Aluminum alloy awning
By using drive components and transmission mechanisms to unfold or fold the frame, the problem of large space after folding aluminum alloy awnings is solved, achieving the effect of easy storage and transportation.
Patent Information
- Application Number
- CN202422798049.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-18
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-11-18
AI Technical Summary
Existing aluminum alloy awnings take up a lot of space when folded, which is not conducive to storage and transportation.
The frame is unfolded and folded by using a drive assembly and transmission mechanism. The motor drives the reducer to drive the connecting rod and slider, thereby reducing the space after folding.
It effectively reduces the space required when the aluminum alloy awning is folded, making it easier to store and transport.
Smart Images

Figure CN223608098U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a sunshade technical field, concretely is a kind of aluminium alloy sunshade. BACKGROUND
[0002] Aluminium alloy sunshade is used to shelter sun light direct irradiation's sunshade, aluminium alloy sunshade can be used in many occasions outdoors, such as beach, seaside, gate guard or parking space etc.But the aluminium alloy sunshade of prior art is larger in the space occupied after folding, it is not conducive to storage and transportation, therefore, the prior art is improved. UTILITY MODEL CONTENTS
[0003] The utility model discloses to the above-mentioned insufficient, provide a kind of aluminium alloy sunshade, can effectively reduce the space occupied after folding of aluminium alloy sunshade, so that aluminium alloy sunshade is more conducive to storage and transportation.
[0004] To achieve the above object, the utility model adopts the following technical scheme:
[0005] A kind of aluminium alloy sunshade, including aluminium alloy shell, drive assembly is installed on the aluminium alloy shell, multiple frame bodies are set to the side of the aluminium alloy shell, transmission mechanism for connecting the frame body and drive assembly is used, the drive assembly is driven multiple frame bodies to unfold or fold by transmission mechanism, canopy is provided in the frame body.
[0006] Further, the drive assembly includes motor installed above the aluminium alloy shell, the output shaft of the motor is drivingly connected with speed reducer, the output shaft of the speed reducer is drivingly connected with drive shaft, and the transmission mechanism is connected with the drive shaft.
[0007] Further, one side of the aluminum alloy shell is provided with a sliding groove, and a sliding block one and a sliding block two are slidably connected in the sliding groove; the transmission mechanism comprises parallelly arranged connecting rods one and two, parallelly arranged connecting rods three and four, parallelly arranged connecting rods five and six, and a connecting rod seven arranged between the connecting rods five and six; the right end of the connecting rod one is fixed on the driving shaft, the left end of the connecting rod one is provided with a transmission tooth one, the left end of the connecting rod three is provided with a transmission tooth two, the left end of the connecting rod two is provided with a transmission tooth three, the right end of the connecting rod two is provided with a driven tooth one, the right end of the connecting rod three is provided with a driven tooth two, and the right end of the connecting rod four is provided with a driven tooth three; the transmission tooth one is engaged with the driven tooth two, the transmission tooth two is engaged with the driven tooth one, and the transmission tooth three is engaged with the driven tooth three; the transmission tooth one and the driven tooth two are respectively fixed with fixed shafts one and two, the transmission tooth two and the driven tooth one are respectively provided with fixed shafts three and four, and the transmission tooth three and the driven tooth three are respectively provided with fixed shafts five and six; the fixed shafts one and two are rotatably connected through a connecting frame one, the fixed shafts three and four are rotatably connected through a connecting frame two, and the fixed shafts five and six are rotatably connected through a connecting frame three; the two ends of the connecting rod five are rotatably connected with a speed reducer shell and the connecting frame one respectively, the two ends of the connecting rod six are rotatably connected with the connecting frame two and the connecting frame three respectively, and the two ends of the connecting rod seven are rotatably connected with the connecting frame one and the connecting frame two respectively; the left end of the connecting rod four is rotatably connected with the sliding block one through a rotating shaft one, and the connecting frame two is rotatably connected with the sliding block two through a rotating shaft two; four frame bodies are arranged, and the four frame bodies are fixed on the connecting rods one, two, three and four respectively.
[0008] Further, the connecting frame one and the connecting frame two are in "Z" shape, the fixed shafts one and two are connected to vertical parts of the connecting frame one respectively, the connecting rods five and seven are connected to two horizontal parts of the connecting frame one respectively, the fixed shafts three and four are connected to vertical parts of the connecting frame two respectively, the connecting rods seven and six are connected to two horizontal parts of the connecting frame two respectively, the connecting frame three is in "L" shape, the fixed shafts five and six are connected to horizontal parts of the connecting frame three respectively, and the connecting rod six is connected to a vertical part of the connecting frame three.
[0009] Further, a back plate is arranged on the aluminum alloy shell, and a plurality of mounting holes are arranged on the back plate.
[0010] The beneficial effects of the utility model are as follows:
[0011] In practical applications, before use, the aluminum alloy shell is fixed to a high position on a street lamp pole or wall. When in use, the drive component drives multiple frames to unfold through the transmission mechanism, providing shade through the frames and the tarpaulin. When not in use, the drive component drives multiple frames to fold through the transmission mechanism, resulting in a small space occupation and easy storage and transportation. This utility model can effectively reduce the space occupied by the folded aluminum alloy awning, making it easier to store and transport. Attached Figure Description
[0012] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0013] Figure 2 This is the front view of this utility model;
[0014] Figure 3 This is a rear view of the transmission structure in this utility model;
[0015] Reference numerals: 1. Aluminum alloy shell; 11. Slide rail 1; 12. Slide rail 2; 13. Drive assembly 2; 21. Motor; 22. Reducer; 23. Drive shaft; 3. Frame; 4. Transmission mechanism; 41. Connecting rod 1; 411. Transmission gear 1; 42. Connecting rod 2; 421. Driven gear 3; 422. Driven gear 1; 43. Connecting rod 3; 431. Driven gear 2; 432. Connecting rod 44. Driven gear 3; 441. Connecting rod 5; 45. Connecting rod 6; 46. Connecting rod 7; 47. Connecting frame 1; 49. Connecting frame 2; 410. Canopy; 5. Back plate; 6. Mounting hole; 61. Detailed Implementation
[0016] like Figure 1 , Figure 2 and Figure 3 As shown, an aluminum alloy sunshade includes an aluminum alloy shell 1, a drive assembly 2 mounted on the aluminum alloy shell 1, and multiple frames 3 disposed on one side of the aluminum alloy shell 1. A transmission mechanism 4 is used to connect the frames 3 and the drive assembly 2. The drive assembly 2 drives the multiple frames 3 to unfold or fold through the transmission mechanism 4. A canopy 5 is disposed inside the frames 3.
[0017] Before use, the aluminum alloy shell 1 is fixed to a high position on a street lamp pole or wall. When in use, the drive assembly 2 drives multiple frames 3 to unfold through the transmission mechanism 4, and the sunshade is provided by the inside of the frames 3 and the tarpaulin 5. When not in use, the drive assembly 2 drives multiple frames 3 to fold through the transmission mechanism 4, which occupies little space and is easy to store and transport. This utility model can effectively reduce the space occupied by the aluminum alloy sunshade after folding, making the aluminum alloy sunshade more convenient for storage and transportation.
[0018] like Figure 1 , Figure 2 and Figure 3As shown, the driving assembly 2 comprises a motor 21 mounted above the aluminum alloy shell 1, a speed reducer 22 drivingly connected to an output shaft of the motor 21, a driving shaft 23 drivingly connected to an output shaft of the speed reducer 22, and the transmission mechanism 4 connected with the driving shaft 23; in this embodiment, the motor 21 drives the speed reducer 22 to rotate the driving shaft 23, and the driving shaft 23 drives the plurality of frame bodies 3 to unfold or fold through the transmission mechanism 4.
[0019] As Figure 1 , Figure 2 and Figure 3As shown, one side of the aluminum alloy shell 1 is provided with a sliding groove 11, and a sliding block one 12 and a sliding block two 13 are slidably connected in the sliding groove 11; the transmission mechanism 4 comprises parallelly arranged connecting rod one 41 and connecting rod two 42, parallelly arranged connecting rod three 43 and connecting rod four 44, parallelly arranged connecting rod five 45 and connecting rod six 46, connecting rod seven 47 arranged between the connecting rod five 45 and the connecting rod six 46, the right end of the connecting rod one 41 is fixed on the driving shaft 23, the left end of the connecting rod one 41 is provided with transmission teeth one 411, the left end of the connecting rod three 43 is provided with transmission teeth two 431, the left end of the connecting rod two 42 is provided with transmission teeth three 421, the right end of the connecting rod two 42 is provided with driven teeth one 422, the right end of the connecting rod three 43 is provided with driven teeth two 432, the right end of the connecting rod four 44 is provided with driven teeth three 441, the transmission teeth one 411 is engaged with the driven teeth two 432, the transmission teeth two 431 is engaged with the driven teeth one 422, the transmission teeth three 421 is engaged with the driven teeth three 441, the transmission teeth one 411 and the driven teeth two 432 are respectively fixed with fixed shaft one and fixed shaft two, the transmission teeth two 431 and the driven teeth one 422 are respectively provided with fixed shaft three and fixed shaft four, the transmission teeth three 421 and the driven teeth three 441 are respectively provided with fixed shaft five and fixed shaft six, the fixed shaft one and the fixed shaft two are rotatably connected through the connecting frame one 48, the fixed shaft three and the fixed shaft four are rotatably connected through the connecting frame two 49, the fixed shaft five and the fixed shaft six are rotatably connected through the connecting frame three 410, the two ends of the connecting rod five 45 are rotatably connected with the reducer 22 shell and the connecting frame one 48 respectively, the two ends of the connecting rod six 46 are rotatably connected with the connecting frame two 49 and the connecting frame three 410 respectively, the two ends of the connecting rod seven 47 are rotatably connected with the connecting frame one 48 and the connecting frame two 49 respectively, the left end of the connecting rod four 44 is rotatably connected with the sliding block one 12 through the rotating shaft one, the connecting frame two 49 is rotatably connected with the sliding block two 13 through the rotating shaft two, the frame body 3 is provided with four, four frame bodies 3 are respectively fixed on the connecting rod one 41, the connecting rod two 42, the connecting rod three 43 and the connecting rod four 44; in this embodiment, the motor 21 drives the reducer 22 to make the driving shaft 23 rotate, and the driving shaft 23 passes through the connecting rod one 41, the transmission teeth one 411, the driven teeth two 432, the connecting rod three 43, the transmission teeth two 431, the driven teeth one 422, the connecting rod two 42, the transmission teeth three 421, the driven teeth three 441 and the connecting rod four 44, and at the same time passes through the connecting rod five 45, the connecting frame one 48, the connecting rod seven 47, the connecting frame two 49, the connecting rod six 46, the connecting frame three 410 and the connecting rod four 44, so that the sliding block one 12 and the sliding block two 13 slide along the sliding groove 11, and the frame bodies 3 and the tarpaulin 5 on the connecting rod one 41, the connecting rod two 42, the connecting rod three 43 and the connecting rod four 44 are unfolded or folded.
[0020] As Figure 1 , Figure 2 andFigure 3 As shown, the connecting frame 1 (48) and connecting frame 2 (49) are in a "Z" shape. The fixed shaft 1 and fixed shaft 2 are respectively connected to the vertical portion of the connecting frame 1 (48). The connecting rod 5 (45) and connecting rod 7 (47) are respectively connected to the two horizontal portions of the connecting frame 1 (48). The fixed shaft 3 and fixed shaft 4 are respectively connected to the vertical portion of the connecting frame 2 (49). The connecting rod 7 (47) and connecting rod 6 (46) are respectively connected to the two horizontal portions of the connecting frame 2 (49). The connecting frame 3 (410) is in an "L" shape. The fixed shaft 5 and fixed shaft 6 (49) are respectively connected to the vertical portion of the connecting frame 2 (49). Shaft 6 is connected to the horizontal part of the connecting frame 3 410, and connecting rod 6 46 is connected to the vertical part of the connecting frame 3 410. In this embodiment, when connecting frame 1 48 and connecting frame 2 49 are in a "Z" shape and connecting frame 3 410 is in an "L" shape, connecting rod 5 45, connecting frame 1 48, connecting rod 7 47, connecting frame 2 49, connecting rod 6 46, connecting frame 3 410 and connecting rod 44 can drive connecting rod 1 41, connecting rod 2 42, connecting rod 3 43 and connecting rod 44 to fold during the rotation of the drive shaft 23.
[0021] like Figure 1 , Figure 2 and Figure 3 As shown, the aluminum alloy shell 1 is provided with a back plate 6, and the back plate 6 is provided with a plurality of mounting holes 61; in this embodiment, the aluminum alloy shell 1 is easier to install and fix through the back plate 6 and the mounting holes 61.
[0022] The specific embodiments described herein are merely illustrative examples of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to replace them, without departing from the scope defined by this utility model.
Claims
1. An aluminum alloy sunroof characterized by: The utility model relates to an aluminum alloy shell (1) is included, install drive assembly (2) on aluminum alloy shell (1), multiple frame (3) are arranged to one side of aluminum alloy shell (1), the transmission mechanism (4) for connecting frame (3) and drive assembly (2) is adopted, drive assembly (2) through transmission mechanism (4) drive multiple frame (3) unfold or fold, the frame (3) is provided with tarpaulin (5) in.
2. The aluminum alloy sunroof according to claim 1, wherein Drive assembly (2) includes motor (21) installed above aluminum alloy shell (1), the output shaft of motor (21) is drivenly connected with speed reducer (22), the output shaft of speed reducer (22) is drivenly connected with drive shaft (23), and transmission mechanism (4) is connected with drive shaft (23).
3. The aluminum alloy sunroof of claim 2, wherein, One side of the aluminum alloy shell (1) is provided with a chute (11), the chute (11) is slidably connected with slider one (12) and slider two (13); the transmission mechanism (4) includes parallelly arranged connecting rod one (41) and connecting rod two (42), parallelly arranged connecting rod three (43) and connecting rod four (44), parallelly arranged connecting rod five (45) and connecting rod six (46), connecting rod seven (47) arranged between the connecting rod five (45) and the connecting rod six (46), the right end of the connecting rod one (41) is fixed on the drive shaft (23), the left end of the connecting rod one (41) is provided with transmission teeth one (411), the left end of the connecting rod three (43) is provided with transmission teeth two (431), the left end of the connecting rod two (42) is provided with transmission teeth three (421), the right end of the connecting rod two (42) is provided with driven teeth one (422), the right end of the connecting rod three (43) is provided with driven teeth two (432), the right end of the connecting rod four (44) is provided with driven teeth three (441), the transmission teeth one (411) and the driven teeth two (432) are engaged, the transmission teeth two (431) and the driven teeth one (422) are engaged, the transmission teeth three (421) and the driven teeth three (441) are engaged, the transmission teeth one (411) and the driven teeth two (432) are respectively fixed with fixed shaft one and fixed shaft two, the transmission teeth two (431) and the driven teeth one (422) are respectively provided with fixed shaft three and fixed shaft four, the transmission teeth three (421) and the driven teeth three (441) are respectively provided with fixed shaft five and fixed shaft six, the fixed shaft one and the fixed shaft two are rotatably connected through the connecting frame one (48), the fixed shaft three and the fixed shaft four are rotatably connected through the connecting frame two (49), the fixed shaft five and the fixed shaft six are rotatably connected through the connecting frame three (410), both ends of the connecting rod five (45) are rotatably connected with the reducer (22) shell and the connecting frame one (48) respectively, both ends of the connecting rod six (46) are rotatably connected with the connecting frame two (49) and the connecting frame three (410) respectively, both ends of the connecting rod seven (47) are rotatably connected with the connecting frame one (48) and the connecting frame two (49) respectively, the left end of the connecting rod four (44) is rotatably connected with the slider one (12) through the rotating shaft one, the connecting frame two (49) is rotatably connected with the slider two (13) through the rotating shaft two, the frame body (3) is provided with four, four frame bodies (3) are respectively fixed on the connecting rod one (41), the connecting rod two (42), the connecting rod three (43) and the connecting rod four (44).
4. The aluminum alloy sunroof of claim 3, wherein, The connecting frame one (48) and the connecting frame two (49) are in "Z" shape, the fixed shaft one and the fixed shaft two are connected to vertical parts of the connecting frame one (48) respectively, the connecting rod five (45) and the connecting rod seven (47) are connected to two horizontal parts of the connecting frame one (48) respectively, the fixed shaft three and the fixed shaft four are connected to vertical parts of the connecting frame two (49) respectively, the connecting rod seven (47) and the connecting rod six (46) are connected to two horizontal parts of the connecting frame two (49) respectively, the connecting frame three (410) is in "L" shape, the fixed shaft five and the fixed shaft six are connected to horizontal parts of the connecting frame three (410) respectively, and the connecting rod six (46) is connected to a vertical part of the connecting frame three (410).
5. The aluminum alloy sunroof of claim 1, wherein, A back plate (6) is arranged on the aluminum alloy shell (1), and a plurality of mounting holes (61) are arranged on the back plate (6).