Curtain wall aluminum profile structure and installation method thereof
By setting a flexible rubber insulation layer on the inner wall of the plug groove of the curtain wall aluminum profile structure, and fixing the glass with the rotating parts of the pressing assembly and the driving assembly, the problem of poor thermal insulation performance of the existing curtain wall aluminum profile structure in high temperature environments is solved, and more efficient thermal isolation and stability are achieved.
Patent Information
- Application Number
- CN202510461542.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2045-04-14
AI Technical Summary
The existing curtain wall aluminum profile structure is difficult to effectively insulate heat in high temperature environments in summer, resulting in heat being transmitted to the room through the aluminum profile, increasing the energy consumption of air conditioning and refrigeration.
A curtain wall aluminum profile structure is adopted, by providing a flexible rubber temperature insulation layer on the inner wall of the plug groove, and providing a plug strip and a pressing assembly in the installation area, a mounting area surrounded by three sides is formed to fix the glass. The pressing assembly includes a rotating member and a drive assembly that can be adjusted between a pressing attitude and a evacuation attitude to ensure that the glass is securely clamped.
Effectively isolate the heat transfer between the glass and the plug strip, improves the insulation performance and stability of the curtain wall structure, reduces indoor and outdoor heat exchange, and optimizes the energy utilization efficiency of the building.
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Figure CN119981343A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of curtain wall aluminum profile structures, and in particular to a curtain wall aluminum profile structure and an installation method thereof. Background Art
[0002] Curtain wall aluminum profile structures are widely used in the construction industry, especially in the field of exterior wall decoration and protection of modern high-rise buildings. With the acceleration of urbanization and the continuous improvement of requirements for the aesthetics and functionality of building appearance, the design and manufacturing technology of curtain wall aluminum profile structures has also developed rapidly. This structure not only needs to meet the basic functions of the building such as load-bearing and heat insulation, but also needs to be easy to install and maintain.
[0003] In the prior art, the methods commonly used to fix and install curtain wall glass include simple bolt connection and adhesive fixation. The bolt connection method uses bolts to press the glass onto the profile by pre-setting threaded holes on the aluminum profile. It is easy to operate but easily causes stress concentration, affecting long-term performance. Adhesive fixation relies on high-strength glue to bond the glass to the profile. Although it can provide a good sealing effect, it is difficult to disassemble and has poor environmental protection.
[0004] However, the conventional methods mentioned above generally have a problem, that is, it is difficult to take into account the thermal insulation performance. Especially in the high temperature environment in summer, heat is easily transferred to the room through the aluminum profile, which increases the energy consumption of air conditioning and reduces the energy efficiency of the building; therefore, providing an aluminum profile structure that can insulate has become an urgent problem to be solved. Summary of the invention
[0005] In order to improve the thermal insulation performance, the present application provides a curtain wall aluminum profile structure and an installation method thereof.
[0006] In the first aspect, the present application provides a curtain wall aluminum profile structure, which adopts the following technical solution: A curtain wall aluminum profile structure, comprising a main rod, a first strip side plate and a second strip side plate, all of which are parallel to a first direction; The first strip side panel is perpendicular to the third direction, and the second strip side panel is perpendicular to the second direction; in the second direction, the first strip side panel is connected between the main rod and the second strip side panel, and in the third direction, the second strip panel is located in the middle of the second strip side panel; An installation area surrounded by three sides is formed between the first strip side plate, the main bars on both sides and the second strip side plate; Also includes: A plug-in strip, the plug-in strip is located in the installation area and is parallel to the first direction; a plug-in slot is formed on the side of the plug-in strip away from the first strip-shaped side panel, and the plug-in slot penetrates the plug-in strip along the first direction; a first thermal insulation layer is fixedly connected to each inner wall of the plug-in slot.
[0007] By adopting the above technical solution, the curtain wall aluminum profile structure forms an installation area surrounded by three sides, and a plug strip is arranged in the installation area, and the plug slot on the plug strip is used to accommodate the glass. Each inner wall of the plug slot is fixedly connected with a first insulation layer, which is a flexible rubber strip, which can effectively isolate the heat transfer between the glass and the plug strip, and at the same time play a shock-absorbing and protective role on the glass, thereby improving the stability and safety of glass installation.
[0008] Optionally, a pressing assembly is further included, wherein in the second direction, an installation gap is formed between the plug-in strip and the main rod, and between the plug-in strip and the second strip-shaped side plate; the two side walls of the plug-in strip forming the installation gap are extrusion side walls, and the side wall close to the first strip-shaped side plate is an installation side wall; A clamping assembly is correspondingly provided in each of the installation gaps, and the clamping assembly includes: a mounting seat, the mounting seat being located in the mounting gap and fixedly connected to the first strip-shaped side panel and / or the second strip-shaped side panel; and, A rotating member, one end of which is a pressing end and the other end is a driving end; a plurality of rotating members are distributed on the mounting seat along a first direction; the rotating member is rotatably connected to the mounting seat via a first rotating shaft, so that the rotating member can be adjusted between a pressing posture and a withdrawing posture; When the rotating member is in a pressing posture, the pressing end of the rotating member presses against the extrusion side wall; When the rotating member is in the withdrawal posture, the abutting end of the rotating member is separated from the extrusion side wall; Also includes: A driving assembly is connected between the rotating member and the first strip side plate to drive the rotating member to adjust from a withdrawing posture to a pressing posture.
[0009] By adopting the above technical solution, the setting of the clamping assembly can effectively improve the stability of glass installation. Specifically, the installation gap formed between the plug-in strip and the main rod and the second strip side plate provides installation space for the clamping assembly and reduces heat transfer. The rotating member is connected to the mounting seat through the first rotating shaft and can be flexibly adjusted between the pressing posture and the evacuation posture. When in the pressing posture, the pressing end of the rotating member presses against the side wall, thereby firmly clamping the glass in the plug-in slot, significantly improving the reliability of glass fixation.
[0010] Optionally, the first thermal insulation layer attached to the extruded side wall is a side thermal insulation layer, and in the third direction, the thickness of the side thermal insulation layer gradually decreases toward the side away from the first strip-shaped side plate.
[0011] By adopting the above technical solution, the thickness of the side insulation layer gradually decreases in the third direction toward the side away from the first strip side plate, so that the side insulation layer can form a certain tilt angle when installed. Since the hardness of the aluminum profile is relatively soft, the tightness between the side insulation layer and the extruded side wall can be enhanced by extruding the extruded side wall toward the glass side.
[0012] Optionally, a push plate is provided at the abutting end of the rotating member, and the push plate is rotatably connected to the rotating member via a second rotating shaft, and the second rotating shaft is parallel to the first direction; the push plate is used to fit with the extrusion side wall.
[0013] By adopting the above technical solution, the push plate can fully fit with the extrusion side wall, so that when the rotating member is pressed against the extrusion side wall, the contact area is increased and the uniformity of the clamping force is improved, further enhancing the fixing effect on the glass.
[0014] Optionally, a first torsion spring is provided between the push plate and the rotating member; When the first torsion spring is in a normal state, one end of the plug-in strip away from the first strip side plate contacts the extrusion side wall, and the push plate is inclined from the plug-in strip to the first strip side plate in the direction from the plug-in strip to the second strip side plate; During the process that the end of the plug-in strip away from the first strip-shaped side plate rotates toward the side of the extrusion side wall away from the plug-in strip, the first torsion spring changes from a normal state to a posture capable of recovering deformation.
[0015] By adopting the above technical solution, when the push plate pushes the extrusion side wall, the first torsion spring stores force to form a force that pushes the push plate and the extrusion side wall to move toward the glass side, so that the glass can be clamped more stably.
[0016] Optionally, also include: An isolation strip, the isolation strip being located in the plug-in slot; In the third direction, the isolation strip is located between the plug-in strip and the first strip-shaped side panel; and one side of the isolation strip is fixedly connected to the first strip-shaped side panel, and the other side is fixedly connected to the mounting side wall of the plug-in strip.
[0017] By adopting the above technical solution, the provision of the isolation strip can effectively reduce the heat transfer between the plug-in strip and the first strip-shaped side panel, thereby improving the thermal insulation performance of the curtain wall aluminum profile structure.
[0018] Optionally, the isolation strip is formed with a heat insulation hole along the first direction, and the heat insulation hole penetrates the isolation strip along the first direction.
[0019] By adopting the above technical solution, the heat insulation holes set on the isolation strips can effectively reduce heat transfer, thereby improving the heat insulation performance of the curtain wall aluminum profile structure. The through-hole design of the heat insulation holes further optimizes the heat conduction path, making it difficult for heat to be continuously conducted through the isolation strips.
[0020] Optionally, a second torsion spring is provided between the rotating member and the mounting seat, and when the second torsion spring is in a restorable deformation posture, it has a force to drive the abutting end of the rotating member to move toward the side away from the side plate of the first strip plate.
[0021] By adopting the above technical solution, the second torsion spring can automatically keep the rotating member in the withdrawn posture when no external force is applied, thereby facilitating the installation and removal of the plug strip. When the rotating member needs to be adjusted to the tight posture, it only needs to overcome the elastic force of the second torsion spring, which is simple and convenient to operate. In addition, the second torsion spring can also provide a certain buffering effect when the rotating member is subjected to external impact, thereby improving the stability of the structure.
[0022] Optionally, the driving component includes: A rotating rod, the rotating rod is connected to the main rod by rotation around a first axis, the first axis is parallel to the second direction; the rotating rod passes through the main rod along the second direction and then extends into the first strip-shaped side plate; A bidirectional screw, wherein a relief hole is provided in the first strip-shaped side plate, the bidirectional screw is located in the relief hole and is coaxially fixedly connected with the rotating rod; A guide bar, wherein each of the two thread segments of the bidirectional screw rod is connected to a corresponding thread, the guide bar is arranged on the first strip-shaped side plate along the third direction, a guide groove is provided on the first strip-shaped side plate along the second direction, the guide bar is located in the guide groove, and the guide bar is guided by the groove wall of the guide groove to move along the second direction; and, A push rod, wherein the push rod is located in the plug-in slot, and each guide bar is fixedly connected to a corresponding push rod. In the second direction, the push rod is located between the mounting seat and the driving end of the rotating rod, and one end of the push rod away from the first strip side plate is in contact with the rotating member.
[0023] By adopting the above technical solution, precise control of the rotating member is achieved, so that the rotating member can stably switch between the pressing posture and the withdrawing posture. Specifically, when the bidirectional screw drives the guide bar to move along the second direction, the push rod can effectively transmit force to the rotating member, thereby ensuring that the pressing end of the rotating member accurately acts on the extrusion side wall, thereby enhancing the stability of the glass fixation.
[0024] In a second aspect, the present application provides a method for installing a curtain wall aluminum profile, which adopts the following technical solution: A method for installing a curtain wall aluminum profile comprises the following steps: S1: A curtain wall aluminum profile structure is installed on each outer side wall of the rectangular glass to form a curtain wall unit; During installation, move the curtain wall aluminum profile structure so that the edge of the glass is inserted into the socket groove; S2: Hoist the curtain wall unit to the glass curtain wall installation position on the building, and fix the curtain wall unit to the building.
[0025] By adopting the above technical solution, since the first thermal insulation layer is provided on the inner wall of the plug-in slot, the heat transfer between the glass and the plug-in strip can be effectively isolated.
[0026] In summary, the present application includes at least one of the following beneficial technical effects: By setting the first thermal insulation layer on the inner wall of the plug-in slot, the heat transfer between the glass and the plug-in strip can be effectively isolated, and at the same time, the glass can be protected from shock, thereby improving the thermal insulation performance and stability of the curtain wall structure; The rotating parts in the clamping assembly are used in conjunction with the driving assembly to achieve precise control of the extruded side wall, ensuring that the glass is firmly clamped, avoiding fixation failure caused by temperature changes or external forces, and improving the reliability and adaptability of the overall structure; The design of the isolation strips further enhances the thermal insulation effect of the structure. The thermal insulation holes on the strips reduce the heat conduction path along the aluminum profiles, effectively reducing the heat exchange between indoors and outdoors and optimizing the energy efficiency of the building. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 It is a schematic diagram of the overall structure of an embodiment of the present application; Figure 2 It is a structural schematic diagram of the main rod, the first strip side plate and the second strip side plate in an embodiment of the present application; Figure 3 yes Figure 2 A magnified view of part A; Figure 4 is a schematic diagram of the structure of the clamping assembly in an embodiment of the present application; Figure 5 is a schematic diagram of the structure of the driving component in an embodiment of the present application; Figure 6 yes Figure 5 Magnified view of part B.
[0028] Explanation of the reference numerals: 1. main rod; 2. first strip side panel; 21. avoidance hole; 22. guide groove; 3. second strip side panel; 4. installation gap; 5. plug-in strip; 51. plug-in groove; 52. first thermal insulation layer; 521. side thermal insulation layer; 53. extrusion side wall; 54. installation side wall; 6. clamping assembly; 61. mounting seat; 62. rotating part; 621. tightening end; 622. driving end; 63. second torsion spring; 7. push plate; 71. first torsion spring; 72. lug; 8. driving assembly; 81. rotating rod; 82. bidirectional screw; 83. guide strip; 84. push rod; 9. isolation strip; 91. thermal insulation hole; 10. glass. DETAILED DESCRIPTION
[0029] The following is combined with Figure 1-6 The present application is further described in detail. For ease of description, the present application introduces directional words such as a first direction, a second direction, and a third direction to form a three-dimensional reference direction. The directional words used, such as "a first direction, a second direction, and a third direction", can be specifically shown with reference to the figure, where X represents the first direction, Y represents the second direction, and Z represents the third direction, and the first direction, the second direction, and the third direction are perpendicular to each other.
[0030] The present application embodiment discloses a curtain wall aluminum profile structure. Figure 1 and Figure 2 The curtain wall aluminum profile structure includes a main bar 1, a first strip side panel 2, and a second strip side panel 3, all of which are parallel to the first direction; the first strip side panel 2 is perpendicular to the third direction, and the second strip side panel 3 is perpendicular to the second direction; in the second direction, the first strip side panel 2 is fixedly connected between the main bar 1 and the second strip side panel 3, and in the third direction, the second strip panel is located in the middle of the second strip side panel 3, so that the first strip side panel 2 and the second strip side panel 3 form a T-shaped structure, and an installation area surrounded by three sides is formed between the first strip side panel 2 and the main bar 1 and the second strip side panel 3 on both sides; The present application further includes a plug-in strip 5, which is located in the installation area and parallel to the first direction; the plug-in strip 5 has a concave cross section along a direction perpendicular to the first direction, so that a plug-in groove 51 is formed on a side of the plug-in strip 5 away from the first strip-shaped side plate 2, and the plug-in groove 51 penetrates the plug-in strip 5 along the first direction; the plug-in groove 51 is used to accommodate the glass 10; A first insulation layer 52 is fixedly connected to each inner wall of the plug-in slot 51 . The first insulation layer 52 is a flexible rubber strip. The first insulation layer 52 insulates the glass 10 and the plug-in strip 5 , and can also reduce vibration of the glass 10 .
[0031] Reference Figure 3 and Figure 4In order to fix the glass 10 more firmly by the plug-in strip 5, in some embodiments of the application, a clamping assembly 6 is further included; in order to install the clamping assembly 6, in the second direction, installation gaps 4 are formed between the plug-in strip 5 and the main rod 1 and between the plug-in strip 5 and the second strip side panel 3, that is, four installation gaps 4 are formed, and the installation gaps 4 can also reduce heat transfer; the two side walls of the installation gaps 4 formed by the plug-in strip 5 are extrusion side walls 53, and the side wall close to the first strip side panel 2 is the installation side wall 54; The first thermal insulation layer 52 attached to the extruded side wall 53 is a side thermal insulation layer 521. In the third direction, the thickness of the side thermal insulation layer 521 gradually decreases toward the side away from the first strip side plate 2. When installing, the extruded side wall 53 is pressed toward the glass 10, so that the glass 10 can be clamped more firmly. In order to clamp the glass 10 more firmly, a clamping assembly 6 is correspondingly provided in each installation gap 4, and the clamping assembly 6 includes a mounting seat 61 and a rotating member 62. The mounting seat 61 is located in the installation gap 4 and is fixedly connected to the first strip side panel 2 and / or the second strip side panel 3. In the present application, the mounting seat 61 is fixedly connected to the first strip side panel 2; the rotating member 62 is connected to the mounting seat 61, and along the first direction, a plurality of rotating members 62 are distributed on the mounting seat 61, and a gap is left between two adjacent rotating members 62; the rotating member 62 is a strip rod, one end of the rotating member 62 is a clamping end 621, and the other end is a driving end 622, the clamping end 621 is close to the plug-in strip 5, and the driving end 622 is close to the second strip side panel 3; the rotating member 62 is rotatably connected to the mounting seat 61 through a first rotating shaft, so that the rotating member 62 can be adjusted between a clamping posture and a withdrawal posture, and the first rotating shaft is parallel to the first direction; When the rotating member 62 is in the abutting posture, the abutting end 621 of the rotating member 62 abuts against and squeezes the side wall 53; When the rotating member 62 is in the withdrawing posture, the abutting end 621 of the rotating member 62 is separated from the extruding side wall 53; In some embodiments, a second torsion spring 63 is further provided between the rotating member 62 and the mounting seat 61. The second torsion spring 63 is sleeved on the first rotating shaft, and one end of the second torsion spring 63 is fixedly connected to the rotating rod 81, and the other end is fixedly connected to the rotating seat; when the second torsion spring 63 is in a recoverable deformation posture, it has a force to drive the tightening end 621 of the rotating member 62 to rotate toward the side away from the first strip side panel.
[0032] Reference Figure 3 and Figure 4A push plate 7 is provided at the abutting end 621 of the rotating member 62, and the push plate 7 is used to fit with the extrusion side wall 53; the push plate 7 is rotatably connected to the rotating member 62 through a second rotating shaft, and the second rotating shaft is parallel to the first direction; a first torsion spring 71 is provided between the push plate 7 and the rotating member 62, specifically, the first torsion spring 71 is sleeved on the second rotating shaft, and a lug 72 is fixedly connected to the push plate 7, one end of the first torsion spring 71 is fixedly connected to the lug 72, and the other end is fixedly connected to the rotating member 62; When the first torsion spring 71 is in a normal state, the end of the connecting strip 5 away from the first strip side panel 2 contacts the extrusion side wall 53, and the push plate 7 is tilted from the connecting strip 5 to the first strip side panel 2 in the direction from the connecting strip 5 to the second strip side panel 3; in the process of the end of the connecting strip 5 away from the first strip side panel 2 rotating toward the extrusion side wall 53 away from the connecting strip 5, the first torsion spring 71 changes from a normal state to a restorable deformation posture; therefore, when the push plate 7 is in a state of squeezing the extrusion side wall 53, the first torsion spring 71 can have the force to push the extrusion side wall 53 toward the side of the glass 10.
[0033] Reference Figure 5 and Figure 6 The present application also includes a driving assembly 8, which is connected between the rotating member 62 and the first strip side plate 2 to drive the rotating member 62 to adjust from the evacuation posture to the pressing posture; the driving assembly 8 includes a rotating rod 81, a bidirectional screw 82, a guide bar 83 and a push rod 84, the rotating rod 81 is connected to the main rod 1 around a first axis, and the first axis is parallel to the second direction; the rotating rod 81 passes through the main rod 1 along the second direction and then extends into the first strip side plate 2; a avoidance hole 21 for accommodating the end of the rotating rod 81 is opened in the first strip side plate 2, and the bidirectional screw 82 is also located in the avoidance hole 21 and is coaxially fixedly connected with the rotating rod 81. When the rotating rod 81 is rotated, the bidirectional screw 82 will rotate synchronously with the rotating rod 81; The two thread segments of the bidirectional screw 82 are connected to a guide bar 83 corresponding to each other. The guide bar 83 is parallel to the third direction. The guide bar 83 is arranged along the third direction through the first strip side plate 2 and then extends to the insertion grooves 51 on both sides of the first strip side plate 2. The first strip side plate 2 is provided with a guide groove 22 along the second direction. The guide groove 22 is arranged parallel to the second direction. The guide bar 83 is located in the guide groove 22 so that the guide bar 83 is guided by the groove wall of the guide groove 22 to move along the second direction. Since the groove wall of the guide groove 22 has a guiding effect on the guide bar 83, the screw will drive the guide bar 83 to move along the second direction in the guide groove 22 during the rotation of the screw. The push rod 84 is located in the insertion groove 51, and the push plate 7 in the present application is in the shape of a long strip parallel to the third direction. A push rod 84 is fixedly connected to each end of each guide strip 83; in the second direction, the push rod 84 is located between the rotating seat and the driving end 622 of the rotating rod 81, and the end of the push rod 84 away from the first strip side plate 2 is in contact with the rotating member 62; during the rotation of the bidirectional screw 82, the two guide strips 83 connected to the bidirectional screw 82 are driven to move toward the side away from each other, and the push rod 84 will move synchronously with the guide strip 83, and the push rod 84 will push the rotating member 62 to rotate, so as to drive the driving end 622 of the rotating member 62 to move toward the side away from the first strip side plate 2, and the pushing end of the rotating member 62 will cooperate with the push plate 7 to extrude the extrusion side wall 53 onto the glass 10.
[0034] Reference Figure 5 In some embodiments of the present application, an isolation strip 9 is further included, which is located in the plug-in groove 51 and is parallel to the first direction; in the third direction, the isolation strip 9 is located between the plug-in strip 5 and the first strip side panel 2; and one side of the isolation strip 9 is fixedly connected to the first strip side panel 2, and the other side is fixedly connected to the mounting side wall 54 of the plug-in strip 5; the isolation strip 9 is formed with a heat insulation hole 91 along the first direction, and the heat insulation hole 91 passes through the isolation strip 9 along the first direction; the width of the isolation strip 9 in the second direction is smaller than the width of the plug-in strip 5 in the second direction, and in the second direction, the isolation strip 9 is located between the two extruded side walls 53.
[0035] The implementation principle of the curtain wall aluminum profile structure of an embodiment of the present application is: during installation, after the glass 10 is inserted into the insertion groove 51, the rotating rod 81 is rotated to make the bidirectional screw 82 rotate synchronously. As the bidirectional screw 82 rotates, the two push plates 7 can be driven to move toward the side away from each other, thereby pushing the rotating rod 81 to squeeze the extrusion side plate toward the side of the glass 10.
[0036] The embodiment of the present application also discloses a method for installing a curtain wall aluminum profile. The method for installing a curtain wall aluminum profile comprises the following steps: S1: Install a curtain wall aluminum profile structure on each outer side wall of the rectangular glass 10 to form a curtain wall monomer; During installation, the curtain wall aluminum profile structure is moved so that the edge of the glass 10 is inserted into the plug-in slot 51; the driving component 8 then drives the pressing component 6 to press the extruded side wall 53 of the plug-in strip 5, so that the glass 10 and the curtain wall aluminum profile can be fixed; S2: hoisting the curtain wall unit to the glass 10 curtain wall to be installed on the building, and fixing the curtain wall unit to the building; During installation, a plurality of blocking screws can be provided on one side of the curtain wall unit close to the indoor and outdoor areas respectively, and the blocking screws can be installed on the stairs to fix the curtain wall unit.
[0037] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.
Claims
1. A curtain wall aluminum profile structure, characterized in that: It comprises a main rod (1), a first strip-shaped side plate (2) and a second strip-shaped side plate (3) all of which are parallel to a first direction; The first strip side panel (2) is perpendicular to the third direction, and the second strip side panel (3) is perpendicular to the second direction; in the second direction, the first strip side panel (2) is connected between the main rod (1) and the second strip side panel (3), and in the third direction, the second strip panel is located in the middle of the second strip side panel (3); An installation area surrounded by three sides is formed between the first strip-shaped side plate (2) and the main rods (1) on both sides and the second strip-shaped side plate (3); Also includes: A plug-in strip (5), the plug-in strip (5) being located in the installation area and parallel to the first direction; a plug-in slot (51) is formed on a side of the plug-in strip (5) away from the first strip-shaped side plate (2), the plug-in slot (51) penetrating the plug-in strip (5) along the first direction; a first thermal insulation layer (52) is fixedly connected to each inner wall of the plug-in slot (51).
2. The curtain wall aluminum profile structure according to claim 1, characterized in that: It also includes a clamping assembly (6); in the second direction, an installation gap (4) is formed between the plug-in strip (5) and the main rod (1) and between the plug-in strip (5) and the second strip-shaped side plate (3); the two side walls of the plug-in strip (5) forming the installation gap (4) are extrusion side walls (53), and the side wall close to the first strip-shaped side plate (2) is an installation side wall (54); A clamping assembly (6) is correspondingly provided in each of the installation gaps (4), and the clamping assembly (6) comprises: a mounting seat (61), the mounting seat (61) being located in the mounting gap (4) and being fixedly connected to the first strip-shaped side plate (2) and / or the second strip-shaped side plate (3); and, A rotating member (62), one end of the rotating member (62) being a pressing end (621) and the other end being a driving end (622); a plurality of rotating members (62) are distributed on the mounting seat (61) along a first direction; the rotating member (62) is rotatably connected to the mounting seat (61) via a first rotating shaft, so that the rotating member (62) can be adjusted between a pressing posture and a withdrawing posture; When the rotating member (62) is in a pressing posture, the pressing end (621) of the rotating member (62) presses against the extrusion side wall (53); When the rotating member (62) is in a withdrawing posture, the abutting end (621) of the rotating member (62) is separated from the extrusion side wall (53); Also includes: A driving assembly (8), wherein the driving assembly (8) is connected between the rotating member (62) and the first strip-shaped side plate (2) to drive the rotating member (62) to adjust from a withdrawing posture to a pressing posture.
3. The curtain wall aluminum profile structure according to claim 2, characterized in that: The first temperature insulation layer (52) attached to the extruded side wall (53) is a side temperature insulation layer (521). In the third direction, the thickness of the side temperature insulation layer (521) gradually decreases toward the side away from the first strip-shaped side plate (2).
4. The curtain wall aluminum profile structure according to claim 3, characterized in that: A push plate (7) is provided at the abutting end (621) of the rotating member (62). The push plate (7) is rotatably connected to the rotating member (62) via a second rotating shaft, and the second rotating shaft is parallel to the first direction. The push plate (7) is used to fit with the extrusion side wall (53).
5. The curtain wall aluminum profile structure according to claim 4, characterized in that: A first torsion spring (71) is provided between the push plate (7) and the rotating member (62); When the first torsion spring (71) is in a normal state, one end of the plug-in strip (5) away from the first strip-shaped side plate (2) contacts the extrusion side wall (53), and the push plate (7) is inclined from the plug-in strip (5) to the first strip-shaped side plate (2) in the direction from the plug-in strip (5) to the second strip-shaped side plate (3); During the process of the end of the plug-in strip (5) away from the first strip-shaped side plate (2) rotating toward the side of the extruded side wall (53) away from the plug-in strip (5), the first torsion spring (71) changes from a normal state to a state capable of recovering deformation.
6. The curtain wall aluminum profile structure according to claim 5, characterized in that: Also includes: An isolation strip (9), the isolation strip (9) being located in the insertion slot (51); In the third direction, the isolation strip (9) is located between the plug-in strip (5) and the first strip-shaped side panel (2); and one side of the isolation strip (9) is fixedly connected to the first strip-shaped side panel (2), and the other side is fixedly connected to the mounting side wall (54) of the plug-in strip (5).
7. The curtain wall aluminum profile structure according to claim 6, characterized in that: The isolation strip (9) is formed with a heat insulation hole (91) along a first direction, and the heat insulation hole (91) penetrates the isolation strip (9) along the first direction.
8. A curtain wall aluminum profile structure according to any one of claims 2 to 7, characterized in that: A second torsion spring (63) is provided between the rotating member (62) and the mounting seat (61); when the second torsion spring (63) is in a state where the deformation can be restored, the second torsion spring (63) has a force that drives the abutting end (621) of the rotating member (62) to move toward a side away from the side plate of the first strip plate.
9. The curtain wall aluminum profile structure according to claim 8, characterized in that: The driving assembly (8) comprises: A rotating rod (81), the rotating rod (81) is connected to the main rod (1) by rotating around a first axis, the first axis being parallel to the second direction; the rotating rod (81) passes through the main rod (1) along the second direction and then extends into the first strip-shaped side plate (2); A bidirectional screw (82), wherein a relief hole (21) is provided in the first strip-shaped side plate (2), and the bidirectional screw (82) is located in the relief hole (21) and is coaxially fixedly connected to the rotating rod (81); A guide bar (83), wherein each of the two threaded sections of the bidirectional screw (82) is threadably connected to a guide bar (83), the guide bar (83) being arranged on the first strip-shaped side plate (2) along the third direction, a guide groove (22) being arranged on the first strip-shaped side plate (2) along the second direction, the guide bar (83) being located in the guide groove (22), so that the guide bar (83) is guided by the groove wall of the guide groove (22) to move along the second direction; and, A push rod (84), the push rod (84) is located in the insertion groove (51), and each guide strip (83) is fixedly connected with a corresponding push rod (84). In the second direction, the push rod (84) is located between the mounting seat (61) and the driving end (622) of the rotating rod (81), and the end of the push rod (84) away from the first strip side plate (2) is in contact with the rotating member (62).
10. A method for installing a curtain wall aluminum profile according to any one of claims 1 to 9, characterized in that: The steps include: S1: Installing a curtain wall aluminum profile structure on each outer side wall of the rectangular glass (10) to form a curtain wall unit; During installation, the curtain wall aluminum profile structure is moved so that the edge of the glass (10) is inserted into the insertion groove (51); S2: hoisting the curtain wall unit to the glass (10) curtain wall to be installed position on the building, and fixing the curtain wall unit to the building.
Citation Information
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