Wrap angle assembly for outdoor awning

By designing corner-wrapping components to wrap around the sharp corners of the crossbeams and utilizing a locking snap-fit ​​structure, the safety and aesthetic issues at the joints of traditional aluminum alloy outdoor awnings have been solved, achieving greater stability and durability.

CN120844702AActive Publication Date: 2025-10-28GUANGDONG GREENAWN TECH CO LTD +1
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Patent Information

Application Number
CN202511366528.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-24
Publication Date
2025-10-28
Estimated Expiration
2045-09-24

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    Figure CN120844702A_ABST
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Abstract

The invention discloses a wrap angle assembly for an outdoor awning, and relates to the technical field of wrap angle assemblys.The wrap angle assembly comprises wrap angle sleeves arranged at the ends of a first cross beam and a second cross beam, and the wrap angle sleeves are matched with the ends of the first cross beam and the second cross beam; the upper end and the lower end of the wrap angle sleeve are each provided with a locking assembly for ensuring stable connection between the wrap angle sleeve and the first cross beam and between the wrap angle sleeve and the second cross beam. The wrap angle sleeve is internally provided with a clamping assembly connected with the locking assemblies in a fastened mode. A penetrating type circular groove is formed in the middle of the corner wrapping sleeve, and the locking assembly is inserted into the circular groove. A multi-point locking structure can be formed, and compared with a traditional single butt joint mode, the overall butt joint strength and stability of the cross beams are effectively improved, so that the assembly can better cope with the influences of complex environmental factors such as outdoor wind blowing and vibration, and it is guaranteed that an awning is reliably used for a long time.
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Description

Technical Field

[0001] This invention relates to the field of corner protector components, and more specifically, to a corner protector component for outdoor awnings. Background Art

[0002] Aluminum alloy outdoor awnings are widely used in courtyards, terraces, commercial streets, and other locations due to their advantages such as light weight, high strength, and corrosion resistance. During the installation of the awning, the connection between the crossbeams is a crucial step, especially the treatment of the connection at the sharp corners of the crossbeams, which directly affects the overall safety, aesthetics, and lifespan of the awning.

[0003] Currently, traditional beam jointing methods have several problems. First, the sharp corners of the beam joints are usually exposed, posing a safety hazard as they can easily cause cuts and injuries, especially in high-traffic commercial areas. Second, traditional jointing structures are aesthetically unappealing; exposed seams and sharp corners disrupt the overall harmony of the awning and negatively impact the visual appeal of the installation site. Therefore, there is an urgent need for a corner-wrapping component for outdoor awnings to solve these problems. Summary of the Invention

[0004] In view of the problems in the related technologies, the present invention proposes a corner-wrapping component for outdoor awnings to overcome the above-mentioned technical problems existing in the prior art.

[0005] The technical solution of this invention is implemented as follows: A corner protector assembly for an outdoor awning includes corner protectors disposed at the ends of a first crossbeam and a second crossbeam. The corner protectors cooperate with the ends of the first crossbeam and the second crossbeam. Both the upper and lower ends of the corner protectors are provided with locking components to ensure a stable connection between them and the first crossbeam and the second crossbeam. The corner sleeve is provided with a snap-fit ​​component that is fastened to the locking component; The corner sleeve has a through-hole circular groove in the middle, and the locking component is inserted into the inside of the circular groove.

[0006] Preferably, the locking assembly includes a plug inserted into the circular groove. A locking plate is fixedly connected to one end of the plug away from the inside of the circular groove. The locking plate is engaged with both the first crossbeam and the second crossbeam. Insert plates are fixedly connected to the outer walls of both sides of the locking plate. The two insert plates are respectively inserted into the inside of the first crossbeam and the second crossbeam. The top outer walls of the two insert plates abut against the top inner walls of the first crossbeam and the second crossbeam. Each insert plate has an assembly groove at its top. A fixing screw is inserted into the assembly groove. Both ends of the fixing screw are threaded with fixing nuts.

[0007] Preferably, the snap-fit ​​assembly includes an elastic piece fixedly connected to the inner wall of the circular groove, an annular retaining groove is formed on the outer wall of the plug, one end of the elastic piece is located inside the annular retaining groove, a mating groove is formed on the inner wall of the circular groove, and an anti-misalignment block is fixedly connected to the outer wall of the plug, the cross-section of the anti-misalignment block being U-shaped.

[0008] Preferably, a limiting ring plate is fixedly connected to one end of the fixing screw located at the bottom outer wall of the first and second crossbeams, and the limiting ring plate abuts against the bottom outer wall of the first and second crossbeams.

[0009] Preferably, the plug has an internal mounting groove, a spring is fixedly connected to the bottom inner wall of the mounting groove, a slide plate is fixedly connected to the top of the spring, a first connecting post is fixedly connected to the top outer wall of the slide plate, a second connecting post is fixedly connected to the top of the first connecting post, a pad is fixedly connected to the end of the second connecting post extending to the top of the locking plate, and the fixing nut is pressed against the top outer wall of the pad.

[0010] Preferably, the outer circumferential wall of the first connecting post is fixedly connected to an equally spaced annular plates, which mesh with a gear post. The inner circumferential wall of the gear post is fixedly connected to a first rotating post, which is rotatably connected inside the mounting groove. The outer circumferential wall of the first rotating post meshes with a first gear disk, and the inner circumferential wall of the first gear disk is fixedly connected to a second rotating post. Both ends of the second rotating post are rotatably connected to the mounting groove. The thickness of the first gear disk is less than the thickness of the gear post. The outer circumferential wall of the first gear disk meshes with a toothed plate, one end of which passes through the inside of the corner sleeve.

[0011] Preferably, the plug has a slot inside to ensure the stable lateral movement of the toothed plate. The specifications of the slot are adapted to the specifications of the toothed plate. A limiting groove is formed on the bottom inner wall of the slot. A slider is fixedly connected to the bottom of the toothed plate, and the slider is slidably connected to the limiting groove.

[0012] Preferably, a housing is fixedly connected to the bottom outer wall of an insert plate, and a third rotating column is rotatably connected inside the housing. A second gear disk and a worm are fixedly connected to the outer circumference of the third rotating column, and the second gear disk meshes with a toothed plate extending into the housing.

[0013] Preferably, a worm wheel meshes with the outer circumferential wall of the worm gear, a fourth rotating column is fixedly connected to the inner circumferential wall of the worm wheel, a threaded screw is fixedly connected to the bottom end of the fourth rotating column, a threaded sleeve is threadedly connected to the outer circumferential wall of the threaded screw, a cross plate is fixedly connected to one side of the outer wall of the threaded sleeve, and equally spaced locking pins are fixedly connected to the top outer wall of the cross plate. The locking pins cooperate with positioning holes opened at the top of the second cross beam and the bottom of the first cross beam.

[0014] Preferably, a guide post is fixedly connected inside the housing, and a guide cylinder is slidably connected to the outer circumferential wall of the guide post. The end of the cross plate away from the threaded sleeve is fixedly connected to the outer wall of one side of the guide cylinder.

[0015] The beneficial effects of this invention are: This invention provides a corner-wrapping component for outdoor awnings. By fitting the corner-wrapping sleeves onto the ends of the first and second crossbeams, the sleeves directly cover the sharp corners of the crossbeams, avoiding the problem of exposed sharp corners that can easily scratch people in traditional crossbeam joints, significantly improving safety. At the same time, it covers the exposed seams at the crossbeam joints, making the overall appearance of the awning more harmonious and unified, effectively improving the poor aesthetics of traditional joint structures.

[0016] This invention provides a corner protector assembly for outdoor awnings. Through a snap-fit ​​mechanism, when the plug is inserted into the through-hole circular groove in the center of the corner protector, the elastic plate on the inner wall of the groove snaps into the annular retaining groove on the outer wall of the plug. Simultaneously, the U-shaped anti-misalignment block on the outer wall of the plug precisely engages with the mating groove on the inner wall of the circular groove. This quickly completes the positioning and snap-fit ​​of the plug and corner protector, preventing misalignment during installation and significantly improving assembly efficiency. It also initially enhances the stability of the connection. During this process, the locking plate connected to the plug engages with the first and second crossbeams. The insert plates on both sides of the locking plate are inserted into the two crossbeams and press against the inner wall of the top of the crossbeams. The fixing screw is then passed through the assembly groove at the top of the insert plate, and fixing nuts are screwed onto both ends of the fixing screw. The limiting ring plate at the bottom end of the fixing screw presses against the outer wall of the bottom of the crossbeam. This bidirectional clamping method significantly enhances the connection stability between the corner protector and the crossbeams, effectively preventing loosening during use.

[0017] This invention provides a corner protector assembly for outdoor awnings. Through a locking mechanism, during the tightening of the fixing nut, the fixing nut presses against a pad. The pad, via a second connecting post and a first connecting post, drives a spring inside the sliding plate compression plug. The elastic reaction force generated by the spring counteracts gaps caused by vibration during installation or outdoor use, achieving buffering compensation and further ensuring the tightness of the connection between the corner protector and the crossbeam. This reduces component wear and extends the overall service life of the assembly. Simultaneously, when the first and second crossbeams are subsequently disassembled, the spring's return force allows for quick unlocking of the locking mechanism, facilitating subsequent maintenance of the entire corner protector assembly. During maintenance or replacement, as the first connecting post moves downward, the annular plates evenly distributed on its outer circumference drive the meshing gear post to rotate. The gear post drives the first rotating post inside to rotate, which in turn drives the meshing first gear disc and second rotating post to rotate. The first gear disc then pushes the meshing toothed plate to move. The slot opened inside the plug cooperates with the slider at the bottom of the toothed plate and the limiting groove at the bottom of the slot to ensure stable lateral movement of the toothed plate and avoid toothed plate offset affecting subsequent transmission accuracy. During the lateral movement of the toothed plate, it passes through the inside of the corner sleeve, thereby realizing a tight connection between the corner sleeve and the plug and ensuring the stability of the connection between the corner sleeve and the entire locking assembly.

[0018] This invention provides a corner-wrapping assembly for outdoor awnings. Through the use of locking pins and positioning holes, when one end of the toothed plate extends into the housing at the bottom of one of the insert plates, it meshes with the second gear disc on the third rotating column inside the housing. This drives the third rotating column and worm gear to rotate. The worm gear drives the meshing worm wheel and the fourth rotating column to rotate, and the threaded screw at the bottom of the fourth rotating column rotates accordingly. The threaded screw drives the external threaded sleeve and the connected cross plate to move. The guide pin inside the housing slides with the guide cylinder at the other end of the cross plate, ensuring smooth movement of the cross plate. Finally, the locking pins evenly distributed at the top of the cross plate accurately insert into the positioning holes at the top of the second cross beam and the bottom of the first cross beam, forming a multi-point locking structure. Compared to the traditional single-connection method, this effectively improves the overall strength and stability of the cross beam connection, enabling the assembly to better cope with the influence of complex environmental factors such as outdoor wind and vibration, ensuring the long-term reliable use of the awning. Attached Figure Description

[0019] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0020] Figure 1 This is a schematic diagram of the overall structure of the present invention after installation with the first and second crossbeams.

[0021] Figure 2 For the present invention Figure 1 A magnified structural diagram of point A in the middle.

[0022] Figure 3 This is a schematic diagram of the overall structure of the second crossbeam after it has been disassembled according to the present invention.

[0023] Figure 4 This is a schematic diagram of the overall structure of the corner protector after disassembly.

[0024] Figure 5 This is a schematic diagram of the fixing screw structure of the present invention.

[0025] Figure 6 This is a partial cross-sectional front view of the structure of the present invention.

[0026] Figure 7 For the present invention Figure 6 A magnified structural diagram at point B in the middle.

[0027] Figure 8 This is a partial cross-sectional view of the corner sleeve and locking assembly of the present invention.

[0028] Figure 9 For the present invention Figure 8 A magnified structural diagram at point C.

[0029] Figure 10 This is a partial cross-sectional view of the present invention.

[0030] Figure 11 For the present invention Figure 10 A magnified structural diagram at point D.

[0031] Figure 12 For the present invention Figure 10 A magnified structural diagram at point E in the middle.

[0032] In the picture: 1. First crossbeam; 2. Corner sleeve; 3. Fixing screw; 4. Fixing nut; 5. Washer plate; 6. Locking plate; 7. Second crossbeam; 8. Locking post; 9. Positioning hole; 10. Housing; 11. Insert plate; 12. Circular groove; 13. Connecting groove; 14. Plug; 15. Annular retaining groove; 16. Limiting ring plate; 17. First connecting post; 18. Circular ring plate; 19. Mounting groove; 20. Spring; 21. Elastic sheet; 22. Second connecting post; 23. 24. Gear post; 25. First rotating post; 26. Slide plate; 27. Second rotating post; 28. Third rotating post; 29. ​​Assembly slot; 30. First gear disc; 31. Slot; 32. Limiting slot; 33. Gear plate; 34. Slider; 35. Guide cylinder; 36. Guide post; 37. Horizontal plate; 38. Threaded screw; 39. Threaded sleeve; 40. Second gear disc; 41. Worm; 42. Fourth rotating post; 43. Worm wheel; 44. Anti-misalignment block. Detailed Implementation

[0033] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention are within the scope of protection of the present invention.

[0034] Please see Figures 1-12 An outdoor sunshade awning corner assembly includes a corner sleeve 2 disposed at the ends of a first crossbeam 1 and a second crossbeam 7. The corner sleeve 2 cooperates with the ends of the first crossbeam 1 and the second crossbeam 7. Both the upper and lower ends of the corner sleeve 2 are provided with locking components to ensure a stable connection between it and the first crossbeam 1 and the second crossbeam 7. The corner sleeve 2 is internally provided with a snap-fit ​​component that is securely connected to the locking component; The corner sleeve 2 has a through-hole circular groove 12 in the middle. The locking component is inserted into the inside of the circular groove 12, which can form a multi-point locking structure. Compared with the traditional single docking method, it effectively improves the overall strength and stability of the beam docking, so that the component can better cope with the influence of complex environmental factors such as outdoor wind and vibration, and ensure the long-term reliable use of the sunshade.

[0035] Furthermore, the locking assembly includes a plug 14 inserted into the circular groove 12. A locking piece 6 is fixedly connected to one end of the plug 14 away from the interior of the circular groove 12. The locking piece 6 engages with both the first crossbeam 1 and the second crossbeam 7. Insert plates 11 are fixedly connected to the outer walls of both sides of the locking piece 6. The two insert plates 11 are respectively inserted into the interior of the first crossbeam 1 and the second crossbeam 7. The top outer walls of the two insert plates 11 abut against the top inner walls of the first crossbeam 1 and the second crossbeam 7, respectively. Both insert plates 11 have openings at their tops. There is an assembly slot 28, and a fixing screw 3 is inserted into the assembly slot 28. Both ends of the fixing screw 3 are threaded with fixing nuts 4. The locking plate 6 connected to the plug 14 will form a snap-fit ​​engagement with the first crossbeam 1 and the second crossbeam 7. The insert plates 11 on both sides of the locking plate 6 are inserted into the two crossbeams respectively and pressed against the inner wall of the top of the crossbeam. Then, the fixing screw 3 is passed through the assembly slot 28 at the top of the insert plate 11, and the fixing nuts 4 are screwed on both ends of the fixing screw 3, thus realizing the initial fastening connection between the locking component and the corner sleeve 2.

[0036] Furthermore, the snap-fit ​​assembly includes an elastic piece 21 fixedly connected to the inner wall of the circular groove 12, an annular retaining groove 15 on the outer wall of the plug 14, one end of the elastic piece 21 being located inside the annular retaining groove 15, a mating groove 13 on the inner wall of the circular groove 12, and an anti-misalignment block 43 fixedly connected to the outer wall of the plug 14. The anti-misalignment block 43 has a U-shaped cross-section. When the operator inserts the plug 14 into the through circular groove 12 in the middle of the corner sleeve 2, the elastic piece 21 on the inner wall of the circular groove 12 will snap into the annular retaining groove 15 on the outer wall of the plug 14. At the same time, the U-shaped anti-misalignment block 43 on the outer wall of the plug 14 and the mating groove 13 on the inner wall of the circular groove 12 precisely cooperate, which can quickly complete the positioning and snap-fit ​​of the plug 14 and the corner sleeve 2, prevent misalignment during installation, greatly improve assembly efficiency, and initially enhance the stability of the connection between the two.

[0037] Furthermore, a limiting ring plate 16 is fixedly connected to the outer wall of one end of the fixing screw 3 at the bottom of the first crossbeam 1 and the second crossbeam 7. The limiting ring plate 16 abuts against the bottom outer wall of the first crossbeam 1 and the second crossbeam 7. The limiting ring plate 16 at the bottom end of the fixing screw 3 abuts against the bottom outer wall of the crossbeam. Through the bidirectional clamping method, the connection stability between the corner sleeve 2 and the crossbeam is greatly enhanced, effectively preventing loosening during use.

[0038] Furthermore, the plug 14 has an internal mounting groove 19. A spring 20 is fixedly connected to the bottom inner wall of the mounting groove 19. A slide plate 25 is fixedly connected to the top of the spring 20. A first connecting post 17 is fixedly connected to the top outer wall of the slide plate 25. A second connecting post 22 is fixedly connected to the top of the first connecting post 17. A pad 5 is fixedly connected to one end of the second connecting post 22 that extends to the top of the locking piece 6. A fixing nut 4 is pressed against the top outer wall of the pad 5. During the tightening of the fixing nut 4, the fixing nut 4 will press the pad 5. The pad 5 is connected to the second connecting post 22. The column 22 and the first connecting column 17 drive the slide plate 25 to compress the spring 20 inside the plug 14. The elastic reaction force generated by the spring 20 can offset the gap caused by vibration during installation or outdoor use, realize buffer compensation, further ensure the tightness of the connection between the corner sleeve 2 and the crossbeam, reduce component wear, and extend the service life of the entire assembly. At the same time, when the first crossbeam 1 and the second crossbeam 7 are disassembled later, the spring 20 will also realize the quick unlocking of the locking assembly through the elastic force generated by its reset, which is convenient for subsequent maintenance or replacement of the entire corner assembly by the staff.

[0039] Furthermore, the outer circumferential wall of the first connecting post 17 is fixedly connected to equidistantly distributed annular plates 18, which mesh with gear posts 23. The inner circumferential wall of the gear posts 23 is fixedly connected to a first rotating post 24, which is rotatably connected inside the mounting groove 19. The outer circumferential wall of the first rotating post 24 meshes with a first gear disk 29, and the inner circumferential wall of the first gear disk 29 is fixedly connected to a second rotating post 26. Both ends of the second rotating post 26 are rotatably connected to the mounting groove 19. The thickness of the first gear disk 29 is less than the thickness of the gear post 23, and the outer circumferential wall of the first gear disk 29 meshes with toothed plates. 32. One end of the toothed plate 32 passes through the inside of the corner sleeve 2. As the first connecting post 17 moves down, the annular plates 18 distributed at equal intervals on its outer circumference drive the meshing gear post 23 to rotate. The gear post 23 drives the first rotating post 24 inside to rotate. The first rotating post 24 then drives the first gear disk 29 and the second rotating post 26 meshing with it to rotate. The first gear disk 29 then pushes the meshing toothed plate 32 to move. During the lateral movement of the toothed plate 32, it passes through the inside of the corner sleeve 2, thereby achieving a tight connection between the corner sleeve 2 and the plug 14, ensuring the stability of the connection between the corner sleeve 2 and the entire locking assembly.

[0040] Furthermore, the plug 14 has a slot 30 inside to ensure the stable lateral movement of the toothed plate 32. The specifications of the slot 30 are compatible with the specifications of the toothed plate 32. A limiting groove 31 is provided on the bottom inner wall of the slot 30. A slider 33 is fixedly connected to the bottom of the toothed plate 32. The slider 33 is slidably connected to the limiting groove 31. The slot 30 inside the plug 14 cooperates with the slider 33 at the bottom of the toothed plate 32 and the limiting groove 31 at the bottom of the slot 30 to ensure the stable lateral movement of the toothed plate 32 and prevent the toothed plate 32 from deviating and affecting the subsequent transmission accuracy.

[0041] Furthermore, a housing 10 is fixedly connected to the bottom outer wall of an insert plate 11. A third rotating column 27 is rotatably connected inside the housing 10. A second gear disk 39 and a worm gear 40 are fixedly connected to the outer circumference of the third rotating column 27. The second gear disk 39 meshes with a toothed plate 32 extending into the housing 10. A worm wheel 42 meshes with the outer circumference of the worm gear 40. A fourth rotating column 41 is fixedly connected to the inner circumference of the worm wheel 42. A threaded screw is fixedly connected to the bottom end of the fourth rotating column 41. 37. A threaded sleeve 38 is threadedly connected to the outer circumference of the threaded screw 37. A horizontal plate 36 is fixedly connected to one side of the outer wall of the threaded sleeve 38. A retaining post 8 is fixedly connected to the top outer wall of the horizontal plate 36 at equal intervals. The retaining post 8 cooperates with the positioning holes 9 opened at the top of the second horizontal beam 7 and the bottom of the first horizontal beam 1. A guide post 35 is fixedly connected to the inside of the housing 10. A guide cylinder 34 is slidably connected to the outer circumference of the guide post 35. The end of the horizontal plate 36 away from the threaded sleeve 38 is fixedly connected to the guide cylinder. On one side of the outer wall of 34, as one end of the toothed plate 32 extends into the housing 10 at the bottom of one of the insert plates 11, it meshes with the second gear disk 39 on the third rotating column 27 inside the housing 10, driving the third rotating column 27 and the worm 40 to rotate. The worm 40 drives the meshing worm wheel 42 and the fourth rotating column 41 to rotate. The threaded screw 37 at the bottom of the fourth rotating column 41 rotates accordingly. The threaded screw 37 drives the external threaded sleeve 38 and the connected cross plate 36 to move. The guide post 35 inside the housing 10 slides with the guide cylinder 34 at the other end of the cross plate 36 to ensure the smooth movement of the cross plate 36. Finally, the locking posts 8 evenly distributed at the top of the cross plate 36 will be precisely inserted into the positioning holes 9 at the top of the second cross beam 7 and the bottom of the first cross beam 1, forming a multi-point locking structure. Compared with the traditional single docking method, this effectively improves the overall strength and stability of the cross beam docking, enabling the components to better cope with the influence of complex environmental factors such as outdoor wind and vibration, and ensuring the long-term reliable use of the sunshade.

[0042] In summary, with the help of the above-mentioned technical solution of the present invention, when the corner protector assembly for connecting the crossbeams of the aluminum alloy outdoor sunshade is in operation, the corner protector 2 is first fitted onto the ends of the first crossbeam 1 and the second crossbeam 7. The corner protector 2 can directly wrap the sharp corners of the crossbeams, avoiding the problem of sharp corners being exposed and easily scratching people in traditional crossbeam connections, significantly improving the safety of use. At the same time, it covers the exposed seams at the crossbeam connection, making the overall appearance of the sunshade more coordinated and unified, effectively improving the defect of poor aesthetics in traditional connection structures. Next, the locking assembly is installed to achieve initial fixation. The plug 14 is inserted into the through-hole circular groove 12 in the middle of the corner sleeve 2. The elastic piece 21 on the inner circumference of the groove 12 engages with the annular retaining groove 15 on the outer wall of the plug 14. Simultaneously, the U-shaped anti-misalignment block 43 on the outer wall of the plug 14 precisely matches the mating groove 13 on the inner wall of the groove 12. This quickly completes the positioning and engagement of the plug 14 and the corner sleeve 2, preventing misalignment during installation and significantly improving assembly efficiency. It also initially enhances the stability of the connection between the two. During this process, the plug 14... The connected locking plate 6 will form a snap-fit ​​engagement with the first crossbeam 1 and the second crossbeam 7. The insert plates 11 on both sides of the locking plate 6 are inserted into the two crossbeams respectively and pressed against the inner wall of the top of the crossbeam. Then, the fixing screw 3 is passed through the assembly groove 28 at the top of the insert plate 11. Fixing nuts 4 are screwed on both ends of the fixing screw 3. The limiting ring plate 16 at the bottom end of the fixing screw 3 will press against the outer wall of the bottom of the crossbeam. Through the bidirectional clamping method, the connection stability between the corner sleeve 2 and the crossbeam is greatly enhanced, effectively preventing loosening during use. During the tightening of the fixing nut 4, the fixing nut 4 presses against the pad 5. The pad 5, through the second connecting post 22 and the first connecting post 17, drives the slide plate 25 to compress the spring 20 inside the plug 14. The elastic reaction force generated by the spring 20 can offset the gap caused by vibration during installation or outdoor use, achieving buffer compensation, further ensuring the tightness of the connection between the corner sleeve 2 and the crossbeam, reducing component wear, and extending the service life of the entire assembly. At the same time, the spring 20 will also achieve quick unlocking of the locking assembly through the elastic force generated by its reset when the first crossbeam 1 and the second crossbeam 7 are subsequently disassembled, facilitating subsequent maintenance or replacement of the entire corner sleeve assembly. As the first connecting post 17 moves down, its circumferential outer wall is equidistant. The distributed annular plate 18 drives the meshing gear column 23 to rotate, the gear column 23 drives the internal first rotating column 24 to rotate, the first rotating column 24 drives the meshing first gear disk 29 and second rotating column 26 to rotate, the first gear disk 29 then pushes the meshing tooth plate 32 to move. The slot 30 opened inside the plug 14 cooperates with the slider 33 at the bottom of the tooth plate 32 and the limiting groove 31 at the bottom of the slot 30 to ensure the stable lateral movement of the tooth plate 32 and avoid the tooth plate 32 from deviating and affecting the subsequent transmission accuracy. During the lateral movement of the tooth plate 32, it will pass through the inside of the corner sleeve 2, thereby realizing the tight connection between the corner sleeve 2 and the plug 14 and ensuring the stability of the connection between the corner sleeve 2 and the entire locking assembly. As one end of the toothed plate 32 extends into the housing 10 at the bottom of one of the insert plates 11, it meshes with the second gear disk 39 on the third rotating column 27 inside the housing 10, driving the third rotating column 27 and the worm 40 to rotate. The worm 40 drives the meshing worm wheel 42 and the fourth rotating column 41 to rotate, and the threaded screw 37 at the bottom of the fourth rotating column 41 rotates accordingly. The threaded screw 37 drives the external threaded sleeve 38 and the connected cross plate 36 to move. The guide post 35 inside the housing 10 slides with the guide cylinder 34 at the other end of the cross plate 36 to ensure the smooth movement of the cross plate 36. Finally, the locking posts 8 evenly distributed at the top of the cross plate 36 will be precisely inserted into the positioning holes 9 at the top of the second cross beam 7 and the bottom of the first cross beam 1, forming a multi-point locking structure. Compared with the traditional single docking method, this effectively improves the overall strength and stability of the cross beam docking, enabling the components to better cope with the influence of complex environmental factors such as outdoor wind and vibration, and ensuring the long-term reliable use of the sunshade.

[0043] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A corner protector assembly for an outdoor awning, comprising corner protectors (2) disposed at the ends of a first crossbeam (1) and a second crossbeam (7), characterized in that, The corner sleeve (2) is engaged with the ends of the first crossbeam (1) and the second crossbeam (7). Both the upper and lower ends of the corner sleeve (2) are provided with locking components to ensure a stable connection between it and the first crossbeam (1) and the second crossbeam (7). The corner sleeve (2) is provided with a snap-fit ​​component that is fastened to the locking component; The corner sleeve (2) has a through-hole circular groove (12) in the middle. The locking assembly is inserted into the inside of the circular groove (12). The locking assembly includes a plug (14) inserted into the inside of the circular groove (12). A locking piece (6) is fixedly connected to one end of the plug (14) away from the inside of the circular groove (12). The locking piece (6) is engaged with the first crossbeam (1) and the second crossbeam (7). Insert plates (11) are fixedly connected to the outer walls on both sides of the locking piece (6). The two insert plates (11) are respectively inserted into the inside of the first crossbeam (1) and the second crossbeam (7). The top outer walls of the two insert plates (11) are respectively pressed against the top inner walls of the first crossbeam (1) and the second crossbeam (7). The top of the two insert plates (11) is provided with an assembly groove (28). A fixing screw (3) is inserted into the inside of the assembly groove (28). The two ends of the fixing screw (3) are threaded with fixing nuts (4).

2. The corner-wrapping assembly for an outdoor awning according to claim 1, characterized in that, The snap-fit ​​assembly includes an elastic piece (21) fixedly connected to the inner circumference of the circular groove (12), an annular retaining groove (15) is provided on the outer circumference of the plug (14), one end of the elastic piece (21) is located inside the annular retaining groove (15), a mating groove (13) is provided on the inner circumference of the circular groove (12), and an anti-misalignment block (43) is fixedly connected to the outer circumference of the plug (14), the cross-section of the anti-misalignment block (43) is U-shaped.

3. A corner-wrapping assembly for an outdoor awning according to claim 2, characterized in that, The fixing screw (3) is fixedly connected to a limiting ring plate (16) on the outer wall of one end of the bottom of the first crossbeam (1) and the second crossbeam (7), and the limiting ring plate (16) abuts against the bottom outer wall of the first crossbeam (1) and the second crossbeam (7).

4. A corner-wrapping assembly for an outdoor awning according to claim 3, characterized in that, The plug (14) has an installation groove (19) inside. A spring (20) is fixedly connected to the bottom inner wall of the installation groove (19). A slide plate (25) is fixedly connected to the top of the spring (20). A first connecting post (17) is fixedly connected to the top outer wall of the slide plate (25). A second connecting post (22) is fixedly connected to the top of the first connecting post (17). A pad (5) is fixedly connected to one end of the second connecting post (22) extending to the top of the locking piece (6). The fixing nut (4) is pressed against the top outer wall of the pad (5).

5. A corner-wrapping assembly for an outdoor awning according to claim 4, characterized in that, The outer circumferential wall of the first connecting column (17) is fixedly connected to an equally spaced annular plates (18), which mesh with a gear column (23). The inner circumferential wall of the gear column (23) is fixedly connected to a first rotating column (24), which is rotatably connected inside the mounting groove (19). The outer circumferential wall of the first rotating column (24) meshes with a first gear disk (29), and the inner circumferential wall of the first gear disk (29) is fixedly connected to a second rotating column (26). Both ends of the second rotating column (26) are rotatably connected to the mounting groove (19). The thickness of the first gear disk (29) is less than the thickness of the gear column (23). The outer circumferential wall of the first gear disk (29) meshes with a toothed plate (32), one end of which passes through the inside of the corner sleeve (2).

6. A corner-wrapping assembly for an outdoor awning according to claim 5, characterized in that, The plug (14) has a slot (30) inside to ensure the stable lateral movement of the toothed plate (32). The specifications of the slot (30) are adapted to the specifications of the toothed plate (32). A limiting groove (31) is provided on the bottom inner wall of the slot (30). A slider (33) is fixedly connected to the bottom of the toothed plate (32). The slider (33) is slidably connected to the limiting groove (31).

7. A corner-wrapping assembly for an outdoor awning according to claim 6, characterized in that, A housing (10) is fixedly connected to the bottom outer wall of a plug plate (11). A third rotating column (27) is rotatably connected inside the housing (10). A second gear disk (39) and a worm (40) are fixedly connected to the outer circumference of the third rotating column (27). The second gear disk (39) meshes with a toothed plate (32) extending into the housing (10).

8. A corner-wrapping assembly for an outdoor awning according to claim 7, characterized in that, The worm gear (40) has a worm wheel (42) meshing on its outer circumference. The inner circumference of the worm wheel (42) is fixedly connected to a fourth rotating column (41). The bottom end of the fourth rotating column (41) is fixedly connected to a threaded screw (37). The outer circumference of the threaded screw (37) is threadedly connected to a threaded sleeve (38). One side of the outer wall of the threaded sleeve (38) is fixedly connected to a horizontal plate (36). The top outer wall of the horizontal plate (36) is fixedly connected to equally spaced locking pins (8). The locking pins (8) cooperate with the positioning holes (9) opened at the top of the second crossbeam (7) and the bottom of the first crossbeam (1).

9. A corner-wrapping assembly for an outdoor awning according to claim 8, characterized in that, The housing (10) is fixedly connected to a guide post (35), and a guide cylinder (34) is slidably connected to the outer circumferential wall of the guide post (35). The end of the horizontal plate (36) away from the threaded sleeve (38) is fixedly connected to the outer wall of the guide cylinder (34).

Citation Information

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