Construction type wind-resistant curtain wall

Through the combined structure of clamping positioning parts, positioning pre-adjusting parts, hollow test parts and rain and snow control parts, the problems of inconvenient disassembly and assembly and poor sealing of constructed wind-resistant curtain walls in rainy and snowy weather are solved, and stability and safety are improved.

CN120625779AActive Publication Date: 2025-09-12GUIZHOU GUICAI INNOVATION TECH (GRP) CO LTD
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Patent Information

Application Number
CN202511130655.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-13
Publication Date
2025-09-12
Estimated Expiration
2045-08-13

AI Technical Summary

Technical Problem

The existing constructed wind-resistant curtain wall is not easy to disassemble, install or replace in rainy or snowy weather, and it is not easy to check the cleanliness of the double-glazed windows inside and outside, which poses a safety hazard and poor sealing effect.

Method used

The combined structure of clamping positioning parts, positioning pre-adjusting parts, hollow test parts, rain and snow control parts and locking control parts is adopted to ensure the stability and safety of glass installation through clamping positioning, position fine-tuning, leakage detection and rain and snow control.

Benefits of technology

Standardized glass replacement operations are achieved in rainy and snowy weather, ensuring the stability and sealing effect of glass installation, simplifying the inspection and cleaning process, and reducing safety risks.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a constructed wind-resistant curtain wall, and relates to the technical field of constructed curtain walls. Comprising a hollow glass piece, a clamping positioning piece is installed on the hollow glass piece, and a hollow test piece is installed in the hollow glass piece; the hollow test piece is used for scraping the interior of the hollow glass piece; a positioning pre-adjusting piece is mounted on the clamping positioning piece; the positioning pre-adjusting part is used for pre-adjusting the position of the hollow glass part; a rain and snow control piece is mounted on the clamping and positioning piece; a locking control piece is mounted on the clamping positioning piece; the locking control piece can be used for controlling and limiting the situation that the double-layer hollow glass body cannot be disassembled, assembled and replaced when rain and snow exist; the problems that an existing construction type wind-resistant curtain wall is inconvenient to disassemble and replace in rainy and snowy weather, and the cleanliness inside and outside double-layer glass is inconvenient to know are solved.
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Description

Technical Field

[0001] The present invention relates to the technical field of constructive curtain walls, in particular to a constructive wind-resistant curtain wall. Background Art

[0002] Constructive curtain walls are one of the main types of building curtain walls. Their core feature is on-site piece-by-piece assembly. Thanks to their advantages such as strong installation flexibility, they are widely used in glass curtain wall installation. Double-layer glass panels are usually fastened to the horizontal and vertical mounting frames reserved outside the building through pressing pieces and bolts, and then glue and seal are applied. The current constructive wind-resistant curtain walls are usually installed by directly pressing the glass panels, which puts a lot of pressure on the glass and is not convenient for restricting the disassembly and replacement of curtain walls in rainy and snowy weather. Rain and snow can easily cause the glue to be loose, which will also increase safety risks for workers. It is also inconvenient for workers to check the internal sealing effect of 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] To this end, we propose a constructive wind-resistant curtain wall. Summary of the Invention

[0004] The purpose of the present invention is to provide a constructive wind-resistant curtain wall to solve the problems raised in the above background technology that the current constructive wind-resistant curtain wall is not convenient for disassembling and replacing the curtain wall in rainy and snowy weather, and is not convenient for understanding the cleanliness of the inside and outside of the double-glazed glass.

[0005] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: a constructed wind-resistant curtain wall, comprising a hollow glass component, a clamping positioning component installed on the hollow glass component, a hollow test component installed inside the hollow glass component; the hollow test component is used to scrape the inside of the hollow glass component; a positioning pre-adjustment component is installed on the clamping positioning component; the positioning pre-adjustment component is used to pre-adjust the position of the hollow glass component; a rain and snow control component is installed on the clamping positioning component; a locking control component is installed on the clamping positioning component; the locking control component is used to prevent rain and snow from interfering with bonding; the hollow glass component comprises: a double-layer hollow glass body and an outer frame, the double-layer hollow glass body is a double-layer hollow sealing structure; the outer frame is fixedly installed on the outside of the double-layer hollow glass body.

[0006] Preferably, the insulating glass component further comprises: a handheld magnet, the handheld magnet is located outside the double-layer insulating glass body, and the handheld magnet is attached to the double-layer insulating glass body.

[0007] Preferably, the clamping positioning part includes: a fixed mounting plate, a sliding column, a pressure plate and a locking electromagnet, the fixed mounting plate is provided with four rows, and the structures of the four rows of fixed mounting plates are the same; the four rows of fixed mounting plates are respectively used to be fixedly mounted on the curtain wall mounting frame; the fixed mounting plate is fixedly mounted with a sliding column, and the four rows of sliding columns are respectively slidably plugged with pressure plates, and the sliding column is sleeved with a tension spring; 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 mounted on the pressure plate; the inner side of the pressure plate is squeezed and fitted with the outer frame; and thorn-shaped protrusions are respectively provided on both sides of the pressure plate.

[0008] Preferably, the clamping positioning member also includes: limiting teeth, locking bolts and closing covers, the pressing plate is provided with a circle of limiting teeth; the pressing plate is plugged with a locking bolt; the locking bolt is threadedly connected to the sliding column; the locking bolt squeezes and fits the pressing plate; there are three closing covers, and the three closing covers are respectively slidably clamped on the two rows of pressing plates on both sides and the thorn-shaped strips on both sides of the upper row of pressing plates; the closing cover is used to shield and protect the pressing plate.

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

[0010] Preferably, the positioning pre-adjustment parts include: pre-adjustment bolts and limiting wedges, and the four rows of pressing plates are respectively threaded with two pre-adjustment bolts, 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 be squeezed and fitted on the adjacent sides of the outer frame; the limiting wedges are respectively slidably inserted into the inner sides of the through holes on the four rows of pressing plates; the sides of the four rows of limiting wedges are inclined structures; the inner sides of the four rows of limiting wedges are inclined structures; the sides of the four rows of limiting wedges are respectively attached to the pre-adjustment bolts; and the locking bolts are used to cover the pre-adjustment bolts.

[0011] Preferably, the positioning pre-adjusting component further includes: a compensation spring, and the two limiting wedge blocks are respectively fixedly mounted with a compensation spring, and the two compensation springs are respectively elastically fitted to the side surfaces of the locking bolt on the same side.

[0012] Preferably, the rain and snow control component includes: a lower protective cover, a collection groove and an electric heating wire, the lower protective cover is slidably clamped on the thorn-shaped strips on both sides of a row of pressing plates below; a collection groove is opened 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 on the inside of the collection groove; the electric heating wire is externally connected to a power supply; the collection groove is used to collect rain and snow.

[0013] Preferably, the rain and snow control component also includes: an absorption sponge and a power connection plate, the absorption sponge is fixedly installed on the inner side of the collection tank; two power connection plates are fixedly installed on the bottom inner side of the collection tank, and a gap is provided between the two power connection plates; the power connection plate is located below the absorption sponge; the two power connection plates are used to electrically connect to the locking electromagnet; the absorption sponge is used to absorb rain and snow water.

[0014] Preferably, the locking control component includes: a locking mounting disk, a locking block and a pull-back spring piece, the locking mounting disk is provided with four rows, and the structures on the four rows of locking mounting disks are the same; the four rows of locking mounting disks are respectively fixedly mounted on the four rows of locking bolts; two locking blocks are slidably plugged into the locking mounting disk; a row of notches are respectively provided on the inner sides of the two locking blocks, and the row of notches on the inner sides of the two locking blocks are respectively used to plug in the limiting teeth; two pull-back spring pieces are fixedly mounted on the inner side of the locking mounting disk, and the ends of the two pull-back spring pieces are respectively fixedly mounted on the locking blocks; the pull-back spring piece is a V-shaped spring piece; the locking electromagnet is used to magnetically attract the two locking blocks on the same side.

[0015] Compared with the prior art, the present invention has the following beneficial effects: The present invention adopts a locking control component to control and restrict the disassembly, assembly and replacement of the double-layer insulating glass body when rain and snow exist. It can be more suitable for standardizing the operation of staff to replace the double-layer insulating glass body, ensuring the installation quality of the double-layer insulating glass body, and preventing rain and snow from affecting the bonding effect of the glue applied on the double-layer insulating glass body during installation.

[0016] The use of positioning pre-adjusting parts can facilitate the actual installation of the double-layer insulating glass body, prompting the staff to first fine-tune the position of the double-layer insulating glass body before pressing and tightening it. This can ensure the installation stability of the double-layer insulating glass body, and at the same time, the locking bolts can be used to cover the pre-adjusting bolts to prevent the staff from adjusting the pre-adjusting bolts after installing the locking bolts; to further ensure the safety of the subsequent locking control parts, this structure can be fine-tuned first and then tightened. After the position of the double-layer insulating glass body is accurately adjusted, the pressing piece can be directly pressed down to reduce the friction damage of the pressing piece to the outer frame.

[0017] The use of a hollow test piece can make it easier for staff to confirm whether there is a leak in the double-layer insulating glass body, and at the same time it can play a role in cleaning the double-layer insulating glass body. Once the double-layer insulating glass body leaks, it is easy to cause fogging, affecting its permeability, and dust will also adhere to the inside. This structure can be used to temporarily clean the double-layer insulating glass body, and also avoid interference with judgment due to dust and impurities on the outside of the double-layer insulating glass body, avoiding the problem that once the traditional double-layer insulating glass body leaks, the internal dust cannot be cleaned. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 A schematic diagram of a constructed wind-resistant curtain wall of the present invention installed behind a curtain wall mounting frame; Figure 2 This is a schematic diagram of the bottom structure of a constructed wind-resistant curtain wall according to the present invention; Figure 3 This is a cross-sectional view of the structure of the insulating glass unit of the present invention; Figure 4 This is a schematic diagram of the main body position of the double-layer insulating glass of the present invention; Figure 5 For the present invention Figure 4 A magnified view of the structure of the middle C region; Figure 6 This is a cross-sectional view of the positioning pre-adjusting component structure of the present invention; Figure 7 For the present invention Figure 2 A magnified view of the structure of the middle H region; Figure 8 This is a schematic diagram of the locking control structure of the present invention; Figure 9 This is a schematic diagram of the structure of the rain and snow control component of the present invention; Figure 10 This is a structural diagram of the locking control component of the present invention.

[0019] In the figure: 1. Insulating glass component; 101. Double-layer insulating glass body; 102. Outer frame; 103. Hand-held magnet; 2. Clamping and positioning component; 201. Fixed mounting plate; 202. Sliding column; 203. Pressing piece; 204. Locking electromagnet; 205. Limiting tooth; 206. Locking bolt; 207. Closing cover; 3. Hollow test piece; 301. Sliding frame; 302. Test magnet; 303. Scraping piece; 4. Positioning pre-adjustment component; 401. Pre-adjustment bolt; 402. Limiting wedge; 403. Compensation spring; 5. Rain and snow control component; 501. Lower protective cover; 502. Collecting trough; 503. Electric heating wire; 504. Absorbent sponge; 505. Power connection piece; 6. Locking control component; 601. Locking mounting plate; 6011. Locking block; 602. Pull-back spring. DETAILED DESCRIPTION

[0020] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0021] Example 1: Please refer to Figures 1 to 10 As shown: The present invention provides a technical solution: a constructed wind-resistant curtain wall, comprising a hollow glass component 1, a clamping positioning component 2 installed on the hollow glass component 1, a hollow test component 3 installed inside the hollow glass component 1; the hollow test component 3 is used to scrape the inside of the hollow glass component 1; a positioning pre-adjustment component 4 is installed on the clamping positioning component 2; the positioning pre-adjustment component 4 is used to pre-adjust the position of the hollow glass component 1; a rain and snow control component 5 is installed on the clamping positioning component 2; a locking control component 6 is installed on the clamping positioning component 2; the locking control component 6 is used to prevent rain and snow from interfering with bonding; the hollow glass component 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; the outer frame 102 is fixedly installed on the outside of the double-layer hollow glass body 101.

[0022] Among them, the insulating glass component 1 also includes: a handheld magnet 103, the handheld magnet 103 is located on the outside of the double-layer insulating glass body 101, and the handheld magnet 103 is attached to the double-layer insulating glass body 101; the clamping positioning member 2 includes: a fixed mounting plate 201, a sliding column 202, a pressing piece 203 and a locking electromagnet 204, the fixed mounting plate 201 is provided with four rows, and the structures on the four rows of fixed mounting plates 201 are the same; the four rows of fixed mounting plates 201 are respectively used for fixed installation on the curtain wall mounting frame; the fixed mounting plate 201 is fixedly installed with a sliding column 202, and the four rows of sliding columns 202 are respectively slidably inserted with a pressing piece 203, 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 pressing piece 203; a threaded hole is provided on the inner side of the sliding column 202; a locking electromagnet 204 is fixedly installed on the pressing piece 203; the inner side of the pressing piece 203 squeezes The cam 206 is screwed onto the locking cam 207 and the locking cam 207 is screwed onto the locking cam 207.

[0023] The positioning pre-adjusting part 4 includes: a pre-adjusting bolt 401 and a limiting wedge block 402. Two pre-adjusting bolts 401 are respectively threadedly connected to the four rows of pressure plates 203, and the tails of the two pre-adjusting bolts 401 are respectively provided with hexagonal holes; the ends of the four rows of pre-adjusting bolts 401 are respectively used to squeeze and fit the adjacent sides of the outer frame 102; the limiting wedge blocks 402 are respectively slidably inserted into the inner sides of the through holes on the four rows of pressure plates 203; the side surfaces of the four rows of limiting wedge blocks 402 are inclined structures; the inner sides of the four rows of limiting wedge blocks 402 are inclined structures; the sides of the four rows of limiting wedge blocks 402 are respectively attached to the pre-adjusting bolts 401; the locking bolts 206 are used to block the pre-adjusting bolts 401; the positioning pre-adjusting part 4 also includes: a pre-adjusting bolt 401; a locking bolt 206 is used to block the pre-adjusting bolts 401; the positioning pre-adjusting part 4 also includes: a pre-adjusting bolt 401; a locking bolt 206 is used to block the pre-adjusting bolts 401; the positioning pre-adjusting part 4 also includes: a pre-adjusting bolt 401; a locking bolt 206 is used to block the pre-adjusting bolts 401; the positioning pre-adjusting part 4 also includes: a pre-adjusting bolt 401; a locking bolt 4 ... The cam 406 is a plurality of spacers 407 that are used to hold the glass in place for a short time, and the cam 407 is a plurality of spacers 408 that are used to hold the glass in place for a short time, and the cam 407 is a plurality of spacers 409 that are used to hold the glass in place for a short time, and the cam 407 is a plurality of spacers 408 that are used to hold the glass in place for a short time, and the cam 407 is a plurality of spacers 409 that are used to hold the glass in place for a short time, and the cam 407 is a plurality of spacers 409 that are used to hold the glass in place for a short time, The safety of the subsequent locking control part 6 is ensured, and the structure is more reasonable. This structure can be fine-tuned first and then tightened. After the position of the double-layer insulating glass body 101 is accurately adjusted, the pressing piece 203 can be directly pressed down to reduce the friction damage of the pressing piece 203 to the outer frame 102. At the same time, the locking bolt 206 can be used to push the limiting wedge block 402 to prevent the pre-adjusting bolt 401 from loosening, thereby ensuring stable positioning, ensuring the wind resistance of this structure, and improving safety. The hexagonal wrench is passed through the pressing piece 203, the pre-adjusting bolt 401 is rotated to push the outer frame 102 to fine-tune the position. After fine-tuning the outer frame 102, if there are multiple adjacent double-layer insulating glasses, After the double-layer insulating glass body 101 has been fine-tuned and positioned, the double-layer insulating glass body 101 can be continued to be installed on the side of the double-layer insulating glass body 101 that has been fine-tuned and positioned, and the pre-adjusting bolt 401 can be used to position it again. Then the limiting wedge block 402 can be inserted into the pressing piece 203, and then the locking bolt 206 is inserted into the pressing piece 203, and the locking bolt 206 is tightened with the hexagonal wrench. The outer frames 102 on the two adjacent double-layer insulating glass bodies 101 are pressed and fixed at the same time through the pressing piece 203. At this time, the locking bolt 206 will also elastically squeeze the compensation spring 403, and the compensation spring 403 can push the limiting wedge block 402 to fit the pre-adjusting bolt 401 for protection and anti-falling.

[0024] 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-layer hollow glass body 101; a 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-layer hollow glass body 101; the handheld magnet 103 magnetically attracts the test magnet 302; the sliding frame 301 is used to slide inside the double-layer hollow glass body 101. The use of the hollow test piece 3 can facilitate the staff to confirm whether the double-layer hollow glass body 101 has leakage, and can also play a role in cleaning the double-layer hollow glass body 101. Once the double-layer hollow glass body 101 has leakage, it is easy to cause The double-layer insulating glass body 101 is cleaned by the scraping piece 303. If there is no change in the dust, it means that the dust on the outdoor side of the double-layer insulating glass body 101 is trapped, and the dust on the outdoor side of the double-layer insulating glass body 101 is easily removed.

[0025] Example 2, on the basis of Example 1, the rain and snow control member 5 includes: a lower protective cover 501, a collection groove 502 and an electric heating wire 503, the lower protective cover 501 is slidably connected to the thorn-shaped strips on both sides of a row of pressing plates 203 below; a collection groove 502 is opened on the top of the lower protective cover 501; the lower protective cover 501 is attached to the sides of two adjacent closing covers 207; an electric heating wire 503 is fixedly installed on the inside of the collection groove 502; the electric heating wire 503 is externally connected to a power supply; the collection groove 502 is used to collect rain and snow; the rain and snow control member 5 also includes: an absorption sponge 504 and a power connection sheet 505, an absorption sponge is fixedly installed on the inside of the collection groove 502 The collecting tank 502 has two fixedly mounted electric connection plates 505 on the bottom inner side, with a gap between the two electric connection plates 505; the electric connection plates 505 are located below the absorbing sponge 504; the two electric connection plates 505 are used to electrically connect the locking electromagnet 204; the absorbing sponge 504 is used to absorb rain and snow water; the locking control member 6 includes: a locking mounting plate 601, a locking block 6011 and a retracting spring 602, the locking mounting plate 601 is provided with four rows, and the structures on the four rows of locking mounting plates 601 are the same; the four rows of locking mounting plates 601 are respectively fixedly mounted on the four rows of locking bolts 206; the locking mounting plate 601 is slidably plugged with two The locking blocks 6011 are provided with a row of notches on the inner sides of the two locking blocks 6011, and the row of notches on the inner sides of the two locking blocks 6011 are used to insert the limiting teeth 205 respectively; 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 respectively; 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, and the locking control part 6 can be used to control the disassembly, assembly and replacement of the double-layer insulating glass body 101 when there is rain or snow, which can be more suitable for standardized operation of staff. Replace the double-layer insulating glass body 101 to ensure the installation quality of the double-layer insulating glass body 101 and prevent rain and snow from affecting the bonding effect of the glue applied during installation of the double-layer insulating glass body 101. This structure can collect rainwater in real time. At the same time, even snow can be melted by heating the electric heating wire 503. Rainy and snowy weather is slippery and can easily lead to operational errors and equipment slippage, increasing the risk of falling from heights. Low temperatures can also increase the brittleness of steel and reduce the bearing capacity of climbing frames or temporary support structures. Suspending construction can avoid safety hazards. Rain and snow and low temperatures can lead to insufficient structural adhesive strength, and rain and snow can easily invade unsealed curtain wall joints and even cause condensation and mildew.

[0026] The working principle of this embodiment: First, this structure can be used in combination with multiple double-layer insulating glass bodies 101 according to needs, and the double-layer insulating glass body 101 is hoisted to the horizontal and vertical mounting frames reserved outside the building. The horizontal and vertical mounting frames reserved outside the building are respectively welded and fixed to the fixed mounting plates 201 for prefabrication to ensure subsequent clamping stability. At the same time, the horizontal and vertical mounting frames reserved outside the building are consistent with the existing technology. The inner side of the double-layer insulating glass body 101 is attached to the horizontal and vertical mounting frames reserved outside the building. At this time, you can first use a hexagonal wrench to pass through the pressing piece 203, dock the pre-adjusting bolt 401 and rotate it to push the extrusion outer frame 102 to fine-tune the position. After fine-tuning the outer frame 102, if there are multiple adjacent double-layer insulating glass bodies, The double-layer insulating glass body 101 can be installed on the side of the double-layer insulating glass body 101 that has been fine-tuned and positioned, and positioned again by the pre-adjusting bolt 401. Then the limiting wedge 402 can be inserted into the pressing piece 203, and then the locking bolt 206 is inserted into the pressing piece 203, and the locking bolt 206 is tightened with the hexagonal wrench. The outer frame 102 on the two adjacent double-layer insulating glass bodies 101 is pressed and fixed at the same time through the pressing piece 203. At this time, the locking bolt 206 will also elastically squeeze the compensation spring 403, and the compensation spring 403 can push the limiting wedge 402 to fit the pre-adjusting bolt 401 for protection and anti-falling. The staff can paint the inside of the outer frame 102 in advance. Glue, there is a better sealing connection between the horizontal and vertical mounting brackets reserved outside the building, and then the staff manually slides the lower protective cover 501 and snaps it onto the thorn-shaped strips on both sides of the lower row of pressing pieces 203, and the closing cover 207 is slid and snapped onto the two rows of pressing pieces 203 on both sides and the thorn-shaped strips on both sides of the upper row of pressing pieces 203 for protection. When fog or dust is found in the double-layer insulating glass main body 101, you can first manually drag the handheld magnet 103 to move, and use the magnetic force to drive the test magnet 302 to move. At this time, the scraper 303 is used to scrape the inside of the double-layer insulating glass main body 101, and at the same time, the side of the double-layer insulating glass main body 101 in the room is cleaned and wiped. At this time, you can observe the dust or fog The way to determine whether the gas disappears is to clearly determine whether there is a leak. Once there is no change in the dust, it means that the dust is on the outdoor side of the double-layer insulating glass body 101, and normal cleaning is sufficient. When water accumulates inside the actual collecting tank 502, it means rainy and snowy weather. The absorbent sponge 504 can assist in absorbing water. When there is a lot of rain, the two power strips 505 will be turned on by the rain. At this time, the circuit is turned on, and the four rows of locking electromagnets 204 will all be energized, magnetically attracting the locking block 6011, and the locking block 6011 will be inserted into the plug-in limit tooth 205 for limiting. In this state, the staff cannot operate the rotating locking bolt 206 for disassembly, thereby realizing restriction, improving safety, and ensuring the conditions for replacing the double-layer insulating glass body 101.

[0027] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.

[0028] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A constructed wind-resistant curtain wall, comprising a hollow glass element (1), wherein a clamping and positioning element (2) is mounted on the hollow glass element (1), and characterized in that: A hollow test piece (3) is installed inside the hollow glass piece (1); the hollow test piece (3) is used to scrape the inside of the hollow glass piece (1); A positioning pre-adjustment component (4) is installed on the clamping positioning component (2); the positioning pre-adjustment component (4) is used to pre-adjust the position of the insulating glass component (1); A rain and snow control member (5) is mounted on the clamping positioning member (2); a locking control member (6) is mounted on the clamping positioning member (2); the locking control member (6) is used to prevent rain and snow from interfering with bonding; The insulating glass component (1) comprises: a double-layer insulating glass body (101) and an outer frame (102); the double-layer insulating glass body (101) is a double-layer hollow sealed structure; and the outer frame (102) is fixedly mounted on the outer side of the double-layer insulating glass body (101).

2. The constructive wind-resistant curtain wall according to claim 1, characterized in that: The insulating glass component (1) further comprises a handheld magnet (103), wherein the handheld magnet (103) is located outside the double-layer insulating glass body (101), and the handheld magnet (103) is attached to the double-layer insulating glass body (101).

3. The constructive wind-resistant curtain wall according to claim 1, characterized in that: The clamping positioning member (2) comprises: a fixed mounting plate (201), a sliding column (202), a pressing piece (203) and a locking electromagnet (204); the fixed mounting plate (201) is provided with four rows, and the structures on the four rows of fixed mounting plates (201) are the same; the four rows of fixed mounting plates (201) are respectively used for fixed installation on the curtain wall mounting frame; the fixed mounting plate (201) is fixedly installed with a sliding column (202), and the four rows of sliding columns (202) are fixedly installed with a sliding column (202). A pressing piece (203) is respectively slidably inserted, 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 pressing piece (203); a threaded hole is provided on the inner side of the sliding column (202); a locking electromagnet (204) is fixedly installed on the pressing piece (203); the inner side of the pressing piece (203) is pressed and fitted with the outer frame (102); and thorn-shaped protrusions are provided on both sides of the pressing piece (203).

4. The constructive wind-resistant curtain wall according to claim 3, characterized in that: The clamping positioning member (2) further comprises: limiting teeth (205), a locking bolt (206) and a closing cover (207); the pressing plate (203) is provided with a circle of limiting teeth (205); the pressing plate (203) is plugged with a locking bolt (206); the locking bolt (206) is threadedly connected to the sliding column (202); the locking bolt (206) is pressed and fitted to the pressing plate (203); three closing covers (207) are provided, and the three closing covers (207) are respectively slidably clamped on the thorn-shaped strips on both sides of the two rows of pressing plates (203) on both sides and the upper row of pressing plates (203); the closing covers (207) are used to shield and protect the pressing plates (203).

5. The constructive wind-resistant curtain wall according to claim 2, characterized in that: 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 surfaces of the double-layer hollow glass body (101); the handheld magnet (103) magnetically attracts the test magnet (302); and the sliding frame (301) is used to slide inside the double-layer hollow glass body (101).

6. The constructive wind-resistant curtain wall according to claim 4, characterized in that: The positioning pre-adjusting part (4) includes: a pre-adjusting bolt (401) and a limiting wedge (402), and the four rows of the pressing plates (203) are respectively threaded with two pre-adjusting bolts (401), and the tails of the two pre-adjusting bolts (401) are respectively provided with hexagonal holes; the ends of the four rows of the pre-adjusting bolts (401) are respectively used for extrusion and fitting on the side surfaces of the adjacent outer frames (102); the limiting wedges (402) are respectively slidably inserted into the inner sides of the through holes on the four rows of the pressing plates (203); the side surfaces of the four rows of the limiting wedges (402) are inclined structures; the inner sides of the four rows of the limiting wedges (402) are respectively inclined structures; the side surfaces of the four rows of the limiting wedges (402) are respectively attached to the pre-adjusting bolts (401); and the locking bolts (206) are used to shield the pre-adjusting bolts (401).

7. The constructed wind-resistant curtain wall according to claim 6, characterized in that: The positioning pre-adjusting component (4) further includes a compensation spring (403), wherein the two limiting wedge blocks (402) are respectively fixedly mounted with a compensation spring (403), and the two compensation springs (403) are respectively elastically fitted to the side surfaces of the locking bolt (206) on the same side.

8. The constructive wind-resistant curtain wall according to claim 4, characterized in that: The rain and snow control component (5) comprises: a lower protective cover (501), a collecting groove (502) and an electric heating wire (503); the lower protective cover (501) is slidably engaged with the thorn-shaped strips on both sides of a row of pressing plates (203) below; a collecting groove (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 closing covers (207); an electric heating wire (503) is fixedly installed on the inside of the collecting groove (502); the electric heating wire (503) is externally connected to a power source; and the collecting groove (502) is used to collect rain and snow.

9. The constructive wind-resistant curtain wall according to claim 8, characterized in that: The rain and snow control component (5) further comprises: an absorption sponge (504) and an electrical connection plate (505); the absorption sponge (504) is fixedly mounted on the inner side of the collection tank (502); two electrical connection plates (505) are fixedly mounted on the inner bottom of the collection tank (502), with a gap provided between the two electrical connection plates (505); the electrical connection plates (505) are located below the absorption sponge (504); the two electrical connection plates (505) are used to electrically connect to the locking electromagnet (204); and the absorption sponge (504) is used to absorb rain and snow water.

10. The constructive wind-resistant curtain wall according to claim 4, characterized in that: The locking control member (6) comprises: a locking mounting plate (601), a locking block (6011) and a retracting spring (602); the locking mounting plate (601) is provided with four rows, and the structures of the four rows of locking mounting plates (601) are the same; the four rows of locking mounting plates (601) are respectively fixedly mounted on the four rows of locking bolts (206); two locking blocks (6011) are slidably plugged into the locking mounting plate (601); the two locking blocks (6011) ) are respectively provided with a row of notches on the inner side, and the row of notches on the inner side of the two locking blocks (6011) are respectively used to insert the limiting teeth (205); two pull-back spring pieces (602) are fixedly installed on the inner side of the locking mounting plate (601), and the ends of the two pull-back spring pieces (602) are respectively fixedly installed on the locking blocks (6011); the pull-back spring pieces (602) are V-shaped spring pieces; the locking electromagnet (204) is used to magnetically attract the two locking blocks (6011) on the same side.

Citation Information

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