An outdoor mobile power supply wind turbine
By using torsion springs and electric push rods to adjust the blade angle in outdoor mobile powered wind turbines, the overload problem of power generation module caused by excessive blade speed at high wind speed is solved, and protection in hurricane weather and low resistance power supply in vehicle-mounted mode is achieved.
Patent Information
- Application Number
- CN202510638825.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-19
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2045-05-19
AI Technical Summary
In high wind speed or hurricane weather environments, the blade speed of existing outdoor mobile powered wind turbines can easily lead to overload and burning of the power generation module.
Through the first torsion spring connection between the fan blade and the center block, combined with the electric push rod and the pressure ring, the blade rolling angle is automatically adjusted, the windward area is changed, the power generation module is avoided, and the power generation module is switched to the on-board movement mode in hurricane weather to reduce driving resistance.
Effectively protect the power generation module, avoid overload and burn, and at the same time reduce driving resistance in the on-board mobile mode to achieve stable power supply.
Smart Images

Figure CN120175568B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of electric wind turbines, and particularly to an outdoor mobile power supply wind turbine. Background Art
[0002] An outdoor mobile power supply wind turbine is an innovative energy device that combines environmental protection and portability and plays an important role in outdoor activities and emergency scenarios. In an environment with sufficient wind, the outdoor mobile power supply wind turbine, in cooperation with a mobile energy storage device, can achieve long-term continuous outdoor power supply and has gradually become an ideal power supply option for outdoor enthusiasts and emergency response departments. With technological progress, its portability and efficiency will continue to be optimized, promoting the popularization of renewable energy. However, when the existing outdoor mobile power supply wind turbine encounters a large external wind speed or hurricane weather environment, the high-velocity airflow blows the blades to rotate too fast, easily causing the power generation module to operate overloaded and burn out. Summary of the Invention
[0003] In order to overcome the drawback that when the existing outdoor mobile power supply wind turbine encounters a large external wind speed or hurricane weather environment, the high-velocity airflow blows the blades to rotate too fast, easily causing the power generation module to operate overloaded and burn out, the present invention provides an outdoor mobile power supply wind turbine.
[0004] An outdoor mobile power supply wind turbine of the present invention includes a machine shell, a power rotating shaft, a power gear, a power generation module, a transmission gear, a power transmission module, a mounting bracket, a central block, fan blades, a first torsion spring, a rocker, a ball, a pressure ring, and an electric push rod; the power rotating shaft is rotatably connected inside the machine shell; the power gear is fixedly connected to the power rotating shaft; the power generation module is installed inside the machine shell, and an ammeter for monitoring the power generation amount is built in the power generation module; the drive shaft of the power generation module is fixedly connected with the transmission gear; the transmission gear meshes with the power gear; two mounting brackets are connected to the machine shell; the central block is fixedly connected to the power rotating shaft; not less than three fan blades are rotatably connected to the central block through a rotating shaft; a first torsion spring is fixedly connected between the fan blades and the central block; a rocker is fixedly connected to one end of the fan blade connecting the rotating shaft; a ball is provided on each rocker; the pressure ring is slidably connected to the mounting bracket; each ball is in close contact with the pressure ring; the electric push rod is installed inside the mounting bracket; the telescopic end of the electric push rod is fixedly connected to the pressure ring; a limiting ring for restricting the movement of the rocker is fixedly connected to the pressure ring.
[0005] Preferably, a plurality of heat dissipation groove structures are provided on the machine shell.
[0006] Preferably, a snap ring for fixing four fan blades is sleeved on the machine shell.
[0007] Preferably, not less than two fixing lugs are provided on the snap ring; positioning lugs that are aligned with the number and position of the fixing lugs are provided on the machine shell.
[0008] Preferably, a front anti-collision net corresponding to the number and position of the fan blades is fixedly connected to the central block.
[0009] Preferably, a layer of foam buffer layer is provided on the windward side of the fan blades.
[0010] Preferably, the mounting frame is composed of a mounting base plate, a rotating arm, a fixing frame, a connecting block, a push plate, an adjusting slider and a pushing member; two rotating arms are respectively rotatably connected to the mounting base plate through a rotating shaft; the upper ends of the two rotating arms are jointly rotatably connected to a fixing frame through a rotating shaft; the fixing frame is fixedly connected to the machine shell; a connecting block is fixedly connected to the rotating shaft connected to the lower side of any one of the rotating arms; a push plate is fixedly connected to the connecting block; an adjusting slider is fixedly connected to the mounting base plate through a bolt; a pushing member is fixedly connected to the adjusting slider; the pushing member is in close contact with the push plate.
[0011] Preferably, the pushing member is composed of a damping spring shock absorber and a ball head fixed at the telescopic end of the damping spring shock absorber; the damping spring shock absorber is fixed on the corresponding adjusting slider; the ball head of the pushing member is in close contact with the corresponding push plate.
[0012] Preferably, the ball head of the pushing member is made of a buffer rubber material.
[0013] Preferably, a side anti-collision net is fixedly connected to the rotating arm located at the front side in the mounting frame.
[0014] An outdoor mobile power supply wind turbine of the present invention, the fan blades are connected to the central block through a rotating shaft and a first torsion spring, and can independently adjust the turning angle of the fan blades through an electric push rod and a pressure ring according to the current wind speed environment, so as to change the windward area of the fan blades in combination with the change of the current wind speed environment. When encountering a hurricane weather environment, the problem of overloading and burning of the power generation module during operation can be avoided, and it can also be switched to the vehicle-mounted mobile mode, so that the fan blades are stored on the machine shell, and at the same time, the height of the mounting frame is reduced, thereby reducing the driving resistance of the vehicle in the vehicle-mounted mobile mode. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is a perspective view of the vehicle-mounted mobile mode of an outdoor mobile power supply wind turbine of the present invention;
[0016] Figure 2 is a perspective view of a snap ring of an outdoor mobile power supply wind turbine of the present invention;
[0017] Figure 3 is a perspective sectional view of the machine shell of an outdoor mobile power supply wind turbine of the present invention;
[0018] Figure 4 is a perspective view of a pressure ring of an outdoor mobile power supply wind turbine of the present invention;
[0019] Figure 5Stereogram of the mounting frame of an outdoor mobile power supply wind turbine of the present invention;
[0020] Figure 6 Partial stereogram of the mounting frame of an outdoor mobile power supply wind turbine of the present invention;
[0021] Figure 7 Schematic three-dimensional diagram of the ground power generation mode of an outdoor mobile power supply wind turbine of the present invention.
[0022] Reference numerals: 1 - housing, 101 - heat dissipation groove structure, 102 - positioning lifting lug, 11 - power rotating shaft, 12 - power gear, 13 - power generation module, 14 - transmission gear, 15 - power transmission module, 2 - mounting frame, 21 - mounting base plate, 22 - swing arm, 23 - fixing frame, 24 - connecting block, 25 - push plate, 26 - adjusting slider, 27 - pushing member, 3 - central block, 31 - fan blade, 32 - first torsion spring, 33 - rocker, 34 - ball, 41 - pressure ring, 42 - electric push rod, 43 - limiting ring, 5 - snap ring, 501 - fixing lifting lug, 6 - front anti-collision net, 7 - side anti-collision net. Detailed implementation manners
[0023] The present invention will be further described below in conjunction with the accompanying drawings and detailed implementation manners.
[0024] Embodiment 1
[0025] An outdoor mobile power supply wind turbine of the present invention, hereinafter referred to as the wind turbine, as Figures 1-4As shown, it includes a housing 1, a power shaft 11, a power gear 12, a power generation module 13, a transmission gear 14, a power transmission module 15, a mounting frame 2, a center block 3, a fan blade 31, a first torsion spring 32, a seesaw 33, a ball 34, a pressure ring 41 and an electric push rod 42; the housing 1 is set as an ellipsoid structure; the power shaft 11 is rotatably connected in the housing 1; the power shaft 11 is fixedly connected to the power shaft 12; the power generation module 13 is installed in the housing 1, and the power generation module 13 is built with an electric meter for monitoring the power generation; a plurality of heat dissipation slot structures 101 for dissipating heat from the power generation module 13 are opened on the housing 1; the transmission gear 14 is fixedly connected to the driving shaft of the power generation module 13; the transmission gear 14 is meshed with the power gear 12; the power transmission module 15 is installed on the housing 1; The power transmission port is electrically connected to the power transmission module 15; a mounting frame 2 is connected to the left and right sides of the casing 1; a center block 3 is fixedly connected to the power shaft 11; four fan blades 31 are rotatably connected to the center block 3 through the shaft; two first torsion springs 32 are fixedly connected between each fan blade 31 and the center block 3; a seesaw 33 is fixedly connected to one end of each fan blade 31 connected to the shaft; a ball 34 is provided on each seesaw 33 to reduce friction; a pressure ring 41 is slidably connected to the mounting frame 2; each ball 34 is tightly attached to the pressure ring 41; an electric push rod 42 is installed in the mounting frame 2; the telescopic end of the electric push rod 42 is fixedly connected to the pressure ring 41; the front side of the pressure ring 41 is fixedly connected to the limit ring 43, and the limit ring 43 is located in front of the seesaw 33, and the seesaw 33 does not initially contact the limit ring 43.
[0026] like Figure 2 As shown, a clamping ring 5 is sleeved on the casing 1, and the clamping ring 5 is used to fix the four fan blades 31 together on the casing 1; four fixing ears 501 are arranged on the clamping ring 5; and positioning ears 102 are arranged on the casing 1, which are aligned with the fixing ears 501 in number and position.
[0027] The power generation mode of an outdoor mobile power supply wind turbine generator installed on a vehicle of the present invention works as follows.
[0028] In the initial state, the entire fan blade 31 is in a retracted state close to the outer surface of the casing 1. At the same time, the telescopic end of the electric push rod 42 pushes the pressure ring 41 outward, allowing the pressure ring 41 to press the rocker 33 of the fan blade 31 through the ball 34, and the first torsion spring 32 is in a twisted state.
[0029] When in use, the user first fixes the two mounting brackets 2 on the casing 1 on the truck bed rack or the roof rack. Note that the vehicle is in the parking state at this time, so that the casing 1 is located in an area higher than the ground, and then removes the clamping ring 5 from the casing 1, and then controls the electric push rod 42 to pull the pressure ring 41 to move backward, and the twisted first torsion spring 32 drives the fan blades 31 to turn outward, and the fan blades 31 drive the rocker 33 to keep close to the pressure ring 41 through the ball 34, so that all the fan blades 31 are in the same position. Figure 7 As shown in the fully outwardly turned-up state, the natural wind from the outside will drive the central block 3 to rotate when passing through the fan blades 31, and the central block 3 will drive the power shaft 11 and the power gear 12 to rotate synchronously. At the same time, the power gear 12 engages with the transmission gear 14 to drive the power generation module 13 to generate electricity. After the user connects the power transmission module 15 to the mobile energy storage device, the power generation module 13 can charge the mobile energy storage device, thereby realizing the long-term continuous power supply of the equipment that needs electricity by the wind turbine of the present invention in conjunction with the external mobile energy storage device.
[0030] When the external natural wind increases, the external natural wind flow drives the rotation speed of the power shaft 11 and the power gear 12 to increase, and the power generation of the power generation module 13 in the same time will also increase. When the built-in electric meter of the power generation module 13 recognizes that the power generation of the power generation module 13 in the same time exceeds the specified value and is about to be overloaded, it means that the flow rate of the external natural wind is too high at this time. The electric push rod 42 pushes the pressure ring 41 forward in time, and at the same time, the pressure ring 41 pushes the seesaw 33 through the ball 34 to drive the fan blade 31 to flip in the opposite direction, so that the fan blade 31 passes close to the casing 1. The side flip reduces the outward flipping angle, thereby reducing the windward area of the fan blades 31 and the external natural wind, forcing the fan blades 31 to enter a stall state, reducing the wind energy capture efficiency (reducing torque), and directly limiting the increase in speed, thereby reducing the speed of the power shaft 11 and the power gear 12 driven by the external natural wind flow, allowing the power generation module 13 to reduce the power generation at the same time. The windward area of the fan blades 31 is changed in combination with the current wind speed environment changes, and corresponding protection measures are provided for the power generation module 13 to avoid overload and burning of the power generation module 13.
[0031] When there are intermittent strong winds from the outside, the strong wind will push the fan blade 31 to flip backward as it flows through the fan blade 31. At the same time, the fan blade 31 drives the first torsion spring 32 to twist. After the strong wind leaves the fan blade 31, the twisted first torsion spring 32 drives the fan blade 31 to flip forward and reset. The intermittent strong winds that appear repeatedly will drive the fan blade 31 to swing back and forth in the front and back directions, resulting in unstable power generation of the wind turbine of the present invention. Therefore, in this embodiment, a limiting ring 43 that is not initially in contact is provided on the front side of the seesaw 33. When the electric push rod 42 pulls the pressing ring 41 to move backward, the fan blade 31 is turned outward under the action of the twisted first torsion spring 32 and the limiting ring 43. When the strong wind flows through the fan blade 31, the seesaw 33 is blocked by the limiting ring 43, so that the fan blade 31 will not make a backward flipping action, and the fan blade 31 is kept at the current flipping angle for stable wind power generation work.
[0032] The storage work of the outdoor mobile power supply wind turbine of the present invention in the vehicle-mounted mode is as follows.
[0033] The user controls the electric push rod 42 to drive the pressing ring 41 to move forward. The pressing ring 41 pushes the ball 34 to drive the seesaw 33 and the connected fan blade 31 to rotate, so that the fan blade 31 flips back to the initial storage state where it closely adheres to the outer surface of the housing 1. At the same time, the fan blade 31 drives the first torsion spring 32 to twist. Then, the user slips the snap ring 5 back onto the outer surface of the housing 1, and the fan blade 31 is clamped between the snap ring 5 and the housing 1. Then, the fixed lug 501 of the snap ring 5 is fixed to the corresponding positioning lug 102 on the housing 1 through bolts, so that the fan blade 31 and the housing 1 can be integrally stored in a complete ellipsoidal structure state. The ellipsoidal structure housing 1 and the fan blade 31 can reduce the resistance from the airflow when they move with the vehicle, thereby reducing the driving resistance caused by the wind turbine of the present invention to the vehicle in the vehicle-mounted mobile mode.
[0034] Embodiment 2
[0035] As Figure 1 and Figure 2As shown in the figure, on the basis of Embodiment 1, a front anti-collision net 6 corresponding to the number and position of the fan blades 31 is fixedly connected to the central block 3 of this embodiment; a layer of foam buffer layer is provided on the windward surface of each fan blade 31. When the flying tiny foreign objects pass through the front anti-collision net 6 and hit the windward surface of the fan blade 31, the flying tiny foreign objects are buffered by this foam buffer layer, greatly reducing the impact damage to the fan blade 31. During use, the front anti-collision net 6 is arranged in front of the corresponding fan blade 31, and in the vehicle-mounted mobile mode, the height of the front anti-collision net 6 is flush with the height of the machine shell 1. The front anti-collision net 6 provides anti-collision protection for the machine shell 1 and the fan blades 31 stored on the machine shell 1, avoiding sudden flying foreign objects hitting the connection part between the fan blade 31 and the central block 3 during driving, resulting in damage to the connection part between the fan blade 31 and the central block 3.
[0036] As Figure 5 and Figure 6 As shown in the figure, the mounting bracket 2 of this embodiment is composed of a mounting base plate 21, a swing arm 22, a fixing bracket 23, a connecting block 24, a push plate 25, an adjustment slider 26 and a pushing member 27; two swing arms 22 are respectively rotatably connected to the mounting base plate 21 through a rotating shaft; the upper ends of the two swing arms 22 are jointly rotatably connected to a fixing bracket 23 through a rotating shaft; the fixing bracket 23 is fixedly connected to the machine shell 1; a connecting block 24 is fixedly connected to the rotating shaft connected to the lower side of any one swing arm 22; a push plate 25 is fixedly connected to the connecting block 24; an adjustment slider 26 is fixedly connected to the mounting base plate 21 through a bolt; a pushing member 27 closely attached to the push plate 25 is fixedly connected to the adjustment slider 26; the pushing member 27 is composed of a damping spring shock absorber and a ball head fixed at the telescopic end of the damping spring shock absorber; the damping spring shock absorber is fixed on the corresponding adjustment slider 26; the ball head of the pushing member 27 closely adheres to the corresponding push plate 25, and the ball head of the pushing member 27 is made of a buffer rubber material.
[0037] As Figure 1 As shown in the figure, a side anti-collision net 7 is fixedly connected to each of the front swing arms 22 in each mounting bracket 2 of this embodiment, and the side anti-collision net 7 is set in an L-shaped semi-surrounding structure.
[0038] When the present invention is installed on a vehicle and moves with the vehicle in a stored state, the mounting base plate 21 is fixed on the truck bed shelf or the roof shelf through bolts and other connecting parts, as Figure 1 and Figure 5As shown, the swing arm 22 and the fixed frame 23 are in the downward folding state. Therefore, the overall storage is in the state of a complete ellipsoidal structure. The casing 1 and the fan blade 31 are located in the area close to the vehicle body downward, making the wind turbine of the present invention located in an area closer to the vehicle body, further reducing the driving resistance caused to the vehicle when the wind turbine of the present invention is moving with the vehicle in the storage state. The side anti-collision nets 7 in an L-shaped semi-surrounding structure on both sides of the mounting brackets 2 respectively surround the left and right sides of the casing 1, preventing foreign objects such as tree branches on the side from hitting the casing 1 during the vehicle's driving, and being able to cooperate with the front anti-collision net 6 to provide effective protection for the casing 1 and the fan blade 31 together.
[0039] When the vehicle stops driving and is parked in an outdoor wilderness area, the wind turbine of the present invention needs to be switched to the conventional power generation mode (installed on the ground) for power generation work. The switching steps are as follows: The user first removes the fixing bolt between the adjusting slider 26 and the mounting base plate 21, and then moves the adjusting slider 26 to drive the pushing member 27 to move towards the push plate 25. The pushing member 27 pushes the push plate 25 to drive the connecting block 24 and the swing arm 22 connected thereto to rotate. The swing arm 22 drives the fixed frame 23 to turn up upwards to the state as shown in Figure 7 As shown, the fixed frame 23 drives the casing 1 and the fan blade 31 to be propped up away from the ground. Then the user removes the snap ring 5 from the casing 1, and according to the above steps, the electric push rod 42 pulls the pressing ring 41 to move backward, and at the same time, the twisted first torsion spring 32 drives the fan blade 31 to turn outwards to the state as shown in Figure 7 As shown, the user then uses the fixing bolt to fix the adjusting slider 26 at the current corresponding position on the mounting base plate 21 again, keeping the swing arm 22 and the fixed frame 23 in the state of propping up the casing 1 and the fan blade 31 upwards. The fan blade 31 performs conventional power generation work under the blowing of the external natural wind flow, and the side anti-collision nets 7 on both sides will also turn up upwards to the separated state and respectively surround the front left side and the front right side of the casing 1. The side anti-collision nets 7 in an L-shaped semi-surrounding structure on both sides provide lateral anti-collision protection for the left and right sides of the fan blade 31, preventing large-volume foreign objects carried in the external natural wind flow from hitting the fan blade 31 from the side and causing damage to it.
[0040] It should be noted here that when the wind turbine of the present invention is generating electricity on the vehicle, according to the above steps, the swing arm 22 drives the fixed frame 23 to turn up upwards to the state as shown in Figure 7 As shown, the fixed frame 23 drives the casing 1 and the fan blade 31 to be propped up away from the vehicle bed shelf or the roof shelf. When moving with the vehicle in the storage state, the swing arm 22 and the fixed frame 23 are in the downward folding state, and the casing 1 and the fan blade 31 in the state of a complete ellipsoidal structure in the overall storage are located in the area close to the vehicle body downward.
[0041] When the wind turbine of the present invention is in a stored state and moves with the vehicle, the front anti-collision net 6 protects it from collision on the front side of the casing 1. At the same time, when the front anti-collision net 6 is collided by flying foreign objects, it will drive the casing 1 to move backward. The backward-moving casing 1 drives the fixing frame 23 and the swing arm 22 to turn backward and downward. The swing arm 22 drives the push plate 25 on the connecting block 24 to rotate towards the pushing member 27. At the same time, the push plate 25 squeezes the damping spring shock absorber of the pushing member 27. The damping spring shock absorber absorbs the impact generated during the collision of the front anti-collision net 6 through the swing arm 22, so as to provide anti-collision buffering for it.
[0042] When the wind turbine of the present invention is mounted on the roof rack and is in a stored state and moves with the vehicle, and when the vehicle passes through height-limiting buildings such as height-limiting frames, if the driver fails to observe the height of the casing 1 and the height of the height-limiting frame in time, when the height of the casing 1 is too high and collides with height-limiting buildings such as height-limiting frames, the side anti-collision nets 7 on both sides will collide with the height-limiting buildings such as height-limiting frames prior to the casing 1. At this time, the side anti-collision net 7 is blocked by the height-limiting buildings such as height-limiting frames and drives the swing arm 22 to turn downward. At the same time, the swing arm 22 drives the push plate 25 on the connecting block 24 to rotate towards the pushing member 27. At the same time, the push plate 25 squeezes the damping spring shock absorber of the pushing member 27. The damping spring shock absorber absorbs the impact generated during the collision of the side anti-collision net 7 through the swing arm 22, so as to provide anti-collision buffering for the wind turbine of the present invention. And at this time, the sound of the collision between the side anti-collision net 7 and the height-limiting buildings such as height-limiting frames will prompt the user to remove the wind turbine of the present invention from the roof rack to ensure passage.
[0043] Although the present disclosure has been shown and described with reference to specific exemplary embodiments thereof, those skilled in the art should understand that various changes in form and detail may be made therein without departing from the spirit and scope of the present disclosure as defined by the appended claims and their equivalents. Therefore, the scope of the present disclosure should not be limited to the above embodiments, but should be determined not only by the appended claims but also by the equivalents of the appended claims.
Claims
1. An outdoor mobile power supply wind turbine, comprising: a machine housing (1); a power rotating shaft (11) rotatably connected inside the machine housing (1); a power gear (12) fixedly connected to the power rotating shaft (11); a power generation module (13) installed inside the machine housing (1), and an ammeter for monitoring the power generation amount is built in the power generation module (13); a transmission gear (14) is fixedly connected to the drive shaft of the power generation module (13); the transmission gear (14) meshes with the power gear (12); It is characterized in that It further includes a mounting frame (2); two mounting frames (2) are connected to the machine housing (1); a central block (3) is fixedly connected to the power rotating shaft (11); not less than three fan blades (31) are rotatably connected to the central block (3) through a rotating shaft; a first torsion spring (32) is fixedly connected between the fan blade (31) and the central block (3); a seesaw (33) is fixedly connected to one end of the fan blade (31) connected to the rotating shaft; a ball (34) is provided on each seesaw (33); a pressure ring (41) is slidably connected to the mounting frame (2); each ball (34) is in close contact with the pressure ring (41); an electric push rod (42) is installed inside the mounting frame (2); the telescopic end of the electric push rod (42) is fixedly connected to the pressure ring (41); a limit ring (43) for restricting the movement of the seesaw (33) is fixedly connected to the pressure ring (41).
2. The outdoor mobile power supply wind turbine according to claim 1, characterized in that, A plurality of heat dissipation groove structures (101) are formed on the machine housing (1).
3. The outdoor mobile power supply wind turbine according to claim 1, characterized in that, A clamping ring (5) for fixing four fan blades (31) is sleeved on the machine housing (1).
4. An outdoor mobile power supply wind turbine according to claim 3, characterized in that, Not less than two fixed lifting lugs (501) are provided on the clamping ring (5); positioning lifting lugs (102) corresponding to the number and position of the fixed lifting lugs (501) are provided on the machine housing (1).
5. An outdoor mobile power supply wind turbine according to claim 1, characterized in that, A front anti-collision net (6) corresponding to the number and position of the fan blades (31) is fixedly connected to the central block (3).
6. An outdoor mobile power supply wind turbine according to claim 5, characterized in that, A layer of foam buffer layer is provided on the windward side of the fan blade (31).
7. An outdoor mobile power supply wind turbine according to claim 1, characterized in that, The mounting frame (2) is composed of a mounting base plate (21), a rotating arm (22), a fixing frame (23), a connecting block (24), a pushing plate (25), an adjusting slider (26) and a pushing member (27); two rotating arms (22) are respectively rotatably connected to the mounting base plate (21) through a rotating shaft; the upper ends of the two rotating arms (22) are jointly rotatably connected to a fixing frame (23) through a rotating shaft; the fixing frame (23) is fixedly connected to the machine housing (1); a connecting block (24) is fixedly connected to the rotating shaft connected to the lower side of any one rotating arm (22); a pushing plate (25) is fixedly connected to the connecting block (24); an adjusting slider (26) is fixedly connected to the mounting base plate (21) through a bolt; a pushing member (27) is fixedly connected to the adjusting slider (26); the pushing member (27) is in close contact with the pushing plate (25).
8. An outdoor mobile power supply wind turbine according to claim 7, characterized in that, The pushing member (27) is composed of a damping spring shock absorber and a ball head fixed to the telescopic end of the damping spring shock absorber; the damping spring shock absorber is fixed to the corresponding adjusting slider (26); the ball head of the pushing member (27) is in close contact with the corresponding pushing plate (25).
9. An outdoor mobile power supply wind turbine according to claim 8, characterized in that, The ball head of the pushing member (27) is made of a buffer rubber material.
10. An outdoor mobile power supply wind turbine according to claim 7, characterized in that, A side anti-collision net (7) is fixedly connected to the rotating arm (22) located at the front side in the mounting frame (2).
Citation Information
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