Energy-saving and environmentally friendly assembled building glass curtain wall and installation method thereof
By adopting prefabricated design and special assembly mechanisms in architectural glass curtain walls, the problem of complex and difficult to disassemble the existing glass curtain walls is solved, and more efficient installation and more convenient and sustainable use are achieved.
Patent Information
- Application Number
- CN202510142231.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-10
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2045-02-10
AI Technical Summary
The existing building glass curtain walls are complex during the installation process, and are mostly integrated after installation, which is difficult to disassemble, resulting in inconvenience in sustainable use.
The prefabricated architectural glass curtain wall design is adopted, including the first wall frame, the second wall frame, the glass plate and the assembly mechanism, and the assembly is quickly connected and disassembled through the inlay grooves, docking blocks, inlay blocks, connecting rods and other components in the assembly mechanism.
The installation process of glass curtain walls is simplified, the installation efficiency and safety is improved, and the glass curtain walls are easier to disassemble and sustainable.
Smart Images

Figure CN119571953B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of assembled building glass curtain walls, and in particular to an energy-saving and environment-friendly assembled building glass curtain wall and an installation method thereof. Background Art
[0002] Architectural curtain wall refers to the non-load-bearing exterior wall enclosure of a building, usually composed of panels and the supporting structure behind it. Curtain wall is the exterior wall enclosure of a building, which is non-load-bearing and is hung like a curtain, so it is also called a suspended wall. It is a lightweight wall with decorative effects commonly used in modern large and high-rise buildings. It is composed of a structural frame and inlaid panels. It is a building enclosure structure that does not bear the load and function of the main structure. The glass curtain wall frame can be made of aluminum alloy or steel structure. These materials have high strength and good corrosion resistance, and can extend the service life of the curtain wall. In terms of material selection, materials with high recycling rates are given priority to reduce resource waste and reduce energy consumption in the manufacturing process. It is more common in daily life.
[0003] Prior art includes an invention with publication number CN111894186B, which discloses an assembled tempered glass curtain wall for building exterior walls. The patent includes a No. 1 window frame strip, a No. 2 window frame strip, a docking locking device and a clamping device. The No. 2 window frame strip is symmetrically installed at the upper and lower ends of the No. 1 window frame strip through a docking locking device and a clamping device. The invention can solve the following problems existing in the installation of existing glass curtain walls: first, traditional glass curtain walls usually require the introduction of too many auxiliary fixing and positioning components during installation and construction, resulting in a complex structure and reduced reliability at this location, while increasing the cost of assembled building construction. There are many components and high material costs, complex installation processes, and high labor intensity in manually installing glass curtain walls; second, existing glass curtain walls are not easy to splice during installation, and the glass curtain wall structure has low strength and poor safety, which affects the quality of the glass curtain wall. The invention can improve the safety and installation efficiency of the glass curtain wall.
[0004] It is found in daily life that the installation process of the existing architectural glass curtain wall is relatively complicated, and the installed glass curtain wall is mostly integrated, which makes it inconvenient to disassemble the assembly frame from the building, thereby causing the problem of inconvenient disassembly of the glass curtain wall for sustainable utilization. Summary of the invention
[0005] The purpose of the present invention is to solve the problem in the prior art that the installation process of the building glass curtain wall is relatively complicated, and the installed glass curtain wall is mostly integrated, which will make it inconvenient to disassemble the assembly frame from the building, thereby making it inconvenient to disassemble the glass curtain wall for sustainable utilization.
[0006] In order to achieve the above-mentioned purpose, the present invention adopts the following technical scheme: an energy-saving and environmentally friendly assembled building glass curtain wall and its installation method, comprising a first wall frame, a second wall frame, a glass plate and an assembly mechanism, the inner walls of the first wall frame and the second wall frame are fixedly connected with glass plates, one side of the first wall frame and the second wall frame is provided with a mounting frame, and the side where the first wall frame and the second wall frame are close to each other is provided with an assembly mechanism, the assembly mechanism comprises two inlay grooves, the two inlay grooves are respectively opened on the side where the first wall frame and the second wall frame are close to each other, a plurality of support plates are fixedly connected to the inner wall surface of the second wall frame corresponding to the inlay groove, the surface of the support plate is slidably connected with a docking block, the cross-section of the docking block is "L" shaped, the first wall frame is fixedly connected with a connecting frame at the position corresponding to the inlay groove, the surface of the connecting frame is provided with a sliding groove at the position corresponding to the docking block, the bottom end of the inner wall of the sliding groove is fixedly connected with two springs, and the upper ends of the two springs are fixedly connected with the same A mosaic block, the upper end cross-section of the mosaic block is triangular, the side wall of the mosaic block is wedge-shaped, the upper end of the mosaic block is plugged into the lower surface of the docking block, the second wall frame is slidably plugged with a connecting rod corresponding to the inner wall of the mosaic groove, the side wall of the connecting rod is fixedly connected with a top plate, the cross-section of the top plate is "L"-shaped, the lower surface of the top plate is fixedly connected with the plug block, a slot is provided on the bottom surface of the inner wall of the connecting frame at a position corresponding to the plug block, the inner wall of the slot is plugged with the surface of the plug block, the cross-section of the short arm end of the top plate is inclined, the bottom end side wall of the top plate is clamped with the side wall of the mosaic block, sealing holes are provided on both sides of the first wall frame and the second wall frame, and sealing covers are clamped at the positions of the first wall frame and the second wall frame corresponding to the sealing holes, sealing columns are threaded through both sides of the sealing cover, the arc surface of the sealing column is threadedly connected to the inner wall of the sealing hole, the surface of the sealing cover is fixedly connected with a top rod, and the surface of the top rod is in contact with the surface of the connecting rod.
[0007] Preferably, a telescopic rod is slidably connected to the inner wall of the spring, and two ends of the telescopic rod are fixedly connected to the inner wall of the mosaic block and the connecting frame respectively.
[0008] Preferably, a guide plate is fixedly connected to the inner wall surface of the first wall frame corresponding to the inlay groove, the cross section of the guide plate is "L"-shaped, and the surface of the guide plate is slidably connected to the surface of the connecting rod.
[0009] Preferably, a baffle is fixedly connected to the upper surface of the connecting rod, and one side of the baffle is in contact with the side wall of the guide plate.
[0010] Preferably, a plurality of docking mechanisms are provided at positions of the mounting frame corresponding to the inner wall surfaces of the first wall frame and the second wall frame, the docking mechanisms comprising a connecting frame, one side of the connecting frame is fixedly connected to the side wall surface of the mounting frame, the inner wall of the connecting frame is rotatably connected with a rotating plate, the surface of the rotating plate is provided with a connecting hole, the second wall frame and the first wall frame side wall surfaces are fixedly connected with connecting plates at positions corresponding to the rotating plate, the surface of the connecting plate is plugged into the inner wall of the connecting hole, a connecting column is threadedly penetrated on one side of the rotating plate, the surface of the connecting plate is provided with a plug hole, and the inner wall of the plug hole is plugged into the arc surface of the connecting column.
[0011] Preferably, both ends of the inner wall of the connecting frame are sleeved with coil springs, and both ends of the coil spring are fixedly connected to the rotating plate and the connecting frame respectively.
[0012] Preferably, one end of the connecting column is fixedly connected to a guide block, and the cross section of the guide block is in a pointed cone shape.
[0013] Preferably, a limiting mechanism is provided at a position of the mounting frame corresponding to a surface of a side where the first wall frame and the second wall frame are close to each other, the limiting mechanism comprises two adjusting plates and an adjusting rod, the lower surfaces of the two adjusting plates are respectively in contact with the surfaces of the second wall frame and the first wall frame, the cross-section of the adjusting rod is in a "T" shape, the adjusting plates are respectively located on both sides of the surface of the mounting frame, the cross-section of the adjusting plates is in an "L" shape, positioning columns are slidably penetrated on both sides of the surface of the adjusting plates, positioning holes are provided at positions of the positioning columns on the surfaces of the first wall frame and the second wall frame corresponding to the positioning columns, the inner wall of the positioning hole is threadedly connected to the arc surface of the positioning column, a through hole is provided on the side wall surface of the adjusting plate, the cross-section of the through hole is vertical, the arc surface of the adjusting rod passes through the through hole and the inner wall of the mounting frame in sequence, the arc surface of the adjusting rod is movably connected to the inner wall of the mounting frame and the inner wall of the through hole, and a fixed shaft is threadedly connected to one end of the adjusting rod.
[0014] Preferably, a limiting groove is provided on the surface of the adjustment plate at a position corresponding to the through hole, and a fixing ring is provided on the arc surface of the adjustment rod. The fixing ring is a rubber ring, and the surface of the fixing ring abuts against the inner wall surface of the limiting groove, and one side of the fixed shaft abuts against the surface of the fixing ring.
[0015] Preferably, the energy-saving and environmentally friendly assembled building glass curtain wall and the installation method thereof comprise the following steps:
[0016] S1. During the installation of the glass curtain wall, the glass panels need to be first installed and fixed on the first wall frame and the second wall frame. At this time, the first wall frame and the second wall frame are assembled as a group. Then, each group of assembled glass curtain walls is docked and fixed with the mounting frame provided on the wall in turn.
[0017] S2. When assembling the first wall frame and the second wall frame, firstly, place the second wall frame horizontally toward the upper surface of the docking block, then slide and insert the connecting rod along the guide plate, so that the top plate fixed on the surface of the connecting rod abuts against the docking block, and at this time, the docking block sliding along the support plate will be squeezed by the top plate and cannot be offset;
[0018] S3, then the first wall frame and the second wall frame are brought close to each other, and the docking block is plugged into the telescopic mosaic block on the surface of the connecting frame on one side of the first wall frame. Since the mosaic block is subjected to the tensile force generated by the inner wall spring, the mosaic block cannot move upward at this time. When the first wall frame and the second wall frame are completely overlapped, the top rod fixed on the surface of one side of the sealing cover is used to abut and move against the surface of one side of the connecting rod, so that the entire connecting rod drives the top plate to move along the slot using the plug-in block at the bottom, so that the top plate plugs and lifts the mosaic block, so that the mosaic block rises and plugs into the lower surface of the docking block, and at the same time, the docking block loses the abutment on the upper end of the top plate and thus falls, and at this time, the docking block and the mosaic block are further plugged and fixed;
[0019] S4, finally, the two sealing covers are connected to the first wall frame and the second wall frame, and are fixed by threading with the sealing columns and the sealing holes. At this time, the first wall frame and the second wall frame are assembled into a whole;
[0020] S5, docking the assembled first wall frame and the second wall frame with the mounting frame, using the rotating plate flipped in the docking frame in the docking mechanism of the side wall of the mounting frame and the docking plate fixed on the inner wall of the first wall frame and the second wall frame to insert and limit, then docking and fixing the docking column threadedly connected to the side wall of the rotating plate with the plug hole on the surface of the docking plate, at this time, the first wall frame and the second wall frame are fixed to the mounting frame;
[0021] S6. During this process, the mounting frame and the first wall frame and the second wall frame are further mounted and fixed with the help of the limiting mechanism, and the adjustment plate is fixed to the first wall frame and the second wall frame by threaded connection with the positioning column. Then, the adjustment rod and the through hole on the surface of the adjustment plate and the inner wall of the mounting frame are slid through, and the fixed shaft on the arc surface at one end of the adjustment rod is rotated, so that the entire first wall frame and the second wall frame drive the glass plate and the surface of the mounting frame to be installed and fixed.
[0022] Compared with the prior art, the advantages and positive effects of the present invention are:
[0023] 1. In the present invention, by providing an assembly mechanism, the first wall frame and the second wall frame can be docked, the docking block in the inlay groove of the second wall frame is plugged into the inlay block in the inlay groove of the first wall frame, and the top plate fixed on one side of the connecting rod is used to squeeze the side wall of the inlay block, so that the inlay block and the lower surface of the docking block are effectively and conveniently docked and fixed, and the first wall frame and the second wall frame can be assembled conveniently and quickly.
[0024] 2. In the present invention, by providing a docking mechanism, the mounting frame can be quickly docked and limited with the first wall frame and the second wall frame, and the rotating plate in the mounting frame surface is connected to the connecting plate fixed on the surface of the second wall frame through the through hole provided on the surface of the rotating plate, and then the connecting column on one side of the rotating plate is connected to the plug hole provided on the surface of the connecting plate for docking and fixing, so that the entire mounting frame and the second wall frame are effectively and conveniently temporarily fixed and protected.
[0025] 3. In the present invention, by setting a limiting mechanism, the first wall frame and the second wall frame can be firmly fixed and limited with the mounting frame, and the first wall frame and the second wall frame are connected with the adjusting plate on the surface, and then the adjusting rod is used to slide through the side wall of the mounting frame, which helps to make the adjusting plate stably and quickly install and limit the first wall frame and the second wall frame. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 The present invention provides a three-dimensional structural schematic diagram of an energy-saving and environmentally friendly assembled building glass curtain wall and an installation method thereof;
[0027] Figure 2 The present invention provides an energy-saving and environmentally friendly assembled building glass curtain wall and a schematic diagram of the three-dimensional structure of the installation method thereof;
[0028] Figure 3 A schematic diagram of a partial structure of a three-dimensional structure of an energy-saving and environmentally friendly assembled building glass curtain wall and an installation method thereof is provided by the present invention;
[0029] Figure 4 The present invention provides a structural schematic diagram of an assembly mechanism of an energy-saving and environmentally friendly assembled building glass curtain wall and an installation method thereof;
[0030] Figure 5 A schematic diagram of the partial structure of an assembly mechanism of an energy-saving and environmentally friendly assembled building glass curtain wall and an installation method thereof is provided in the present invention;
[0031] Figure 6 A partial schematic diagram of an assembly mechanism of an energy-saving and environmentally friendly assembled building glass curtain wall and an installation method thereof proposed by the present invention;
[0032] Figure 7 The present invention provides a schematic diagram of the disassembled structure of an assembly mechanism of an energy-saving and environmentally friendly assembled building glass curtain wall and an installation method thereof;
[0033] Figure 8 A partial cross-sectional schematic diagram of an assembly mechanism of an energy-saving and environmentally friendly assembled building glass curtain wall and an installation method thereof is provided in the present invention;
[0034] Fig. 9 The present invention provides a schematic structural diagram of a limiting mechanism of an energy-saving and environmentally friendly assembled building glass curtain wall and an installation method thereof;
[0035] Fig.10 The present invention provides a structural schematic diagram of a docking mechanism for an energy-saving and environmentally friendly assembled building glass curtain wall and an installation method thereof.
[0036] Legend: 1. First wall frame; 2. Second wall frame; 3. Glass plate; 4. Mounting frame; 5. Assembly mechanism; 501. Sealing cover; 502. Sealing column; 503. Sealing hole; 504. Top rod; 505. Inlay groove; 506. Support plate; 507. Docking block; 508. Connecting frame; 509. Inlay block; 510. Telescopic rod; 511. Spring; 512. Slide groove; 513. Slot; 514. Connecting rod; 515 , top plate; 516, plug block; 517, guide plate; 518, baffle; 6, limiting mechanism; 61, adjusting plate; 62, limiting groove; 63, through hole; 64, adjusting rod; 65, fixed shaft; 66, fixing ring; 67, positioning hole; 68, positioning column; 7, docking mechanism; 71, connecting frame; 72, coil spring; 73, rotating plate; 74, connecting hole; 75, connecting column; 76, guide block; 77, connecting plate; 78, plug hole. DETAILED DESCRIPTION
[0037] In order to more clearly understand the above-mentioned purpose, features and advantages of the present invention, the present invention is further described below in conjunction with the accompanying drawings and embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.
[0038] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways than those described herein. Therefore, the present invention is not limited to the specific embodiments of the following disclosure.
[0039] Embodiment 1, as Figure 1-3 As shown, the present invention provides an energy-saving and environmentally friendly assembled building glass curtain wall and an installation method thereof, comprising a first wall frame 1, a second wall frame 2, a glass plate 3 and an assembly mechanism 5, the inner walls of the first wall frame 1 and the second wall frame 2 are fixedly connected with the glass plate 3, a mounting frame 4 is arranged on one side of the first wall frame 1 and the second wall frame 2, an assembly mechanism 5 is arranged on a side where the first wall frame 1 and the second wall frame 2 are close to each other, a plurality of docking mechanisms 7 are arranged on the inner wall surfaces of the first wall frame 1 and the second wall frame 2 at positions corresponding to the mounting frame 4, and a limiting mechanism 6 is arranged on the surface of the side where the first wall frame 1 and the second wall frame 2 are close to each other at positions corresponding to the mounting frame 4.
[0040] The specific settings and functions of the assembly mechanism 5, the limiting mechanism 6, and the docking mechanism 7 are described in detail below.
[0041] like Figure 4 , Figure 5 , Figure 6 , Figure 7 and Figure 8As shown, the assembly mechanism 5 includes two inlay grooves 505, by means of which the first wall frame 1 and the second wall frame 2 are assisted in docking and limiting. The two inlay grooves 505 are respectively arranged on the side where the first wall frame 1 and the second wall frame 2 are close to each other. The inner wall surface of the second wall frame 2 corresponding to the inlay grooves 505 is fixedly connected with a plurality of support plates 506. The support plates 506 can allow the docking blocks 507 to perform sliding support and protection. The surface of the support plates 506 is slidably connected with the docking blocks 507, and the docking blocks 507 can be plugged and fixed with the inlay blocks 509. The cross section of the docking blocks 507 is "L"-shaped. The position of the first wall frame 1 corresponding to the inlay grooves 505 is fixedly connected with a connecting frame 508, and the connecting frame 508 can guide the position of the inlay blocks 509. The surface of the connecting frame 508 is provided with a slide groove 512 corresponding to the position of the docking block 507. The slide groove 512 can slide the mosaic block 509. The bottom end of the inner wall of the slide groove 512 is fixedly connected with two springs 511. The tensile force generated by the springs 511 can stretch and fix the mosaic block 509. The upper ends of the two springs 511 are fixedly connected with the same mosaic block 509. The upper end cross-section of the mosaic block 509 is triangular, and the side wall of the mosaic block 509 is wedge-shaped. The upper end of the mosaic block 509 is plugged into the lower surface of the docking block 507. The second wall frame 2 is slidably plugged with a connecting rod 514 corresponding to the inner wall of the inlay groove 505. The connecting rod 514 can fix the position of the top plate 515. The side wall of the connecting rod 514 is fixedly connected with the top plate 5 15, the top plate 515 can squeeze one side of the mosaic block 509, the cross-section of the top plate 515 is "L"-shaped, and the lower surface of the top plate 515 is fixedly connected with an insert block 516, and the insert block 516 is docked with the slot 513, so that the position of the top plate 515 cannot be offset, and a slot 513 is provided on the bottom surface of the inner wall of the connecting frame 508 corresponding to the position of the insert block 516, and the inner wall of the slot 513 is plugged with the surface of the insert block 516. The cross-section of the short arm end of the top plate 515 is inclined, and the bottom side wall of the top plate 515 is snap-fitted with the side wall of the mosaic block 509. Sealing holes 503 are provided on both sides of the first wall frame 1 and the second wall frame 2. The combination of the sealing hole 503, the sealing cover 501 and the sealing column 502 can be used to lock the first wall frame 1 and the second wall frame 2. The first wall frame 1 and the second wall frame 2 are effectively docked and fixed. The sealing cover 501 is clamped at the position corresponding to the sealing hole 503. The sealing column 502 is threaded through both sides of the sealing cover 501. The arc surface of the sealing column 502 is threadedly connected to the inner wall of the sealing hole 503. The surface of the sealing cover 501 is fixedly connected to the top rod 504. The surface of the top rod 504 abuts against the surface of the connecting rod 514. The inner wall of the spring 511 is slidably connected with a telescopic rod 510. The two ends of the telescopic rod 510 are respectively fixedly connected to the inner wall of the mosaic block 509 and the connecting frame 508. The telescopic rod 510 can protect the spring 511 to prevent the spring 511 from being deformed after long-term use. The inner wall surface of the first wall frame 1 corresponding to the mosaic groove 505 is fixedly connected with a guide plate 517.The guide plate 517 can locate the position of the connecting rod 514. The cross section of the guide plate 517 is "L" shaped. The surface of the guide plate 517 is slidably connected to the surface of the connecting rod 514. The upper surface of the connecting rod 514 is fixedly connected with a baffle 518, and one side of the baffle 518 abuts against the side wall of the guide plate 517.
[0042] When assembling the first wall frame 1 and the second wall frame 2, firstly, the second wall frame 2 is horizontally placed toward the upper surface of the docking block 507, and then the connecting rod 514 is slidably inserted along the guide plate 517, so that the top plate 515 fixed on the surface of the connecting rod 514 is abutted against the docking block 507. At this time, the docking block 507 sliding along the support plate 506 will be squeezed by the top plate 515 and cannot be offset. Then, the first wall frame 1 and the second wall frame 2 are closely connected, and the docking block 507 is correspondingly inserted toward the telescopic mosaic block 509 on the surface of the connecting frame 508 on one side of the first wall frame 1. Since the mosaic block 509 is subjected to the tensile force generated by the inner wall spring 511, the mosaic block 509 cannot move upward at this time. When the first wall frame 1 and the second wall frame 2 are connected, When the frames 2 are completely overlapped, the top rod 504 fixed on one side surface of the sealing cover 501 is used to abut and move against one side surface of the connecting rod 514, so that the entire connecting rod 514 drives the top plate 515 to move along the slot 513 using the plug block 516 at the bottom, so that the top plate 515 is inserted and lifted up the mosaic block 509, so that the mosaic block 509 rises and is inserted into the lower surface of the docking block 507. At the same time, the docking block 507 loses the abutment of the upper end of the top plate 515 and thus descends. At this time, the docking block 507 and the mosaic block 509 are further plugged and fixed. Finally, the two sealing covers 501 are docked with the first wall frame 1 and the second wall frame 2, and are threadedly docked and fixed with the sealing column 502 and the sealing hole 503. At this time, the first wall frame 1 and the second wall frame 2 are assembled as a whole.
[0043] like Fig. 9As shown, the docking mechanism 7 includes a docking frame 71, one side of the docking frame 71 is fixedly connected to the side wall surface of the mounting frame 4, the docking frame 71 can flip and limit the rotating plate 73, the inner wall of the docking frame 71 is rotatably connected with the rotating plate 73, the surface of the rotating plate 73 is provided with a docking hole 74, the docking hole 74 can be plugged and regulated to the docking plate 77, the second wall frame 2 and the first wall frame 1 The side wall surface corresponding to the rotating plate 73 is fixedly connected with a docking plate 77, the docking plate 77 can be docked with the rotating plate 73, the surface of the docking plate 77 is plugged with the inner wall of the docking hole 74, and one side of the rotating plate 73 is threaded with a coupling The connecting column 75 can be plugged into the connecting plate 77. The surface of the connecting plate 77 is provided with a socket 78. The socket 78 can be plugged and positioned with the connecting column 75. The inner wall of the socket 78 is plugged into the arc surface of the connecting column 75. Both ends of the inner wall of the connecting frame 71 are covered with coil springs 72. The torsional force generated by the coil springs 72 can squeeze the position of the rotating plate 73. The two ends of the coil spring 72 are respectively fixedly connected to the rotating plate 73 and the connecting frame 71. One end of the connecting column 75 is fixedly connected with a guide block 76. The guide block 76 can allow the connecting column 75 to be better docked and fixed. The cross-section of the guide block 76 is a pointed cone.
[0044] After the assembled first wall frame 1 and the second wall frame 2 are docked with the mounting frame 4, the rotating plate 73 flipped in the connecting frame 71 of the side wall docking mechanism 7 of the mounting frame 4 is inserted and limited with the connecting plate 77 fixed on the inner wall of the first wall frame 1 and the second wall frame 2, and then the connecting column 75 threadedly connected to the side wall of the rotating plate 73 is docked and fixed with the insertion hole 78 opened on the surface of the connecting plate 77. At this time, the first wall frame 1 and the second wall frame 2 are fixed to the mounting frame 4.
[0045] like Fig.10As shown, the limiting mechanism 6 includes two adjusting plates 61 and an adjusting rod 64. The lower surfaces of the two adjusting plates 61 are respectively in contact with the surfaces of the second wall frame 2 and the first wall frame 1. The adjusting plates 61 can dock and fix the first wall frame 1 and the second wall frame 2. The cross section of the adjusting rod 64 is "T"-shaped. The adjusting rod 64 can plug and fix the adjusting plates 61. The adjusting plates 61 are respectively located on both sides of the surface of the mounting frame 4. The cross section of the adjusting plates 61 is "L"-shaped. Positioning columns 68 are slidably penetrated on both sides of the surface of the adjusting plates 61. The positioning columns 68 can be threadedly docked and fixed to the lower surface of the adjusting plates 61. Positioning holes 67 are provided on the surfaces of the first wall frame 1 and the second wall frame 2 at positions corresponding to the positioning columns 68. The sizes of the positioning holes 67 and the positioning columns 68 are adapted to facilitate threaded docking of the positioning columns 68. The inner wall of the positioning hole 67 and the arc surface screw of the positioning column 68 are screwed together. The adjusting plate 61 is connected with a groove, and a through hole 63 is provided on the side wall surface of the adjusting plate 61, and the through hole 63 is convenient for sliding through the adjusting rod 64. The cross section of the through hole 63 is vertical, and the arc surface of the adjusting rod 64 passes through the through hole 63 and the inner wall of the mounting frame 4 in sequence. The arc surface of the adjusting rod 64 is movably connected with the inner wall of the mounting frame 4 and the inner wall of the through hole 63. One end of the adjusting rod 64 is threadedly connected with a fixed shaft 65, and a limiting groove 62 is provided on the surface of the adjusting plate 61 at a position corresponding to the through hole 63. The limiting groove 62 can limit the fixed shaft 65. The arc surface of the adjusting rod 64 is sleeved with a fixing ring 66, and the fixing ring 66 is a rubber ring. The fixing ring 66 can increase friction, which is convenient for further protection of the fixing shaft 65 to prevent loosening and falling off. The surface of the fixing ring 66 abuts against the inner wall surface of the limiting groove 62, and one side of the fixed shaft 65 abuts against the surface of the fixing ring 66.
[0046] During this process, the mounting frame 4 is further installed and fixed to the first wall frame 1 and the second wall frame 2 with the help of the limiting mechanism 6, and the adjusting plate 61 is fixed to the first wall frame 1 and the second wall frame 2 by threading with the help of the positioning column 68. Then, the adjusting rod 64 and the through hole 63 opened on the surface of the adjusting plate 61 and the inner wall of the mounting frame 4 are slid through, and at the same time, the fixed shaft 65 on the arc surface of one end of the adjusting rod 64 is rotated, so that the entire first wall frame 1 and the second wall frame 2 drive the surface of the glass plate 3 and the mounting frame 4 to be installed and fixed.
[0047] The above description is only a preferred embodiment of the present invention and does not limit the present invention in other forms. Any technician familiar with the profession may use the technical content disclosed above to change or modify it into an equivalent embodiment with equivalent changes and apply it to other fields. However, any simple modification, equivalent change and modification made to the above embodiment based on the technical essence of the present invention without departing from the content of the technical solution of the present invention still falls within the protection scope of the technical solution of the present invention.
Claims
1. An energy-saving and environmentally friendly assembled building glass curtain wall, comprising a first wall frame (1), a second wall frame (2), a glass plate (3) and an assembly mechanism (5), characterized in that: The inner walls of the first wall frame (1) and the second wall frame (2) are both fixedly connected with glass plates (3); a mounting frame (4) is provided on one side of the first wall frame (1) and the second wall frame (2); an assembly mechanism (5) is provided on the side where the first wall frame (1) and the second wall frame (2) are close to each other; the assembly mechanism (5) comprises two inlay grooves (505); the two inlay grooves (505) are respectively provided on the side where the first wall frame (1) and the second wall frame (2) are close to each other; a plurality of support plates (506) are fixedly connected to the inner wall surfaces of the second wall frame (2) corresponding to the inlay grooves (505); a docking block (507) is slidably connected to the surface of the support plate (506); the cross section of the docking block (507) is in an "L" shape; The first wall frame (1) is fixedly connected with a connecting frame (508) at a position corresponding to the inlay groove (505); a sliding groove (512) is provided on the surface of the connecting frame (508) at a position corresponding to the docking block (507); two springs (511) are fixedly connected to the bottom end of the inner wall of the sliding groove (512); the upper ends of the two springs (511) are fixedly connected with the same inlay block (509); the upper end cross-section of the inlay block (509) is triangular; the side wall of the inlay block (509) is wedge-shaped; the upper end of the inlay block (509) is plugged into the lower surface of the docking block (507); the second wall frame (2) is slidably plugged with a connecting rod (514) at the inner wall corresponding to the inlay groove (505); the connecting rod (514) is The side wall is fixedly connected to a top plate (515), the cross section of the top plate (515) is in an "L" shape, the lower surface of the top plate (515) is fixedly connected to an insert block (516), a slot (513) is provided on the bottom surface of the inner wall of the connection frame (508) at a position corresponding to the insert block (516), the inner wall of the slot (513) is plugged into the surface of the insert block (516), the cross section of the short arm end of the top plate (515) is inclined, the bottom side wall of the top plate (515) is snap-fitted with the side wall of the mosaic block (509), sealing holes (503) are provided on both sides of the first wall frame (1) and the second wall frame (2), and sealing covers (501) are snap-fitted at positions corresponding to the sealing holes (503) of the first wall frame (1) and the second wall frame (2). The sealing cover (501) is threaded with sealing columns (502) on both sides, the arc surface of the sealing column (502) is threadedly connected to the inner wall of the sealing hole (503), the surface of the sealing cover (501) is fixedly connected to a top rod (504), the surface of the top rod (504) is in contact with the surface of the connecting rod (514), a limiting mechanism (6) is provided on the surface of the side where the first wall frame (1) and the second wall frame (2) are close to each other, corresponding to the position of the mounting frame (4), the limiting mechanism (6) comprises two adjustment plates (61) and an adjustment rod (64), the lower surfaces of the two adjustment plates (61) are in contact with the surfaces of the second wall frame (2) and the first wall frame (1), respectively, and the cross section of the adjustment rod (64) is "T"-shaped,The adjustment plates (61) are respectively located on both sides of the surface of the mounting frame (4); the cross section of the adjustment plates (61) is in an "L" shape; positioning columns (68) are slidably penetrated on both sides of the surface of the adjustment plates (61); positioning holes (67) are provided on the surfaces of the first wall frame (1) and the second wall frame (2) at positions corresponding to the positioning columns (68); the inner wall of the positioning hole (67) is threadedly connected to the arc surface of the positioning column (68); a through hole (63) is provided on the side wall surface of the adjustment plate (61); the cross section of the through hole (63) is in a vertical shape; the arc surface of the adjustment rod (64) passes through the through hole (63) in sequence. 63) and the inner wall of the mounting frame (4), the arc surface of the adjusting rod (64) is movably connected to the inner wall of the mounting frame (4) and the inner wall of the through hole (63), one end of the adjusting rod (64) is threadedly connected to a fixing shaft (65), a limiting groove (62) is provided on the surface of the adjusting plate (61) at a position corresponding to the through hole (63), the arc surface of the adjusting rod (64) is sleeved with a fixing ring (66), the fixing ring (66) is a rubber ring, the surface of the fixing ring (66) is in contact with the inner wall surface of the limiting groove (62), and one side of the fixing shaft (65) is in contact with the surface of the fixing ring (66).
2. The energy-saving and environmentally friendly assembled building glass curtain wall according to claim 1 is characterized by: The inner wall of the spring (511) is slidably connected to a telescopic rod (510), and two ends of the telescopic rod (510) are respectively fixedly connected to the inner wall of the inlay block (509) and the connection frame (508).
3. The energy-saving and environmentally friendly assembled building glass curtain wall according to claim 2 is characterized by: A guide plate (517) is fixedly connected to the inner wall surface of the first wall frame (1) corresponding to the inlay groove (505); the cross section of the guide plate (517) is L-shaped, and the surface of the guide plate (517) is slidably connected to the surface of the connecting rod (514).
4. The energy-saving and environmentally friendly assembled building glass curtain wall according to claim 3 is characterized by: A baffle plate (518) is fixedly connected to the upper surface of the connecting rod (514), and one side of the baffle plate (518) abuts against the side wall of the guide plate (517).
5. The energy-saving and environmentally friendly assembled building glass curtain wall according to claim 4 is characterized by: A plurality of docking mechanisms (7) are provided at positions of the inner wall surfaces of the first wall frame (1) and the second wall frame (2) corresponding to the mounting frame (4), the docking mechanism (7) comprising a docking frame (71), one side of the docking frame (71) being fixedly connected to the side wall surface of the mounting frame (4), the inner wall of the docking frame (71) being rotatably connected to a rotating plate (73), the surface of the rotating plate (73) being provided with a docking hole (74), the second wall frame (2) and the first wall frame (1) being fixedly connected to positions of the side wall surfaces corresponding to the rotating plate (73), the surface of the docking plate (77) being plugged into the inner wall of the docking hole (74), a docking column (75) being threadedly penetrated on one side of the rotating plate (73), the surface of the docking plate (77) being provided with an insertion hole (78), the inner wall of the insertion hole (78) being plugged into the arc surface of the docking column (75).
6. The energy-saving and environmentally friendly assembled building glass curtain wall according to claim 5 is characterized by: Both ends of the inner wall of the connecting frame (71) are sleeved with coil springs (72), and both ends of the coil spring (72) are fixedly connected to the rotating plate (73) and the connecting frame (71) respectively.
7. The energy-saving and environmentally friendly assembled building glass curtain wall according to claim 6 is characterized by: One end of the connecting column (75) is fixedly connected to a guide block (76), and the cross section of the guide block (76) is in the shape of a pointed cone.
8. A method for installing an energy-saving and environmentally friendly assembled building glass curtain wall, using the energy-saving and environmentally friendly assembled building glass curtain wall according to any one of claims 5 to 7, comprising the following steps: S1. During the installation of the glass curtain wall, the glass plate (3) needs to be first installed and fixed in the first wall frame (1) and the second wall frame (2). At this time, the first wall frame (1) and the second wall frame (2) are assembled as a group. Then, each group of assembled glass curtain walls is docked and installed and fixed with the installation frame (4) provided on the wall in turn. S2. When assembling the first wall frame (1) and the second wall frame (2), firstly, the second wall frame (2) is horizontally placed facing the upper surface of the docking block (507), and then the connecting rod (514) is slidably inserted along the guide plate (517) so that the top plate (515) fixed on the surface of the connecting rod (514) is in contact with the docking block (507). At this time, the docking block (507) sliding along the support plate (506) will be squeezed by the top plate (515) and cannot be offset; S3, then the first wall frame (1) and the second wall frame (2) are brought close to each other and connected, so that the connecting block (507) is plugged into the telescopic mosaic block (509) on the surface of the connecting frame (508) on one side of the first wall frame (1). Since the mosaic block (509) is subjected to the tensile force generated by the inner wall spring (511), the mosaic block (509) cannot move upward. When the first wall frame (1) and the second wall frame (2) are completely overlapped, the connecting rod (508) is connected by means of the top rod (504) fixed on the surface of one side of the sealing cover (501). The connecting rod (514) is moved in contact with one side surface of the connecting rod (514), so that the entire connecting rod (514) drives the top plate (515) to move along the slot (513) using the plug block (516) at the bottom, so that the top plate (515) plugs and lifts the mosaic block (509), so that the mosaic block (509) rises and plugs with the lower surface of the docking block (507), and at the same time, the docking block (507) loses the contact with the upper end of the top plate (515) and thus descends, and at this time, the docking block (507) and the mosaic block (509) are further plugged and fixed; S4, finally, the two sealing covers (501) are butted with the first wall frame (1) and the second wall frame (2), and are fixed by threading with the sealing column (502) and the sealing hole (503), so that the first wall frame (1) and the second wall frame (2) are assembled into a whole; S5, docking the assembled first wall frame (1) and the second wall frame (2) with the mounting frame (4), inserting and limiting the position of the rotating plate (73) turned inside the connecting frame (71) in the docking mechanism (7) on the side wall of the mounting frame (4) and the connecting plate (77) fixed on the inner wall of the first wall frame (1) and the second wall frame (2), and then docking and fixing the connecting column (75) threadedly connected to the side wall of the rotating plate (73) with the insertion hole (78) provided on the surface of the connecting plate (77), at which time the first wall frame (1) and the second wall frame (2) are fixed to the mounting frame (4); S6. In this process, the mounting frame (4) is further mounted and fixed to the first wall frame (1) and the second wall frame (2) by means of the limiting mechanism (6), and the adjusting plate (61) is fixed to the first wall frame (1) and the second wall frame (2) by means of the positioning column (68). Then, the adjusting rod (64) is slidably penetrated through the through hole (63) provided on the surface of the adjusting plate (61) and the inner wall of the mounting frame (4), and at the same time, the fixing shaft (65) on the arc surface at one end of the adjusting rod (64) is rotated, so that the entire first wall frame (1) and the second wall frame (2) drive the glass plate (3) and the surface of the mounting frame (4) to be mounted and fixed.
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