Angle-adjustable glass curtain wall

By designing a glass curtain wall system including curtain wall base, adjustment mechanism and load-bearing mechanism, the problem of existing glass curtain wall bearing significant loads at large inclination angles is solved, and higher support stability and service life are achieved.

CN120175012APending Publication Date: 2025-06-20周浩
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Patent Information

Application Number
CN202510177963.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-18
Publication Date
2025-06-20

AI Technical Summary

Technical Problem

When the existing glass curtain wall is at a large inclination angle, the rotating bearings are subjected to significantly increased loads, resulting in deformation, wear and even fracture, affecting the stability and safety of the curtain wall.

Method used

A glass curtain wall system including a curtain wall base, an adjustment mechanism and a load-bearing mechanism is designed. The adjustment mechanism realizes the angle adjustment and support of the glass body through components such as rotary plates, annular support plates, roller components and stabilizers; the load-bearing mechanism distributes loads and increases support points through the annular support plates and roller components, thereby improving the overall support stability.

Benefits of technology

By enhancing support stability and reducing friction and wear, the adjustment flexibility and service life of the glass curtain wall are improved, while improving the overall support stability, avoiding faults caused by excessive stress on the rotating shaft.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an angle-adjustable glass curtain wall, and belongs to the technical field of building curtain walls, the angle-adjustable glass curtain wall comprises a curtain wall base, an adjusting mechanism is arranged in the curtain wall base, the adjusting mechanism comprises a rotating plate mounted in the curtain wall base, a glass body is mounted on one side of the rotating plate, and a bearing mechanism is arranged on the side wall of the curtain wall base; the bearing mechanism comprises an annular supporting plate installed on the side wall of the curtain wall base, the rotating plate slides on the surface of the annular supporting plate used for supporting, an annular groove is formed in the top end of the annular supporting plate, and stabilizing pieces used for buffering pressure are installed on the two sides of the rotating plate. By introducing the annular supporting plate and the roller assembly, the supporting stability of the curtain wall during angle adjustment is remarkably enhanced, the angle of the glass body can be stably and smoothly adjusted through the sliding design of the roller assembly in the annular groove, friction and abrasion are reduced, the adjusting flexibility of the curtain wall is improved, and the service life of the curtain wall is prolonged.
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Description

Technical Field

[0001] The present invention relates to the technical field of building curtain walls, and particularly to an adjustable-angle glass curtain wall. Background Art

[0002] As a new type of wall, glass curtain walls have been widely used in large and high-rise buildings such as shopping malls, office buildings, airports, stadiums, exhibition centers, and railway stations due to their beauty, light self-weight, good lighting, and high standardization and industrialization levels. The connection components of glass curtain walls are complex, with diverse processes, and need to meet various performance requirements such as load-bearing, wind pressure resistance, airtightness, watertightness, heat insulation, and sound insulation.

[0003] In existing glass curtain walls, only the rotating shafts inside the curtain wall support frames can be used to support the glass for angle adjustment. Since only one or several rotating shafts are relied on to support the weight of the entire glass curtain wall, when the curtain wall is at a large inclination angle, the load borne by the rotating shafts will increase significantly, which will cause the rotating shafts to deform, wear, or even break, affecting the stability and safety of the curtain wall. Summary of the Invention

[0004] The purpose of the present invention is to provide an adjustable-angle glass curtain wall to solve the problem that when the curtain wall is at a large inclination angle, the load borne by the rotating shafts will increase significantly, which will cause the rotating shafts to deform, wear, or even break as proposed in the above background art.

[0005] To achieve the above purpose, the present invention provides the following technical solution: an adjustable-angle glass curtain wall, including a curtain wall base. An adjustment mechanism is arranged inside the curtain wall base. The adjustment mechanism includes a rotating plate installed inside the curtain wall base. A glass body is installed on one side of the rotating plate. A load-bearing mechanism is arranged on the side wall of the curtain wall base. The load-bearing mechanism includes an annular support plate installed on the side wall of the curtain wall base. The rotating plate slides on the surface of the annular support plate for support. An annular groove is opened at the top end of the annular support plate. Stabilizing members for buffering pressure are installed on both sides of the rotating plate. A limiting plate is fixedly installed at the bottom end of the stabilizing member. A roller assembly is rotatably installed at the bottom end of the limiting plate. The roller assembly slides inside the annular groove. A support block is installed inside the rotating plate. A telescopic member is rotatably installed at the top end of the limiting plate. The free end of the telescopic member is rotatably connected to the support block. An arc-shaped top rod is fixedly installed between the two telescopic members.

[0006] As a preferred technical solution of the present invention, a baffle is fixedly installed at the bottom end of the support block. A cleaning mechanism is arranged at the bottom end of the baffle. The cleaning mechanism includes a cleaning cylinder with cleaning liquid installed on the surface of the baffle. A cleaning sponge for cleaning the inner bottom wall of the annular groove is rotatably installed at one end of the cleaning cylinder located inside the annular groove. Drainage grooves are opened at both ends of the annular groove.

[0007] As a preferred technical solution of the present invention, an extrusion plate is fixedly installed on the inner wall of the cleaning cylinder close to the cleaning sponge, an arc-shaped rack is fixedly installed on the inner wall of the annular groove, a first gear is fixedly installed at one end of the cleaning sponge, and the first gear meshes with the rack.

[0008] As a preferred technical solution of the present invention, a second gear is rotatably installed on the outer surface of the cleaning cylinder, a stirring rod is rotatably installed inside the cleaning cylinder, one end of the stirring rod is fixedly connected to the second gear, and the second gear meshes with the rack.

[0009] As a preferred technical solution of the present invention, the roller assembly includes a roller body slidably installed inside the annular groove for driving the glass body to move. The cross-section of the roller body coincides with the annular groove. A plurality of long strips for high-friction action are fixedly installed on the outer surface of the roller body, and wear-resistant pads are fixedly installed on both sides of the roller body.

[0010] As a preferred technical solution of the present invention, a blocking mechanism is arranged inside the curtain wall base. The blocking mechanism includes a cylinder fixedly installed inside the curtain wall base. A sliding rod slidably penetrates through the inside of the cylinder. A plug is arranged at one end of the sliding rod located inside the cylinder. A chute is formed on the surface of the rotating plate, and a slider is slidably installed inside the chute. The free end of the sliding rod is rotatably connected to the slider.

[0011] As a preferred technical solution of the present invention, a liquid injection pipe with fluid is fixedly installed inside the curtain wall base. A connecting pipe is installed in communication between the liquid injection pipe and the cylinder. A filter screen for filtering the fluid is installed on the inner wall of the liquid injection pipe close to the connecting pipe. A sealing plate is arranged inside the liquid injection pipe, and a pressure relief component is communicated at the top end of the sealing plate.

[0012] As a preferred technical solution of the present invention, an auxiliary mechanism is arranged inside the connecting pipe. The auxiliary mechanism includes a first flow component and a second flow component rotatably installed inside the connecting pipe. A first belt is sleeved between the first flow component and the second flow component. One end of the cylinder close to the slider is communicated with an air pipe. A third flow component is rotatably installed on the pipe wall of the air pipe. A second belt is sleeved between the third flow component and the second flow component.

[0013] As a preferred technical solution of the present invention, the first flow component, the second flow component, and the third flow component are all composed of a rotating plate assembly with multiple partition plates and rotating shafts, and sealing gaskets are installed on the side walls of the partition plates.

[0014] As a preferred technical solution of the present invention, it further includes a mounting frame and a reinforcing plate. The mounting frame is installed inside the curtain wall base, the reinforcing plate is installed at one end of the mounting frame, the reinforcing plate is fixedly connected to the annular support plate, and the free end of the annular support plate is inserted into the inner side of the curtain wall base. A rotating member for driving the rotating plate to rotate is clamped on the surface of the mounting frame, and the rotating member is installed inside the mounting frame through a mounting plate.

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

[0016] 1. By introducing the annular support plate and the roller assembly, the present invention enhances the support stability of the curtain wall when adjusting the angle. The sliding design of the roller assembly in the annular groove not only enables the glass body to adjust the angle smoothly and smoothly, but also reduces friction and wear, improving the adjustment flexibility and service life of the curtain wall.

[0017] 2. By setting the alternating sliding of two groups of rollers in the annular groove, the present invention not only disperses the weight and load of the curtain wall, but also increases the number of support points, thereby improving the overall support stability. Moreover, during the reciprocating movement of the glass body, an alternating support sliding method will be generated, enabling the rollers to maintain balance during the sliding process and reducing wear and failures caused by excessive force on a single roller.

[0018] 3. Through the cleaning liquid in the cleaning cylinder and the rotating cleaning sponge, the present invention enables the inner bottom wall of the annular groove to be automatically cleaned during the movement of the glass body, effectively avoiding the accumulation of dust and dirt. At the same time, the meshing design of the first gear and the second gear with the arc-shaped rack enables the cleaning sponge to always remain clean through the cooperation of the cleaning cylinder and the pressing plate during the cleaning process, thereby improving the cleaning effect.

[0019] 4. The introduction of the blocking mechanism in the present invention provides a strong guarantee for the safety performance of the curtain wall. When the glass body rotates on the surface of the curtain wall, it will drive the fluid inside the cylinder to move. The movement of the fluid will generate resistance. When the curtain wall encounters rapid movement or external impact during the adjustment process, through the interaction between the sliding rod and the resistance generated by the fluid inside the cylinder, the movement speed of the curtain wall is restricted, thereby avoiding the occurrence of safety accidents. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a schematic structural diagram of the glass curtain wall of the present invention;

[0021] Figure 2 It is a schematic top view structural diagram of the curtain wall base of the present invention;

[0022] Figure 3 It is a schematic structural diagram of the load-bearing mechanism of the present invention;

[0023] Figure 4 Schematic diagram of the side part structure of the curtain wall base of the present invention;

[0024] Figure 5 Of the present invention Figure 4 Enlarged structure schematic diagram at position A;

[0025] Figure 6 Schematic diagram of the roller assembly structure of the present invention;

[0026] Figure 7 Schematic diagram of the internal structure of the annular support plate of the present invention;

[0027] Figure 8 Of the present invention Figure 7 Enlarged structure schematic diagram at position B;

[0028] Figure 9 Schematic diagram of the internal structure of the cleaning bucket of the present invention;

[0029] Figure 10 Schematic diagram of the blocking mechanism structure of the present invention;

[0030] Figure 11 Of the present invention Figure 10 Enlarged structure schematic diagram at position C;

[0031] Figure 12 Schematic diagram of the internal structure of the cylinder of the present invention;

[0032] Figure 13 Of the present invention Figure 12 Enlarged structure schematic diagram at position D.

[0033] In the figure: 1. Curtain wall base; 2. Mounting frame; 3. Reinforcement plate; 4. Adjusting mechanism; 41. Mounting plate; 42. Rotating part; 43. Rotating plate; 44. Glass body; 5. Load-bearing mechanism; 51. Annular support plate; 52. Roller assembly; 521. Roller body; 522. Long strip; 523. Pad; 53. Limiting plate; 54. Stabilizing part; 55. Support block; 56. Baffle; 57. Telescopic part; 58. Arc-shaped ejector rod; 59. Cleaning mechanism; 5901. Cleaning cylinder; 5902. Cleaning sponge; 5903. Extrusion plate; 5904. Rack; 5905. First gear; 5906. Second gear; 5907. Stirring rod; 510. Annular groove; 511. Discharge groove; 6. Blocking mechanism; 61. Slide groove; 62. Slide block; 63. Slide rod; 64. Plug; 65. Cylinder; 66. Connecting pipe; 67. Liquid injection pipe; 68. Sealing plate; 69. Pressure relief component; 7. Auxiliary mechanism; 71. First flow component; 72. First belt; 73. Second flow component; 74. Air pipe; 75. Third flow component; 76. Second belt; 77. Filter screen. Detailed implementation manners

[0034] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0035] Please refer to Figure 1-13 , the present invention provides an adjustable-angle glass curtain wall, including a curtain wall base 1. An adjusting mechanism 4 is arranged inside the curtain wall base 1. The adjusting mechanism 4 includes a rotating plate 43 installed inside the curtain wall base 1, and a glass body 44 is installed on one side of the rotating plate 43.

[0036] Among them, the curtain wall base 1 serves as the support foundation of the entire structure and is firmly installed on the outer wall of the building. A space is designed inside the curtain wall base 1 to accommodate the adjusting mechanism 4, which is the key part for realizing the angle adjustment of the glass body 44; the core component of the adjusting mechanism 4 is the rotating plate 43, which is clamped and installed inside the curtain wall base 1 and can rotate within a certain range. This rotating design enables the glass body 44 connected to the rotating plate 43 to change the inclination angle accordingly, thereby expanding the application range of the glass curtain wall.

[0037] In the technical solution of the embodiment of the present application, a load-bearing mechanism 5 is arranged on the side wall of the curtain wall base 1. The load-bearing mechanism 5 includes an annular support plate 51 installed on the side wall of the curtain wall base 1, and the rotating plate 43 slides on the surface of the annular support plate 51 for supporting.

[0038] Among them, the annular support plate 51 is installed on the side wall of the curtain wall base 1, providing a stable support surface for the rotating plate 43 and the glass body 44 thereon. This design ensures that the glass body 44 can remain stable when adjusting the angle, without shaking or tilting, and further enhances the overall stability of the glass curtain wall.

[0039] In the technical solution of the embodiment of the present application, an annular groove 510 is opened at the top end of the annular support plate 51. Buffer pressure stabilizing members 54 are installed on both sides of the rotating plate 43. A limiting plate 53 is fixedly installed at the bottom end of the stabilizing member 54. A roller assembly 52 is rotatably installed at the bottom end of the limiting plate 53. The roller assembly 52 slides inside the annular groove 510. A support block 55 is installed inside the rotating plate 43. A telescopic member 57 is rotatably installed at the top end of the limiting plate 53. The free end of the telescopic member 57 is rotatably connected to the support block 55, and an arc-shaped top rod 58 is fixedly installed between the two telescopic members 57.

[0040] Among them, by arranging the roller assembly 52 to slide in the annular groove 510 inside the annular support plate 51, the smoothness of the movement of the glass body 44 on the surface of the annular support plate 51 is improved. When the roller assembly 52 slides inside the annular groove 510, through the reciprocating movement of the glass body 44, the two sets of roller assemblies 52 will continuously rotate clockwise and counterclockwise under the action of the arc-shaped ejector rod 58 and friction. At this time, the two sets of roller assemblies 52 alternately support and slide in the annular groove 510, which not only disperses the weight and load of the curtain wall but also increases the number of support points, thereby reducing the wear and failure caused by excessive force on a single roller assembly 52, and improving the overall support stability. At the same time, with the cooperation of the telescopic member 57 and the stabilizing member 54, the roller assembly 52 can support and press on the annular groove 510. When the glass body 44 is vibrated, the vibration energy can be greatly dispersed and absorbed, reducing the damage to the roller assembly 52.

[0041] In some other embodiments, a baffle 56 is fixedly installed at the bottom end of the support block 55, and a cleaning mechanism 59 is arranged at the bottom end of the baffle 56. The cleaning mechanism 59 includes a cleaning cylinder 5901 with cleaning liquid installed on the surface of the baffle 56. A cleaning sponge 5902 for cleaning the inner bottom wall of the annular groove 510 is rotatably installed at one end of the cleaning cylinder 5901 located inside the annular groove 510. Drainage grooves 511 are opened at both ends of the annular groove 510.

[0042] Among them, when the glass body 44 rotates, it will drive the cleaning cylinder 5901 to slide inside the annular groove 510. The cleaning cylinder 5901 drives the cleaning sponge 5902 to move. The inner bottom wall of the annular groove 510 can be automatically cleaned by the cleaning sponge 5902, and the slag is discharged through the drainage groove 511, effectively avoiding the accumulation of dust and dirt.

[0043] In some other embodiments, an extrusion plate 5903 is fixedly installed on the inner wall of the cleaning cylinder 5901 close to the cleaning sponge 5902. An arc-shaped rack 5904 is fixedly installed on the inner wall of the annular groove 510. A first gear 5905 is fixedly installed at one end of the cleaning sponge 5902, and the first gear 5905 meshes with the rack 5904.

[0044] Among them, when the cleaning sponge 5902 cleans the inside of the annular groove 510, it absorbs and cleans through the cleaning liquid inside the cleaning cylinder 5901. After the movement of the cleaning sponge 5902, the first gear 5905 installed at one end of the cleaning sponge 5902 slides on the surface of the rack 5904, causing the cleaning sponge 5902 to rotate continuously. At this time, the pressing plate inside the cleaning cylinder 5901 can press the cleaning sponge 5902, so as to continuously press out the sewage cleaned inside the cleaning sponge 5902, thereby replacing the cleaning liquid, ensuring the cleaning effect of the cleaning sponge in both directions and avoiding stain residue.

[0045] In some other embodiments, a second gear 5906 is rotatably installed on the outer surface of the cleaning cylinder 5901, and a stirring rod 5907 is rotatably installed inside the cleaning cylinder 5901. One end of the stirring rod 5907 is fixedly connected to the second gear 5906, and the second gear 5906 meshes with the rack 5904.

[0046] Among them, when the cleaning sponge 5902 moves, the rotation of the second gear 5906 on the surface of the rack 5904 drives the stirring rod 5907 inside the cleaning cylinder 5901 to rotate, enabling the cleaning liquid to be fully mixed inside the cleaning cylinder 5901, thereby further improving the cleaning effect.

[0047] In some other embodiments, the roller assembly 52 includes a roller body 521 slidably installed inside the annular groove 510 for driving the glass body 44 to move. The cross-section of the roller body 521 coincides with the annular groove 510. A plurality of strips 522 for high friction are fixedly installed on the outer surface of the roller body 521, and wear-resistant pads 523 are fixedly installed on both sides of the roller body 521.

[0048] Among them, since the roller body 521 is set to have the same arc shape as the annular groove 510, this design ensures that the roller body 521 slides more smoothly within the annular groove 510, reducing the frictional resistance and noise generated due to shape mismatch. The arc-shaped roller body 521 can better conform to the curve of the annular groove 510, making the sliding process more stable and improving the operating efficiency of the overall system. A plurality of strips 522 for high-friction action are fixedly installed on the outer surface of the roller body 521. These strips 522 can significantly increase the frictional force between the roller body 521 and the annular groove 510, preventing the roller body 521 from slipping or derailing during the sliding process. Friction-resistant pads 523 are fixedly installed on both sides of the roller body 521. These pads 523 can effectively protect the roller body 521 from wear and damage caused by long-term sliding. The friction-resistant performance of the pads 523 extends the service life of the roller body 521 and reduces the frequency of maintenance and replacement. The cooperation between the roller body 521 and the annular groove 510 is closer and more efficient, which helps to improve the stability and reliability of the entire system.

[0049] In some other embodiments, a blocking mechanism 6 is provided inside the curtain wall base 1. The blocking mechanism 6 includes a cylinder 65 fixedly installed inside the curtain wall base 1. A slide rod 63 slidably penetrates through the inside of the cylinder 65. A plug 64 is provided at one end of the slide rod 63 located inside the cylinder 65. A chute 61 is formed on the surface of the rotating plate 43, and a slider 62 is slidably installed inside the chute 61. The free end of the slide rod 63 is rotatably connected to the slider 62.

[0050] Among them, when the glass body 44 rotates, through the arrangement of the cylinder 65 and the slide rod 63, the glass body 44 can be further supported. By sliding the slider 62 inside the chute 61, the rotation distance and angle of the glass body 44 can be controlled, thereby avoiding damage caused by excessive rotation angle.

[0051] In some other embodiments, a liquid injection pipe 67 with a fluid is fixedly installed inside the curtain wall base 1. A connecting pipe 66 is connected and installed between the liquid injection pipe 67 and the cylinder 65. A filter screen 77 for filtering the fluid is installed on the inner wall of the liquid injection pipe 67 near the connecting pipe 66. A sealing plate 68 is provided inside the liquid injection pipe 67, and a pressure relief component 69 is communicated at the top end of the sealing plate 68.

[0052] Among them, when the glass body 44 rotates on the curtain wall surface, it will drive the sliding rod 63 to move. The sliding rod 63 cooperates with the plug 64 inside the cylinder 65, which will drive the fluid inside the cylinder 65 to move. Through the action of pressure, the fluid inside the liquid injection pipe 67 is introduced into the cylinder 65. The movement of the fluid will generate resistance. When the curtain wall encounters rapid movement or external impact during the adjustment process, through the interaction of the resistance generated by the sliding rod 63 and the fluid inside the cylinder 65, the moving speed of the curtain wall is restricted, thus avoiding the occurrence of safety accidents; the fluid uses high-density hydraulic oil, which usually can provide better damping effect because they have higher density and viscosity, and can absorb and disperse energy more effectively, so as to control the moving speed of an object by providing a certain resistance, thereby realizing the stable movement of the glass body 44; the pressure relief component 69 can prevent gas from being generated inside the liquid injection pipe 67, affecting the pressure change.

[0053] In some other embodiments, an auxiliary mechanism 7 is arranged inside the connecting pipe 66. The auxiliary mechanism 7 includes a first flow component 71 and a second flow component 73 rotatably installed inside the connecting pipe 66. A first belt 72 is sleeved between the first flow component 71 and the second flow component 73. One end of the cylinder 65 close to the slider 62 is communicated and installed with an air pipe 74. A third flow component 75 is rotatably installed on the pipe wall of the air pipe 74. A second belt 76 is sleeved between the third flow component 75 and the second flow component 73.

[0054] Among them, when the glass body 44 rotates, it will drive the plug 64 inside the cylinder 65 to move. At this time, the air flow inside the cylinder 65 will be discharged through the air pipe 74. The flow of the gas will drive the third flow component 75 to rotate. The third flow component 75 drives the second flow component 73 to rotate through the second belt 76. The second flow component 73 drives the first flow component 71 to rotate through the first belt 72. At this time, through the first flow component 71 and the second flow component 73, the movement of the fluid inside the connecting pipe 66 can be accelerated, thereby improving the rotation stability of the glass body 44.

[0055] In some other embodiments, the first flow component 71, the second flow component 73, and the third flow component 75 are all composed of a plurality of partitions and a rotating plate 43 assembly. Sealing gaskets are installed on the side walls of the partitions.

[0056] Among them, by setting the sealing gasket, the sealing performance between the rotating plate 43 and the air pipe 74 can be ensured during rotation, avoiding the leakage of hydraulic oil and causing pollution.

[0057] In some other embodiments, it further includes a mounting bracket 2 and a reinforcing plate 3. The mounting bracket 2 is installed inside the curtain wall base 1, and the reinforcing plate 3 is installed at one end of the mounting bracket 2. The reinforcing plate 3 is fixedly connected to the annular support plate 51, and the free end of the annular support plate 51 is inserted into one side inside the curtain wall base 1. A rotating member 42 that drives the rotating plate 43 to rotate is clamped on the surface of the mounting bracket 2, and the rotating member 42 is installed inside the mounting bracket 2 through a mounting plate 41.

[0058] Among them, by installing the annular support plate 51 on one side of the reinforcing plate 3 and then installing the reinforcing plate 3, the installation of the glass curtain wall is realized, so as to facilitate the installation, disassembly and replacement of the glass curtain wall.

[0059] The above are only specific embodiments of the present invention, but the technical features of the present invention are not limited thereto. Any simple changes, equivalent replacements or modifications made on the basis of the present invention to solve substantially the same technical problems and achieve substantially the same technical effects are all covered by the protection scope of the present invention.

Claims

1. An angle-adjustable glass curtain wall, comprising a curtain wall base (1), characterized in that: An adjustment mechanism (4) is provided inside the curtain wall base (1), and the adjustment mechanism (4) comprises a rotating plate (43) installed inside the curtain wall base (1), and a glass body (44) is installed on one side of the rotating plate (43); The side wall of the curtain wall base (1) is provided with a load-bearing mechanism (5), the load-bearing mechanism (5) comprises an annular support plate (51) mounted on the side wall of the curtain wall base (1), and the rotating plate (43) slides on the surface of the annular support plate (51) for supporting function; The top of the annular support plate (51) is provided with an annular groove (510), and stabilizing members (54) for buffering pressure are installed on both sides of the rotating plate (43). A limiting plate (53) is fixedly installed on the bottom end of the stabilizing member (54), and a roller assembly (52) is rotatably installed on the bottom end of the limiting plate (53). The roller assembly (52) slides inside the annular groove (510). A supporting block (55) is installed inside the rotating plate (43), and a telescopic member (57) is rotatably installed on the top of the limiting plate (53). The free end of the telescopic member (57) is rotatably connected to the supporting block (55), and an arc-shaped top rod (58) is fixedly installed between the two telescopic members (57).

2. The angle-adjustable glass curtain wall according to claim 1, characterized in that: A baffle (56) is fixedly mounted on the bottom end of the support block (55), and a cleaning mechanism (59) is provided at the bottom end of the baffle (56). The cleaning mechanism (59) comprises a cleaning cylinder (5901) with cleaning liquid mounted on the surface of the baffle (56), and a cleaning sponge (5902) for cleaning the inner bottom wall of the annular groove (510) is rotatably mounted on one end of the cleaning cylinder (5901) located inside the annular groove (510), and discharge grooves (511) are provided at both ends of the annular groove (510).

3. The angle-adjustable glass curtain wall according to claim 2, characterized in that: The cleaning cylinder (5901) is fixedly provided with an extrusion plate (5903) on the inner wall close to the cleaning sponge (5902), the inner wall of the annular groove (510) is fixedly provided with an arc-shaped rack (5904), and one end of the cleaning sponge (5902) is fixedly provided with a first gear (5905), and the first gear (5905) is meshed with the rack (5904).

4. The angle-adjustable glass curtain wall according to claim 2, characterized in that: A second gear (5906) is rotatably mounted on the outer surface of the cleaning cylinder (5901), and a stirring rod (5907) is rotatably mounted inside the cleaning cylinder (5901). One end of the stirring rod (5907) is fixedly connected to the second gear (5906), and the second gear (5906) is meshed with the rack (5904).

5. The angle-adjustable glass curtain wall according to claim 1, characterized in that: The roller assembly (52) comprises a roller body (521) slidably mounted inside the annular groove (510) for driving the glass body (44) to move, wherein the cross section of the roller body (521) coincides with the annular groove (510), and a plurality of long strips (522) for high friction are fixedly mounted on the outer surface of the roller body (521), and friction-resistant pads (523) are fixedly mounted on both sides of the roller body (521).

6. The angle-adjustable glass curtain wall according to claim 1, characterized in that: The curtain wall base (1) is provided with a blocking mechanism (6) inside, and the blocking mechanism (6) comprises a cylinder (65) fixedly mounted inside the curtain wall base (1), a sliding rod (63) slidingly penetrates inside the cylinder (65), a plug (64) is provided at one end of the sliding rod (63) located inside the cylinder (65), a sliding groove (61) is provided on the surface of the rotating plate (43), a sliding block (62) is slidably mounted inside the sliding groove (61), and the free end of the sliding rod (63) is rotatably connected to the sliding block (62).

7. The angle-adjustable glass curtain wall according to claim 6, characterized in that: An injection pipe (67) containing fluid is fixedly installed inside the curtain wall base (1); a connecting pipe (66) is installed between the injection pipe (67) and the cylinder (65); a filter screen (77) for filtering the fluid is installed near the inner wall of the connecting pipe (66) of the injection pipe (67); a sealing plate (68) is arranged inside the injection pipe (67); and a pressure relief component (69) is arranged at the top end of the sealing plate (68).

8. The angle-adjustable glass curtain wall according to claim 6, characterized in that: An auxiliary mechanism (7) is arranged inside the connecting tube (66), and the auxiliary mechanism (7) comprises a first flow component (71) and a second flow component (73) rotatably mounted inside the connecting tube (66), a first belt (72) being sleeved between the first flow component (71) and the second flow component (73), an air pipe (74) being connected and mounted on one end of the cylinder (65) close to the slider (62), a third flow component (75) being rotatably mounted on the wall of the air pipe (74), and a second belt (76) being sleeved between the third flow component (75) and the second flow component (73).

9. The angle-adjustable glass curtain wall according to claim 8, characterized in that: The first flow component (71), the second flow component (73), and the third flow component (75) all use a rotating plate (43) assembly consisting of a plurality of partitions and a rotating shaft, and the side walls of the partitions are all installed with sealing gaskets.

10. The angle-adjustable glass curtain wall according to claim 1, characterized in that: The invention also comprises a mounting frame (2) and a reinforcing plate (3), wherein the mounting frame (2) is mounted inside the curtain wall base (1), the reinforcing plate (3) is mounted on one end of the mounting frame (2), the reinforcing plate (3) is fixedly connected to the annular support plate (51), and the free end of the annular support plate (51) is inserted inside one side of the curtain wall base (1), and a rotating member (42) for driving the rotating plate (43) to rotate is clamped on the surface of the mounting frame (2), and the rotating member (42) is mounted inside the mounting frame (2) through the mounting plate (41).