Aluminum alloy pavilion

The design of the aluminum alloy frame and rocker assembly solves the problem of traditional pavilions lacking sunshade, rain protection, and wind protection on the sides, achieving all-round sunshade and rain protection and quick-adjustable louvers, providing a durable, beautiful, and economical outdoor leisure space.

CN223793926UActive Publication Date: 2026-01-13COSCO W M J ALUMINUM DEV CO LTD
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Patent Information

Application Number
CN202423248930.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-26
Publication Date
2026-01-13
Estimated Expiration
2034-12-26

AI Technical Summary

Technical Problem

Traditional pavilion structures lack sunshade, rain protection, and wind protection on the sides. Iron frames are prone to corrosion, and electrically driven louvers are unstable and complex for outdoor use, increasing installation difficulty and cost.

Method used

It adopts an aluminum alloy frame, with windproof curtain mounting grooves on the inner side of the column, manual adjustment of louvers using a rocker assembly, and a concealed drainage system, achieving all-round sun and rain protection and quick adjustment.

Benefits of technology

It provides all-around shade and rain protection for the pavilion, as well as wind and insect protection. Its simple and durable structure reduces material costs and ensures that the louvers can be used normally under any circumstances, providing a good outdoor living experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an aluminum alloy pavilion. Comprising a square-frame-shaped aluminum alloy frame, a shutter assembly installed in the aluminum alloy frame, four stand columns which are installed at the bottoms of the four corners of the aluminum alloy frame and support the aluminum alloy frame, and a rocker assembly which is installed on the side edge of the aluminum alloy frame, droops downwards and is located on the side face of one stand column. The two adjacent inner side faces, forming a 90-degree angle, of the stand column are each provided with a windproof curtain installation groove capable of installing a windproof curtain. The aluminum alloy pavilion is made of aluminum alloy and is light in weight, firm and durable, the windproof curtain installation grooves are formed in the two inner side faces, forming the 90-degree angle, of the stand columns and used for installing windproof curtains, the effect that the outer side of the whole aluminum alloy pavilion can keep out wind and rain is achieved, and the purpose of keeping out sun and rain in all directions of the pavilion is achieved; excellent sun-shading and rain-shielding functions are realized; the overall aluminum alloy pavilion is high-grade and attractive in appearance, resistant to corrosion and rust, resistant to abrasion and resistant to scraping and is an excellent product special for outdoors.
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Description

Technical Field

[0001] This utility model relates to the technical field of pavilion structures, and in particular to an aluminum alloy pavilion. Background Technology

[0002] Currently, the pavilion structures used in the market have advantages such as being stylish, simple, beautiful, and grand. They are suitable for open-air places such as terraces, rooftops, gardens, and swimming pools, as well as fashionable commercial outdoor leisure venues, making them a good match for modern outdoor leisure spaces. Traditional pavilion structures have strong sunshade and rain protection functions. The opening and closing of the louvers at the top can achieve sunshade and rain protection as well as adjust the light and ventilation effects. In order to achieve the pavilion installation and rain protection functions in traditional structures, it is often necessary to install the shafts at both ends of the louvers from top to bottom and install these shafts on a roller base of the pavilion to install the louvers. After the louvers are installed, a rain cover is also needed to cover the roller base to prevent rainwater from entering through the gap between the louvers and the frame.

[0003] However, in practice, there are some problems with using traditional pavilion structures, as follows: (1) Traditional pavilion structures only provide sunshade and rain protection at the top, but lack sunshade, rain protection, and wind protection structures on the sides. It is also difficult to implement technical solutions such as adding windproof curtains. As a result, the pavilion structure lacks sunshade, rain protection, and wind protection on the sides, leading to a poor user experience. (2) Traditional pavilion structures use an iron frame and a cloth roof, which is not only heavy but also prone to rust and corrosion. Although paint can be applied to the iron frame to prevent rust, the paint is easily peeled off due to outdoor corrosion and long-term use, making it difficult to solve the corrosion problem. (3) The louvers of existing pavilion structures are basically opened by rotating an electric motor. The motor can be operated by outdoor wiring or by a built-in wireless battery. However, although it is convenient to open and close the louvers by motor, the outdoor wiring method requires additional wiring, which causes wiring trouble and increases the trouble of pavilion installation. In addition, if the mains power fails or the built-in wireless battery runs out of power, the louvers cannot be opened and closed. In case of emergency rain or sunshade, the pavilion function cannot be used, and the normal use of the pavilion structure cannot be guaranteed under all circumstances. In addition, when the built-in wireless battery is low, it is not enough to open and close the louvers quickly or the opening and closing speed is reduced, which also fails to guarantee the normal use of the pavilion structure in time. Finally, the electric drive method requires a certain amount of space to install the motor and add rainproof structure, power connection layout structure, etc., which makes the overall pavilion structure complex and is not conducive to effectively reducing material costs.

[0004] Therefore, it is necessary to make certain improvements to the existing pavilion structure in order to address the problems of the existing technology and to develop an outdoor pavilion structure with features such as easy installation, simplified materials, and simplified processing. Summary of the Invention

[0005] The purpose of this invention is to overcome the shortcomings of the prior art and provide an aluminum alloy gazebo. This gazebo is made of aluminum alloy, making it lightweight, sturdy, and durable. Windproof curtain mounting slots are provided on both inner sides of the pillars at a 90-degree angle for installing windproof curtains, achieving wind and rain protection for the entire exterior of the gazebo. This provides all-around sun and rain protection, offering excellent sun and rain protection. Furthermore, the louvers are manually opened and closed using a simple rocker assembly, allowing for quick and flexible adjustment of the louvers' opening and closing status in any situation. The louvers allow for adjustable light and ventilation, enabling users to choose the optimal way to enjoy indoor and outdoor leisure activities. Finally, a well-designed concealed drainage system is installed in the frame and columns. In rainy weather, rainwater is diverted through the louvers to internal water channels, then guided through the channels into the columns, and finally discharged smoothly through the drain outlets at the bottom of the columns. The entire process is concealed, and combined with excellent sealing, it provides users with a pleasant outdoor living experience even in rainy weather. The overall aluminum alloy gazebo boasts a high-end and beautiful appearance, and is corrosion-resistant, rust-proof, wear-resistant, and scratch-resistant, making it an excellent product for outdoor use.

[0006] The technical solution adopted by this utility model to solve its technical problem is: an aluminum alloy pavilion, including a square frame-shaped aluminum alloy frame, louver components installed in the aluminum alloy frame, four columns installed at the bottom of the four corners of the aluminum alloy frame and supporting the aluminum alloy frame, and a rocker assembly installed on the side of the aluminum alloy frame and hanging down at the side of one of the columns.

[0007] The column has windproof curtain mounting grooves on its two adjacent inner surfaces forming a 90-degree angle.

[0008] The aluminum alloy frame includes four aluminum alloy crossbeams that are sequentially spliced ​​and installed to form a frame, and a louvered transmission beam rod that is movably installed inside one of the aluminum alloy crossbeams and connected to the rocker arm assembly.

[0009] The rocker assembly includes a rocker base, a rocker rotating seat that is rotatably mounted in the rocker base and partially protrudes outwards, a transmission guide plate that is connected to and rotatably mounted on the rocker rotating seat, and a rocker arm that is connected to and mounted on the protruding part of the rocker rotating seat and hangs down to the side of the corresponding column. One end of the transmission guide plate is fixedly mounted to the rocker rotating seat, and the other end is connected to and mounted on the louver transmission beam rod, which can drive the louver transmission beam rod to rotate up and down.

[0010] Furthermore, the louver assembly includes multiple louvers that are sequentially stacked on both ends to form a closed state or separated on both ends to form an open state; a louver front cover installed at the front end of the louver and a louver rear cover installed at the rear end of the louver; a front stepped shaft installed into the front end of the louver and protruding through the louver front cover; a rear stepped shaft installed into the rear end of the louver and protruding through the louver rear cover; a front spring fixing screw and a rear spring fixing screw installed on the louver and facing the front stepped shaft and the rear stepped shaft respectively; springs are provided between the insertion end of the front stepped shaft and the front stepped fixing screw, and between the insertion end of the rear stepped shaft and the rear stepped fixing screw; the rear stepped shaft is hinged to the corresponding crossbeam.

[0011] Furthermore, the louver includes a louver body, a first inverted L-shaped hook disposed on one side of the louver body and folded upward to form an inverted L shape, and a second inverted L-shaped hook disposed on the other side of the louver body; when the louver assembly is closed, the first inverted L-shaped hooks of adjacent louvers are covered by the second inverted L-shaped hook and the upper part of the first inverted L-shaped hook is placed inside the second inverted L-shaped hook; when the louver assembly is open, the first inverted L-shaped hooks of adjacent louvers do not overlap with the second inverted L-shaped hook and leave space; the top of the louver body is provided with a downwardly inclined arc surface towards the bottom of the first inverted L-shaped hook.

[0012] Furthermore, the bottom of the crossbeam is provided with an outwardly protruding water trough located below the water outlet of the first inverted L-shaped hook for collecting water. The column is equipped with a vertically installed drainage trough, and the bottom of the column is provided with a drainage hole communicating with the drainage trough. The water outlet of the water trough is located above the drain hole of the drainage trough, and the water outlet can drain water into the drain hole.

[0013] Furthermore, the louver front cover and the louver transmission beam are fixedly connected by self-tapping screws.

[0014] Furthermore, a base plate that is inserted into the bottom of the column is also installed at the bottom of the column.

[0015] Furthermore, the transmission guide plate is provided with a square shaft, and the rocker arm rotating seat is provided with a square hole for fixed installation with the square shaft.

[0016] Furthermore, the bottom of the louver is also provided with a light strip cover into which a light strip can be inserted.

[0017] In summary, this utility model's aluminum alloy gazebo is made of aluminum alloy, making it lightweight, sturdy, and durable. Windproof curtain mounting slots are provided on both inner sides of the columns forming a 90-degree angle for installing windproof curtains, achieving wind and rain protection for the entire exterior of the gazebo. This provides all-around sun and rain protection, offering excellent sun and rain protection. Furthermore, the simple rocker assembly allows for manual opening and closing of the louvers, enabling quick adjustment of the louver's opening and closing status in any situation, flexibly adjusting the louvers and regulating light and ventilation to choose the optimal way to enjoy indoor and outdoor leisure activities. Finally, a well-designed concealed drainage system is installed on the frame and columns. In rainy weather, rainwater is diverted through the louvers to the internal water channel, then guided through the channel to the columns, and finally discharged smoothly through the drain outlet at the bottom of the columns. The entire process is concealed, and combined with excellent sealing, it provides users with a good outdoor living experience even in rainy weather. The overall aluminum alloy gazebo has a high-end and beautiful appearance, and is corrosion-resistant, rust-resistant, wear-resistant, and scratch-resistant, making it an excellent product for outdoor use.

[0018] Compared with existing pavilion structures, the aluminum alloy pavilion of this invention has the following advantages:

[0019] Beneficial effects:

[0020] (1) The aluminum alloy pavilion uses an all-aluminum frame and column structure, which is lighter, stronger and more durable;

[0021] (2) The overall structure has strong wind resistance, which can not only prevent rain but also effectively block ultraviolet rays; a light source can be installed on the top to illuminate the darkness;

[0022] (3) Windproof curtains can be installed on the side to protect against wind and rain and insects outdoors;

[0023] (4) The overall structure adopts a simplified design, which effectively reduces material costs. Attached Figure Description

[0024] Figure 1 This is a structural schematic diagram of an aluminum alloy pavilion according to Embodiment 1 of this utility model;

[0025] Figure 2 This is an exploded view of the structure of an aluminum alloy pavilion according to Embodiment 1 of this utility model;

[0026] Figure 3 This is a schematic diagram of the structure of an aluminum alloy pavilion with its louvers open according to Embodiment 1 of this utility model;

[0027] Figure 4 This is an exploded view of the connection and installation of the column and the beam;

[0028] Figure 5 This is an exploded view of the connection and installation of the crossbeam and louver assembly;

[0029] Figure 6 This is an exploded view of the connection and installation between the crossbeam and the louvers;

[0030] Figure 7 This is a schematic diagram of the structure of a louver;

[0031] Figure 8 This is a schematic diagram of the main structure of the louver;

[0032] Figure 9 This is a side view of the main body of the louver;

[0033] Figure 10 This is an exploded view of the connection and installation between the rocker arm assembly and the crossbeam;

[0034] Figure 11 This is an exploded view of the connection and installation between the column and the base plate;

[0035] Figure 12 This is a schematic diagram of the louvers in the closed state;

[0036] Figure 13 This is a diagram showing the louvers in the open position;

[0037] Figure 14 This is a diagram showing how water is guided to the water tank by the inverted L-shaped hook when the louvers are opened;

[0038] Figure 15 This is a schematic diagram showing the water flowing from the sink into the drainage channel of the column;

[0039] Figure 16 This is a schematic diagram of the entire drainage system of an aluminum alloy pavilion according to Embodiment 1 of this utility model;

[0040] The markings in the attached diagram are as follows: 1. Aluminum alloy frame; 2. Louver assembly; 3. Column; 4. Rocker arm assembly; 5. Windproof curtain mounting slot; 6. Aluminum alloy crossbeam; 7. Louver transmission beam; 8. Rocker arm base; 9. Rocker arm rotating seat; 10. Transmission guide plate; 11. Rocker arm; 12. Louver; 13. Louver front end cover; 14. Louver rear end cover; 15. Front stepped shaft; 16. Rear stepped shaft; 17. Front spring fixing screw; 18. Rear spring fixing screw; 19. Louver body; 20. First inverted L-shaped hook; 21. Second inverted L-shaped hook; 22. Water tank; 23. Drainage tank; 24. Drainage hole; 25. Self-tapping screw; 26. Base plate; 27. Square shaft; 28. Square hole; 29. ​​LED strip cover; 30. Spring; 31. Base fixing plate. Detailed Implementation

[0041] Example 1

[0042] The aluminum alloy gazebo described in Example 1 is as follows: Figure 1 , Figure 2 , Figure 3 As shown, the structure includes a square aluminum alloy frame 1, louver components 2 installed within the aluminum alloy frame, four uprights 3 installed at the bottom corners of the aluminum alloy frame and supporting it, and a rocker arm assembly 4 installed on the side of the aluminum alloy frame and hanging downwards on the side of one of the uprights. The frame of this aluminum alloy gazebo mainly consists of the aluminum alloy frame and the louver components, supported by the four uprights. The rocker arm assembly allows for manual opening and closing of the louver components, ensuring the gazebo can be used normally in virtually any situation. The manually operated part of the rocker arm assembly hangs downwards at a height easily accessible to a standing person for convenient manual operation.

[0043] The inner surfaces of the two adjacent columns forming a 90-degree angle are each provided with a windproof curtain mounting groove 5 for installing windproof curtains. Each column has a windproof curtain mounting groove, allowing the end of the windproof curtain to be inserted into the corresponding groove to form the windproof curtain for the aluminum alloy pavilion. During installation, the T-shaped plug on the side of the windproof curtain is inserted from the top of the mounting groove and pulled down to the bottom to complete the installation of one side. The other side is installed using the same procedure. Thus, 1-4 windproof curtains can be installed on the outside of the aluminum alloy pavilion as needed, providing wind and sun protection, rain protection, and insect repellent.

[0044] like Figure 5 and Figure 6 As shown, the aluminum alloy frame includes four aluminum alloy crossbeams 6 arranged in a frame shape, and a louver transmission beam 7 movably installed inside one of the aluminum alloy crossbeams and connected to the rocker assembly. The four aluminum alloy crossbeams are assembled and secured in sequence. One side of the louver transmission beam 7 is connected to the louver assembly, and the other side is connected to the corresponding rocker assembly. By rotating the rocker assembly, the louver transmission connecting rod is driven to rotate accordingly, thus realizing the rotation of the louver assembly to achieve the opening and closing of the louvers.

[0045] like Figure 10As shown, the rocker assembly includes a rocker base 8, a rocker rotating seat 9 movably installed within the rocker base and partially protruding, a transmission guide plate 10 connected to and rotatable with the rocker rotating seat, and a rocker 11 connected to the protruding part of the rocker rotating seat and hanging downwards to the corresponding side of the column. One end of the transmission guide plate is securely installed with the rocker rotating seat, and the other end is connected to the louver transmission beam and can drive the louver transmission beam to rotate up and down. The rocker base is fixedly installed on the aluminum alloy crossbeam through a base fixing plate 31. The transmission principle of this rocker assembly is as follows: by rotating the rocker, the rocker drives the rocker rotating seat (which can adopt a conventional rotating copper core structure) to roll, the rocker rotating seat drives the transmission guide plate to rotate up and down, and the transmission guide plate causes the louver transmission beam to rotate up and down as well. The louver transmission beam drives the louver assembly to rotate, so that the louver assembly can be rotated 0-120 degrees relative to the aluminum alloy crossbeam, thus realizing the opening and closing action of the louver assembly. The maximum opening angle of the louver assembly is 120 degrees.

[0046] In this embodiment 1, as Figure 6 , Figure 7 , Figure 8 As shown, the louver assembly includes multiple louvers 12 that are stacked on both ends to form a closed state or separated on both ends to form an open state; a louver front cover 13 installed at the front end of the louvers; a louver rear cover 14 installed at the rear end of the louvers; a front stepped shaft 15 installed at the front end of the louvers and protruding through the louver front cover; a rear stepped shaft 16 installed at the rear end of the louvers and protruding through the louver rear cover; a front spring fixing screw 17 and a rear spring fixing screw 18 installed on the louvers and facing the front and rear stepped shafts respectively; and springs 30 are provided between the insertion end of the front stepped shaft and the front stepped fixing screw, and between the insertion end of the rear stepped shaft and the rear stepped fixing screw. The rear stepped shaft is hinged to the corresponding crossbeam. The louver drive beam rotates the front stepped shaft on the louver front cover (the entire louver only rotates and does not move up and down), so the louvers can be freely adjusted from 0-120 degrees. The assembly principle of this louver assembly is as follows: First, install the spring fixing screws at the front and rear ends of the louver, then insert the screws, and then insert the corresponding stepped shaft. At this time, the spring is located between the spring fixing screw and the stepped shaft. Finally, install the corresponding louver end cap to fix the stepped shaft. Finally, insert both stepped shafts of the louver into the corresponding rotating holes of the crossbeam, so that the louver can be rotated smoothly in the limited installation space. Since the stepped shaft has spring adjustment, the shaft length can be adjusted by the spring rebound when the stepped shaft is inserted into the rotating hole of the crossbeam, so as to achieve the effect of installing the stepped shaft into the rotating hole smoothly.

[0047] In this embodiment 1, as Figure 9 ,like Figure 12 and Figure 13As shown, the louver includes a louver body 19, a first inverted L-shaped hook 20 disposed on one side of the louver body and folded upward to form an inverted L shape, and a second inverted L-shaped hook 21 disposed on the other side of the louver body; when the louver assembly is closed, the first inverted L-shaped hooks of adjacent louvers are covered by the second inverted L-shaped hook and the upper part of the first inverted L-shaped hook is placed inside the second inverted L-shaped hook; when the louver assembly is open, the first inverted L-shaped hooks of adjacent louvers do not overlap with the second inverted L-shaped hook and leave space; the top of the louver body is provided with a downwardly inclined arc surface towards the bottom of the first inverted L-shaped hook. In principle, the louvers set at the front and back are not connected. The principle behind the louver assembly for providing shade and rain protection is as follows: when the louver assembly is closed, the first inverted L-shaped hook of the preceding louver is covered by the second inverted L-shaped hook of the following louver, with the upper part of the first inverted L-shaped hook of the preceding louver placed inside the second inverted L-shaped hook of the following louver. In this way, the connecting sections of the louvers set at the front and back have overlapping covered parts, thus achieving this effect. Furthermore, the arc-shaped design of the louver body allows water to be guided into the first inverted L-shaped hook and discharged, achieving the effect of blocking drainage without leakage. When the louver assembly is opened, the louvers rotate, and the corresponding overlapping inverted L-shaped hook parts rotate in the opposite direction and disengage, achieving the opening effect of the louvers.

[0048] In this embodiment 1, as Figure 4 , Figure 14 , Figure 15 and Figure 16 As shown, the bottom of the crossbeam is provided with an outwardly protruding water trough 22 located below the water outlet of the first inverted L-shaped hook for collecting water. The column has a vertically installed drainage trough 23 inside, and the bottom of the column is provided with a drainage hole 24 communicating with the drainage trough. The water outlet of the water trough is located above the drain hole of the drainage trough, and the water outlet can drain water into the drain hole. The drainage principle of this aluminum alloy pavilion is as follows: rainwater is guided to the first inverted L-shaped hook and then guided from the water outlet to the water trough below. The water in the water trough is guided into the drainage trough and finally discharged from the drain hole at the bottom of the column. Regardless of whether the louvers are closed or open, the water outlet of the first inverted L-shaped hook is located on the front of the water trough, which can smoothly guide rainwater to the water trough without any leakage. This design is cleverly hidden and ensures that the louvers do not leak when draining rainwater.

[0049] In this embodiment 1, a self-tapping screw 25 is fixedly installed between the louver front cover and the louver drive beam to form a fixed connection. By installing the self-tapping screw, the louver front cover and the louver can be fixedly installed on the louver drive beam, so that the louver can be driven to rotate up and down when the louver drive beam rotates up and down.

[0050] In this embodiment 1, as Figure 11As shown, a base plate 26 is also installed at the bottom of the column. The base plate is inserted through the bottom hole at the bottom of the column and screws are installed to achieve a column appearance without visible screws. Then the column is fixed to the ground with expansion screws and the like.

[0051] In this embodiment 1, the transmission guide plate is provided with a square shaft 27, and the rocker arm rotating seat is provided with a square hole 28 for fixed installation with the square shaft. The transmission guide plate and the rocker arm rotating seat are installed by inserting the square shaft into the square hole to achieve a fixed installation, and a locking rod or the like can be inserted through the square hole to achieve movable locking of the square shaft.

[0052] In this embodiment 1, the bottom of the louver is also provided with a light strip cover 29 into which a light strip can be inserted. With the light strip cover at the bottom of the louver, the light strip can be inserted into the light groove of the cover to achieve the effect of lighting the bottom of the louver, thus achieving the purpose of emitting light from the top of the aluminum alloy pavilion for illumination.

[0053] In this embodiment 1, the aluminum alloy pavilion is made of aluminum alloy, which is lightweight, sturdy, and durable. Windproof curtain mounting slots are provided on both inner sides of the pillars at a 90-degree angle for installing windproof curtains, achieving wind and rain protection for the entire exterior of the pavilion. This provides all-around sun and rain protection, offering excellent sun and rain protection. Furthermore, the louvers are manually opened and closed using a simple rocker assembly, allowing for quick adjustment of the louver's opening and closing status in any situation. This enables flexible adjustment of the louvers and the light and ventilation effects, allowing for optimal indoor and outdoor leisure activities. Finally, a well-designed concealed drainage system is installed on the frame and pillars. In rainy weather, rainwater is diverted through the louvers to the internal water channel, then guided through the channel to the pillars, and finally discharged smoothly through the drain outlets at the bottom of the pillars. The entire process is concealed, and combined with excellent sealing, it provides users with a good outdoor living experience even in rainy weather. The overall aluminum alloy pavilion has a high-end and beautiful appearance, and is corrosion-resistant, rust-proof, wear-resistant, and scratch-resistant, making it an excellent product for outdoor use.

[0054] The above description is merely a preferred embodiment of the present utility model and does not constitute any limitation on the structure of the present utility model. Any simple modifications, equivalent changes, and alterations made to the above embodiments based on the technical essence of the present utility model shall still fall within the scope of the technical solution of the present utility model.

Claims

1. An aluminum alloy gazebo characterized by, The application relates to a square frame-shaped aluminum alloy frame (1), a shutter assembly (2) installed in the aluminum alloy frame, four columns (3) installed at the bottom of four corners of the aluminum alloy frame and supporting the aluminum alloy frame, and a rocker assembly (4) installed on the side edges of the aluminum alloy frame and downwardly hanging at the side of one column. Two inner sides of the columns which form a 90-degree angle are provided with windproof curtain installation grooves (5) for installing windproof curtains. The aluminum alloy frame comprises four aluminum alloy cross beams (6) which are sequentially spliced and installed to form a frame shape, and a shutter transmission beam rod (7) which is movably installed on the inner side of one aluminum alloy cross beam and connected with the rocker assembly. The rocker assembly comprises a rocker base (8), a rocker rotating base (9) movably installed in the rocker base and partially protruding, a transmission guide piece (10) connected with the rocker rotating base and rotatable, and a rocker (11) connected with the protruding part of the rocker rotating base and downwardly hanging to the side of the corresponding column.

2. The aluminum alloy gazebo of claim 1, wherein The shutter assembly comprises a plurality of shutters (12) which are sequentially overlapped at two sides to form a closed state or separated at two sides to form an open state, a shutter front end cover (13) installed at the front end of the shutter, a shutter rear end cover (14) installed at the rear end of the shutter, a front stepped shaft (15) installed in the front end of the shutter and protruding through the shutter front end cover, a rear stepped shaft (16) installed in the rear end of the shutter and protruding through the shutter rear end cover, front spring fixing screws (17) and rear spring fixing screws (18) installed on the shutter and respectively facing the front stepped shaft and the rear stepped shaft, and springs (30) arranged between the front stepped shaft insertion end and the front stepped shaft fixing screw and between the rear stepped shaft insertion end and the rear stepped shaft fixing screw.

3. The aluminum alloy gazebo of claim 2, wherein The shutter comprises a shutter main body (19), a first inverted L-shaped hook (20) arranged on one side of the shutter main body and upwardly folded to form an inverted L shape, and a second inverted L-shaped hook (21) arranged on the other side of the shutter main body.

4. The aluminum alloy gazebo of claim 3, wherein The bottom of the cross beam is provided with a water tank (22) which protrudes outward and is located below the water outlet end of the first inverted L-shaped hook and is used for receiving water.

5. The aluminum alloy gazebo of claim 4, wherein The shutter front end cover and the shutter transmission beam rod are fixedly connected through self-tapping screws (25).

6. The aluminum alloy gazebo of claim 5, wherein The bottom of the column is also fitted with a base plate (26) that is inserted into the bottom of the column.

7. The aluminum alloy gazebo of claim 6, wherein The transmission guide plate is provided with a square shaft (27), and the rocker rotating seat is provided with a square hole (28) for fixed installation with the square shaft.

8. The aluminum alloy gazebo of claim 7, wherein The bottom of the louver is also provided with a light strip cover (29) into which a light strip can be inserted.