and the two compensating springs 403 elastically fitting against the side of the locking bolt 206 on the same side; the use of a positioning pre-adjustment component 4 facilitates the actual installation of the double-glazed insulated glass body 101, prompting workers to prioritize fine-tuning the position of the double-glazed insulated glass body 101 before tightening it, ensuring the installation stability of the double-glazed insulated glass body 101. Simultaneously, the locking bolt 206 can be used to cover the pre-adjustment bolt 401, preventing workers from adjusting the pre-adjustment bolt 401 after installing the locking bolt 206, further... To ensure the safety of the subsequent locking control component 6, the structure is more rational. This structure allows for fine-tuning followed by tightening. After the position of the double-glazed insulated glass body 101 is accurately adjusted, the pressure plate 203 can be directly pressed down, reducing frictional damage to the outer frame 102. Simultaneously, the locking bolt 206 can be used to push the limiting wedge 402, preventing the pre-adjustment bolt 401 from loosening, ensuring stable positioning, guaranteeing the structure's wind resistance, and improving safety. A hex wrench is inserted through the pressure plate 203 and rotated to push and compress the outer frame 102 for fine-tuning. After fine-tuning the outer frame 102, if multiple adjacent double-glazed insulated glass units exist... The double-glazed insulated glass body 101 can be installed on one side of the already finely adjusted and positioned double-glazed insulated glass body 101, and positioned again by the pre-adjustment bolt 401. Then, the limiting wedge 402 can be inserted into the pressure plate 203, and then the locking bolt 206 can be inserted into the pressure plate 203. The locking bolt 206 is tightened by the hex wrench. The pressure plate 203 simultaneously presses and fixes the outer frame 102 on the two adjacent double-glazed insulated glass bodies 101. At this time, the locking bolt 206 will also elastically compress the compensation spring 403. The compensation spring 403 can push the limiting wedge 402 to fit the pre-adjustment bolt 401 for protection and to prevent it from falling off.

[0035] The hollow test piece 3 includes: a sliding frame 301, a test magnet 302, and a scraper 303. The sliding frame 301 is located inside the double-glazed insulated glass body 101; the test magnet 302 is fixedly installed inside the sliding frame 301; two scrapers 303 are fixedly installed on the sliding frame 301, and the two scrapers 303 are respectively attached to the inner side of the double-glazed insulated glass body 101; the handheld magnet 103 magnetically attracts the test magnet 302; the sliding frame 301 is used to slide inside the double-glazed insulated glass body 101. Using the hollow test piece 3 makes it easier for staff to confirm whether there is a leak in the double-glazed insulated glass body 101, and it can also clean the double-glazed insulated glass body 101. Once there is a leak in the double-glazed insulated glass body 101, it can easily cause... While fogging affects its transparency, dust also adheres to the inside. This structure can be used to temporarily clean the double-glazed glass body 101, and also avoids interference from dust and impurities on the outside of the double-glazed glass body 101. The structure is more reasonable and the operation is simple. It avoids the problem that the dust inside the double-glazed glass body 101 cannot be cleaned once there is a leak. When fog or dust is found in the double-glazed glass body 101, you can first manually drag the handheld magnet 103 to move it. Use the magnetic force to drive the test magnet 302 to move. At this time, scrape the inside of the double-glazed glass body 101 with the scraper 303. If there is no change in the dust, it means that the dust is on the outside side of the double-glazed glass body 101, and normal cleaning is sufficient.

[0036] In Example 2, based on Example 1, the rain and snow control component 5 includes: a lower protective cover 501, a collection trough 502, and an electric heating wire 503. The lower protective cover 501 is slidably engaged with the ratchet strips on both sides of a row of pressure plates 203 below; the collection trough 502 is provided on the top of the lower protective cover 501; the lower protective cover 501 is attached to the sides of two adjacent closed covers 207; the electric heating wire 503 is fixedly installed inside the collection trough 502; the electric heating wire 503 is externally connected to a power source; the collection trough 502 is used to collect rain and snow; the rain and snow control component 5 also includes: an absorbent sponge 504 and a contact plate 505, the absorbent sponge 504 is fixedly installed inside the collection trough 502. 504 absorbent sponge; two electrical contacts 505 are fixedly installed on the bottom inner side of the collection tank 502, with a gap between the two electrical contacts 505; the electrical contacts 505 are located below the absorbent sponge 504; the two electrical contacts 505 are used for electrical connection to the locking electromagnet 204; the absorbent sponge 504 is used to absorb rain and snow water; the locking control component 6 includes: a locking mounting plate 601, a locking block 6011, and a return spring 602. The locking mounting plate 601 has four rows, and the four rows of locking mounting plates 601 have the same structure; the four rows of locking mounting plates 601 are respectively fixedly installed on four rows of locking bolts 206; two slidably inserted bolts 206 are connected to the locking mounting plate 601. Two locking blocks 6011 are provided; each of the two locking blocks 6011 has a row of notches on its inner side, which are used to insert the limiting teeth 205; two pull-back springs 602 are fixedly installed on the inner side of the locking mounting plate 601, and the ends of the two pull-back springs 602 are fixedly installed on the locking blocks 6011; the pull-back springs 602 are V-shaped springs; the locking electromagnet 204 is used to magnetically attract the two locking blocks 6011 on the same side. The use of the locking control component 6 can be used to control and restrict the disassembly and replacement of the double-glazed insulated glass body 101 when there is rain or snow, which can be more suitable for standardizing the operation of the staff. Replace the double-glazed insulated glass unit 101 to ensure the installation quality of the double-glazed insulated glass unit 101 and avoid the effect of rain and snow on the bonding effect of the adhesive applied during installation. This structure can collect rainwater in real time, and even snow can be melted by heating with electric heating wire 503. Rainy and snowy weather is slippery and can easily lead to personnel operation errors, equipment slippage, and increase the risk of falls from heights. Low temperatures will also increase the brittleness of steel and reduce the load-bearing capacity of climbing frames or temporary support structures. Suspending construction can avoid safety hazards. Rain, snow and low temperatures will cause insufficient adhesion of structural adhesive, and rain and snow can easily penetrate into unsealed curtain wall joints, and even cause condensation and mold.

[0037] The working principle of this embodiment is as follows: First, this structure can be used in combination with multiple double-glazed glass bodies 101 as needed. The double-glazed glass bodies 101 are hoisted onto the horizontal and vertical mounting frames reserved outside the building. Prefabricated mounting plates 201 are welded and fixed onto the reserved horizontal and vertical mounting frames to ensure subsequent clamping stability. The reserved horizontal and vertical mounting frames are consistent with existing technologies. The inner side of the double-glazed glass body 101 is attached to the reserved horizontal and vertical mounting frames. At this point, a hex wrench can be used to push and compress the outer frame 102 for fine-tuning by rotating it through the pressure plate 203 and the pre-adjustment bolt 401. After fine-tuning the outer frame 102, if there are multiple adjacent double-glazed glass bodies... The double-glazed glass body 101 can be installed on one side of the already finely adjusted and positioned double-glazed glass body 101. It is then repositioned using the pre-adjustment bolt 401. Next, the limiting wedge 402 is inserted into the pressure plate 203, and then the locking bolt 206 is inserted into the pressure plate 203. The locking bolt 206 is tightened using a hex wrench. The pressure plate 203 simultaneously presses and fixes the outer frames 102 on the two adjacent double-glazed glass bodies 101. At this time, the locking bolt 206 also elastically compresses the compensation spring 403, which pushes the limiting wedge 402 to conform to the pre-adjustment bolt 401 for protection and to prevent detachment. Workers can apply a protective coating to the inside of the outer frame 102 beforehand. The adhesive provides a better seal between the glass and the pre-installed horizontal and vertical mounting brackets on the exterior of the building. Then, the worker manually slides the lower protective cover 501 onto the ratchet strips on both sides of the lower row of pressure plates 203. The sealing cover 207 slides onto the ratchet strips on both sides of the two rows of pressure plates 203 on both sides and the upper row of pressure plates 203 for protection. If fog or dust is found on the double-glazed insulated glass body 101, the handheld magnet 103 can be manually dragged to move, using the magnetic force to displace the test magnet 302. At this time, the inside of the double-glazed insulated glass body 101 can be scraped with the scraper 303, while simultaneously cleaning and wiping the side of the double-glazed insulated glass body 101 facing the interior. The presence of dust or fog can then be observed. The presence or absence of gas can be used to determine whether a leak exists. If the dust remains unchanged, it indicates that the dust is on the outdoor side of the double-glazed unit 101, and normal cleaning is sufficient. If water accumulates inside the actual collection tank 502, it means that the absorbent sponge 504 can help absorb water during rainy or snowy weather. When there is a lot of rainwater, the two electrical contacts 505 will be connected by the rainwater, and the circuit will be connected. All four rows of locking electromagnets 204 will be energized, and the magnetic locking block 6011 will be inserted into the insertion limit tooth 205 for limiting. In this state, the staff cannot operate the rotating locking bolt 206 to disassemble, thereby achieving restriction, improving safety, and ensuring the conditions for replacing the double-glazed unit 101.

[0038] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0039] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A constructional wind resistant curtain wall comprising hollow glass pieces (1) on which clamping positioning pieces (2) are mounted, characterized in that: The hollow test piece (3) is arranged in the hollow glass piece (1) and is used for scraping the inside of the hollow glass piece (1); The positioning pre-adjusting piece (4) is arranged on the clamping positioning piece (2) and is used for pre-adjusting the position of the hollow glass piece (1); The rain and snow control piece (5) is arranged on the clamping positioning piece (2), and the locking control piece (6) is arranged on the clamping positioning piece (2) and is used for preventing rain and snow interference from affecting bonding; The hollow glass piece (1) comprises a double-layer hollow glass body (101) and an outer frame (102), the double-layer hollow glass body (101) is a double-layer hollow sealing structure, and the outer frame (102) is fixedly arranged outside the double-layer hollow glass body (101); The clamping positioning piece (2) comprises a fixed mounting plate (201), a sliding column (202), a pressing piece (203), a locking electromagnet (204), a limiting tooth (205), a locking bolt (206) and a closed cover (207), the fixed mounting plate (201) is provided with four rows, and the structures of the four rows of fixed mounting plates (201) are the same; the four rows of fixed mounting plates (201) are respectively arranged on the curtain wall mounting frame; the fixed mounting plate (201) is fixedly provided with the sliding column (202), the pressing piece (203) is slidably connected to the sliding column (202), and the sliding column (202) is sleeved with a tension spring; the tension spring on the sliding column (202) is connected between the fixed mounting plate (201) and the pressing piece (203); the sliding column (202) is provided with a threaded hole in the inner side; the locking electromagnet (204) is fixedly arranged on the pressing piece (203); the pressing piece (203) is extruded and attached to the outer frame (102) in the inner side; the pressing piece (203) is provided with a ratchet-shaped strip on each side; The positioning pre-adjusting piece (4) comprises a pre-adjusting bolt (401) and a limiting wedge (402), two pre-adjusting bolts (401) are threadedly connected to each of the four rows of pressing pieces (203), and the tail portions of the two pre-adjusting bolts (401) are respectively provided with hexagonal holes; the end portions of the four rows of pre-adjusting bolts (401) are used for extruding and attaching to the side surfaces of the adjacent outer frames (102); the limiting wedge (402) is slidably inserted into the inner side of the through hole of each of the four rows of pressing pieces (203); the side surface of each of the four rows of limiting wedges (402) is a beveled structure; the inner side of each of the four rows of limiting wedges (402) is a beveled structure; the side surface of each of the four rows of limiting wedges (402) is attached to the pre-adjusting bolt (401); and the locking bolt (206) is used for shielding the pre-adjusting bolt (401).

2. A constructed wind-resistant wall according to claim 1, wherein: The hollow glass piece (1) further comprises a handheld magnet (103), the handheld magnet (103) is arranged outside the double-layer hollow glass body (101), and the handheld magnet (103) is attached to the double-layer hollow glass body (101).

3. A constructed wind-resistant wall according to claim 1, wherein: The pressing sheet (203) is provided with a ring of limiting teeth (205); the pressing sheet (203) is inserted with a locking bolt (206); the locking bolt (206) is threadedly connected to the sliding column (202); the locking bolt (206) is extruded and attached to the pressing sheet (203); the closing cover (207) is provided with three, and the three closing covers (207) are respectively slidably connected to the two rows of pressing sheets (203) on the two sides and the two rows of pressing sheets (203) on the upper side and the two rows of pressing sheets (203) on the upper side; the closing cover (207) is used for shielding and protecting the pressing sheet (203).

4. A constructed wind-resistant wall according to claim 2, wherein: The hollow test piece (3) comprises a sliding frame (301), a test magnet (302) and a scraping piece (303), the sliding frame (301) is located inside the double-layer hollow glass body (101); the test magnet (302) is fixedly installed inside the sliding frame (301); two scraping pieces (303) are fixedly installed on the sliding frame (301), and the two scraping pieces (303) are respectively attached to the inner side of the double-layer hollow glass body (101); the handheld magnet (103) magnetically attracts the test magnet (302); the sliding frame (301) is used for sliding inside the double-layer hollow glass body (101).

5. A constructed wind-resistant wall according to claim 4, wherein: The positioning pre-adjusting piece (4) further comprises a compensation spring (403), two limiting wedge blocks (402) are respectively fixedly installed with a compensation spring (403), and two compensation springs (403) are respectively elastically attached to the side surface of the locking bolt (206) on the same side.

6. A constructed wind-resistant wall according to claim 3, wherein: The rain and snow control piece (5) comprises a lower protective cover (501), a collecting groove (502) and an electric heating wire (503), the lower protective cover (501) is slidably connected to the two rows of pressing sheets (203) on the two sides of the lower row of pressing sheets (203); the lower protective cover (501) is provided with a collecting groove (502) on the top; the lower protective cover (501) is attached to the side surface of the adjacent two closing covers (207); the electric heating wire (503) is fixedly installed in the inner side of the collecting groove (502); the electric heating wire (503) is externally connected with a power supply; the collecting groove (502) is used for collecting rain and snow.

7. A constructed windbreak wall according to claim 6, wherein: The rain and snow control piece (5) further comprises an absorbing sponge (504) and an electrically-conductive sheet (505), the absorbing sponge (504) is fixedly installed in the inner side of the collecting groove (502); two electrically-conductive sheets (505) are fixedly installed on the bottom of the inner side of the collecting groove (502), and a space is provided between the two electrically-conductive sheets (505); the electrically-conductive sheet (505) is located below the absorbing sponge (504); the two electrically-conductive sheets (505) are used for electrically connecting the locking electromagnet (204); the absorbing sponge (504) is used for absorbing rain and snow.

8. A constructed wind resistant wall according to claim 3, wherein: The locking control piece (6) comprises a locking mounting disc (601), a locking block (6011) and a pull-back spring (602), the locking mounting disc (601) is provided with four rows, the structures on the four rows of locking mounting discs (601) are the same; the four rows of locking mounting discs (601) are fixedly installed on four rows of locking bolts (206) respectively; two locking blocks (6011) are slidably inserted on the locking mounting disc (601); an inner side of each of the two locking blocks (6011) is provided with a row of notches, and the row of notches on the inner side of each of the two locking blocks (6011) is used for inserting a limiting tooth (205); two pull-back springs (602) are fixedly installed on the inner side of the locking mounting disc (601), and the ends of the two pull-back springs (602) are fixedly installed on the locking blocks (6011) respectively; the pull-back spring (602) is a V-shaped spring; the locking electromagnet (204) is used for magnetically attracting two locking blocks (6011) on the same side.

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