A panoramic window wall system
By designing anti-settlement components and pulley components for the panoramic window and wall system, the problems of frame and sash deformation and sliding jamming caused by building settlement and construction errors are solved, achieving long service life and efficient installation of doors and windows.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- GRUS (SHENZHEN) CURTAIN WALL DOOR & WINDOW TECH CO LTD
- Filing Date
- 2026-03-31
- Publication Date
- 2026-06-02
AI Technical Summary
Existing panoramic window wall systems are not well-suited to building settlement and construction errors, leading to problems such as frame and sash deformation, sliding jamming, and functional failure.
The design incorporates anti-settlement components, pulley components, and track components. The anti-settlement components buffer building settlement through auxiliary connecting frames and inner and outer frames. The pulley components absorb construction errors through I-shaped moving frames and sliding wheels. The track components provide stable support through double slide rails and pulley components.
It effectively extends the service life of doors and windows, reduces after-sales maintenance costs, improves installation and commissioning efficiency, and ensures smooth sliding and sealing performance.
Smart Images

Figure CN122129184A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of building door and window technology, and in particular to a panoramic window wall system. Background Technology
[0002] As the construction industry continues to upgrade its pursuit of spatial aesthetics and functional practicality, panoramic window-wall systems, due to their ability to achieve ultimate views and spatial expansion effects, are gradually becoming the preferred configuration for high-end buildings. However, existing panoramic window-wall systems have the following problems in long-term use: Insufficient adaptability to building settlement: During the natural settlement process of a building (especially in the area of openings where the settlement amount often reaches less than 20mm), traditional doors and windows are prone to problems such as frame and sash deformation, sliding jamming, or even inability to open and close due to the lack of effective adjustment and buffering structures. Moreover, existing products cannot specifically solve the functional failure problems caused by this settlement.
[0003] Poor compatibility with installation and construction errors: Errors such as the flatness of the ground track and the accuracy of wall installation are common in building construction. Conventional pulley and track mating structures are too rigid to absorb errors, resulting in poor system operation after installation and requiring repeated debugging. Summary of the Invention
[0004] The purpose of this invention is to provide a panoramic window wall system that solves the problems mentioned in the background art.
[0005] To achieve the above objectives, the present invention provides a panoramic window wall system, including a sliding door leaf and a fixed door leaf. One end of the fixed door leaf is connected to the mounting wall via an anti-settlement component, and the other end of the fixed door leaf is connected to one end of the sliding door leaf via a limiting component. The other end of the sliding door leaf is connected to the mounting wall via a strip plate, and a locking component is provided between the mounting wall and the strip plate. A decorative panel is provided below the sliding door leaf and the fixed door leaf, a track assembly is provided below the decorative panel, and a pulley assembly is connected below the sliding door leaf. The pulley assembly and the track assembly are slidably connected.
[0006] Preferably, the anti-settlement component includes a receiving cavity formed on the side of the mounting wall, an auxiliary connecting frame is provided in the receiving cavity, an outer frame is provided in the auxiliary connecting frame, a first inner frame and a second inner frame are provided in the outer frame, and the second inner frame is connected to one end of the fixed door leaf.
[0007] Preferably, the first inner frame includes an inner structural plate one and an inner structural plate two. Both the inner structural plate two and the inner structural plate one are provided with connecting fasteners. The inner structural plate one is also provided with a plurality of vertical partitions, and the plurality of vertical partitions are connected to the inner structural plate two. The two sides of the inner structural plate one are connected to the outer frame.
[0008] Preferably, the second inner frame includes a first inner component and a second inner component arranged symmetrically. The second inner component and one side of the first inner component are connected by a first connecting plate. An installation cavity is formed between the first inner component, the second inner component and the first connecting plate. One end of the fixed door leaf is disposed in the first installation cavity. A first anti-collision component is provided at the junction of the fixed door leaf and the first inner component, and a second anti-collision component is provided at the junction of the fixed door leaf and the second inner component. Anti-collision components 3 are provided at the connection points between the inner component 1 and the inner component 2 and the outer frame.
[0009] Preferably, the outer frame includes two symmetrically arranged outer components, outer component one and outer component two, outer component two and outer component one are connected on one side by two connecting plates two, and anti-collision components four are provided at the contact points between outer component one and outer component two and the two sides of the auxiliary connecting frame; Both outer component one and outer component two are provided with anti-collision components five at the contact points with both sides of the mounting wall.
[0010] Preferably, the limiting component includes a first limiting body and a second limiting body. Both the second limiting body and the first limiting body include a limiting frame. A second mounting cavity is provided on one side of the limiting frame. A first limiting member and a second limiting member are symmetrically arranged in the second mounting cavity. The second limiting member and the first limiting member are connected by a connecting plate three. An installation cavity three is formed between the first limiting member, the second limiting member, and the connecting plate three. The fixed door leaf or the sliding door leaf is provided in the installation cavity, and anti-collision member six and anti-collision member seven are provided at the connection points on both sides. The first limiting body and the second limiting body are centrally symmetrical structures, and an inner elastic element and an outer elastic element are provided at the connection between the two limiting frames. The outer elastic element is provided at the connection between the two ends of the two limiting frames, and the inner elastic element is provided at the connection between the centers of the two limiting frames.
[0011] Preferably, the locking assembly includes a locking box and a connecting box. The connecting box is embedded in the mounting wall, and the locking box is embedded in the strip. A rotating shaft is provided inside the locking box. One end of the rotating shaft is rotatably connected to the locking box, and the other end of the rotating shaft passes through the locking box and is fixedly connected to a rotating rod. A connecting sleeve is fixedly connected to the rotating shaft, and a hook plate is connected to the connecting sleeve. The hook plate is located inside the cavity of the locking box, and two through holes are also opened on the side of the locking box opposite to the connecting box. The connecting box has an arc-shaped channel inside, and openings are provided at both ends of the arc-shaped channel. The openings are located on the side where the connecting box connects to the locking box.
[0012] Preferably, the pulley assembly includes an I-shaped movable frame disposed below the sliding door leaf, a connecting plate four is provided at the connection between the upper end of the I-shaped movable frame and the bottom surface of the sliding door leaf, and anti-collision parts eight and nine are respectively provided at the connection between the I-shaped movable frame and the two sides of the sliding door leaf; The lower part of the I-shaped movable frame is fixedly connected to a fixing bar. Both ends of the fixing bar are connected to multiple sets of pulleys. Each set of pulleys includes a connecting shaft that is rotatably connected to the fixing bar. Both ends of the connecting shaft are rotatably connected to connecting pieces. Multiple sliding wheels are connected between the two connecting pieces via a rotating shaft.
[0013] Preferably, the track assembly includes a track frame set on the ground, a bottom foundation set inside the track frame, a track frame set above the bottom foundation, two slide rails set above the track frame, and the track frame connected to the bottom foundation by two base plates at the bottom.
[0014] Preferably, the decorative panel is also provided with a drainage channel, which is connected to an underground drainage system.
[0015] Therefore, the present invention adopts the above-mentioned panoramic window wall system, which solves the problem of push-pull caused by the settlement of building openings within 20mm through the anti-settlement component, greatly extending the service life of doors and windows and reducing after-sales maintenance costs; through the stable support of pulley components and track components, it can independently absorb construction errors and improve installation and debugging efficiency.
[0016] The technical solution of the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. Attached Figure Description
[0017] Figure 1 This is a structural schematic diagram of an embodiment of the panoramic window-wall system of the present invention; Figure 2 This is a cross-sectional structural schematic diagram of an embodiment of the panoramic window-wall system of the present invention; Figure 3 This is a schematic diagram showing the relative positions of the anti-settlement components and the wall to which the panoramic window-wall system of the present invention is installed; Figure 4 A schematic diagram of the anti-settlement component of a panoramic window-wall system according to the present invention; Figure 5 This is a schematic diagram of the structure of a limiting component of a panoramic window wall system according to the present invention. Figure 1 ; Figure 6 This is a schematic diagram of the structure of the locking box of a panoramic window-wall system according to the present invention; Figure 7 This is a schematic diagram of the structure of the hook plate of the panoramic window wall system of the present invention; Figure 8 This is a schematic diagram of the connection box of a panoramic window-wall system according to the present invention; Figure 9 This is a schematic diagram of the track assembly and pulley assembly of a panoramic window-wall system according to the present invention; Figure 10 This is a schematic diagram of the structure of a limiting component of a panoramic window wall system according to the present invention. Figure 2 ; Reference numerals: 1. Sliding door leaf; 2. Fixed door leaf; 3. Anti-settlement component; 31. Auxiliary connecting frame; 321. Outer component one; 322. Outer component two; 323. Connecting plate two; 324. Anti-collision component four; 325. Anti-collision component five; 331. Inner structural plate one; 332. Inner structural plate two; 333. Clip; 334. Vertical partition; 341. Inner component one; 342. Inner component two; 343. Connecting plate one; 344. Anti-collision component one; 345. Anti-collision component two; 346. Anti-collision component three; 4. Limiting component; 41. First limiting body; 42. Second limiting body; 431. Limiting frame; 432. Limiting component one; 433. Limiting component two; 434. Connecting... Component 3; 435, Anti-collision component 6; 436, Anti-collision component 7; 437, Inner elastic component; 438, Outer elastic component; 5, Strip plate; 6, Locking assembly; 61, Locking box; 62, Connecting box; 63, Rotating shaft; 64, Rotating rod; 65, Connecting sleeve; 66, Hook plate; 67, Through hole; 68, Opening; 7, Decorative panel; 8, Track assembly; 81, Track outer frame; 82, Bottom foundation; 83, Track frame; 84, Slide rail; 9, Pulley assembly; 91, I-beam movable frame; 92, Connecting plate 4; 93, Anti-collision component 8; 94, Anti-collision component 9; 95, Fixing strip; 96, Connecting piece; 97, Sliding wheel; 10, Drainage channel; 11, Mounting wall; 12, Ground. Detailed Implementation
[0018] The technical solution of the present invention will be further described below with reference to the accompanying drawings and embodiments.
[0019] Unless otherwise defined, the technical or scientific terms used in this invention shall have the ordinary meaning understood by one of ordinary skill in the art to which this invention pertains. The terms "first," "second," and similar terms used in this invention do not indicate any order, quantity, or importance, but are merely used to distinguish different components. Terms such as "comprising" or "including" mean that the element or object preceding the word encompasses the elements or objects listed following the word and their equivalents, without excluding other elements or objects. Terms such as "connected" or "linked" are not limited to physical or mechanical connections, but can include electrical connections, whether direct or indirect. Terms such as "upper," "lower," "left," and "right" are used only to indicate relative positional relationships; when the absolute position of the described object changes, the relative positional relationship may also change accordingly.
[0020] Example 1 Please see Figures 1-9 This invention provides a panoramic window wall system, including a sliding door leaf 1 and a fixed door leaf 2. One end of the fixed door leaf 2 is connected to the mounting wall 11 via an anti-settlement component 3, and the other end of the fixed door leaf 2 is connected to one end of the sliding door leaf 1 via a limiting component 4. The other end of the sliding door leaf 1 is connected to the mounting wall 11 via a strip 5. A locking component 6 is provided between the mounting wall 11 and the strip 5. A decorative panel 7 is provided below the sliding door leaf 1 and the fixed door leaf 2. A track assembly 8 is provided below the decorative panel 7. A pulley assembly 9 is connected below the sliding door leaf 1, and the pulley assembly 9 and the track assembly 8 are slidably connected.
[0021] The anti-settlement component 3 includes a receiving cavity opened on the side of the mounting wall 11, and an auxiliary connecting frame 31 is provided inside the receiving cavity, such as... Figure 4 As shown, during the overall house renovation, the auxiliary connecting frame 31 structure is pre-installed. The auxiliary connecting frame 31 has matching finishing profiles for different decoration materials, allowing the door frame, fixed door leaf 2, sliding door leaf 1, and other structures to be installed after the finishing is completed, ensuring finished product protection and project timeline. The auxiliary connecting frame 31 contains an outer frame, within which are a first inner frame and a second inner frame. The second inner frame is connected to one end of the fixed door leaf 2. (The text repeats itself here.) Figure 3 As shown, by reserving adjustment space through the auxiliary connecting frame 31, displacement compensation for building settlement within 20mm can be achieved.
[0022] The first inner frame includes an inner structural plate 331 and an inner structural plate 332. Both the inner structural plate 332 and the inner structural plate 331 are provided with connecting fasteners 333. The inner structural plate 331 is also provided with multiple vertical partitions 334, which are connected to the inner structural plate 332. The two sides of the inner structural plate 331 are connected to the outer frame.
[0023] The second inner frame includes symmetrically arranged inner component 341 and inner component 342. One side of inner component 342 and inner component 341 are connected by connecting plate 343. An installation cavity is formed between inner component 341, inner component 342, and connecting plate 343. One end of the fixed door leaf 2 is located within the installation cavity. A collision protection piece 344 is provided at the junction of the fixed door leaf 2 and inner component 341, and a collision protection piece 345 is provided at the junction of the fixed door leaf 2 and inner component 342. Collision protection pieces 346 are provided at the junctions of inner component 341 and inner component 342 with the outer frame.
[0024] The outer frame includes symmetrically arranged outer component 1 321 and outer component 2 322. One side of outer component 2 322 and outer component 1 321 are connected by two connecting plates 2 323. Anti-collision components 4 324 are provided at both contact points between outer component 1 321 and outer component 2 322 and both sides of the auxiliary connecting frame 31. Anti-collision components 5 325 are provided at both contact points between outer component 1 321 and outer component 2 322 and both sides of the mounting wall 11. Figure 4 As shown, the anti-collision component 325 can absorb the vibration between the fixed door leaf 2 and the mounting wall 11, play a buffering role, and improve the sealing performance and sound insulation.
[0025] The vertical partition 334 and the fastener 333 of the first inner frame enhance the structural support stability. The multiple anti-collision components of the second inner frame and the outer frame form a buffer layer to absorb the deformation stress caused by settlement and prevent the frame and sash from cracking or the glass from breaking.
[0026] The limiting component 4 includes a first limiting body 41 and a second limiting body 42. Both the second limiting body 42 and the first limiting body 41 include a limiting frame 431. A second mounting cavity is provided on one side of the limiting frame 431. A first limiting component 432 and a second limiting component 433 are symmetrically arranged in the second mounting cavity. The second limiting component 433 and the first limiting component 432 are connected by a third connecting plate 434. The first limiting component 432, the second limiting component 433 and the third connecting plate 434 form a third mounting cavity. A fixed door leaf 2 or a sliding door leaf 1 is provided in the third mounting cavity, and anti-collision components 6 435 and 7 436 are provided at the connection points on both sides. The first limiting body 41 and the second limiting body 42 are centrally symmetrical structures, and an inner elastic element 437 and an outer elastic element 438 are provided at the connection of the two limiting frames 431. The outer elastic element 438 is provided at the connection of the two ends of the two limiting frames 431, and the inner elastic element 437 is provided at the connection of the center of the two limiting frames 431.
[0027] The limiting component 4 achieves precise docking and limiting between the fixed door leaf 2 and the sliding door leaf 1, preventing excessive relative displacement. The outer elastic element 438, the inner elastic element 437, and multiple anti-collision components work together to absorb the impact of the switch and the additional force of settlement, solving the problem of uneven gaps when multiple doors are combined, while maintaining the sealing performance at the joint.
[0028] The locking assembly 6 includes a locking box 61 and a connecting box 62. The connecting box 62 is embedded in the mounting wall 11, and the locking box 61 is embedded in the strip 5. A rotating shaft 63 is provided inside the locking box 61. One end of the rotating shaft 63 is rotatably connected to the locking box 61, and the other end of the rotating shaft passes through the locking box 61 and is fixedly connected to a rotating rod 64. A connecting sleeve 65 is fixedly connected to the rotating shaft 63, and a hook plate 66 is connected to the connecting sleeve 65. The hook plate 66 is located in the cavity of the locking box 61. Two through holes 67 are also provided on the side of the locking box 61 opposite to the connecting box 62. An arc-shaped channel is provided inside the connecting box 62, and openings 68 are provided at both ends of the arc-shaped channel. The openings 68 are located on the side of the connecting box 62 that connects to the locking box 61. By driving the rotating shaft 63 through the rotating rod 64, the hook plate 66 extends into the arc-shaped channel of the connecting box 62 through the through holes 67 and engages and is fixed, thereby achieving reliable locking of the sliding door 1. The curved passage design accommodates the slight displacement of the sliding door 1, ensuring locking stability, while the hidden structure does not disrupt the panoramic visual effect.
[0029] The pulley assembly 9 includes an I-shaped movable frame 91 disposed below the sliding door leaf 1. The I-shaped movable frame 91, together with anti-collision components, absorbs the weight of the door leaf and the impact of sliding. A connecting plate 92 is provided at the connection between the upper end of the I-shaped movable frame 91 and the bottom surface of the sliding door leaf 1. Anti-collision components 93 and 94 are respectively provided at the connection between the I-shaped movable frame 91 and the two sides of the sliding door leaf 1. A fixing strip 95 is fixedly connected to the lower part of the I-shaped movable frame 91. Three sets of pulleys are connected to both ends of the fixing strip 95. Each set of pulleys includes a connecting shaft rotatably connected to the fixing strip 95. The connecting shaft and the fixing strip 95 are connected by bearings. Connecting plates 96 are rotatably connected to both ends of the connecting shaft. Eight sliding wheels 97 are connected between the two connecting plates 96 by a rotating shaft. Multiple sets of sliding wheels 97 form an adaptive adjustment structure with the connecting shaft. By rotating the connecting piece 96, the eight sliding wheels 97 can change different angles, thereby autonomously absorbing construction errors caused by uneven track and ensuring smooth sliding.
[0030] The track assembly 8 includes a track frame 81 set on the ground 12, a bottom base 82 inside the track frame 81, a track frame 83 above the bottom base 82, and two slide rails 84 above the track frame 83. The slide rails 84 are made of wear-resistant stainless steel. The double slide rail design improves the operational stability of the sliding door leaf 1 and adapts to the needs of multi-track and multi-leaf combinations. Figure 1 As shown in the figure, this embodiment only shows the structure of a single sliding door. When there are multiple sliding door panels, multiple sets of track components are provided below. With the design of this invention, no matter how many track components there are, only one set of track components can be seen in appearance, which is more aesthetically pleasing.
[0031] The track frame 83 is connected to the bottom foundation 82 via two base plates. The track outer frame 81 and the bottom foundation 82 are precast using C30 concrete to ensure load-bearing strength. The layered structure of the bottom foundation 82 and track frame 83 enhances the load-bearing capacity and, together with the pulley assembly 9, enables silent sliding. The sunken track design creates zero height difference with the indoor and outdoor ground 12, ensuring barrier-free passage. The sliding wheels 97 are made of special pulley steel (combining the corrosion resistance of 316 stainless steel with the hardness of bearing steel), with a single pulley assembly capable of bearing ≥800kg, suitable for single-leaf door panels weighing 800-1000kg.
[0032] In this embodiment, each anti-collision component uses rubber strips to provide cushioning and sealing.
[0033] The decorative panel 7 also has a drainage channel 10, which is connected to the underground drainage system. For example... Figure 2 As shown, the outer edge of the track frame 83 below the drainage channel 10 is inclined to guide the water flow and promote the water flow to quickly flow through the drainage channel 10 into the underground drainage system.
[0034] In addition to the above structure, the sliding door 1 can be slid by manual pushing or by motor driving. The specific method of use is determined according to actual needs. Sliding the sliding door 1 by motor driving is a mature existing technology in this field, and will not be described in detail here.
[0035] Example 2 Please see Figure 10 The limiting component 4 includes a first limiting body 41 and a second limiting body 42. Both the second limiting body 42 and the first limiting body 41 include a limiting frame 431. A second mounting cavity is provided at the center of the limiting frame 431. A first limiting component 432 and a second limiting component 433 are symmetrically arranged in the second mounting cavity. The second limiting component 433 and the first limiting component 432 are connected by a third connecting plate 434. The first limiting component 432, the second limiting component 433 and the third connecting plate 434 form a third mounting cavity. A fixed door leaf 2 or a sliding door leaf 1 is provided in the third mounting cavity, and anti-collision components 6 435 and 7 436 are provided at the connection points on both sides. The first limiting body 41 and the second limiting body 42 are centrally symmetrical structures, and an inner elastic element 437 and an outer elastic element 438 are provided at the connection of the two limiting frames 431. The outer elastic element 438 is provided at the connection of the two ends of the two limiting frames 431, and the inner elastic element 437 is provided at the connection of the center of the two limiting frames 431.
[0036] The limiting component 4 achieves precise docking and limiting between the fixed door leaf 2 and the sliding door leaf 1, preventing excessive relative displacement. The outer elastic element 438, the inner elastic element 437, and multiple anti-collision components work together to absorb the impact of the switch and the additional force of settlement, solving the problem of uneven gaps when multiple doors are combined, while maintaining the sealing performance at the joint.
[0037] The other structures in this embodiment 2 are the same as those in embodiment 1 above.
[0038] In both Embodiment 1 and Embodiment 2, the specific connection methods of each component adopt conventional methods such as bolts, rivets, and welding that are mature in the prior art. The machinery, parts, and equipment all adopt conventional models in the prior art. In addition, the circuit connection adopts conventional connection methods in the prior art, which will not be described in detail here.
[0039] In practical use, the following steps are included: S1. Pre-treatment of walls and ground 12: A pre-set cavity (size matching the outer frame of the anti-settlement component 3) is installed in the wall 11, and a track installation groove is excavated in the ground 12, with a drainage channel 10 and an underground drainage system connection port reserved simultaneously.
[0040] S2. Installation of anti-settlement component 3: Fix the auxiliary connecting frame 31 to the receiving cavity and calibrate the position by adjusting the bolts; install the outer frame, the first inner frame and the second inner frame in sequence to ensure that the anti-collision components fit tightly; embed the end of the fixed door leaf 2 into the installation cavity of the second inner frame and fill the gap with sealant.
[0041] S3. Assembly of track and pulley assembly 9: Pour the bottom foundation 82 in the ground 12 groove, fix the track frame 83 and double slide rail 84; fix the pulley assembly 9 to the bottom of the sliding door leaf 1 through the connecting plate 4 92, and adjust the matching gap between the slide wheel 97 and the slide rail 84.
[0042] S4. Installation of Limiting and Locking Components 6: Install limiting components 4 at the joint between the fixed door leaf 2 and the sliding door leaf 1 to ensure that the two limiting bodies are symmetrical and the elastic element is in its natural state; embed the locking box 61 into the strip 5 and the connecting box 62 into the wall, and align the through hole 67 with the arc-shaped channel.
[0043] S5. Decoration and finishing: Install decorative panel 7 to cover track and pulley assembly 9 to ensure unobstructed drainage channel 10; debug the adjustment mechanism of anti-settlement component 3 to verify the effectiveness of adjustment in a scenario of 10-20mm settlement; test the smoothness of opening and closing, locking reliability and drainage performance of sliding door leaf 1.
[0044] Therefore, the present invention adopts the above-mentioned panoramic window wall system, which solves the problem of push-pull caused by the settlement of building openings within 20mm through the anti-settlement component, greatly extending the service life of doors and windows and reducing after-sales maintenance costs; through the stable support of pulley components and track components, it can independently absorb construction errors and improve installation and debugging efficiency.
[0045] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and not to limit them. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can still be made to the technical solutions of the present invention, and these modifications or equivalent substitutions cannot cause the modified technical solutions to deviate from the spirit and scope of the technical solutions of the present invention.
Claims
1. A panoramic window-wall system, characterized in that: It includes a sliding door leaf and a fixed door leaf. One end of the fixed door leaf is connected to the mounting wall through an anti-settlement component. The other end of the fixed door leaf is connected to one end of the sliding door leaf through a limiting component. The other end of the sliding door leaf is connected to the mounting wall through a strip. A locking component is provided between the mounting wall and the strip. A decorative panel is provided below the sliding door leaf and the fixed door leaf, a track assembly is provided below the decorative panel, and a pulley assembly is connected below the sliding door leaf. The pulley assembly and the track assembly are slidably connected.
2. The panoramic window-wall system according to claim 1, characterized in that: The anti-settlement component includes a receiving cavity opened on the side of the mounting wall, an auxiliary connecting frame is provided in the receiving cavity, an outer frame is provided in the auxiliary connecting frame, a first inner frame and a second inner frame are provided in the outer frame, and the second inner frame is connected to one end of the fixed door leaf.
3. A panoramic window-wall system according to claim 2, characterized in that: The first inner frame includes an inner structural plate one and an inner structural plate two. Both the inner structural plate two and the inner structural plate one are provided with connecting fasteners. The inner structural plate one is also provided with multiple vertical partitions, and the multiple vertical partitions are connected to the inner structural plate two. The two sides of the inner structural plate one are connected to the outer frame.
4. A panoramic window-wall system according to claim 3, characterized in that: The second inner frame includes two symmetrically arranged inner components, inner component one and inner component two. One side of inner component two and inner component one are connected by a connecting plate. An installation cavity one is formed between inner component one, inner component two and connecting plate one. One end of the fixed door leaf is disposed in the installation cavity one. A collision protection component one is provided at the junction of the fixed door leaf and inner component one, and a collision protection component two is provided at the junction of the fixed door leaf and inner component two. Anti-collision components 3 are provided at the connection points between the inner component 1 and the inner component 2 and the outer frame.
5. A panoramic window-wall system according to claim 4, characterized in that: The outer frame includes two symmetrically arranged outer components, outer component one and outer component two. The outer component two and one side of the outer component one are connected by two connecting plates two. Anti-collision components four are provided at the contact points between the outer component one and the outer component two and the two sides of the auxiliary connecting frame. Both outer component one and outer component two are provided with anti-collision components five at the contact points with both sides of the mounting wall.
6. A panoramic window-wall system according to claim 5, characterized in that: The limiting component includes a first limiting body and a second limiting body. Both the second limiting body and the first limiting body include a limiting frame. A second mounting cavity is provided on one side of the limiting frame. A first limiting component and a second limiting component are symmetrically arranged in the second mounting cavity. The second limiting component and the first limiting component are connected by a connecting plate three. An installation cavity three is formed between the first limiting component, the second limiting component, and the connecting plate three. The fixed door leaf or the sliding door leaf is provided in the installation cavity, and anti-collision component six and anti-collision component seven are provided at the connection points on both sides. The first limiting body and the second limiting body are centrally symmetrical structures, and an inner elastic element and an outer elastic element are provided at the connection between the two limiting frames. The outer elastic element is provided at the connection between the two ends of the two limiting frames, and the inner elastic element is provided at the connection between the centers of the two limiting frames.
7. A panoramic window-wall system according to claim 6, characterized in that: The locking assembly includes a locking box and a connecting box. The connecting box is embedded in the mounting wall, and the locking box is embedded in the strip. A rotating shaft is provided inside the locking box. One end of the rotating shaft is rotatably connected to the locking box, and the other end of the rotating shaft passes through the locking box and is fixedly connected to a rotating rod. A connecting sleeve is fixedly connected to the rotating shaft, and a hook plate is connected to the connecting sleeve. The hook plate is located inside the cavity of the locking box, and two through holes are also opened on the side of the locking box opposite to the connecting box. The connecting box has an arc-shaped channel inside, and openings are provided at both ends of the arc-shaped channel. The openings are located on the side where the connecting box connects to the locking box.
8. A panoramic window-wall system according to claim 7, characterized in that: The pulley assembly includes an I-shaped movable frame disposed below the sliding door leaf. A connecting plate four is provided at the connection between the upper end of the I-shaped movable frame and the bottom surface of the sliding door leaf. Anti-collision parts eight and nine are respectively provided at the connection between the I-shaped movable frame and the two sides of the sliding door leaf. The lower part of the I-shaped movable frame is fixedly connected to a fixing bar. Both ends of the fixing bar are connected to multiple sets of pulleys. Each set of pulleys includes a connecting shaft that is rotatably connected to the fixing bar. Both ends of the connecting shaft are rotatably connected to connecting pieces. Multiple sliding wheels are connected between the two connecting pieces via a rotating shaft.
9. A panoramic window-wall system according to claim 8, characterized in that: The track assembly includes a track frame set on the ground, a bottom foundation set inside the track frame, a track frame set above the bottom foundation, two slide rails set above the track frame, and the track frame connected to the bottom foundation by two base plates at the bottom.
10. A panoramic window-wall system according to claim 9, characterized in that: The decorative panel is also provided with drainage channels, which are connected to the underground drainage system.