Solar mobile power supply convenient to assemble
By supporting the movement and angle adjustment mechanism, the problems of rapid outdoor assembly of solar mobile power supplies and adjustment of solar panel angles are solved, thereby improving the efficiency of solar energy utilization.
Patent Information
- Application Number
- CN202310871541.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-17
- Publication Date
- 2026-04-10
AI Technical Summary
Existing solar-powered portable power banks are inconvenient to assemble quickly when used outdoors, and the solar panels cannot receive sunlight to the maximum extent.
Employing a support and movement mechanism and an angle adjustment mechanism, the solar panel is quickly adjusted and fixed using components such as a rotating platform, a limit gear plate, a limit bolt, a servo motor, and a hydraulic pump, ensuring that the solar panel receives maximum sunlight.
It enables rapid assembly of solar-powered mobile power supplies and optimal angle adjustment of solar panels, improving the efficiency of solar energy utilization and facilitating outdoor use.
Smart Images

Figure CN121841230A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of mobile power technology, and more specifically to a solar-powered mobile power supply that is easy to assemble. Background Technology
[0002] Patent document (CN103358970A) discloses a solar-powered mobile power supply vehicle. The vehicle includes a vehicle body and a power supply device mounted on the vehicle body. The power supply device includes a solar panel box and a battery pack, with the solar panel box connected to the battery pack. The solar panel box includes a solar cell module and a support assembly, with the support assembly adjusting the height and angle of the solar cell module. The power supply device further includes a mains charger and a generator set. In emergency situations, the power supply vehicle can be directly charged with mains power and generate electricity using the generator set. When there is sunlight outdoors, the vehicle body drags the power supply device, and the solar panel box converts solar energy into electrical energy. In emergency situations without sunlight, it can be charged with mains power or generate electricity using the generator set. It can provide power in various conditions, is suitable for various environments, and saves energy. However, this solar-powered mobile power supply vehicle is inconvenient for operators to quickly assemble the mobile power supply outdoors, and it does not allow the solar panels of the mobile power supply to receive maximum sunlight. Summary of the Invention
[0003] In order to overcome the above-mentioned technical problems, the purpose of this invention is to provide a solar power bank that is easy to assemble, so that the operator can quickly assemble the power bank when using it outdoors. At the same time, it is also convenient for the operator to move the solar power bank, and the solar panel of the solar power bank can receive sunlight to the maximum extent.
[0004] The objective of this invention can be achieved through the following technical solutions:
[0005] A solar-powered portable power supply that is easy to assemble includes a supporting and moving mechanism, an angle adjustment mechanism that is movably mounted on the top of the supporting and moving mechanism, and a power supply body that is fixedly mounted on the supporting and moving mechanism.
[0006] The supporting moving mechanism includes a supporting base, a rotating platform rotatably mounted on the top of the supporting base, a limiting gear disk rotatably mounted on the upper end of the supporting base, a uniformly distributed rack on the arc surface of the limiting gear disk, the limiting gear disk being located between the supporting base and the rotating platform, and an extension platform fixedly mounted on one side surface of the rotating platform, the length of the extension platform being greater than the length of the rotating platform.
[0007] The angle adjustment mechanism includes an angle adjustment frame, on the rear surface of which are fixedly mounted fixed rods that are evenly distributed. A connecting rod is fixedly mounted on the upper end of the angle adjustment frame. A second roller is rotatably mounted on both ends of the connecting rod. Sliding grooves are provided on both inner walls of the angle adjustment frame.
[0008] The power supply body includes two upper sealing plates, two side sealing plates and two front sealing plates. The upper and lower surfaces of the power supply body are composed of two upper sealing plates, the front and rear surfaces of the power supply body are composed of two side sealing plates, and the two side surfaces of the power supply body are composed of two front sealing plates. The upper sealing plates, side sealing plates and front sealing plates are all fixedly installed by snaps. One of the front sealing plates has a vent hole.
[0009] As a further technical solution of the present invention, two parallel limiting plates are fixedly installed at the corner between the extension platform and the rotating platform. A limiting spring is provided between the two limiting plates. Each limiting plate has an insertion hole, and a limiting bolt is inserted into the limiting plate, with the limiting bolt passing through the limiting spring.
[0010] As a further technical solution of the present invention, two inclined first extension support tubes are fixedly installed on the front surface of the support base. Each of the two first extension support tubes is composed of a thick tube and a thin tube. The thick tube and the thin tube are provided with evenly distributed bolt holes. The thin tube is nested in the thick tube through bolts and bolt holes. A first connecting tube is fixedly installed at the end of each of the two first extension support tubes away from the support base. A first support foot is screwed to the lower end of each of the two first connecting tubes. A second extension support tube is fixedly installed on the rear surface of the support base. The structure of the second extension support tube is the same as that of the first extension support tube.
[0011] As a further technical solution of the present invention, a second extension support tube is fixedly installed on the rear surface of the support base, and the structure of the second extension support tube is the same as that of the first extension support tube.
[0012] As a further technical solution of the present invention, a second connecting pipe is fixedly installed at both ends of the second extension support tube, and a second support pad is screwed onto both second connecting pipes. A first roller is rotatably installed on both sides of the support base near the rear end, and a suspension frame is fixedly installed on the upper end of the support base near the rear of the rotating platform.
[0013] As a further technical solution of the present invention, two connecting arms are fixedly installed on one side surface of the extension platform, and each of the two connecting arms is provided with a hanging hole at its upper end. A connector is fixedly installed at the upper end of the extension platform, and a hydraulic pump is fixedly installed at the upper end of the rotating platform. A hydraulic push rod is movably installed on the extension platform through the connector.
[0014] As a further technical solution of the present invention, the angle adjustment frame is slidably mounted with a sliding frame via a sliding groove, and a toothed rail is fixedly mounted on one side surface of the sliding frame. A solar panel is fixedly mounted on the upper end of the sliding frame, and an inclined support frame is fixedly mounted between the solar panel and the sliding frame.
[0015] As a further technical solution of the present invention, a servo motor is fixedly installed on the rear surface of the angle adjustment frame, a gear is rotatably installed on the side of the rear surface of the angle adjustment frame near the servo motor, the main shaft of the servo motor is fixedly installed with the gear, and support pads are movably installed on both sides of the front surface of the angle adjustment frame.
[0016] As a further technical solution of the present invention, the support moving mechanism and the angle adjustment mechanism are movably connected by a hydraulic push rod, the upper end of the hydraulic push rod is movably mounted on a fixed rod, and the power supply body is fixedly mounted on the upper end of the support base.
[0017] The beneficial effects of this invention are:
[0018] 1. The mobile power supply can be fixed by the second extension support tube and the first extension support tube. The first extension support tube is extended and the extension length is determined by adjusting the length of the thin tube nested in the thick tube. Then the position of the first support foot on the first connecting tube is adjusted to fix the first extension support tube. The structure of the second extension support tube is the same as that of the first extension support tube. The second extension support tube is also extended and fixed by the second support foot and the second connecting tube, thereby fixing the support movement mechanism.
[0019] 2. Adjust the direction and angle of the solar panel using the angle adjustment mechanism. After rotating the rotating platform and adjusting the solar panel to the appropriate direction, to prevent the angle adjustment mechanism from rotating again, insert the limit bolt into the limit plate and then use the limit spring for limit buffering. Insert the lower end of the limit bolt into the rack on the limit gear plate to limit the rotation of the rotating platform. Then, drive the gear to rotate through the servo motor, which meshes with the toothed rail on the sliding frame. This drives the sliding frame to slide along the sliding groove on the angle adjustment frame to adjust the solar panel to the appropriate height. Then, drive the hydraulic push rod through the hydraulic pump to push the angle adjustment mechanism. Change the tilt angle of the angle adjustment mechanism through the connecting arm to make the solar panel angle optimal and charge the mobile power supply.
[0020] 3. Rotate the angle adjustment mechanism to the direction of the second roller and the first roller through the rotating platform, then adjust the tilt angle of the angle adjustment mechanism to the ground of the second roller, and pull the mobile power supply through the suspension frame. Attached Figure Description
[0021] The invention will now be further described with reference to the accompanying drawings.
[0022] Figure 1 This is a schematic diagram of the overall structure of a solar-powered mobile power supply that is easy to assemble according to the present invention;
[0023] Figure 2 This is an enlarged structural schematic diagram of the supporting and moving mechanism in a solar-powered mobile power supply that is easy to assemble according to the present invention.
[0024] Figure 3 This is an enlarged structural diagram of one side of the supporting moving mechanism in a solar mobile power supply that is easy to assemble according to the present invention.
[0025] Figure 4 This is an enlarged schematic diagram of the angle adjustment mechanism in a solar-powered mobile power supply that is easy to assemble according to the present invention;
[0026] Figure 5 This is an enlarged structural diagram of one side of the angle adjustment mechanism in a solar-powered portable power supply that is easy to assemble according to the present invention.
[0027] Figure 6 This is an enlarged structural diagram of one side of the main body of the power supply in a solar-powered mobile power supply that is easy to assemble according to the present invention.
[0028] In the diagram: 100, Supporting moving mechanism; 101, Supporting base; 102, Rotating platform; 103, Limiting bolt; 104, Limiting plate; 105, Limiting spring; 106, Limiting gear; 107, First extending support tube; 108, First connecting tube; 109, First supporting foot; 1010, Second extending support tube; 1011, Second connecting tube; 1012, Second supporting foot; 1013, First roller; 1014, Suspension frame; 1015, Connecting arm; 1016, Connecting... 1017. Connector; 1018. Hydraulic push rod; 1019. Hydraulic pump; 1010. Extension table; 200. Angle adjustment mechanism; 201. Angle adjustment frame; 202. Sliding groove; 203. Connecting rod; 204. Second roller; 205. Support pad; 206. Sliding frame; 207. Support frame; 208. Solar panel; 209. Servo motor; 2010. Gear; 300. Power supply body; 301. Top sealing plate; 302. Side sealing plate; 303. Front sealing plate; 304. Vent hole. Detailed Implementation
[0029] The technical solutions of the present invention will be clearly and completely described below with reference to the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.
[0030] Please see Figure 1-5As shown, a solar-powered mobile power supply that is easy to assemble includes a supporting and moving mechanism 100, an angle adjustment mechanism 200 is movably installed above the supporting and moving mechanism 100, and a power supply body 300 is fixedly installed on the supporting and moving mechanism 100.
[0031] The supporting moving mechanism 100 includes a supporting base 101, a rotating platform 102 rotatably mounted on the top of the supporting base 101, a limiting gear 106 rotatably mounted on the upper end of the supporting base 101, the arc surface of the limiting gear 106 is provided with evenly distributed racks, the limiting gear 106 is located between the supporting base 101 and the rotating platform 102, an extension platform 1019 is fixedly mounted on one side surface of the rotating platform 102, the length of the extension platform 1019 is greater than the length of the rotating platform 102, so that an angle can be formed between the extension platform 1019 and the rotating platform 102, and the rotating platform 102 is used to adjust the direction of the angle adjustment mechanism 200;
[0032] Specifically, two parallel limiting plates 104 are fixedly installed at the corner between the extension platform 1019 and the rotating platform 102. A limiting spring 105 is provided between the two limiting plates 104. Each limiting plate 104 has an insertion hole. A limiting bolt 103 is inserted into the limiting plate 104 and passes through the limiting spring 105. When the direction of the angle adjustment mechanism 200 is determined, in order to prevent the angle adjustment mechanism 200 from rotating again, the limiting bolt 103 is inserted into the limiting plate 104, and the limiting spring 105 is used for limiting and buffering. The lower end of the limiting bolt 103 is inserted between the racks on the limiting gear plate 106, thereby restricting the rotation of the rotating platform 102.
[0033] Furthermore, two inclined first extension support tubes 107 are fixedly installed on the front surface of the support base 101. Each of the two first extension support tubes 107 consists of a thick tube and a thin tube, with evenly distributed bolt holes on the thick tube and the thin tube. The thin tube is nested in the thick tube through bolts and bolt holes. A first connecting tube 108 is fixedly installed at the end of each of the two first extension support tubes 107 away from the support base 101. A first support foot 109 is screwed to the lower end of each of the two first connecting tubes 108. A second extension support tube 1010 is fixedly installed on the rear surface of the support base 101. The structure of the second extension support tube 1010 is the same as that of the first extension support tube 107. When the power supply needs to be fixed, the first extension support tube 107 is extended, and the extension length is determined by adjusting the length of the thin tube nested in the thick tube. Then, the position of the first support foot 109 on the first connecting tube 108 is adjusted to fix the first extension support tube 107.
[0034] Furthermore, a second extension support tube 1010 is fixedly installed on the rear surface of the support base 101, and the structure of the second extension support tube 1010 is the same as that of the first extension support tube 107.
[0035] Furthermore, both ends of the second extension support tube 1010 are fixedly installed with second connecting tubes 1011, and both second connecting tubes 1011 are screwed with second support pads 1012. The two sides of the support base 101 are rotatably installed with first rollers 1013 near the rear end. The upper end of the support base 101 is fixedly installed with a suspension bracket 1014 near the rear of the rotating platform 102. Similarly, the structure of the second extension support tube 1010 is the same as that of the first extension support tube 107, and the second extension support tube 1010 is also extended and fixed by the second support pads 1012 and the second connecting tubes 1011.
[0036] Furthermore, two connecting arms 1015 are fixedly installed on one side surface of the extension platform 1019. Each connecting arm 1015 has a hanging hole at its upper end. A connector 1016 is fixedly installed at the upper end of the extension platform 1019. The connecting arm 1015, together with the hydraulic push rod 1017, is used to connect to the angle adjustment mechanism 200. The connecting arm 1015 is movably connected to the angle adjustment mechanism 200 through the bolt hole. A hydraulic pump 1018 is fixedly installed at the upper end of the rotating platform 102. The hydraulic push rod 1017 is movably installed on the extension platform 1019 through the connector 1016. The hydraulic pump 1018 transmits hydraulic pressure through the hydraulic pipe to drive the hydraulic push rod 1017 to move.
[0037] The angle adjustment mechanism 200 includes an angle adjustment frame 201. Fixed rods distributed at equal intervals are fixedly installed on the rear surface of the angle adjustment frame 201. A connecting rod 203 is fixedly installed on the upper end of the angle adjustment frame 201. Second rollers 204 are rotatably installed on both ends of the connecting rod 203. Sliding grooves 202 are provided on both sides of the inner wall of the angle adjustment frame 201. The second rollers 204 are used to cooperate with the first rollers 1013 to move the power bank.
[0038] Specifically, the angle adjustment frame 201 is slidably mounted with a sliding frame 206 via a sliding groove 202. A toothed rail is fixedly mounted on one side surface of the sliding frame 206. A solar panel 208 is fixedly mounted on the upper end of the sliding frame 206. An inclined support frame 207 is fixedly mounted between the solar panel 208 and the sliding frame 206. The solar panel 208 works with the inverter to charge the power bank, thereby greatly improving the power bank's battery life.
[0039] Furthermore, a servo motor 209 is fixedly mounted on the rear surface of the angle adjustment frame 201, and a gear 2010 is rotatably mounted on the side of the rear surface of the angle adjustment frame 201 near the servo motor 209. The main shaft of the servo motor 209 is fixedly mounted to the gear 2010. Support pads 205 are movably mounted on both sides of the front surface of the angle adjustment frame 201. The servo motor 209 drives the gear 2010 to rotate and mesh with the gear rail on the sliding frame 206, thereby driving the sliding frame 206 to slide along the sliding groove 202 on the angle adjustment frame 201.
[0040] The power supply body 300 includes two upper sealing plates 301, two side sealing plates 302, and two front sealing plates 303. The upper and lower surfaces of the power supply body 300 are composed of the two upper sealing plates 301, the front and rear surfaces of the power supply body 300 are composed of the two side sealing plates 302, and the two side surfaces of the power supply body 300 are composed of the two front sealing plates 303. The upper sealing plates 301, side sealing plates 302, and front sealing plates 303 are all fixedly installed by snaps. One of the front sealing plates 303 has a vent hole 304. The power supply body 300 is mainly the outer shell of the mobile power supply. The interior of the power supply body 300 also includes electrical components for charging and discharging.
[0041] The support moving mechanism 100 and the angle adjustment mechanism 200 are movably connected by a hydraulic push rod 1017. The upper end of the hydraulic push rod 1017 is movably mounted on a fixed rod, and the power supply body 300 is fixedly mounted on the upper end of the support base 101.
[0042] Working principle: When the solar power bank is used outdoors, the first extension support tube 107 is extended and the extension length is determined by adjusting the length of the thin tube nested in the thick tube. Then, the position of the first support foot 109 on the first connecting tube 108 is adjusted to fix the first extension support tube 107. The structure of the second extension support tube 1010 is the same as that of the first extension support tube 107. The second extension support tube 1010 is also extended and fixed by the second support pad 1012 and the second connecting tube 1011, thereby fixing the support movement mechanism 100.
[0043] Next, the direction and angle of the solar panel 208 are adjusted by the angle adjustment mechanism 200. After the solar panel 208 is adjusted to the appropriate direction by rotating the rotating platform 102, in order to prevent the angle adjustment mechanism 200 from rotating again, the limit bolt 103 is inserted into the limit plate 104, and the limit spring 105 is used for limit buffering. The lower end of the limit bolt 103 is inserted between the racks on the limit gear plate 106, thereby limiting the rotation of the rotating platform 102. Then, the servo motor 209 drives the gear 2010 to rotate and mesh with the gear rail on the sliding frame 206. This drives the sliding frame 206 to slide along the sliding groove 202 on the angle adjustment frame 201 to adjust the solar panel 208 to the appropriate height. Then, the hydraulic pump 1018 drives the hydraulic push rod 1017 to push the angle adjustment mechanism 200. The tilt angle of the angle adjustment mechanism 200 is changed by the connecting arm 1015 to make the angle of the solar panel 208 optimal, so as to charge the mobile power supply.
[0044] When the power bank needs to be moved, the second extension support tube 1010 and the first extension support tube 107 are retracted. Then, the angle adjustment mechanism 200 is rotated to the direction of the second roller 204 and the first roller 1013 via the rotating platform 102. Next, the tilt angle of the angle adjustment mechanism 200 is adjusted so that the second roller 204 touches the ground, and the power bank is pulled by the suspension frame 1014.
[0045] In the description of this specification, references to terms such as "an embodiment," "example," "specific example," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the invention. In this specification, illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0046] The above description is merely an example and illustration of the present invention. Those skilled in the art can make various modifications or additions to the specific embodiments described, or use similar methods to replace them, as long as they do not deviate from the invention or exceed the scope defined in the claims, all of which should fall within the protection scope of the present invention.
Claims
1. A solar-powered mobile power supply that is easy to assemble, characterized in that, It includes a support and movement mechanism (100), an angle adjustment mechanism (200) is movably mounted above the support and movement mechanism (100), and a power supply body (300) is fixedly mounted on the support and movement mechanism (100); The supporting moving mechanism (100) includes a supporting base (101), a rotating platform (102) is rotatably mounted above the supporting base (101), a limiting gear disk (106) is rotatably mounted at the upper end of the supporting base (101), the arc surface of the limiting gear disk (106) is provided with uniformly distributed racks, the limiting gear disk (106) is located between the supporting base (101) and the rotating platform (102), an extension platform (1019) is fixedly mounted on one side surface of the rotating platform (102), the length of the extension platform (1019) is greater than the length of the rotating platform (102); The angle adjustment mechanism (200) includes an angle adjustment frame (201), with fixed rods evenly distributed on the rear surface of the angle adjustment frame (201), a connecting rod (203) fixedly installed at the upper end of the angle adjustment frame (201), and second rollers (204) rotatably installed at both ends of the connecting rod (203). Sliding grooves (202) are provided on both inner walls of the angle adjustment frame (201). The power supply body (300) includes two upper sealing plates (301), two side sealing plates (302) and two front sealing plates (303). The upper and lower surfaces of the power supply body (300) are composed of two upper sealing plates (301), the front and rear surfaces of the power supply body (300) are composed of two side sealing plates (302), and the two side surfaces of the power supply body (300) are composed of two front sealing plates (303). The upper sealing plates (301), side sealing plates (302) and front sealing plates (303) are all fixedly installed by snaps. One of the front sealing plates (303) has a vent hole (304).
2. The easily assembled solar-powered mobile power supply according to claim 1, characterized in that, Two parallel limiting plates (104) are fixedly installed at the corner between the extension platform (1019) and the rotating platform (102). A limiting spring (105) is provided between the two limiting plates (104). Each of the two limiting plates (104) has an insertion hole. A limiting bolt (103) is inserted into the limiting plate (104), and the limiting bolt (103) passes through the limiting spring (105).
3. A solar-powered mobile power supply that is easy to assemble according to claim 2, characterized in that, Two inclined first extension support tubes (107) are fixedly installed on the front surface of the support base (101). Both first extension support tubes (107) are composed of a thick tube and a thin tube. The thick tube and the thin tube are provided with evenly distributed bolt holes. The thin tube is nested in the thick tube through bolts and bolt holes. A first connecting tube (108) is fixedly installed at the end of each of the two first extension support tubes (107) away from the support base (101). A first support foot (109) is screwed to the lower end of each of the two first connecting tubes (108). A second extension support tube (1010) is fixedly installed on the rear surface of the support base (101). The structure of the second extension support tube (1010) is the same as that of the first extension support tube (107).
4. A solar-powered mobile power supply that is easy to assemble according to claim 1, characterized in that, The second extension support tube (1010) is fixedly installed on the rear surface of the support base (101), and the structure of the second extension support tube (1010) is the same as that of the first extension support tube (107).
5. A solar-powered mobile power supply that is easy to assemble according to claim 4, characterized in that, The second extension support tube (1010) is fixedly installed with a second connecting tube (1011) at both ends. The two second connecting tubes (1011) are screwed with a second support pad (1012). The two sides of the support base (101) are rotatably installed with a first roller (1013) near the rear end. The upper end of the support base (101) is fixedly installed with a suspension frame (1014) near the rear of the rotating platform (102).
6. A solar-powered mobile power supply that is easy to assemble according to claim 1, characterized in that, Two connecting arms (1015) are fixedly installed on one side surface of the extension platform (1019). Each connecting arm (1015) has a hanging hole at its upper end. A connector (1016) is fixedly installed at the upper end of the extension platform (1019). A hydraulic pump (1018) is fixedly installed at the upper end of the rotating platform (102). A hydraulic push rod (1017) is movably installed on the extension platform (1019) through the connector (1016).
7. A solar-powered mobile power supply that is easy to assemble according to claim 1, characterized in that, The angle adjustment frame (201) is slidably mounted with a sliding frame (206) via a sliding groove (202). A toothed rail is fixedly mounted on one side surface of the sliding frame (206). A solar panel (208) is fixedly mounted on the upper end of the sliding frame (206). An inclined support frame (207) is fixedly mounted between the solar panel (208) and the sliding frame (206).
8. A solar-powered mobile power supply that is easy to assemble according to claim 7, characterized in that, A servo motor (209) is fixedly mounted on the rear surface of the angle adjustment frame (201). A gear (2010) is rotatably mounted on the rear surface of the angle adjustment frame (201) near the servo motor (209). The main shaft of the servo motor (209) is fixedly mounted to the gear (2010). Support pads (205) are movably mounted on both sides of the front surface of the angle adjustment frame (201).
9. A solar-powered mobile power supply that is easy to assemble according to claim 1, characterized in that, The support moving mechanism (100) and the angle adjustment mechanism (200) are movably connected by a hydraulic push rod (1017). The upper end of the hydraulic push rod (1017) is movably mounted on a fixed rod, and the power supply body (300) is fixedly mounted on the upper end of the support base (101).
Citation Information
Patent Citations
Solar mobile power van
CN103358970A