An environmentally friendly and safe building curtain wall
The design of porous integrated rods and insulation components, combined with buffer springs and dampers, solves the problem of rigid damage to curtain walls under vibration and airflow impact, achieves better thermal insulation and isolation effects, extends service life and improves environmental performance.
Patent Information
- Application Number
- CN202510822210.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-19
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2045-06-19
AI Technical Summary
Existing building curtain walls lack shock-absorbing protection components and elastic connection parts when subjected to vibration and external high-speed airflow impact, resulting in rigid damage, and the connection gaps and interfaces are not effectively protected, affecting the insulation effect.
Multi-porous integrated rods and protective components are used to connect the concave integrated frame, convex integrated frame and special-shaped elastic strips through fixing bolts, combination screws and integrated nuts. Combined with buffer springs and buffer dampers, an elastic support structure is formed, and sealing components are used to seal gaps and edges to achieve multi-layer isolation and buffer energy absorption.
It improves the seismic resistance and thermal insulation effect of the curtain wall, extends its service life, reduces heat exchange caused by air flow, and improves energy-saving and environmental protection performance.
Smart Images

Figure CN120350779B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of building environmental protection, in particular to an environmentally friendly and safe building curtain wall. Background Art
[0002] Architectural curtain wall refers to a lightweight exterior wall decorative structure that wraps around the main structure of a building and does not bear the weight of the building. By adopting different designs and materials, curtain walls can not only beautify the appearance of the building, but also provide insulation, sound insulation, fire prevention and other functions. Common curtain wall materials include glass, metal, stone, ceramic panels, composite materials, etc.
[0003] In the patent document entitled "A Building Curtain Wall" with application number CN202022198158.8 on the China Patent Network, the patent solves the problem that the general building curtain wall is cleaned manually. When the building floors are high, manual cleaning is required, commonly known as "Spiderman". The existing cleaning method of the building curtain wall is dangerous, inconvenient, and has low cleaning efficiency.
[0004] However, when curtain walls are used nowadays, shock-absorbing protection components and elastic connection parts are not installed. As a result, when they are subjected to vibration and external high-speed airflow impact, they cannot effectively absorb and release energy due to the force, resulting in rigid damage and reducing their service life. At the same time, the connection gaps and edges of the interfaces are not protected, resulting in reduced thermal insulation effect during use. Summary of the Invention
[0005] The present invention provides an environmentally friendly and safe building curtain wall, which can effectively solve the problem raised in the above background technology that when the curtain wall is used, no shock-absorbing protection components and elastic connecting components are set, resulting in the inability to effectively absorb and buffer energy when it is subjected to vibration and external high-speed airflow impact, resulting in rigid damage and reducing its service life. At the same time, the edges of the connecting gaps and interfaces are not protected, resulting in reduced thermal insulation effect during use.
[0006] To achieve the above-mentioned object, the present invention provides the following technical solutions: an environmentally friendly and safe building curtain wall, comprising a porous integrated rod, wherein a side end of the porous integrated rod is provided with a protective assembly;
[0007] The barrier assembly includes a fixing bolt;
[0008] The side ends of the porous integration rods are equidistantly connected to the concave integration frames through fixing bolts, and the side ends of the porous integration rods near the concave integration frames are equidistantly connected to the convex integration frames through fixing bolts, and the side ends of the concave integration frames and the convex integration frames are symmetrically laid with special-shaped elastic strips;
[0009] At the positions corresponding to the concave integration frame and the convex integration frame on the side end of the fixed bolt, clamping porous plates are symmetrically sleeved. At equal intervals on the side end of the clamping porous plates, combined screws are sleeved. On the side ends of the fixed bolt and the combined screws, integration nuts are connected by threads.
[0010] One end of the combined screw is welded with an outer sleeve fixed cylinder. Inside the outer sleeve fixed cylinder, a combined fixed cylinder is slidably connected. At equal intervals on the side end of the outer sleeve fixed cylinder, a number of combined fixed plates are welded. On the side end of the combined fixed plate, a reversing fixed box is rotatably connected. Inside the reversing fixed box, a connecting fixed box is slidably connected. At both ends of the connecting fixed box, U-shaped fixed plates are rotatably connected.
[0011] According to the above technical solution, the side end of the special-shaped elastic strip is in contact with the side end of the porous integration rod. The side ends of the two special-shaped elastic strips are in contact. The cross-sections of the concave integration frame and the convex integration frame are both T-shaped.
[0012] According to the above technical solution, one end of the clamping porous plate is in contact with the side ends of the concave integration frame and the convex integration frame. The side end of the integration nut is in contact with the side end of the clamping porous plate. The fixed bolt and the combined screw both penetrate through one end of the concave integration frame, the convex integration frame, the special-shaped elastic strip, and the clamping porous plate.
[0013] According to the above technical solution, buffer springs are fixed at one end inside both the combined fixed cylinder and the connecting fixed box. Buffer dampers are fixed at positions close to the buffer springs at one end inside the combined fixed cylinder and the connecting fixed box. A load-bearing special-shaped frame is welded at one end of the combined fixed cylinder and the U-shaped fixed plate. At one end of the load-bearing special-shaped frame, combined U-shaped plates are symmetrically fixed.
[0014] Isolation glass plates are symmetrically fixed inside both the concave integration frame and the convex integration frame. Inner sealing edge strips are bonded inside both the concave integration frame and the convex integration frame.
[0015] At one end of multiple clamping porous plates, concave combined strips are symmetrically welded. Elastic convex strips are clamped at the side end of the concave combined strip. At one end of the two elastic convex strips, a U-shaped combined cover is welded. At equal intervals and symmetrically at one end of the U-shaped combined cover, internal thread combined sleeves are rotatably connected.
[0016] At the position corresponding to the internal thread combined sleeve at one end of the U-shaped combined cover, a sealing isolation cover is snap-fitted and sleeved. At equal intervals at one end of the U-shaped combined cover, loop snap rings are welded. At one end of the loop snap ring, an outer limit light-transmitting plate is bonded. At the position corresponding to the isolation glass plate at one end of the outer limit light-transmitting plate, an inner empty gasket ring is bonded. Insertion connection grooves are opened at the top and bottom at one end of the U-shaped combined cover. Inside the insertion connection groove, I-shaped sealing edge strips are sleeved. A heat-insulating sealing gasket is bonded between the elastic convex strip and the U-shaped combined cover.
[0017] According to the above technical solution, a plurality of the buffer springs and buffer dampers are respectively fixedly connected to one end of the inner side of the outer sleeve fixing cylinder and the commutation fixing box. One end of the isolation glass plate is fitted to the side end of the inner partition sealing strip, and both ends of the U-shaped combined cover are respectively fitted to one end of the inner concave integrated frame and the outer convex integrated frame.
[0018] According to the above technical solution, the cross-section of the elastic outer convex strip is L-shaped, and the side end of the inner threaded combined sleeve and the side end of the combined screw are engaged by threads.
[0019] According to the above technical solution, both ends of the outer limit light-transmitting plate are respectively fitted to one end of two U-shaped combined covers, and one end of the inner hollow gasket ring is bonded to one end of the isolation glass plate.
[0020] According to the above technical solution, a sealing component is provided at one end of the U-shaped combined cover;
[0021] The sealing component includes a U-shaped fixing cover;
[0022] A plurality of U-shaped fixing covers are welded at equal intervals at one end of the U-shaped combined cover. The side ends of a plurality of the combined screws are sleeved with a closing edge cover through an integrated nut. Glue sealing strips are bonded to the bottom end and the top end of the closing edge cover. One end of the glue sealing strip is bonded with a combined operation cover. The side ends of a plurality of the combined screws far from the closing edge cover are sleeved with an integrated edge cover through an integrated nut. A clamping isolation cover is welded at one end of the integrated edge cover. Glue bonding strips are bonded to the bottom end and the top end of the integrated edge cover. One end of the glue bonding strip is bonded with a special-shaped treatment cover. One ends of the combined operation cover and the special-shaped treatment cover are both welded with a bottom clamping limit cover. A matching operation cover is sleeved on the side end of the bottom clamping limit cover. An irregular convex clamping block is welded at the top of one end of the bottom clamping limit cover and the matching operation cover;
[0023] Sealing isolation strips are bonded to the inner sides of the U-shaped fixing cover, the closing edge cover, the combined operation cover, the integrated edge cover, the clamping isolation cover, the special-shaped treatment cover, the bottom clamping limit cover and the matching operation cover. Clamping limit grooves are symmetrically opened at one end of the inner concave integrated frame and the outer convex integrated frame. An embedded rubber plate is laid inside the clamping limit groove. An insertion raised plate is bonded to one end of the embedded rubber plate. A porous positioning plate is welded to one end of the insertion raised plate.
[0024] According to the above technical solution, the side ends of the U-shaped fixing cover and the clamping isolation cover are respectively fitted to one end of the inner concave integrated frame and the outer convex integrated frame. The longitudinal section of the glue sealing strip is I-shaped. The side ends of the closing edge cover, the combined operation cover, the integrated edge cover, the special-shaped treatment cover, the bottom clamping limit cover and the matching operation cover are respectively sleeved with the side ends of the inner concave integrated frame and the outer convex integrated frame.
[0025] According to the above technical solution, the longitudinal section of the inserted convex plate is T-shaped. The side end of the special-shaped convex block is sleeved and connected with the matching operation cover, and the porous positioning plate is sleeved on the side end of the fixed bolt.
[0026] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0027] 1. There is a partition protection component. The clamping porous plate, the concave integrated frame, the special-shaped elastic strip, the porous integrated rod, the special-shaped elastic strip, the convex integrated frame and the clamping porous plate are sequentially combined and clamped through the fixed bolt, the combined screw rod and the integrated nut, to achieve the clamping connection of the concave integrated frame and the convex integrated frame. And by the extrusion isolation of the special-shaped elastic strip, the gaps of the frame connection are filled and isolated, reducing the air leakage of the gaps and affecting the internal and external isolation and heat preservation effect. Through the mutual clamping connection of the concave combined strip and the elastic convex strip, the U-shaped combined cover is sleeved on the side ends of the concave integrated frame and the convex integrated frame, and the side end of the inner air cushion ring is fitted to the side ends of the concave integrated frame and the convex integrated frame, and is positioned and fixed by the internal thread combined sleeve. The inner partition edge strip is used to seal the edges between the concave integrated frame, the convex integrated frame and the isolation glass plate, and through elastic extrusion, the inner air cushion ring connects and fills the connection gaps between the outer limit light-transmitting plate and the interior, realizing multi-section gap filling and sealing. And in cooperation with the concave integrated frame, the convex integrated frame and the return-shaped clamping ring, double-layer laminated isolation is achieved. And by means of gap filling and integrated isolation, the air circulation is further reduced, thus effectively improving the heat preservation and isolation effect;
[0028] The bearing special-shaped frame is clamped and limited by the combined U-shaped plate. The bearing special-shaped frame, the U-shaped fixing plate and the combined fixing cylinder cooperate with each other to form a rigid fixed connection. Elastic support is provided by the buffer spring and the buffer damper, the reversing fixing box and the connecting fixing box are slidably sleeved, and the outer sleeve fixing cylinder and the combined fixing cylinder are slidably sleeved. And in cooperation with the combined fixing plate and the reversing fixing box for steering alignment, the connecting fixing box and the U-shaped fixing plate for rotational transposition, elastic support alignment is achieved. By means of rigid support and elastic buffer energy absorption, while realizing the stable connection of the equipment, when the curtain wall is vibrated and pressed by wind pressure, energy absorption and buffering can be carried out through the spring and the damper. In cooperation with the special-shaped elastic strip, the inner air cushion ring and the inner partition edge strip inside, internal elastic support is realized, reducing the vibration damage of the vibration to the curtain wall components and ensuring the stability of its isolation and protection;
[0029] The gaps are isolated by multiple groups of connecting components to reduce the space and path of air flow, thereby reducing air flow. In combination with two layers of barrier protection, the overall heat insulation effect is improved. And elastic buffering is achieved by using springs and dampers, which is combined with multiple groups of elastic supports inside to realize buffering and energy absorption treatment. This effectively solves the problems in the prior art that shock-absorbing protection components and elastic connection components are not provided on the curtain wall, reduces the impact force of vibration and high-speed air flow on the curtain wall, avoids its rigid damage, extends its service life, and improves its heat insulation effect through multiple groups of gap filling and isolation, ensuring its energy-saving and environmental protection effect.
[0030] 2. A sealing component is provided. Multiple groups of closed edge covers and combined operation covers are connected to each other through glued sealing strips, and multiple groups of clamped isolation covers and special-shaped treatment covers are connected to each other through bonded glue strips. The closed edge covers, combined operation covers, clamped isolation covers and special-shaped treatment covers are clamped and limited by combining screws and integrated nuts. The U-shaped fixed cover and integrated edge cover cooperate with the U-shaped combined cover to limit and seal the side ends of the concave integrated frame and the convex integrated frame. The embedded rubber plate, inserted convex plate and porous positioning plate are pressed and clamped into the inner side of the clamping limit groove through fixed bolts and integrated nuts. The multiple combined operation covers and bottom clamping limit covers are fixed and limited by special-shaped convex blocks. Through multiple-segment combined connection, the edge of the curtain wall is isolated and limited, and multiple groups of mutual clamping and alignment are used to realize the limiting and isolation of the curtain wall edge. Thus, through multiple-segment limiting and isolation, the edge limiting and edge sealing effects are improved. At the same time, the edges and gaps of the frame are isolated and protected and blocked, squeezing the air flow space and the path of air flow, reducing the air flow rate and the heat exchange speed, thereby achieving the heat insulation and isolation effect, reducing air convection caused by excessive gaps and insufficient edge sealing, and improving the heat insulation and energy-saving effect.
[0031] In summary, through the mutual cooperation of the isolation protection component and the sealing component, and using multiple groups of elastic supports, the stability of the equipment is ensured. In combination with edge sealing and gap isolation sealing, the internal and external heat exchange caused by air flow is reduced, thereby reducing the poor heat insulation effect caused by the internal and external air heat exchange. Through the mutual cooperation of multiple components, the heat insulation and energy-saving effect is improved, while the service life of the curtain wall is extended and its environmental protection performance is enhanced. BRIEF DESCRIPTION OF THE DRAWINGS
[0032] The drawings are used to provide a further understanding of the present invention and constitute a part of the specification. They are used together with the embodiments of the present invention to explain the present invention and do not constitute a limitation to the present invention.
[0033] In the drawings:
[0034] Figure 1 is a three-dimensional structural schematic diagram of the present invention;
[0035] Figure 2It is a schematic structural diagram of the partition and protection component of the present invention;
[0036] Figure 3 It is a schematic installation structure diagram of the I-shaped edge strip of the present invention;
[0037] Figure 4 It is a schematic installation structure diagram of the outwardly convex integration frame of the present invention;
[0038] Figure 5 It is a schematic installation structure diagram of the inwardly concave combination strip of the present invention;
[0039] Figure 6 It is a schematic installation structure diagram of the connection and fixing box of the present invention;
[0040] Figure 7 It is a schematic installation structure diagram of the elastic outwardly convex strip of the present invention;
[0041] Figure 8 It is a schematic structural diagram of the sealing component of the present invention;
[0042] Figure 9 It is a schematic installation structure diagram of the integrated edge cover of the present invention;
[0043] Figure 10 It is a schematic installation structure diagram of the closing edge cover of the present invention;
[0044] Reference numerals in the figure: 1. Porous integration rod;
[0045] 2. Partition and protection component; 201. Fixed bolt; 202. Inwardly concave integration frame; 203. Outwardly convex integration frame; 204. Special-shaped elastic strip; 205. Clamping porous plate; 206. Combination screw; 207. Integration nut; 208. Outer sleeve fixing cylinder; 209. Combination fixing cylinder; 210. Combination fixing plate; 211. Reversing fixing box; 212. Connection and fixing box; 213. C-shaped fixing plate; 214. Buffer spring; 215. Buffer damper; 216. Load-bearing special-shaped frame; 217. Combination C-shaped plate; 218. Isolation glass plate; 219. Inner partition edge strip; 220. Inwardly concave combination strip; 221. Elastic outwardly convex strip; 222. C-shaped combination cover; 223. Inner-thread combination sleeve; 224. Sealing isolation cover; 225. Circlip; 226. Outer limit light-transmitting plate; 227. Inner hollow gasket ring; 228. Insertion connection groove; 229. I-shaped edge strip; 230. Thermal insulation sealing gasket;
[0046] 3. Sealing component; 301. U-shaped fixing cover; 302. Closing edge-sealing cover; 303. Glue sealing strip; 304. Combined operation cover; 305. Integrated edge-sealing cover; 306. Clamping isolation cover; 307. Adhesive bonding strip; 308. Special-shaped treatment cover; 309. Bottom card limiting cover; 310. Matching operation cover; 311. Special-shaped convex block; 312. Closed isolation strip; 313. Clamping limiting groove; 314. Embedded rubber plate; 315. Inserted convex plate; 316. Porous positioning plate. Detailed implementation manners
[0047] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are only for the purpose of illustration and explanation of the present invention, and are not used to limit the present invention.
[0048] Embodiment: As Figure 1-10 shown, the present invention provides a technical solution, an environmentally friendly and safe building curtain wall, including a porous integration rod 1, and a protection component 2 is arranged at the side end of the porous integration rod 1;
[0049] The protection component 2 includes a fixing bolt 201, a concave integration frame 202, a convex integration frame 203, a special-shaped elastic strip 204, a clamping porous plate 205, a combined screw 206, an integration nut 207, an outer sleeve fixing cylinder 208, a combined fixing cylinder 209, a combined fixing plate 210, a commutation fixing box 211, a connection fixing box 212, a U-shaped fixing plate 213, a buffer spring 214, a buffer damper 215, a load-bearing special-shaped frame 216, a combined U-shaped plate 217, an isolation glass plate 218, an inner partition edge-sealing strip 219, a concave combined strip 220, an elastic convex strip 221, a U-shaped combined cover 222, an internal thread combined sleeve 223, a sealing isolation cover 224, a loop clamping ring 225, an outer limit light-transmitting plate 226, an inner hollow gasket 227, an insertion connection groove 228, an I-shaped edge-sealing strip 229, and a heat-insulating sealing gasket 230;
[0050] At equal intervals on the side end of the porous integrated rod 1, there is an inward concave integrated frame 202 clamped by a fixing bolt 201. At equal intervals on the side end of the porous integrated rod 1 near the position of the inward concave integrated frame 202, there is an outward convex integrated frame 203 clamped by a fixing bolt 201. On the side ends of the inward concave integrated frame 202 and the outward convex integrated frame 203, there are asymmetrically laid special-shaped elastic strips 204. The side ends of the special-shaped elastic strips 204 are in contact with the side end of the porous integrated rod 1, and the side ends of the two special-shaped elastic strips 204 are in contact. The cross-sections of the inward concave integrated frame 202 and the outward convex integrated frame 203 are both T-shaped. Through multi-stage clamping and limiting and combined connection, edge sealing treatment and elastic support fixation are realized. Corresponding to the positions of the inward concave integrated frame 202 and the outward convex integrated frame 203 on the side end of the fixing bolt 201, there are symmetrically sleeved clamping porous plates 205. At equal intervals on the side end of the clamping porous plate 205, there are sleeved combined screws 206. The side ends of the fixing bolt 201 and the combined screw 206 are threadedly connected with an integrated nut 207. One end of the clamping porous plate 205 is in contact with the side ends of the inward concave integrated frame 202 and the outward convex integrated frame 203, and the side end of the integrated nut 207 is in contact with the side end of the clamping porous plate 205. The fixing bolt 201 and the combined screw 206 both penetrate through one end of the inward concave integrated frame 202, the outward convex integrated frame 203, the special-shaped elastic strip 204 and the clamping porous plate 205, realizing multi-point support clamping, realizing the overall combination of the frame, and ensuring the stability of the integrated limit;
[0051] One end of the combined screw 206 is welded with an outer sleeve fixing cylinder 208. Inside the outer sleeve fixing cylinder 208, there is a combined fixing cylinder 209 slidingly connected. At equal intervals on the side end of the outer sleeve fixing cylinder 208, there are welded several combined fixing plates 210. On the side end of the combined fixing plate 210, there is a commutating fixing box 211 rotatably connected. Inside the commutating fixing box 211, there is a connecting fixing box 212 slidingly connected. At both ends of the connecting fixing box 212, there are rotatably connected U-shaped fixing plates 213. At one end inside the combined fixing cylinder 209 and the connecting fixing box 212, there is a buffer spring 214 fixed. At a position near the buffer spring 214 at one end inside the combined fixing cylinder 209 and the connecting fixing box 212, there is a buffer damper 215 fixed. A plurality of buffer springs 214 and buffer dampers 215 are respectively fixedly connected with one end inside the outer sleeve fixing cylinder 208 and the commutating fixing box 211, realizing steady combined buffering. One end of the combined fixing cylinder 209 and the U-shaped fixing plate 213 is welded with a load-bearing special-shaped frame 216. At one end of the load-bearing special-shaped frame 216, there are symmetrically fixed combined U-shaped plates 217;
[0052] On the inner sides of the concave integrated frame 202 and the convex integrated frame 203, isolation glass plates 218 are symmetrically fixed. Inner partition sealing strips 219 are bonded to the inner sides of the concave integrated frame 202 and the convex integrated frame 203. One end of the isolation glass plate 218 is in contact with the side end of the inner partition sealing strip 219, enabling stable support during closing and sealing and edge sealing protection, ensuring the protection effect of gap isolation. One end of multiple clamping perforated plates 205 is symmetrically welded with concave combined strips 220. Elastic convex strips 221 are clamped at the side ends of the concave combined strips 220. One end of two elastic convex strips 221 is welded with a U-shaped combined cover 222. Two ends of the U-shaped combined cover 222 are respectively in contact with one end of the concave integrated frame 202 and the convex integrated frame 203. The cross-section of the elastic convex strip 221 is L-shaped. By using multi-segment combined alignment, isolation protection is achieved. One end of the U-shaped combined cover 222 is equidistantly and symmetrically rotatably connected with internal thread combined sleeves 223. The side ends of the internal thread combined sleeves 223 are threadedly engaged with the side ends of the combined screw rods 206, realizing the stable combined positioning of the U-shaped combined cover 222 and ensuring the stability of the overall clamping restriction.
[0053] A sealing isolation cover 224 is clamped and sleeved at a position corresponding to the internal thread combined sleeve 223 at one end of the U-shaped combined cover 222. Return-shaped clamping rings 225 are equidistantly welded at one end of the U-shaped combined cover 222. An external limit light-transmitting plate 226 is bonded to one end of the return-shaped clamping ring 225. An internal hollow gasket 227 is bonded to a position corresponding to the isolation glass plate 218 at one end of the external limit light-transmitting plate 226. Two ends of the external limit light-transmitting plate 226 are respectively in contact with one end of two U-shaped combined covers 222. One end of the internal hollow gasket 227 is bonded to one end of the isolation glass plate 218, enabling stable operation during internal elastic support and elastic isolation edge sealing, reducing the influence of gap air leakage on the integrity of the frame. Insertion connection grooves 228 are respectively opened at the top and bottom of one end of the U-shaped combined cover 222. An I-shaped edge sealing strip 229 is sleeved inside the insertion connection grooves 228. A heat-insulating sealing gasket 230 is bonded between the elastic convex strip 221 and the U-shaped combined cover 222.
[0054] A sealing component 3 is provided at one end of the U-shaped combined cover 222;
[0055] The sealing component 3 includes a U-shaped fixed cover 301, a closing edge sealing cover 302, a glued sealing strip 303, a combined operation cover 304, an integrated edge sealing cover 305, a clamping isolation cover 306, a bonded glued strip 307, a special-shaped treatment cover 308, a bottom clamping restriction cover 309, a matching operation cover 310, a special-shaped convex block 311, a closed isolation strip 312, a clamping limit groove 313, an embedded rubber plate 314, an inserted raised plate 315, and a porous positioning plate 316;
[0056] At one end of the U-shaped combined cover 222, a number of U-shaped fixing covers 301 are welded at equal intervals. On the side ends of multiple combined screws 206, a closing edge cover 302 is sleeved through an integrated nut 207. Glue sealing strips 303 are bonded to both the bottom end and the top end of the closing edge cover 302. The longitudinal section of the glue sealing strip 303 is in the shape of an I, achieving stable positioning support and positioning clamping. One end of the glue sealing strip 303 is bonded with a combined operation cover 304. On the side ends of multiple combined screws 206 far from the closing edge cover 302, an integrated edge cover 305 is sleeved through an integrated nut 207. A clamping isolation cover 306 is welded at one end of the integrated edge cover 305. Glue bonding strips 307 are bonded to both the bottom end and the top end of the integrated edge cover 305. One end of the glue bonding strip 307 is bonded with a special-shaped treatment cover 308. At one end of both the combined operation cover 304 and the special-shaped treatment cover 308, a bottom clamping limiting cover 309 is welded. A matching operation cover 310 is sleeved on the side end of the bottom clamping limiting cover 309. The side ends of the U-shaped fixing cover 第3页(共10页) 301 and the clamping isolation cover 306 are respectively fitted with one end of the concave integrated frame 202 and the convex integrated frame 203. The side ends of the closing edge cover 302, the combined operation cover 304, the integrated edge cover 305, the special-shaped treatment cover 308, the bottom clamping limiting cover 309 and the matching operation cover 310 are respectively sleeved with the side ends of the concave integrated frame 202 and the convex integrated frame 203, enabling stable positioning support during curtain wall combination, achieving multi-point support treatment, and enhancing the sealing and isolation effect. At the top of one end of the bottom clamping limiting cover 309 and the matching operation cover 310, a special-shaped convex clamping block 311 is welded. The side end of the special-shaped convex clamping block 311 is sleeved and connected with the matching operation cover 310 to ensure the sleeved limit of the matching operation cover 310;
[0057] Sealing isolation strips 312 are bonded to the inner sides of the U-shaped fixing cover 301, the closing edge cover 302, the combined operation cover 304, the integrated edge cover 305, the clamping isolation cover 306, the special-shaped treatment cover 308, the bottom clamping limiting cover 309 and the matching operation cover 310. Clamping limiting grooves 313 are symmetrically opened at one end of the concave integrated frame 第4页(共10页) 202 and the convex integrated frame 203. An embedded rubber plate 314 is laid inside the clamping limiting grooves 313. An inserted convex plate 315 is bonded to one end of the embedded rubber plate 314. The longitudinal section of the inserted convex plate 315 is in the shape of a T, achieving stable alignment and insertion support and enhancing the stability of sealing and edge limitation. A porous positioning plate 316 is welded at one end of the inserted convex plate 315. The porous positioning plate 316 is sleeved on the side end of the fixing bolt 201 to ensure the combined limit of multiple porous positioning plates 316 and achieve stable support and fixation.[[ID=Working principle and usage process of the present invention: When installing a building curtain wall, workers drill holes at the positions of the supports according to the required installation positions, and fit the load-bearing special-shaped frame 216 to the wall installation position. Then, the combined C-shaped plate 217 is sleeved on the side end of the load-bearing special-shaped frame 216, and the combined C-shaped plate 217 is positioned and fixed by using expansion bolts and expansion tubes, so as to fix the load-bearing special-shaped frame 216 to the side end of the wall. After the fixation is completed, the integrated nut 207, the clamping perforated plate 205, the concave integrated frame 202, the special-shaped elastic strip 204, the perforated integrated rod 1, the special-shaped elastic strip 204, the convex integrated frame 203 and the clamping perforated plate 205 are stacked and combined one by one in sequence. After the stacking and combination are completed, the integrated nut 207 and the combined screw rod 206 are combined and connected again to achieve the integrated fixation between multiple components, ensuring their overall stable connection. The embedded rubber plate 314 is embedded into the inner side of the clamping limit groove 313, and then the inserted convex plate 315 is inserted into the side end of the embedded rubber plate 314 inside the clamping limit groove 313. Multiple perforated positioning plates 316 are combined in alignment with the side end of the inserted convex plate 315. The clamping perforated plate 205, the concave integrated frame 202, the special-shaped elastic strip 204, the perforated integrated rod 1, the special-shaped elastic strip 204, the convex integrated frame 203, the clamping perforated plate 205 and the perforated positioning plate 316 are clamped and fixed by using the fixing bolt 201 and the integrated nut 207 to achieve the frame combination limit. Through multi-point cooperation and combination, the overall connection stability of the frame is improved, the situation of frame separation is avoided, and its overall sealing performance is improved; <>
[0059] After the concave integrated frame 202 and the convex integrated frame 203 are combined and fixed, the elastic convex strip 221 is inserted into the inner side of the concave combination strip 220, and the C-shaped combination cover 222 is fitted to the side ends of the concave integrated frame 202 and the convex integrated frame 203. By rotating the internal thread combination sleeve 223, the C-shaped combination cover 222 is fixed and limited by using the thread of the internal thread combination sleeve 223 and the combined screw rod 206. After the combination and fixation are completed, the C-shaped fixing cover 301 is fitted to the side ends of the concave integrated frame 202 and the convex integrated frame 203. When multiple C-shaped combination covers 222 are combined with each other, the I-shaped edge sealing strip 229 is clamped into the inner side of the insertion connection groove 228 to achieve the positioning limit of multiple groups of C-shaped combination covers 222. The sealing isolation cover 224 is fitted to the side end of the internal thread combination sleeve 223 to achieve isolation and sealing; <000> [[ID=,5]]
[0060] When the U-shaped combined cover 222 is fixed to the side end of the combined screw 206, multiple loop engaging rings 225 are aligned with the U-shaped combined cover 222 to achieve multi-segment connection and support. At this time, one end of the inner hollow gasket ring 227 is aligned with the side end of the isolation glass plate 218 to achieve multi-segment alignment. Repeat the above operations. According to the area of the curtain wall, multiple sets of concave integration frames 202 and convex integration frames 203 are engaged and connected, and multiple sets of U-shaped combined covers 222 and loop engaging rings 225 are combined and limited to achieve the integration of curtain wall installation. When sealing the edge, the closed edge cover 302, combined operation cover 304, integrated edge cover 305, and special-shaped treatment cover 308 are sleeved on the side end of the combined screw 206. The integrated nut 207 is sleeved on the side end of the combined screw 206 to fix and limit the closed edge cover 302, combined operation cover 304, integrated edge cover 305, and special-shaped treatment cover 308. After the fixation is completed, the glued sealing strip 303 is glued to the side ends of the closed edge cover 302 and the combined operation cover 304, and the adhesive bonding strip 307 is glued to the side ends of the integrated edge cover 305 and the special-shaped treatment cover 308. The bottom card limiting cover 309 and the matching operation cover 310 are engaged and connected through the special-shaped convex block 311, and multiple sets of matching operation covers 310 are engaged and sleeved with each other through the special-shaped convex block 311. The closed edge cover 302, combined operation cover 304, integrated edge cover 305, special-shaped treatment cover 308, bottom card limiting cover 309, and matching operation cover 310 are used to seal and fix the edge of the curtain wall to achieve edge isolation and protection. After the connection of multiple components is completed, silicone structural adhesive is used to seal the connection gaps to improve the tightness of the connection between multiple sets of components and ensure the stability of the connection;
[0061] Through two groups of isolation glass plates 218 and inner partition edge strips 219, an air isolation environment is formed.配合外部的回形卡合环225、外限透光板226和内空垫环227以及内空垫环227内部嵌入的硅胶干燥剂形成外部的空气隔离环境,并且通过外部空气隔离并且配合干燥处理,实现其在稳步透光的同时可以降低因内外直接热交换带来的温度变化,提升保温的效果,配合夹合多孔板205、内凹组合条220、弹性外凸条221、匚型组合盖222和保温密封垫230对内凹整合框202和外凸整合框203外侧边缘进行填充隔离,增加空气流通的路径,进一步减缓内凹整合框202和外凸整合框203外侧空气流动的速度,并且配合内嵌橡胶板314、插入凸起板315和多孔定位板316进行压合时填充,对内凹整合框202和外凸整合框203内侧边缘进行隔离填充,降低其内部空气外溢,进一步提升其节能保温的效果;With the external loop engaging ring 225, outer limit light-transmitting plate 226, inner hollow gasket ring 227, and the silica gel desiccant embedded inside the inner hollow gasket ring 227, an external air isolation environment is formed. And through external air isolation and combined with drying treatment, while achieving stable light transmission, it can reduce the temperature change caused by direct internal and external heat exchange, improve the heat preservation effect.配合夹合多孔板205、内凹组合条220、弹性外凸条221、匚型组合盖222和保温密封垫230对内凹整合框202和外凸整合框203外侧边缘进行填充隔离,增加空气流通的路径,进一步减缓内凹整合框202和外凸整合框203外侧空气流动的速度,并且配合内嵌橡胶板314、插入凸起板315和多孔定位板316进行压合时填充,对内凹整合框202和外凸整合框203内侧边缘进行隔离填充,降低其内部空气外溢,进一步提升其节能保温的效果;Cooperate with the clamping perforated plate 205, concave combination strip 220, elastic convex strip 221, U-shaped combined cover 222, and heat preservation sealing gasket 230 to fill and isolate the outer edges of the concave integration frame 202 and the convex integration frame 203, increase the path of air circulation, further slow down the air flow speed on the outer sides of the concave integration frame 202 and the convex integration frame 203, and cooperate with the embedded rubber plate 314, inserted convex plate 315, and perforated positioning plate 316 for filling during pressing to isolate and fill the inner edges of the concave integration frame 202 and the convex integration frame 203, reduce the external leakage of the internal air, and further improve its energy-saving and heat-preservation effect;
[0062] Through the sliding sleeve fit between the outer jacket fixing cylinder 208 and the combined fixing cylinder 209, the sliding sleeve fit between the reversing fixing box 211 and the connecting fixing box 212, the rotation of the reversing fixing box 211 and the combined fixing plate 210, and the rotation of the connecting fixing box 212 and the C-shaped fixing plate 213, and in cooperation with the buffer spring 214 and the buffer damper 215 for buffer support and buffer positioning, effective energy absorption treatment is carried out on the curtain wall, and through the special-shaped elastic strip 204 between the internal frames, elastic energy absorption can be utilized during the jitter and collision process, reducing the rigid damage of the equipment caused by vibration and jitter.
[0063] Finally, it should be noted that the above are only preferred examples of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. An environmentally friendly and safe building curtain wall, comprising a porous integrated rod (1), characterized in that: A protective component (2) is provided at the side end of the porous integrated rod (1); The protective component (2) includes a fixing bolt (201); An inner concave integrated frame (202) is clamped to the side end of the porous integrated rod (1) at equal intervals through the fixing bolt (201). An outer convex integrated frame (203) is clamped to the side end of the porous integrated rod (1) near the inner concave integrated frame (202) at equal intervals through the fixing bolt (201). Special-shaped elastic strips (204) are symmetrically laid on the side ends of the inner concave integrated frame (202) and the outer convex integrated frame (203); Clamping porous plates (205) are symmetrically sleeved on the side ends of the fixing bolt (201) corresponding to the positions of the inner concave integrated frame (202) and the outer convex integrated frame (203). Combined screws (206) are sleeved on the side ends of the clamping porous plates (205) at equal intervals. An integrated nut (207) is connected to the side ends of the fixing bolt (201) and the combined screw (206) by threads; One end of the combined screw (206) is welded with an outer sleeve fixing cylinder (208). A combined fixing cylinder (209) is slidably connected inside the outer sleeve fixing cylinder (208). A number of combined fixing plates (210) are welded to the side end of the outer sleeve fixing cylinder (208) at equal intervals. A reversing fixing box (211) is rotatably connected to the side end of the combined fixing plate (210). A connecting fixing box (212) is slidably connected inside the reversing fixing box (211). C-shaped fixing plates (213) are rotatably connected to both ends of the connecting fixing box (212); Buffer springs (214) are fixed to one ends inside the combined fixing cylinder (209) and the connecting fixing box (212). Buffer dampers (215) are fixed to one ends inside the combined fixing cylinder (209) and the connecting fixing box (212) near the buffer springs (214). A load-bearing special-shaped frame (216) is welded to one end of the combined fixing cylinder (209) and the C-shaped fixing plate (213). Combined C-shaped plates (217) are symmetrically fixed to one end of the load-bearing special-shaped frame (216); When installing a building curtain wall, holes are drilled at the positions of the supports according to the required installation positions, and the load-bearing special-shaped frame (216) is fitted to the wall installation position. The combined C-shaped plate (217) is sleeved on the side end of the load-bearing special-shaped frame (216), and the combined C-shaped plate (217) is positioned and fixed by using expansion bolts and expansion tubes, so as to fix the load-bearing special-shaped frame (216) to the side end of the wall; After the fixing is completed, the integrated nut (207), the clamping porous plate (205), the inner concave integrated frame (202), the special-shaped elastic strip (204), the porous integrated rod (1), the special-shaped elastic strip (204), the outer convex integrated frame (203) and the clamping porous plate (205) are stacked and combined one by one in sequence. After the stacking and combination are completed, the integrated nut (207) and the combined screw (206) are combined and connected again to realize the integrated fixation between multiple components; The clamping porous plate (205), the concave integration frame (202), the special-shaped elastic strip (204), the porous integration rod (1), the special-shaped elastic strip (204), the convex integration frame (203), the clamping porous plate (205) and the porous positioning plate (316) are clamped and fixed by using the fixing bolts (201) and the integrated nuts (207), so as to realize the frame combination limit; According to the area of the curtain wall, multiple groups of concave integration frames (202) and convex integration frames (203) are clamped and connected.
2. The environmentally friendly and safe building curtain wall according to claim 1, characterized in that: The side ends of the special-shaped elastic strips (204) are fitted with the side ends of the porous integration rod (1), the side ends of the two special-shaped elastic strips (204) are fitted, and the cross-sections of the concave integration frame (202) and the convex integration frame (203) are both T-shaped.
3. The environmentally friendly and safe building curtain wall according to claim 1, characterized in that: One end of the clamping porous plate (205) is fitted with the side ends of the concave integration frame (202) and the convex integration frame (203), the side end of the integrated nut (207) is fitted with the side end of the clamping porous plate (205), and the fixing bolts (201) and the combined screw rods (206) both penetrate through one end of the concave integration frame (202), the convex integration frame (203), the special-shaped elastic strip (204) and the clamping porous plate (205).
4. The environmentally friendly and safe building curtain wall according to claim 1, characterized in that: Isolated glass plates (218) are symmetrically fixed on the inner sides of the concave integration frame (202) and the convex integration frame (for), and inner sealing edge strips (219) are bonded on the inner sides of the concave integration frame (202) and the convex integration frame (203); Among them, one ends of multiple clamping porous plates (205) are symmetrically welded with concave combination strips (220), elastic convex strips (221) are clamped at the side ends of the concave combination strips (220), one ends of the two elastic convex strips (221) are welded with a U-shaped combination cover (222), and internally threaded combination sleeves (223) are rotatably connected at equal distances and symmetrically at one end of the U-shaped combination cover (222); A sealing isolation cover (224) is clamped and sleeved at one end of the U-shaped combination cover (222) corresponding to the position of the internally threaded combination sleeve (223), return-shaped clamping rings (225) are welded at equal distances at one end of the U-shaped combination cover (222), an outer limit light-transmitting plate (226) is bonded at one end of the return-shaped clamping ring (225), an inner empty gasket ring (227) is bonded at one end of the outer limit light-transmitting plate (226) corresponding to the position of the isolated glass plate (218), insertion connection grooves (228) are opened at the top and bottom of one end of the U-shaped combination cover (222), an I-shaped sealing edge strip (229) is sleeved inside the insertion connection grooves (for), and a heat-insulating sealing gasket (230) is bonded between the elastic convex strip (221) and the U-shaped combination cover (222).
5. The environmentally friendly and safe building curtain wall according to claim 4, characterized in that: Multiple buffer springs (214) and buffer dampers (for) are respectively fixedly connected with one ends of the inner sides of the outer sleeve fixed cylinder (208) and the commutation fixed box (211), one end of the isolated glass plate (218) is fitted with the side end of the inner sealing edge strip (219), and both ends of the U-shaped combination cover (222) are fitted with one ends of the concave integration frame (202) and the convex integration frame (203).
6. The environmentally friendly and safe building curtain wall according to claim 4, characterized in that: The cross-section of the elastic convex strip (221) is L-shaped, and the side end of the internal thread combination sleeve (223) and the side end of the combination screw (206) are engaged by threads.
7. The environmentally friendly and safe building curtain wall according to claim 4, characterized in that: Both ends of the outer limit light-transmitting plate (226) are respectively fitted with one end of two U-shaped combination covers (222), and one end of the inner hollow gasket ring (227) is bonded to one end of the isolation glass plate (218).
8. The environmentally friendly and safe building curtain wall according to claim 4, characterized in that: One end of the U-shaped combination cover (222) is provided with a sealing component (3); The sealing component (3) includes a U-shaped fixed cover (301); A plurality of U-shaped fixed covers (301) are welded at equal intervals at one end of the U-shaped combination cover (222). The side ends of multiple combination screws (206) are sleeved with a closing edge cover (302) through an integrated nut (207). Glue sealing strips (303) are bonded to both the bottom end and the top end of the closing edge cover (302). One end of the glue sealing strip (303) is bonded with a combination operation cover (304). The side ends of multiple combination screws (206) far from the closing edge cover (302) are sleeved with an integrated edge cover (305) through an integrated nut (207). A clamping isolation cover (306) is welded at one end of the integrated edge cover (305). Bonding glue strips (307) are bonded to both the bottom end and the top end of the integrated edge cover (305). One end of the bonding glue strip (307) is bonded with a special-shaped treatment cover (308). Bottom clamping limit covers (309) are welded at one end of both the combination operation cover (304) and the special-shaped treatment cover (308). A matching operation cover (310) is sleeved on the side end of the bottom clamping limit cover (309). Special-shaped convex blocks (311) are welded at the top of one end of both the bottom clamping limit cover (309) and the matching operation cover (310); Sealing isolation strips (312) are bonded to the inner sides of the U-shaped fixed cover (301), the closing edge cover (302), the combination operation cover (304), the integrated edge cover (305), the clamping isolation cover (306), the special-shaped treatment cover (308), the bottom clamping limit cover (309) and the matching operation cover (310). Clamping limit grooves (313) are symmetrically formed at one end of the inner concave integrated frame (202) and the outer convex integrated frame (203). An embedded rubber plate (314) is laid inside the clamping limit groove (313). An insertion convex plate (315) is bonded to one end of the embedded rubber plate (314). A porous positioning plate (316) is welded at one end of the insertion convex plate (315).
9. The environmentally friendly and safe building curtain wall according to claim 8, characterized in that: The side ends of both the U-shaped fixed cover (301) and the clamping isolation cover (306) are respectively fitted with one end of the inner concave integrated frame (202) and the outer convex integrated frame (203). The longitudinal section of the glue sealing strip (303) is I-shaped. The side ends of the closing edge cover (302), the combination operation cover (304), the integrated edge cover (305), the special-shaped treatment cover (308), the bottom clamping limit cover (309) and the matching operation cover (310) are respectively sleeved with the side ends of the inner concave integrated frame (202) and the outer convex integrated frame (203).
10. The environmentally friendly and safe building curtain wall according to claim 8, characterized in that: The longitudinal section of the inserted protruding plate (315) is T-shaped, the side end of the special-shaped protruding block (311) is sleeved and connected with the matching operation cover (310), and the porous positioning plate (316) is sleeved on the side end of the fixing bolt (201).
Citation Information
Patent Citations
Building curtain wall
CN214532038U
High-strength splicing type curtain wall plate and splicing process thereof
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Multifunctional integrated curtain wall
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