Solar wind rotating lamp
By improving the support rod structure and air-turn blade design, the stability and aesthetics of solar wind turn lamps are solved, and the wind turn lamp effect with high stability, strong aesthetics and convenient maintenance is achieved.
Patent Information
- Application Number
- CN202422385228.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-29
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-09-29
AI Technical Summary
The support rods of existing solar wind turntables are prone to bend and deform due to excessive wind force, resulting in poor stability and insufficient aesthetics.
It adopts a support rod design, including an inner rod and a sleeve rod structure. The bearing is rotatably arranged between the sleeve rod. The wind rotary bracket is combined with the solar box to form a rotating body. The top of the support rod can be detached and decorated. The air rotary blade is designed in an S-shaped shape. The lamp source can be detached and fixed to the installation part. The bearing is installed on the solar box to improve stability.
The stability and aesthetics of the wind turntable lamp are improved, the support rod is not easy to deform, the lighting effect is good, the structure is convenient to disassemble and assemble, the maintenance cost is low, and the aesthetics of the decorations are enhanced.
Smart Images

Figure CN223242568U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of solar lamps, in particular to a solar wind-driven lamp. Background Art
[0002] In existing solar wind-rotating lamps, the solar modules, light source, and wind-rotating bracket are typically mounted on the upper end of a support pole. This distance between the solar modules, light source, and wind-rotating bracket and the lower end, which is fixed to the ground, places significant forces on the upper end of the support pole, which can easily cause local bending and deformation. This can also cause the solar wind-rotating lamp to tip over, resulting in poor stability. The solar modules and light source are typically fixed to the support pole, with only the wind-rotating bracket rotating. This structure results in a monotonous appearance for the support pole, poor lighting effects, and a lack of aesthetic appeal.
[0003] Chinese patent application number: 202323176532.4 discloses a luminous wind turbine, comprising a transparent tube, a rotating body, a light string, a first limiter, a second limiter, and a power supply device. The first limiter and the second limiter are spaced apart and mounted outside the transparent tube. The rotating body is rotatably connected to the transparent tube. The rotating body is located between the first limiter and the second limiter. The power supply device is installed in the transparent tube and is located on the side of the second limiter away from the rotating body. The light string is located within the transparent tube and arranged along the length of the transparent tube. The light string is electrically connected to the power supply device, and the power supply device is used to supply power to the light string. When the wind turbine rotates, the light string does not rotate with the rotating body, resulting in a poor lighting effect. The transparent tube has a simple appearance and lacks aesthetics. The wind turbine is set on the top of the bracket, and the support rod is subjected to a large force, which can easily cause the support rod to bend and deform locally. Especially when the wind speed is high, it may cause the solar wind turbine light source to overturn, resulting in poor stability. Utility Model Content
[0004] Therefore, in order to solve the above problems, the present invention proposes a solar wind-rotating lamp, which solves the technical problems of wind-rotating lamps being insufficient in aesthetics and having poor stability when rotating.
[0005] In order to achieve the above purpose, the present invention adopts the following technical solutions:
[0006] A solar wind-rotating lamp comprises a support rod, at least one solar box, and a wind-rotating bracket arranged on the solar box; at least one light source is provided on the solar box and / or the wind-rotating bracket; at least one bearing is provided on the solar box and / or the wind-rotating bracket; the bearing is rotatably sleeved on the support rod; a solar module is provided on the solar box, and the solar module is connected to the light source; the support rod comprises an inner rod and at least two sleeve rods sleeved on the inner rod; the bearing can be clamped between two adjacent sleeve rods; the sleeve rod is fixed to the inner rod by a fixing member; and the wind-rotating bracket is provided with wind-rotating blades.
[0007] Further:
[0008] The bearing is arranged on the solar box, and the wind-rotating bracket is fixed to the solar box.
[0009] The top of the support rod is detachably provided with an ornament, and the lower end of the ornament is provided with the fixing piece.
[0010] The top of the inner rod is provided with a threaded portion, and the fixing piece includes a threaded sleeve provided at the lower end of the ornament. The threaded sleeve can be sleeved and threaded on the threaded portion, and the threaded sleeve can abut against the sleeve rod at the lower end.
[0011] The ornament is a snowman head, the number of the solar box and the wind-rotating bracket is two, and the outer contour of the wind-rotating bracket is a spherical or ellipsoidal structure.
[0012] The sleeve rod at the lower end of the support rod is non-detachably fixed to the sleeve rod, and the sleeve rod at the upper end of the support rod is fixed by a fixing piece.
[0013] The solar energy component comprises a solar cell panel, a storage battery and a photoresistor, and the solar energy box is also provided with a switch.
[0014] The bottom of the support rod is provided with a first pointed cone portion, the bottom of the support rod is provided with an L-shaped insertion rod, and the bottom of the insertion rod is provided with a second pointed cone portion.
[0015] The wind rotor bracket includes an upper bracket, a lower bracket, and a mounting bracket arranged between the upper bracket and the lower bracket. Multiple wind rotor blades are connected between the upper bracket and the lower bracket. The mounting bracket is fixed to the wind rotor blades, the upper bracket or the lower bracket.
[0016] The upper bracket is provided with a first through hole, the lower bracket is provided with a second through hole, the mounting frame is provided with a third through hole, and the support rod can pass through the first through hole, the second through hole and the third through hole.
[0017] The wind-rotating blade comprises a support bar connected to an upper support and a lower support, and a rotating blade arranged on the support bar.
[0018] Each of the wind rotor blades is provided with at least two mounting parts, the light sources are detachably fixed on the mounting parts, and the light sources of each wind rotor blade are connected in series via light wires.
[0019] The mounting portion includes a mounting hole provided on a wind rotor blade, the light source includes a lamp holder, a lampshade threadedly connected to the lamp holder, and an LED lamp connected to a lamp wire, the lamp wire passes through the lamp holder, and the LED lamp is located in the lampshade.
[0020] The mounting frame includes a plate body and a plurality of connecting rods arranged on the plate body, the connecting rods are connected to the wind rotor blades, the connecting rods are provided with at least one first positioning portion, the lamp wire is fixed to the connecting rod via the first positioning portion, the plate body is provided with a plurality of wire threading holes, the wind rotor blades are provided with at least one second positioning portion, the lamp wire is fixed to the wind rotor blades via the second positioning portion.
[0021] In order to achieve the above purpose, the present invention also adopts another technical solution:
[0022] A solar wind-rotating lamp comprises a support rod, at least one solar box, and a wind-rotating bracket arranged on the solar box; at least one light source is provided on the solar box and / or the wind-rotating bracket; at least one bearing is provided on the solar box and / or the wind-rotating bracket; a solar module is provided on the solar box, and the solar module is connected to the light source; the support rod comprises at least two detachably connected rod bodies, the bearing is rotatably fixed between the two rod bodies; and wind-rotating blades are provided on the wind-rotating bracket and / or the solar box.
[0023] Further:
[0024] The bearing is arranged on the solar box, and the wind-rotating bracket is fixed to the solar box.
[0025] The top of the support rod is provided with an ornament.
[0026] The ornament is a snowman head, the number of the solar box and the wind-rotating bracket is two, and the outer contour of the wind-rotating bracket is a spherical or ellipsoidal structure.
[0027] The solar energy component comprises a solar cell panel, a storage battery and a photoresistor, and the solar energy box is also provided with a switch.
[0028] The bottom of the support rod is provided with a first pointed cone portion, the bottom of the support rod is provided with an L-shaped insertion rod, and the bottom of the insertion rod is provided with a second pointed cone portion.
[0029] The wind rotor bracket includes an upper bracket, a lower bracket, and a mounting bracket arranged between the upper bracket and the lower bracket. Multiple wind rotor blades are connected between the upper bracket and the lower bracket. The mounting bracket is fixed to the wind rotor blades, the upper bracket or the lower bracket.
[0030] The upper bracket is provided with a first through hole, the lower bracket is provided with a second through hole, the mounting frame is provided with a third through hole, and the support rod can pass through the first through hole, the second through hole and the third through hole.
[0031] The wind-rotating blade comprises a support bar connected to an upper support and a lower support, and a rotating blade arranged on the support bar.
[0032] Each of the wind rotor blades is provided with at least two mounting parts, the light sources are detachably fixed on the mounting parts, and the light sources of each wind rotor blade are connected in series via light wires.
[0033] The mounting portion includes a mounting hole provided on a wind rotor blade, the light source includes a lamp holder, a lampshade threadedly connected to the lamp holder, and an LED lamp connected to a lamp wire, the lamp wire passes through the lamp holder, and the LED lamp is located in the lampshade.
[0034] The mounting frame includes a plate body and a plurality of connecting rods arranged on the plate body, the connecting rods are connected to the wind rotor blades, the connecting rods are provided with at least one first positioning portion, the lamp wire is fixed to the connecting rod via the first positioning portion, the plate body is provided with a plurality of wire threading holes, the wind rotor blades are provided with at least one second positioning portion, the lamp wire is fixed to the wind rotor blades via the second positioning portion.
[0035] In order to achieve the above purpose, the present invention also adopts another technical solution:
[0036] A solar wind-rotating lamp, characterized in that it includes a support rod, at least one solar box, at least one wind-rotating bracket, and an electric slip ring connected to the wind-rotating bracket, at least one light source is provided on the wind-rotating bracket and / or the electric slip ring, at least one bearing is provided on the wind-rotating bracket and / or the electric slip ring, the bearing is rotatably mounted on the support rod, a solar module is provided on the solar box, the solar module is electrically connected to the light source via the electric slip ring, at least one clamping portion is provided on the outer wall of the support rod, the bearing is rotatably fixed to the clamping portion, and wind-rotating blades are provided on the wind-rotating bracket and / or the electric slip ring.
[0037] Further:
[0038] The top of the support rod is provided with an ornament.
[0039] The solar box is arranged on the decoration.
[0040] The solar box is arranged on the support rod.
[0041] The solar box is arranged on the outside.
[0042] The support rod includes an inner rod and at least two sleeve rods sleeved on the inner rod, the clamping portion is formed between the two sleeve rods, the bearing can be clamped between two adjacent sleeve rods, and the sleeve rod is fixed to the inner rod through a fixing piece.
[0043] The support rod includes at least two detachably connected rod bodies, the clamping portion is formed between the two rod bodies, and the bearing is rotatably clamped and fixed between the two rod bodies.
[0044] The clamping portion includes two clamping pieces detachably arranged on the support rod, and the bearing is rotatably clamped between the two clamping pieces.
[0045] The bearing is arranged on the electric slip ring.
[0046] The bottom of the support rod is provided with a first pointed cone portion, the bottom of the support rod is provided with an L-shaped insertion rod, and the bottom of the insertion rod is provided with a second pointed cone portion.
[0047] The wind rotor bracket comprises an upper bracket and a lower bracket, and a plurality of wind rotor blades are connected between the upper bracket and the lower bracket.
[0048] The upper bracket is provided with a first through hole, the lower bracket is provided with a second through hole, and the support rod can pass through the first through hole and the second through hole.
[0049] The wind-rotating blade comprises a support bar connected to an upper support and a lower support, and a rotating blade arranged on the support bar.
[0050] Each of the wind rotor blades is provided with at least two mounting parts, the light sources are detachably fixed on the mounting parts, and the light sources of each wind rotor blade are connected in series via light wires.
[0051] The mounting portion includes a mounting hole provided on a wind rotor blade, the light source includes a lamp holder, a lampshade threadedly connected to the lamp holder, and an LED lamp connected to a lamp wire, the lamp wire passes through the lamp holder, and the LED lamp is located in the lampshade.
[0052] In order to achieve the above purpose, the present invention also adopts another technical solution:
[0053] A solar wind-rotating lamp comprises a support rod, at least one solar box, and a wind-rotating bracket arranged on the solar box; at least one light source is provided on the solar box and / or the wind-rotating bracket; at least one bearing is provided on the solar box and / or the wind-rotating bracket; the bearing is rotatably mounted on the support rod; a solar module is provided on the solar box, and the solar module is connected to the light source; at least one clamping portion is provided on the outer wall of the support rod; the bearing is rotatably fixed to the clamping portion; and wind-rotating blades are provided on the wind-rotating bracket and / or the solar box.
[0054] The clamping portion includes two clamping pieces detachably arranged on the support rod, and the bearing is rotatably clamped between the two clamping pieces.
[0055] The top of the support rod is provided with an ornament.
[0056] The ornament is a snowman head, the number of the solar box and the wind-rotating bracket is two, and the outer contour of the wind-rotating bracket is a spherical or ellipsoidal structure.
[0057] The solar energy component comprises a solar cell panel, a storage battery and a photoresistor, and the solar energy box is also provided with a switch.
[0058] The bottom of the support rod is provided with a first pointed cone portion, the bottom of the support rod is provided with an L-shaped insertion rod, and the bottom of the insertion rod is provided with a second pointed cone portion.
[0059] The wind rotor bracket includes an upper bracket, a lower bracket, and a mounting bracket arranged between the upper bracket and the lower bracket. Multiple wind rotor blades are connected between the upper bracket and the lower bracket. The mounting bracket is fixed to the wind rotor blades, the upper bracket or the lower bracket.
[0060] The upper bracket is provided with a first through hole, the lower bracket is provided with a second through hole, the mounting frame is provided with a third through hole, and the support rod can pass through the first through hole, the second through hole and the third through hole.
[0061] The wind-rotating blade comprises a support bar connected to an upper support and a lower support, and a rotating blade arranged on the support bar.
[0062] Each of the wind rotor blades is provided with at least two mounting parts, the light sources are detachably fixed on the mounting parts, and the light sources of each wind rotor blade are connected in series via light wires.
[0063] The mounting portion includes a mounting hole provided on a wind rotor blade, the light source includes a lamp holder, a lampshade threadedly connected to the lamp holder, and an LED lamp connected to a lamp wire, the lamp wire passes through the lamp holder, and the LED lamp is located in the lampshade.
[0064] The mounting frame includes a plate body and a plurality of connecting rods arranged on the plate body, the connecting rods are connected to the wind rotor blades, the connecting rods are provided with at least one first positioning portion, the lamp wire is fixed to the connecting rod via the first positioning portion, the plate body is provided with a plurality of wire threading holes, the wind rotor blades are provided with at least one second positioning portion, the lamp wire is fixed to the wind rotor blades via the second positioning portion.
[0065] By adopting the above technical solution, the beneficial effects of the utility model are:
[0066] The wind-rotating bracket and the light source of the utility model form a rotating body, which can be rotated along the support rod. The lighting effect is good during the rotation and can be arranged at the upper, middle and lower parts of the support rod. When rotating, the entire wind-rotating lamp is stable and not easy to fall over, and the support rod is not easy to deform, and the structure is more beautiful; the wind-rotating bracket, the solar box and the light source can be disassembled from the support rod, which is convenient for packaging and transportation. When part of the structure is damaged, only the local structure needs to be replaced, and the maintenance cost is low; furthermore, the bearing is installed on the solar box, and the solar box has high stability and small vibration when rotating, and the electrical components are not easily damaged; furthermore, the decoration is a snowman head, and the two wind-rotating brackets form the body of the snowman. The entire wind-rotating lamp is in the shape of a snowman, and the entire wind-rotating lamp has decorations on the upper, middle and lower parts and is supported by the two wind-rotating brackets. The support rod will not be deformed, and it is beautiful and stable. ; Furthermore, the first pointed cone portion and the second pointed cone portion at the bottom of the support rod can be fixed to the ground, and the fixing effect is good; further, the wind rotor blade is an S-shape with the middle part extending outward, and the middle part of the wind rotor blade can better contact with the wind to realize rotation; further, the light line of each wind rotor blade is an independent line, and the light line can be hidden on the wind rotor blade, which is not only beautiful, but also has a good fixing effect of the light line. The light line does not need to pass between the two wind rotor blades to withstand large wind force, and the wind force applied to the light line is small and not easily damaged; further, the first positioning portion and the second positioning portion can fix the light line. When rotating, most of the wind force is borne by the wind rotor blade, and the light line will not be subjected to large wind force; further, the light source is easy and quick to disassemble and assemble, and is convenient for installation and maintenance; further, the photoresistor can be automatically turned off during the day and automatically turned on at night. BRIEF DESCRIPTION OF THE DRAWINGS
[0067] Figure 1 This is a schematic structural diagram of a solar wind-powered lamp according to the first embodiment.
[0068] Figure 2 This is an exploded view of the solar wind-powered lamp according to the first embodiment.
[0069] Figure 3 1 is an exploded view of the support rod of Example 1.
[0070] Figure 4 It is a structural diagram of the ornament of Example 1.
[0071] Figure 5 It is a structural diagram of the solar box and wind-rotating bracket of Example 1.
[0072] Figure 6 It is a structural diagram of the wind-rotating bracket of Example 1.
[0073] Figure 7 It is a structural diagram of the solar box of embodiment 1.
[0074] Figure 8It is a structural diagram of the mounting frame of Example 1.
[0075] Figure 9 2 is a schematic structural diagram of a connecting rod in the first embodiment.
[0076] Figure 10 This is an exploded view of the light source of Example 1.
[0077] Figure 11 This is a schematic structural diagram of a solar wind-driven lamp having three solar boxes in Example 1.
[0078] Figure 12 This is a schematic diagram of the structure of a solar wind-driven lamp fixed to a base in Example 1.
[0079] Figure 13 It is an exploded view of the support rod of Example 2.
[0080] Figure 14 It is a structural diagram of embodiment three.
[0081] Figure 15 It is a structural diagram of embodiment 4.
[0082] Figure 16 It is a structural diagram of the support rod of Example 5.
[0083] Reference numerals:
[0084] 1. Support rod; 11. Inner rod; 110. Threaded portion; 12. Sleeve rod; 13. First conical portion; 14. Insert rod; 140. Second conical portion; 15. Rod body; 16. Clamping piece; 2. Solar box; 20. Fourth through hole; 21. Switch; 3. Wind rotor bracket; 31. Wind rotor blade; 311. Support bar; 312. Rotating blade; 3121. Upper blade; 3122. Middle blade; 3123. Lower blade; 32. Upper bracket; 320, first through hole; 33, lower bracket; 330, second through hole; 34, mounting bracket; 340, third through hole; 341, plate; 342, connecting rod; 3420, wire trough; 343, first positioning portion; 344, threading hole; 4, light source; 40, light wire; 41, lamp holder; 42, lampshade; 43, LED lamp; 5, solar panel; 6, fixing part; 7, bearing; 8, decoration; 9, base; 10, electric slip ring. DETAILED DESCRIPTION
[0085] The present invention will now be further described with reference to the accompanying drawings and specific implementation methods.
[0086] Example 1
[0087] refer to Figures 1 to 12Embodiment 1 provides a solar wind-rotating lamp, comprising a support rod 1, two solar boxes 2 rotatably arranged on the support rod 1, a wind-rotating bracket 3 fixed on the solar box 2, a wind-rotating bracket 3 is provided with a wind-rotating blade 31, a plurality of light sources 4 are provided on the wind-rotating bracket 3, a solar module 5 is provided on the solar box 2, the solar module 5 is connected to the light source 4, the support rod 1 comprises an inner rod 11, a plurality of sleeve rods 12 sleeved on the inner rod 11, the sleeve rod 12 at the lower end of the support rod 1 is non-detachably fixed to the sleeve rod 12, and the sleeve rod 12 at the upper end of the support rod is fixed by a fixing member 6. Solar box 2 is provided with a bearing 7, which is rotatably mounted on support rod 1 and can be clamped between two adjacent sleeve rods 12. A decoration 8 is removably mounted on the top of support rod 1. Decoration 8 is a snowman head. A fixing member 6 is located at the bottom of decoration 8. A threaded portion 110 is located at the top of inner rod 11. Fixing member 6 includes a threaded sleeve located at the bottom of decoration 8. The threaded sleeve can be mounted and threaded on threaded portion 110, and can abut against sleeve rod 12 at the bottom. Solar assembly 5 includes a solar panel and a battery. Solar box 2 is also provided with a switch 21 and a photoresistor. A first conical portion 13 is located at the bottom of support rod 1, and an L-shaped insertion rod 14 is located at the bottom of support rod 1. The insertion rod 14 is provided with a second conical portion 140 at the bottom.
[0088] The wind rotor bracket 3 includes an upper bracket 32, a lower bracket 33, a plurality of wind rotor blades 31 connected between the upper and lower brackets 32, 33, and a mounting bracket 34 disposed between the upper and lower brackets 32, 33. The upper bracket 32 is provided with a first through-hole 320, the lower bracket 33 is provided with a second through-hole 330, and the mounting bracket 34 is provided with a third through-hole 340. The support rod 1 can pass through the first, second, and third through-holes 320, 330, 340. The mounting bracket 34 is fixed to the wind rotor blades 31, the upper bracket 32, or the lower bracket 33. The solar box 2 is fixed to the wind rotor bracket 3. The lower end of the ornament 8 is provided with a fixing member 6, which can be fixed to the inner rod 11 and engage the sleeve rod 12. The wind rotor blade 31 includes a support bar 311 connected to the upper and lower brackets 32, 33, and a rotating vane 312 disposed on the support bar 311. The support bar 311 is an arc-shaped structure, and the wind rotor blade 31 is S-shaped with the middle portion extending outward. Each wind rotor blade 31 is provided with two mounting parts, and the light source 4 of each wind rotor blade 31 is connected in series through a light line 40. The mounting frame 34 includes a plate body 341 and a plurality of connecting rods 342 provided on the plate body 341. The connecting rods 342 are connected to the wind rotor blade 31. The mounting part includes a mounting hole provided on the wind rotor blade 31. The light source 4 includes a lamp holder 41, a lampshade 42 threadedly connected to the lamp holder 41, and an LED lamp 43 connected to the lamp line 40. The lamp line 40 passes through the lamp holder 41, and the LED lamp 43 is located in the lampshade 42.
[0089] In one embodiment, the connecting rod 342 is provided with a first positioning portion 343, through which the light cord 40 is fixed to the connecting rod 342. The plate 341 is provided with a plurality of threading holes 344. The wind rotor blade 31 is provided with a second positioning portion, through which the light cord 40 is fixed to the wind rotor blade 31.
[0090] The above-mentioned first positioning portion 343 and the above-mentioned second positioning portion have the same structure, which is usually a bendable pressure strip that can press the wire. The first positioning portion 343 and the second positioning portion are usually integrally formed with the connecting rod 342 and the wind rotor blade 31, and one end of the pressure strip can also be fixed by welding. The above-mentioned first positioning portion 343 and the above-mentioned second positioning portion may also be not set.
[0091] In one embodiment, the rotor blade 312 includes an upper blade 3121, a middle blade 3122, and a lower blade 3123 integrally formed from top to bottom. The cross-sectional area of the upper blade 3121 gradually decreases toward the top, while the cross-sectional area of the lower blade 3123 gradually decreases toward the bottom. The middle blade 3122 protrudes outward, and its larger area can withstand greater wind force. The entire rotor blade 312 is mainly rotated by the force of the wind acting on the middle blade 3122. Because the areas of the upper blade 3121 and the lower blade 3123 gradually change, the force exerted by the wind along the upper blade 3121 and the lower blade 3123 becomes smaller and smaller, thereby reducing the force exerted on the upper bracket 32 and the lower bracket 33, and achieving more stable rotation. When wind blows obliquely upward or downward, the force exerted by the wind on the entire rotor blade 312 may be uneven. Although the force between the upper blade 3121 or the lower blade 3123 is uneven, the force exerted by the wind on the upper blade 3121 or the lower blade 3123 is small. This structure can greatly reduce the unevenness of the wind force and improve the stability of the rotation process. In another embodiment, the shape of the rotor blade 312 can also be wavy or other blade shapes.
[0092] refer to Figure 5 In one embodiment, the support bar 311 is located on the outer edge of the rotor blade 312. The outer edge of the rotor blade 312 is subject to greater wind force than the inner edge, so the support bar 311 can provide better support and fixation, preventing the rotor blade 312 from deforming. In another embodiment, the support bar 311 can also be located in the middle or inner edge of the rotor blade 312. This structure has relatively poor support effect.
[0093] refer to Figure 7 and Figure 8 In one embodiment, a wire groove 3420 is provided at the bottom of the connecting rod 342, and the lamp wire 40 is arranged in the wire groove 3420. The lamp wire 40 can be hidden in the wire groove 3420, making the entire wind-turning lamp more beautiful.
[0094] The number of wind rotor blades 31 is typically set between four and eight. A line connecting the vertical projection of the upper end point of one wind rotor blade 31 onto the lower bracket 33 and the center of the lower bracket 33 is a first connecting line, and a line connecting the lower end point of the wind rotor blade 31 and the center of the lower bracket 33 is a second connecting line. The angle between the first connecting line and the second connecting line is between 45 and 90 degrees. With this structure, each wind rotor blade 31 is tilted. While the wind direction remains constant at any given time, different positions on the wind rotor blade 31 have different angles of contact with the wind. This not only facilitates wind diversion on the rotor blade 312 but also increases the rotational speed and wind diversion speed of the rotor blade 312.
[0095] The number of the solar boxes 2 can be one, two, three or even more. When the number of the solar boxes 2 is two or more, one of the solar boxes 2 can also be set at the top or bottom of the support rod 1. Figure 11 , the number of solar boxes 2 of the solar wind-driven lamp in this figure is 3.
[0096] The number of the light sources 4 can be one, two, three or even more. The light sources 4 can also be arranged only on the solar box 2 , or respectively on the solar box 2 and the support rod 1 .
[0097] The bearing 7 is typically mounted at the center of the solar box 2 to prevent its center of gravity from shifting during rotation. A fourth through-hole 20 is defined at the center of the solar box 2, and the bearing 7 is mounted therein. In one embodiment, the bearing 7 may be mounted only on the wind-rotating bracket 3, but not on the solar box 2. In another embodiment, both the wind-rotating bracket 3 and the solar box 2 are provided with bearings 7. Each solar box 2 typically has one bearing 7, but two or more may be provided. Each wind-rotating bracket 3 typically has two bearings 7, but one, three, or more may be provided.
[0098] The number of the above-mentioned sleeve rods 12 can be two, three or even more. When the number of solar boxes 2 is two, the number of the sleeve rods 12 is usually three; when the number of solar boxes 2 is three, the number of the sleeve rods 12 is usually four, and so on. The bottom sleeve rod 12 is usually welded and fixed to the inner rod 11, and the solar box 2 and other sleeve rods 12 can be removed from the top; in one embodiment, the top sleeve rod 12 can also be welded and fixed to the inner rod 11, and the solar box 2 and other sleeve rods 12 can be removed from the bottom; in another embodiment, fixing parts 6 can also be set at the top and bottom of the sleeve rod 12, and all the sleeve rods 12 can be removed.
[0099] The fixing member 6 may also be a buckle or other component, and the fixing member 6 may also be provided separately instead of being provided on the decoration 8 .
[0100] The outer contour of the wind-rotating bracket 3 is a spherical or ellipsoidal structure, and the outer contour can also be a triangle, trapezoid or other structures.
[0101] The above-mentioned decorations 8 may also be cartoons, animals, scenery or other structures, and the above-mentioned decorations 8 may also be arranged on the wind-rotating bracket 3 or other positions.
[0102] The solar cell panel mentioned above not only includes a solar cell panel for absorbing light energy, but also includes an inverter, which is a well-known component.
[0103] The photoresistor is a well-known component. The photoresistor can enable the wind-turning lamp to automatically turn on the light at night and automatically turn off the light during the day. The photoresistor can also be omitted.
[0104] The above-mentioned insertion rod 14 may also be unnecessary. The bottom of the above-mentioned support rod 1 is inserted into the ground through the first pointed cone portion 13 for fixation. The first pointed cone portion 13 may also be unnecessary.
[0105] refer to Figure 12 , Figure 12 In the embodiment, a base 9 can be provided at the bottom of the support rod 1, and the support rod 1 is fixed on the base 9.
[0106] The upper bracket 32 and the lower bracket 33 are usually configured as an annular structure, but may also be a rectangular structure, a triangular structure or other structures.
[0107] The solar box 2 is typically positioned so that the upper bearing 7 is centered. This means that the distances between the bearing 7 and the upper bracket 32 and the distances between the bearing 7 and the lower bracket 33 are equal or similar. This allows the center of gravity of the entire wind rotor to be located at the bearing 7, resulting in greater stability during rotation and less prone to localized displacement. Alternatively, the solar box 2 may be positioned closer to the upper bracket 32 or the lower bracket 33. However, this configuration results in different degrees of wobbling between the upper bracket 32 and the lower bracket 33 during rotation, resulting in relatively poor stability. Alternatively, the solar box 2 may be positioned on the upper bracket 32 or the lower bracket 33.
[0108] The light source 4 can also be fixed to the wind rotor blade 31 by means of buckles, bolts or other methods.
[0109] The number of the above-mentioned batteries is usually set to two, and the two batteries are set opposite each other in the solar box 2. Since the mass of the batteries is large, the weight of the two batteries can be evenly distributed on the solar box 2, which prevents uneven force during rotation and makes the rotation more stable.
[0110] The working method of the first embodiment is as follows:
[0111] The support rod 1 is inserted into the ground and fixed, and the whole wind-turning lamp is in the shape of a snowman. When the wind blows, the wind-turning bracket 3 rotates, thereby driving the solar box 2 to rotate. The wind-turning bracket 3, the solar box 2 and the light source 4 form a rotating body, which can rotate along the support rod 1. During the rotation, the lighting effect is good, the whole wind-turning lamp has high rotation stability, is not easy to shake or fall over, and the bearing 7 plays a certain supporting role on the support rod 1. The support rod 1 is not easy to deform, and the structure is more beautiful. When disassembling the wind-turning lamp, first rotate and disassemble the decoration 8 from the top of the support rod 1, and take out the top sleeve rod 12 from the top along the inner rod 11, take out the top solar box 2 and wind-turning blades 31 from the top along the support rod 1, and then take out the middle sleeve rod 12 from the top along the inner rod 11, and finally take out the bottom solar box 2 and wind-turning blades 31 from the top along the support rod 1. The disassembly and assembly is fast and convenient, which is convenient for the packaging, transportation and maintenance of the wind-turning lamp.
[0112] Example 2
[0113] refer to Figure 13 The main difference between the second embodiment and the first embodiment is that the support rod 1 of the second embodiment includes three detachably connected rod bodies 15 , two rod bodies 15 are connected by threads, and the bearing 7 is rotatably fixed between the two rod bodies 15 .
[0114] The rod body 15 can also be connected by buckles or other components, which are well-known components.
[0115] The number of the rods 15 can be two, three or even more, depending on the specific situation.
[0116] Example 3
[0117] refer to Figure 14 The main difference between Example 3 and Example 1 is that the solar box 2 of Example 3 is arranged on the decoration 8, the wind rotor bracket 3 is provided with an electric slip ring 10, the bearing 7 is arranged on the electric slip ring 10, and the solar module 5 and the light source 4 are electrically connected through the electric slip ring 10.
[0118] The electric slip ring 10 is a rotary electrical joint used to transmit power supply and signal power supply during unlimited continuous rotation, and is a well-known component.
[0119] The bearing 7 may also be provided on the wind rotor bracket 3 .
[0120] The third embodiment generally uses only one solar box 2 and solar module 5, which reduces the number of solar boxes 2 and solar modules 5. Moreover, the solar box 2 can be placed on the decoration 8, which has a better effect of absorbing solar energy.
[0121] Example 4
[0122] refer to Figure 15The main difference between the fourth embodiment and the third embodiment is that the solar box 2 of the fourth embodiment is arranged outside.
[0123] The number of the solar boxes 2 in the fourth embodiment can be one, two, three or even more, and each solar box 2 can respectively power one, two or more light sources 4 on the wind-rotating brackets 3 .
[0124] The solar box 2 can also be arranged on the support rod 1 or other components.
[0125] Example 5
[0126] refer to Figure 16 The main difference between Example 5 and Example 1 is that: the support rod 1 of Example 5 is provided with two clamping parts, and the clamping parts include two clamping members 16 detachably provided on the support rod 1, and the bearing 7 is rotatably clamped between the two clamping members 16, and the bearing 7 is rotatably clamped and fixed between the two clamping members 16.
[0127] The above-mentioned clamping member 16 can be configured to be detachably fixed on the support rod 1, and can be fixed on the support rod 1 by screws, buckles or other fixing components.
[0128] The above-mentioned clamping member 16 can also be configured to be fixed on the support rod 1 in an irremovable manner.
[0129] Although the present invention has been specifically shown and described in conjunction with the preferred embodiments, it should be understood by those skilled in the art that various changes in form and details of the present invention are within the scope of protection of the present invention without departing from the spirit and scope of the present invention as defined in the appended claims.
Claims
1. A solar wind-driven lamp, characterized by: The solar box comprises a support rod, at least one solar box, and a wind-rotating bracket arranged on the solar box. The solar box and / or the wind-rotating bracket are provided with at least one light source. The solar box and / or the wind-rotating bracket are provided with at least one bearing. The bearing is rotatably sleeved on the support rod. The solar box is provided with a solar module, and the solar module is connected to the light source. The support rod comprises an inner rod and at least two sleeve rods sleeved on the inner rod. The bearing can be clamped between two adjacent sleeve rods. The sleeve rod is fixed to the inner rod by a fixing member. The wind-rotating bracket and / or the solar box are provided with wind-rotating blades.
2. A solar wind-powered lamp according to claim 1, characterized in that: The bearing is arranged on the solar box, and the wind-rotating bracket is fixed to the solar box.
3. The solar wind-powered lamp according to claim 1, characterized in that: The top of the support rod is detachably provided with an ornament, and the lower end of the ornament is provided with the fixing piece.
4. The solar wind-powered lamp according to claim 3, characterized in that: The top of the inner rod is provided with a threaded portion, and the fixing piece includes a threaded sleeve provided at the lower end of the ornament. The threaded sleeve can be sleeved and threaded on the threaded portion, and the threaded sleeve can abut against the sleeve rod at the lower end.
5. The solar wind-powered lamp according to claim 3, characterized in that: The ornament is a snowman head, the number of the solar box and the wind-rotating bracket is two, and the outer contour of the wind-rotating bracket is a spherical or ellipsoidal structure.
6. The solar wind-powered lamp according to claim 1, characterized in that: The sleeve rod at the lowermost end of the support rod is non-detachably fixed to the sleeve rod, and the sleeve rod at the uppermost end of the support rod is fixed by a fixing piece.
7. The solar wind-powered lamp according to claim 1, characterized in that: The solar energy component comprises a solar cell panel, a storage battery and a photoresistor, and the solar energy box is also provided with a switch.
8. The solar wind-powered lamp according to claim 1, characterized in that: The bottom of the support rod is provided with a first pointed cone portion, the bottom of the support rod is provided with an L-shaped insertion rod, and the bottom of the insertion rod is provided with a second pointed cone portion.
9. The solar wind-powered lamp according to claim 1, characterized in that: The wind rotor bracket includes an upper bracket, a lower bracket, and a mounting bracket arranged between the upper bracket and the lower bracket. Multiple wind rotor blades are connected between the upper bracket and the lower bracket. The mounting bracket is fixed to the wind rotor blades, the upper bracket or the lower bracket.
10. The solar wind-powered lamp according to claim 9, characterized in that: The upper bracket is provided with a first through hole, the lower bracket is provided with a second through hole, the mounting frame is provided with a third through hole, and the support rod can pass through the first through hole, the second through hole and the third through hole.
11. The solar wind-powered lamp according to claim 9, characterized in that: The wind-rotating blade comprises a support bar connected to an upper support and a lower support, and a rotating blade arranged on the support bar.
12. The solar wind-powered lamp according to claim 9, characterized in that: Each of the wind rotor blades is provided with at least two mounting parts, the light sources are detachably fixed on the mounting parts, and the light sources of each wind rotor blade are connected in series via light wires.
13. The solar wind-powered lamp according to claim 12, characterized in that: The mounting portion includes a mounting hole provided on the wind rotor blade, the light source includes a lamp holder, a lampshade threadedly connected to the lamp holder, and an LED lamp connected to a lamp wire, the lamp wire passes through the lamp holder, and the LED lamp is located in the lampshade.
14. The solar wind-powered lamp according to claim 12, characterized in that: The mounting frame includes a plate body and a plurality of connecting rods arranged on the plate body, the connecting rods are connected to the wind rotor blades, the connecting rods are provided with at least one first positioning portion, the lamp wire is fixed to the connecting rod via the first positioning portion, the plate body is provided with a plurality of wire threading holes, the wind rotor blades are provided with at least one second positioning portion, the lamp wire is fixed to the wind rotor blades via the second positioning portion.
15. A solar wind-powered lamp, characterized by: The solar box comprises a support rod, at least one solar box, and a wind-rotating bracket arranged on the solar box. The solar box and / or the wind-rotating bracket are provided with at least one light source. The solar box and / or the wind-rotating bracket are provided with at least one bearing. The solar box is provided with a solar module, and the solar module is connected to the light source. The support rod comprises at least two detachably connected rod bodies, the bearing is rotatably fixed between the two rod bodies, and the wind-rotating bracket and / or the solar box are provided with wind-rotating blades.
16. The solar wind-powered lamp according to claim 15, characterized in that: The bearing is arranged on the solar box, and the wind-rotating bracket is fixed to the solar box.
17. The solar wind-powered lamp according to claim 15, characterized in that: The top of the support rod is provided with an ornament.
18. The solar wind-powered lamp according to claim 17, characterized in that: The ornament is a snowman head, the number of the solar box and the wind-rotating bracket is two, and the outer contour of the wind-rotating bracket is a spherical or ellipsoidal structure.
19. The solar wind-powered lamp according to claim 15, characterized in that: The solar energy component comprises a solar cell panel, a storage battery and a photoresistor, and the solar energy box is also provided with a switch.
20. The solar wind-powered lamp according to claim 15, characterized in that: The bottom of the support rod is provided with a first pointed cone portion, the bottom of the support rod is provided with an L-shaped insertion rod, and the bottom of the insertion rod is provided with a second pointed cone portion.
21. The solar wind-powered lamp according to claim 15, characterized in that: The wind rotor bracket includes an upper bracket, a lower bracket, and a mounting bracket arranged between the upper bracket and the lower bracket. Multiple wind rotor blades are connected between the upper bracket and the lower bracket. The mounting bracket is fixed to the wind rotor blades, the upper bracket or the lower bracket.
22. The solar wind-powered lamp according to claim 21, characterized in that: The upper bracket is provided with a first through hole, the lower bracket is provided with a second through hole, the mounting frame is provided with a third through hole, and the support rod can pass through the first through hole, the second through hole and the third through hole.
23. The solar wind-powered lamp according to claim 21, characterized in that: The wind-rotating blade comprises a support bar connected to an upper support and a lower support, and a rotating blade arranged on the support bar.
24. The solar wind-powered lamp according to claim 21, characterized in that: Each of the wind rotor blades is provided with at least two mounting parts, the light sources are detachably fixed on the mounting parts, and the light sources of each wind rotor blade are connected in series via light wires.
25. The solar wind-powered lamp according to claim 24, characterized in that: The mounting portion includes a mounting hole provided on the wind rotor blade, the light source includes a lamp holder, a lampshade threadedly connected to the lamp holder, and an LED lamp connected to a lamp wire, the lamp wire passes through the lamp holder, and the LED lamp is located in the lampshade.
26. The solar wind-powered lamp according to claim 24, characterized in that: The mounting frame includes a plate body and a plurality of connecting rods arranged on the plate body, the connecting rods are connected to the wind rotor blades, the connecting rods are provided with at least one first positioning portion, the lamp wire is fixed to the connecting rod via the first positioning portion, the plate body is provided with a plurality of wire threading holes, the wind rotor blades are provided with at least one second positioning portion, the lamp wire is fixed to the wind rotor blades via the second positioning portion.
27. A solar wind-powered lamp, characterized by: The invention comprises a support rod, at least one solar box, at least one wind-rotating bracket, and an electric slip ring connected to the wind-rotating bracket. The wind-rotating bracket and / or the electric slip ring are provided with at least one light source. The wind-rotating bracket and / or the electric slip ring are provided with at least one bearing, and the bearing is rotatably sleeved on the support rod. The solar box is provided with a solar module, and the solar module is electrically connected to the light source via the electric slip ring. At least one clamping portion is provided on the outer wall of the support rod, and the bearing is rotatably fixed to the clamping portion. The wind-rotating bracket and / or the electric slip ring are provided with wind-rotating blades.
28. The solar wind-powered lamp according to claim 27, characterized in that: The top of the support rod is provided with an ornament.
29. The solar wind-powered lamp according to claim 28, characterized in that: The solar box is arranged on the decoration.
30. The solar wind-powered lamp according to claim 27, characterized in that: The solar box is arranged on the support rod.
31. The solar wind-powered lamp according to claim 27, characterized in that: The solar box is arranged on the outside.
32. The solar wind-powered lamp according to claim 27, characterized in that: The support rod includes an inner rod and at least two sleeve rods sleeved on the inner rod, the clamping portion is formed between the two sleeve rods, the bearing can be clamped between two adjacent sleeve rods, and the sleeve rod is fixed to the inner rod through a fixing piece.
33. The solar wind-powered lamp according to claim 27, characterized in that: The support rod includes at least two detachably connected rod bodies, the clamping portion is formed between the two rod bodies, and the bearing is rotatably clamped and fixed between the two rod bodies.
34. The solar wind-powered lamp according to claim 27, characterized in that: The clamping portion includes two clamping pieces detachably arranged on the support rod, and the bearing is rotatably clamped between the two clamping pieces.
35. The solar wind-powered lamp according to claim 27, characterized in that: The bearing is arranged on the electric slip ring.
36. The solar wind-powered lamp according to claim 27, characterized in that: The bottom of the support rod is provided with a first pointed cone portion, the bottom of the support rod is provided with an L-shaped insertion rod, and the bottom of the insertion rod is provided with a second pointed cone portion.
37. The solar wind-powered lamp according to claim 27, characterized in that: The wind rotor bracket comprises an upper bracket and a lower bracket, and a plurality of wind rotor blades are connected between the upper bracket and the lower bracket.
38. The solar wind-powered lamp according to claim 37, characterized in that: The upper bracket is provided with a first through hole, the lower bracket is provided with a second through hole, and the support rod can pass through the first through hole and the second through hole.
39. The solar wind-powered lamp according to claim 37, characterized in that: The wind-rotating blade comprises a support bar connected to an upper support and a lower support, and a rotating blade arranged on the support bar.
40. The solar wind-powered lamp according to claim 37, characterized in that: Each of the wind rotor blades is provided with at least two mounting parts, the light sources are detachably fixed on the mounting parts, and the light sources of each wind rotor blade are connected in series via light wires.
41. The solar wind-powered lamp according to claim 40, characterized in that: The mounting portion includes a mounting hole provided on the wind rotor blade, the light source includes a lamp holder, a lampshade threadedly connected to the lamp holder, and an LED lamp connected to a lamp wire, the lamp wire passes through the lamp holder, and the LED lamp is located in the lampshade.
42. A solar wind-powered lamp, characterized by: The solar box comprises a support rod, at least one solar box, and a wind-rotating bracket arranged on the solar box. The solar box and / or the wind-rotating bracket are provided with at least one light source. The solar box and / or the wind-rotating bracket are provided with at least one bearing. The bearing is rotatably sleeved on the support rod. The solar box is provided with a solar module, and the solar module is connected to the light source. At least one clamping portion is provided on the outer wall of the support rod. The bearing is rotatably fixed to the clamping portion. The wind-rotating bracket and / or the solar box are provided with wind-rotating blades.
43. A solar powered wind-driven lamp according to claim 42, characterized in that: The clamping portion includes two clamping pieces detachably arranged on the support rod, and the bearing is rotatably clamped between the two clamping pieces.
44. The solar wind-powered lamp according to claim 42, characterized in that: The top of the support rod is provided with an ornament.
45. A solar wind-powered lamp according to claim 44, characterized in that: The ornament is a snowman head, the number of the solar box and the wind-rotating bracket is two, and the outer contour of the wind-rotating bracket is a spherical or ellipsoidal structure.
46. The solar wind-powered lamp according to claim 42, characterized in that: The solar energy component comprises a solar cell panel, a storage battery and a photoresistor, and the solar energy box is also provided with a switch.
47. The solar wind-powered lamp according to claim 42, characterized in that: The bottom of the support rod is provided with a first pointed cone portion, the bottom of the support rod is provided with an L-shaped insertion rod, and the bottom of the insertion rod is provided with a second pointed cone portion.
48. The solar wind-powered lamp according to claim 42, characterized in that: The wind rotor bracket includes an upper bracket, a lower bracket, and a mounting bracket arranged between the upper bracket and the lower bracket. Multiple wind rotor blades are connected between the upper bracket and the lower bracket. The mounting bracket is fixed to the wind rotor blades, the upper bracket or the lower bracket.
49. A solar wind-powered lamp according to claim 48, characterized in that: The upper bracket is provided with a first through hole, the lower bracket is provided with a second through hole, the mounting frame is provided with a third through hole, and the support rod can pass through the first through hole, the second through hole and the third through hole.
50. The solar wind-powered lamp according to claim 48, characterized in that: The wind-rotating blade comprises a support bar connected to an upper support and a lower support, and a rotating blade arranged on the support bar.
51. The solar wind-powered lamp according to claim 48, characterized in that: Each of the wind rotor blades is provided with at least two mounting parts, the light sources are detachably fixed on the mounting parts, and the light sources of each wind rotor blade are connected in series via light wires.
52. The solar wind-powered lamp according to claim 51, characterized in that: The mounting portion includes a mounting hole provided on the wind rotor blade, the light source includes a lamp holder, a lampshade threadedly connected to the lamp holder, and an LED lamp connected to a lamp wire, the lamp wire passes through the lamp holder, and the LED lamp is located in the lampshade.
53. The solar wind-powered lamp according to claim 51, characterized in that: The mounting frame includes a plate body and a plurality of connecting rods arranged on the plate body, the connecting rods are connected to the wind rotor blades, the connecting rods are provided with at least one first positioning portion, the lamp wire is fixed to the connecting rod via the first positioning portion, the plate body is provided with a plurality of wire threading holes, the wind rotor blades are provided with at least one second positioning portion, the lamp wire is fixed to the wind rotor blades via the second positioning portion.
Citation Information
Patent Citations
Light-emitting wind rotor
CN221243950U