Energy-saving environment-friendly energy storage street lamp

By introducing an adjustable mounting section and a reset spring design into the energy-saving and environmentally friendly energy storage street light, the safety hazards of aerial work platform maintenance and the low efficiency of solar panel replacement have been solved, realizing a safe and efficient maintenance and replacement process.

CN121828656AInactive Publication Date: 2026-04-10CHANGZHOU GREEN LIGHTING
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-03-12
Publication Date
2026-04-10
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The maintenance or replacement of controllers, batteries, solar panels and LED lights of existing energy-saving and environmentally friendly energy storage street lights requires the use of aerial work platforms, which poses safety hazards and is inefficient. In addition, the replacement of solar panels requires disassembling and tightening multiple screws, which increases the labor intensity.

Method used

It adopts an adjustable mounting part, an anti-rotation positioning part, an elastic blocking part, an auxiliary reinforcement part, and an extrusion connection part. Through the rotation function of the circular mounting rod and the design of the return spring, it enables convenient maintenance or replacement of the controller, battery, solar panel, and LED light, reducing safety hazards and improving efficiency.

Benefits of technology

It reduces safety hazards during maintenance and replacement, improves work efficiency, reduces reliance on aerial work platforms, and simplifies the process of replacing solar panels.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides an energy-saving environment-friendly energy storage street lamp, and relates to the technical field of street lamps. A solar panel is mounted on the adjustable mounting part; an anti-rotation positioning part is mounted on the rear side of the adjustable mounting part; two groups of elastic blocking parts are mounted on the adjustable mounting part; two rows of auxiliary reinforcing parts are mounted on the adjustable mounting part, and the two rows of auxiliary reinforcing parts are used for positioning a solar panel; an extrusion connecting part is mounted on the adjustable mounting part, and the extrusion connecting part is used for moving the two rows of auxiliary reinforcing parts; the circular mounting rod has a rotating function, so that the controller, the battery, the solar panel and the LED lamp are convenient to maintain or replace, the potential safety hazard during maintenance and replacement is reduced, and the maintenance and replacement efficiency is improved; the problem that when a controller, a battery, a solar panel and an LED lamp are damaged and need to be maintained or replaced, a worker needs to carry out maintenance or replacement work with the help of an overhead working truck is solved.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of street lamps, more particularly, relates to an energy-saving and environment-friendly energy storage street lamp. BACKGROUND

[0002] The energy-saving and environment-friendly energy storage street lamp is a new type of lighting system integrating photovoltaic power generation, energy storage and intelligent control; it absorbs light energy during the day through a solar panel and stores it in a lithium battery, and realizes high-efficiency lighting through an LED light source at night without external power supply; compared with traditional street lamps, the energy-saving rate can reach more than 60%, and it is completely zero carbon emission; such street lamps are particularly suitable for scenes such as parks, communities and rural roads, which can not only reduce the municipal power load, but also reduce the cable laying cost.

[0003] The currently used energy-saving and environment-friendly energy storage street lamp still has the following problems: 1. When the controller, battery, solar panel and LED lamp are damaged and need to be repaired or replaced, the worker needs to use a high-altitude working vehicle to repair or replace the work, on the one hand, there is a certain safety hazard when repairing or replacing through the high-altitude working vehicle, on the other hand, the high-altitude working vehicle also occupies a lot of time during lifting; 2. Generally, the solar panel is fixed by multiple screws, when the solar panel needs to be replaced, the worker needs to disassemble multiple screws, and after the solar panel is replaced, the worker also needs to tighten multiple screws, which affects the replacement efficiency of the solar panel and increases the labor intensity of the worker. SUMMARY

[0004] The energy-saving and environment-friendly energy storage street lamp provided by the embodiment of the present application has an adjustable mounting part, an anti-rotation positioning part, an elastic blocking part, an auxiliary reinforcing part and an extrusion connecting part; the circular mounting rod has a rotating function, which facilitates the repair or replacement of the controller, battery, solar panel and LED lamp, reduces the safety hazard during repair and replacement, and improves the repair and replacement efficiency; when the installation frame drives the two rows of inclined extrusion frames to slide, the two rows of auxiliary reinforcing rods can automatically move outward under the action of the two rows of reset springs c, so that the inner ends of the two rows of auxiliary reinforcing rods are automatically separated from the solar panel; when the installation frame is reset, the two rows of inclined extrusion frames can extrude the two rows of auxiliary reinforcing rods to move inward, so that the inner ends of the two rows of auxiliary reinforcing rods are automatically in contact with the solar panel; the problems that the worker needs to use a high-altitude working vehicle to repair or replace the work and needs to disassemble and tighten multiple screws when replacing the solar panel are solved.

[0005] The application provides an energy-saving and environment-friendly energy storage street lamp, which comprises an adjustable mounting part, a solar panel mounted on the adjustable mounting part, an anti-rotation positioning part mounted on the rear side of the adjustable mounting part and used for positioning the adjustable mounting part, two groups of elastic blocking parts mounted on the adjustable mounting part, two rows of auxiliary reinforcing parts mounted on the adjustable mounting part and used for positioning the solar panel, and an extrusion connecting part mounted on the adjustable mounting part and used for moving the two rows of auxiliary reinforcing parts. The adjustable mounting part comprises a mounting bottom plate, a circular connecting shaft and an adjustable mounting seat, two angle limiting holes are formed in the mounting bottom plate, the circular connecting shaft is rotationally mounted on the mounting bottom plate, and the adjustable mounting seat is fixedly mounted on the outside of the circular connecting shaft. The anti-rotation positioning part comprises a rectangular positioning seat, a V-shaped positioning frame and a positioning bolt, the rectangular positioning seat is fixedly mounted on the top of the mounting bottom plate, the V-shaped positioning frame is fixedly mounted on the rear side of the rectangular positioning seat, and the positioning bolt is slidingly mounted on the rectangular positioning seat and the V-shaped positioning frame and the front end of the positioning bolt is inserted into the adjustable mounting seat.

[0006] In at least some embodiments, the adjustable mounting part further comprises a circular limiting rod, a circular mounting rod and a mounting bracket, the circular limiting rod is fixedly mounted in the inside of the adjustable mounting seat and is inserted into the two angle limiting holes, the circular mounting rod is fixedly mounted on the top of the adjustable mounting seat, and the mounting bracket is fixedly mounted on the top end of the circular mounting rod.

[0007] In at least some embodiments, the anti-rotation positioning part further comprises a force reset ring a and a reset spring a, the force reset ring a is fixedly mounted on the outside of the positioning bolt, and the reset spring a is sleeved on the outside of the positioning bolt and located between the V-shaped positioning frame and the force reset ring a.

[0008] In at least some embodiments, the elastic blocking part comprises an L-shaped mounting plate a and an elastic blocking rod, the L-shaped mounting plate a is fixedly mounted on the mounting bracket, the elastic blocking rod is slidingly mounted on the L-shaped mounting plate a, the inner end of the elastic blocking rod is provided with a rounded corner, and the inner end of the elastic blocking rod is in contact with the solar panel.

[0009] In at least some embodiments, the elastic blocking part further comprises a force reset ring b and a reset spring b, the force reset ring b is fixedly mounted on the outside of the elastic blocking rod, and the reset spring b is sleeved on the outside of the elastic blocking rod and located between the L-shaped mounting plate a and the force reset ring b.

[0010] In at least some embodiments, the auxiliary reinforcement includes: an L-shaped mounting plate b and an auxiliary reinforcement rod; the L-shaped mounting plate b is fixedly mounted on the mounting bracket; the auxiliary reinforcement rod is slidably mounted on the L-shaped mounting plate b, and the inner end of the auxiliary reinforcement rod is in contact with the solar panel.

[0011] In at least some embodiments, the auxiliary reinforcement part further includes: a force-resetting ring c and a reset spring c; the force-resetting ring c is fixedly installed on the outside of the auxiliary reinforcement rod; the reset spring c is sleeved on the outside of the auxiliary reinforcement rod, and the reset spring c is located between the L-shaped mounting plate b and the force-resetting ring c.

[0012] In at least some embodiments, the extrusion connection includes: a U-shaped mounting bracket, circular guide rods, a mounting frame, and an auxiliary guide shaft; the U-shaped mounting bracket is fixedly mounted on the mounting bracket; there are two circular guide rods, and the two circular guide rods are slidably mounted on the U-shaped mounting bracket; the mounting frame is fixedly mounted on the rear side of the two circular guide rods; the auxiliary guide shaft is fixedly mounted on the rear side of the mounting frame, and the auxiliary guide shaft is also slidably connected to the mounting bracket.

[0013] In at least some embodiments, the extrusion connection further includes: a limiting retaining ring, a return spring d, and an inclined extrusion frame; there are two limiting retaining rings, and the two limiting retaining rings are fixedly installed at the front ends of the two circular guide rods; there are two return springs d, and the two return springs d are sleeved on the outside of the two circular guide rods, and the two return springs d are located between the U-shaped mounting bracket and the mounting frame; there are two rows of inclined extrusion frames, and the two rows of inclined extrusion frames are fixedly installed on the top of the mounting frame, and the two rows of inclined extrusion frames also contact the outer ends of the two rows of auxiliary reinforcing rods.

[0014] In at least some embodiments, a controller is fixedly mounted on the mounting bracket, and the controller is also electrically connected to the solar panel; a battery is fixedly mounted on the mounting frame, and the battery is also electrically connected to the controller; an LED light is fixedly mounted on the mounting bracket, and the LED light is also electrically connected to the controller.

[0015] Compared with the prior art, the present invention has the following beneficial effects: 1. The circular connecting shaft and adjustable mounting base of this invention enable the circular mounting rod to rotate, facilitating the maintenance or replacement of the controller, battery, solar panel, and LED lights, reducing safety hazards during maintenance and replacement, and improving maintenance and replacement efficiency; the two angle limiting holes and the circular limiting rod limit the rotation angle of the adjustable mounting base, ensuring that the mounting bracket does not contact the ground and avoiding collisions. In addition, the positioning bolt is arranged to limit the adjustable mounting seat; the reset spring is arranged to enable the positioning bolt to separate from the adjustable mounting seat only after being pulled, thereby avoiding natural separation of the positioning bolt from the adjustable mounting seat.

[0016] 2. The two elastic blocking rods are arranged to elastically block the solar panel, so that the solar panel can be in a stable state after being connected to the mounting bracket; when the staff installs or removes the solar panel, the solar panel can push the two elastic blocking rods to move outward, and the two elastic blocking rods can also be automatically reset inward under the action of the two reset springs b when the solar panel is removed or the solar panel is installed.

[0017] 3. The solar panel can absorb light energy during the day and store it in the battery, and realize lighting through the LED lamp at night without external power supply; the two rows of auxiliary reinforcing rods are arranged to assist in reinforcing the solar panel, so that the solar panel is prevented from separating from the mounting bracket in windy weather. In addition, when the circular mounting rod rotates, the angle of the battery also changes; at this time, the mounting frame can slide under the weight of the battery, so that the two reset springs d are compressed; when the mounting frame drives the two rows of inclined extrusion frames to slide, the two rows of auxiliary reinforcing rods can automatically move outward under the action of the two rows of reset springs c, so that the inner ends of the two rows of auxiliary reinforcing rods automatically separate from the solar panel. In addition, when the angle of the circular mounting rod is reset, the angle of the battery is also reset, so that the mounting frame is reset under the action of the two reset springs d; when the mounting frame is reset, the two rows of inclined extrusion frames can extrude the two rows of auxiliary reinforcing rods to move inward, so that the inner ends of the two rows of auxiliary reinforcing rods automatically contact the solar panel; the auxiliary guide shaft is arranged to guide the mounting frame. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings of the embodiments will be briefly introduced below.

[0019] The drawings in the following description only relate to some embodiments of the present application, and are not limited to the present application.

[0020] In the drawings: Figure 1 The three-dimensional structure schematic diagram of the present application is shown; Figure 2 The front view perspective structure schematic diagram of Figure 1 is shown; Figure 3 The structure schematic diagram of the adjustable mounting part and the anti-rotation positioning part is shown; Figure 4 The local enlarged structure schematic diagram of the A area in Figure 3 is shown; Figure 5 a structure diagram of the bottom perspective view of the battery is shown; Figure 1 a structure diagram of the local enlarged view of the B region is shown; Figure 6 a structure diagram of the extrusion connecting part and the battery is shown; Figure 7 a structure diagram of the bottom perspective view of the battery is shown; Figure 1 a structure diagram of the bottom perspective view of the battery is shown; Figure 8 a structure diagram of the local enlarged view of the C region is shown; Figure 7 a structure diagram of the local enlarged view of the C region is shown; Figure 9 a structure diagram of the local enlarged view of the D region is shown. Figure 1 a structure diagram of the local enlarged view of the D region is shown.

[0021] List of reference signs: 100, adjustable mounting part; 101, mounting bottom plate; 1011, angle limiting hole; 102, circular connecting shaft; 103, adjustable mounting seat; 104, circular limiting rod; 105, circular mounting rod; 106, mounting bracket; 200, anti-rotation positioning part; 201, rectangular positioning seat; 202, V-shaped positioning frame; 203, positioning bolt; 204, force reset ring a; 205, reset spring a; 300, elastic blocking part; 301, L-shaped mounting plate a; 302, elastic blocking rod; 303, force reset ring b; 304, reset spring b; 400, auxiliary reinforcing part; 401, L-shaped mounting plate b; 402, auxiliary reinforcing rod; 403, force reset ring c; 404, reset spring c; 500, extrusion connecting part; 501, U-shaped mounting frame; 502, circular guide rod; 503, mounting frame; 504, auxiliary guide shaft; 505, limiting check ring; 506, reset spring d; 507, inclined extrusion frame; 600, controller; 700, battery; 800, solar panel; 900, LED lamp. DETAILED DESCRIPTION

[0022] In order to make the purpose, scheme and advantages of the technical solutions of the present application clearer, the technical solutions of the embodiments of the present application will be described clearly and completely below in combination with the drawings of the specific embodiments of the present application. Unless otherwise specified, the terms used herein have the meanings commonly used in the art. The same reference signs in the drawings represent the same components.

[0023] Embodiment: please refer to Figures 1 to 9As shown: the present application provides a kind of energy-saving type environmental protection energy storage street lamp, comprising: adjustable installation part 100;Solar panel 800 is installed on adjustable installation part 100;Anti-rotation positioning part 200 is installed on the rear side of adjustable installation part 100, and anti-rotation positioning part 200 is used to position adjustable installation part 100;Two groups of elastic blocking parts 300 are installed on adjustable installation part 100;Two rows of auxiliary reinforcing parts 400 are installed on adjustable installation part 100, and two rows of auxiliary reinforcing parts 400 are used to position solar panel 800;Extrusion connecting part 500 is installed on adjustable installation part 100, and extrusion connecting part 500 is used to move two rows of auxiliary reinforcing parts 400.

[0024] As shown in the embodiments of the present application, Figure 3 and Figure 4 Adjustable installation part 100 includes: installation base plate 101, round connecting shaft 102 and adjustable mounting seat 103;Two angle limiting holes 1011 are formed in installation base plate 101;Round connecting shaft 102 is rotatably installed on installation base plate 101;Adjustable mounting seat 103 is fixedly installed on the outside of round connecting shaft 102;Adjustable installation part 100 further includes: round limiting rod 104, round mounting rod 105 and installation support 106;Round limiting rod 104 is fixedly installed in the inside of adjustable mounting seat 103, and round limiting rod 104 is inserted into two angle limiting holes 1011;Round mounting rod 105 is fixedly installed on the top of adjustable mounting seat 103;Installation support 106 is fixedly installed on the top end of round mounting rod 105; Anti-rotation positioning part 200 includes: rectangular positioning seat 201, V-shaped positioning rack 202 and positioning bolt 203;Rectangular positioning seat 201 is fixedly installed on the top of installation base plate 101;V-shaped positioning rack 202 is fixedly installed on the rear side of rectangular positioning seat 201;Positioning bolt 203 is slidably installed on rectangular positioning seat 201 and V-shaped positioning rack 202, and the front end of positioning bolt 203 is inserted into adjustable mounting seat 103;Anti-rotation positioning part 200 further includes: force reset ring a 204 and reset spring a 205;Force reset ring a 204 is fixedly installed on the outside of positioning bolt 203;Reset spring a 205 is sleeved on the outside of positioning bolt 203, and reset spring a 205 is located between V-shaped positioning rack 202 and force reset ring a 204; Specific functions are that: the circular connecting shaft 102 is rotatably installed on the installation bottom plate 101, the adjustable mounting seat 103 is fixedly installed outside the circular connecting shaft 102, and the circular mounting rod 105 is fixedly installed on the top of the adjustable mounting seat 103, so that the circular mounting rod 105 has a rotating function, and the controller 600, the battery 700, the solar panel 800 and the LED lamp 900 can be conveniently maintained or replaced, the safety hidden danger during maintenance and replacement is reduced, and the maintenance and replacement efficiency is improved; and because the two angle limiting holes 1011 are formed in the installation bottom plate 101, the circular limiting rod 104 is fixedly installed inside the adjustable mounting seat 103, and the circular limiting rod 104 is inserted into the two angle limiting holes 1011, the rotating angle of the adjustable mounting seat 103 is limited, and it is ensured that the installation bracket 106 does not contact the ground, so that the installation bracket 106 is prevented from colliding; In addition, because the positioning pin 203 is slidably installed on the rectangular positioning seat 201 and the V-shaped positioning frame 202, the front end of the positioning pin 203 is inserted into the adjustable mounting seat 103, and the adjustable mounting seat 103 is limited; and because the reset spring a 205 is sleeved outside the positioning pin 203, and the reset spring a 205 is located between the V-shaped positioning frame 202 and the stress reset ring a 204, the positioning pin 203 can only be separated from the adjustable mounting seat 103 after being pulled, so that the positioning pin 203 and the adjustable mounting seat 103 are prevented from naturally falling off.

[0025] In the embodiment of the present disclosure, as shown in Figure 5 The elastic blocking part 300 includes an L-shaped mounting plate a 301 and an elastic blocking rod 302; the L-shaped mounting plate a 301 is fixedly installed on the installation bracket 106; the elastic blocking rod 302 is slidably installed on the L-shaped mounting plate a 301, and the inner end of the elastic blocking rod 302 is provided with a rounded corner, and the inner end of the elastic blocking rod 302 is in contact with the solar panel 800; the elastic blocking part 300 further includes a stress reset ring b 303 and a reset spring b 304; the stress reset ring b 303 is fixedly installed outside the elastic blocking rod 302; the reset spring b 304 is sleeved outside the elastic blocking rod 302, and the reset spring b 304 is located between the L-shaped mounting plate a 301 and the stress reset ring b 303; The specific action is that: because the two L-shaped mounting plates a301 are fixedly installed on the mounting bracket 106, and the two elastic blocking rods 302 are slidably installed on the two L-shaped mounting plates a301, and the inner ends of the two elastic blocking rods 302 are in contact with the solar panel 800, the elastic blocking rods 302 play an elastic blocking role on the solar panel 800, so that the solar panel 800 can be in a stable state after being connected with the mounting bracket 106; and because the inner ends of the two elastic blocking rods 302 are provided with rounded corners, and the two reset springs b304 are sleeved outside the two elastic blocking rods 302, and the two reset springs b304 are located between the two L-shaped mounting plates a301 and the two stress reset rings b303, when the staff installs or removes the solar panel 800, the solar panel 800 can push the two elastic blocking rods 302 to move outward, and when the solar panel 800 is removed or the installation of the solar panel 800 is completed, the two elastic blocking rods 302 can also be automatically reset inward under the action of the two reset springs b304.

[0026] In the embodiments of the present disclosure, as shown in Figure 6 、 Figure 8 and Figure 9 , the auxiliary reinforcing part 400 comprises: an L-shaped mounting plate b401 and an auxiliary reinforcing rod 402; the L-shaped mounting plate b401 is fixedly installed on the mounting bracket 106; the auxiliary reinforcing rod 402 is slidably installed on the L-shaped mounting plate b401, and the inner end of the auxiliary reinforcing rod 402 is in contact with the solar panel 800; the auxiliary reinforcing part 400 further comprises: a stress reset ring c403 and a reset spring c404; the stress reset ring c403 is fixedly installed outside the auxiliary reinforcing rod 402; the reset spring c404 is sleeved outside the auxiliary reinforcing rod 402, and the reset spring c404 is located between the L-shaped mounting plate b401 and the stress reset ring c403; The extrusion connection 500 includes: a U-shaped mounting bracket 501, circular guide rods 502, a mounting frame 503, and an auxiliary guide shaft 504; the U-shaped mounting bracket 501 is fixedly mounted on the mounting bracket 106; two circular guide rods 502 are provided, and the two circular guide rods 502 are slidably mounted on the U-shaped mounting bracket 501; the mounting frame 503 is fixedly mounted on the rear side of the two circular guide rods 502; the auxiliary guide shaft 504 is fixedly mounted on the rear side of the mounting frame 503, and the auxiliary guide shaft 504 is also slidably connected to the mounting bracket 106; the extrusion connection 500 also includes: a limiting retaining ring 505, a reset ring, and a resetting ring. Spring d506 and inclined extrusion frame 507; two limiting retaining rings 505 are provided, and the two limiting retaining rings 505 are fixedly installed at the front end of the two circular guide rods 502; two return springs d506 are provided, and the two return springs d506 are sleeved on the outside of the two circular guide rods 502, and the two return springs d506 are located between the U-shaped mounting bracket 501 and the mounting frame 503; two rows of inclined extrusion frames 507 are provided, and the two rows of inclined extrusion frames 507 are fixedly installed on the top of the mounting frame 503, and the two rows of inclined extrusion frames 507 also contact the outer ends of the two rows of auxiliary reinforcing rods 402; A controller 600 is fixedly mounted on the mounting bracket 106, and the controller 600 is also electrically connected to the solar panel 800; a battery 700 is fixedly mounted on the mounting frame 503, and the battery 700 is also electrically connected to the controller 600; an LED light 900 is fixedly mounted on the mounting bracket 106, and the LED light 900 is also electrically connected to the controller 600. Its specific functions are as follows: Because the controller 600 is electrically connected to the solar panel 800, the battery 700 is electrically connected to the controller 600, and the LED light 900 is electrically connected to the controller 600, the solar panel 800 can absorb light energy during the day and store it in the battery 700. At night, it can provide lighting through the LED light 900 without the need for external power grid supply. Furthermore, because the two rows of L-shaped mounting plates b401 are fixedly mounted on the mounting bracket 106, and the two rows of auxiliary reinforcing rods 402 are slidably mounted on the two rows of L-shaped mounting plates b401, and the inner ends of the two rows of auxiliary reinforcing rods 402 are in contact with the solar panel 800, they play an auxiliary reinforcing role for the solar panel 800, preventing the solar panel 800 from separating from the mounting bracket 106 in windy weather. In addition, since the two circular guide rods 502 are slidingly installed on the U-shaped mounting frame 501, and the mounting frame 503 is fixedly installed at the rear side of the two circular guide rods 502, and the battery 700 is fixedly installed on the mounting frame 503, when the circular mounting rod 105 rotates, the angle of the battery 700 also changes; at this time, the mounting frame 503 can slide under the weight of the battery 700, so that the two reset springs d506 are compressed; again, since the two rows of reset springs c404 are externally sleeved on the two rows of auxiliary reinforcing rods 402, and the two rows of reset springs c404 are located between the two rows of L-shaped mounting plates b401 and the two rows of stress reset rings c403, when the mounting frame 503 drives the two rows of inclined extrusion frames 507 to slide, the two rows of auxiliary reinforcing rods 402 can automatically move outward under the action of the two rows of reset springs c404, so that the inner ends of the two rows of auxiliary reinforcing rods 402 are automatically separated from the solar panel 800; In addition, since the two reset springs d506 are externally sleeved on the two circular guide rods 502, and the two reset springs d506 are located between the U-shaped mounting frame 501 and the mounting frame 503, when the angle of the circular mounting rod 105 resets, the angle of the battery 700 also resets, so that the mounting frame 503 resets under the action of the two reset springs d506; when the mounting frame 503 resets, the two rows of inclined extrusion frames 507 can extrude the two rows of auxiliary reinforcing rods 402 to move inward, so that the inner ends of the two rows of auxiliary reinforcing rods 402 are automatically in contact with the solar panel 800; again, since the auxiliary guide shaft 504 is fixedly installed at the rear side of the mounting frame 503, and the auxiliary guide shaft 504 is also slidingly connected with the mounting bracket 106, the mounting frame 503 is guided.

[0027] The specific use mode and effect of the embodiment are as follows: When the application is used, first, the staff connects the mounting base 101 with the concrete base through the expansion bolts, the solar panel 800 can absorb light energy in the daytime and store it in the battery 700, and the LED lamp 900 can realize lighting at night without external power supply; when the controller 600, the battery 700, the solar panel 800 and the LED lamp 900 need to be repaired or replaced, the staff pulls the positioning bolt 203 backward, the front end of the positioning bolt 203 is separated from the adjustable mounting seat 103, then the circular mounting rod 105 is slowly rotated, the controller 600, the battery 700, the solar panel 800 and the LED lamp 900 are repaired or replaced, the safety hidden danger during repair and replacement is reduced, and the repair and replacement efficiency is improved; the setting of the two angle limiting holes 1011 and the circular limiting rod 104 limits the rotation angle of the adjustable mounting seat 103, ensures that the mounting bracket 106 does not contact the ground, and avoids collision of the mounting bracket 106; when the staff removes the solar panel 800, the solar panel 800 can push the two elastic blocking rods 302 to move outward, when the solar panel 800 is removed, the two elastic blocking rods 302 can also be automatically reset inward under the action of the two reset springs b 304; when the circular mounting rod 105 rotates, the angle of the battery 700 also changes; at this time, the installation frame 503 can slide under the weight of the battery 700, so that the two reset springs d 506 are compressed; when the installation frame 503 drives the two rows of inclined extrusion frames 507 to slide, the two rows of auxiliary reinforcing rods 402 can automatically move outward under the action of the two rows of reset springs c 404, so that the inner ends of the two rows of auxiliary reinforcing rods 402 are automatically separated from the solar panel 800. After the repair or replacement is completed, the staff resets the angle of the circular mounting rod 105, ensures that the front end of the positioning bolt 203 is inserted into the adjustable mounting seat 103, when the angle of the circular mounting rod 105 is reset, the angle of the battery 700 is also reset, so that the installation frame 503 is reset under the action of the two reset springs d 506, when the installation frame 503 is reset, the two rows of inclined extrusion frames 507 can extrude the two rows of auxiliary reinforcing rods 402 to move inward, so that the inner ends of the two rows of auxiliary reinforcing rods 402 are automatically in contact with the solar panel 800.

[0028] In this paper, the following points need attention: 1. The drawings of the embodiments of the disclosure only relate to the structures involved in the embodiments of the disclosure, and other structures can refer to the usual design.

[0029] 2. In the case of no conflict, the embodiments of the disclosure and the features in the embodiments can be combined to obtain new embodiments.

[0030] The above merely describes specific embodiments of the present disclosure, but the protection scope of the present disclosure is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical scope disclosed by the present disclosure, which should be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.

Claims

1. An energy-saving and environment-friendly energy storage street lamp, comprising: The adjustable mounting part (100) is characterized in that the solar panel (800) is mounted on the adjustable mounting part (100); the anti-rotation positioning part (200) is mounted on the rear side of the adjustable mounting part (100), and is used for positioning the adjustable mounting part (100); two groups of elastic blocking parts (300) are mounted on the adjustable mounting part (100); two rows of auxiliary reinforcing parts (400) are mounted on the adjustable mounting part (100), and are used for positioning the solar panel (800); the extrusion connecting part (500) is mounted on the adjustable mounting part (100), and is used for moving the two rows of auxiliary reinforcing parts (400). The adjustable mounting part (100) comprises an installation bottom plate (101), a circular connecting shaft (102) and an adjustable mounting seat (103); two angle limiting holes (1011) are formed in the installation bottom plate (101); the circular connecting shaft (102) is rotationally installed on the installation bottom plate (101); and the adjustable mounting seat (103) is fixedly installed outside the circular connecting shaft (102). The anti-rotation positioning part (200) comprises a rectangular positioning seat (201), a V-shaped positioning frame (202) and a positioning bolt (203); the rectangular positioning seat (201) is fixedly installed on the top of the installation bottom plate (101); the V-shaped positioning frame (202) is fixedly installed on the rear side of the rectangular positioning seat (201); and the positioning bolt (203) is slidingly installed on the rectangular positioning seat (201) and the V-shaped positioning frame (202), and the front end of the positioning bolt (203) is inserted into the adjustable mounting seat (103).

2. The energy-saving and environment-friendly energy storage street lamp according to claim 1, characterized in that, The adjustable mounting part (100) further comprises a circular limiting rod (104), a circular mounting rod (105) and an installation support (106); the circular limiting rod (104) is fixedly installed inside the adjustable mounting seat (103), and is inserted into the two angle limiting holes (1011); the circular mounting rod (105) is fixedly installed on the top of the adjustable mounting seat (103); and the installation support (106) is fixedly installed on the top end of the circular mounting rod (105).

3. The energy-saving and environment-friendly energy storage street lamp according to claim 1, characterized in that, The anti-rotation positioning part (200) further comprises a force resetting ring a (204) and a resetting spring a (205); the force resetting ring a (204) is fixedly installed outside the positioning bolt (203); and the resetting spring a (205) is sleeved outside the positioning bolt (203), and is located between the V-shaped positioning frame (202) and the force resetting ring a (204).

4. The energy-saving and environment-friendly energy storage street lamp according to claim 2, characterized in that, The elastic blocking part (300) comprises an L-shaped mounting plate a (301) and an elastic blocking rod (302); the L-shaped mounting plate a (301) is fixedly mounted on the mounting support (106); the elastic blocking rod (302) is slidingly mounted on the L-shaped mounting plate a (301), and the inner end of the elastic blocking rod (302) is provided with a rounded corner, and the inner end of the elastic blocking rod (302) is in contact with the solar panel (800).

5. The energy-saving and environment-friendly energy storage street lamp according to claim 4, characterized in that, The elastic blocking part (300) further comprises a force receiving reset ring b (303) and a reset spring b (304); the force receiving reset ring b (303) is fixedly mounted on the outside of the elastic blocking rod (302); the reset spring b (304) is sleeved on the outside of the elastic blocking rod (302), and the reset spring b (304) is located between the L-shaped mounting plate a (301) and the force receiving reset ring b (303).

6. The energy-saving and environment-friendly energy storage street lamp according to claim 2, characterized in that, The auxiliary reinforcing part (400) comprises an L-shaped mounting plate b (401) and an auxiliary reinforcing rod (402); the L-shaped mounting plate b (401) is fixedly mounted on the mounting support (106); the auxiliary reinforcing rod (402) is slidingly mounted on the L-shaped mounting plate b (401), and the inner end of the auxiliary reinforcing rod (402) is in contact with the solar panel (800).

7. The energy-saving and environment-friendly energy storage street lamp according to claim 6, characterized in that, The auxiliary reinforcing part (400) further comprises a force receiving reset ring c (403) and a reset spring c (404); the force receiving reset ring c (403) is fixedly mounted on the outside of the auxiliary reinforcing rod (402); the reset spring c (404) is sleeved on the outside of the auxiliary reinforcing rod (402), and the reset spring c (404) is located between the L-shaped mounting plate b (401) and the force receiving reset ring c (403).

8. The energy-saving and environment-friendly energy storage street lamp according to claim 6, characterized in that, The extrusion connecting part (500) comprises a U-shaped mounting bracket (501), a circular guide rod (502), a mounting frame (503) and an auxiliary guide shaft (504); the U-shaped mounting bracket (501) is fixedly mounted on the mounting support (106); the circular guide rod (502) is provided with two, and the two circular guide rods (502) are slidingly mounted on the U-shaped mounting bracket (501); the mounting frame (503) is fixedly mounted on the rear side of the two circular guide rods (502); the auxiliary guide shaft (504) is fixedly mounted on the rear side of the mounting frame (503), and the auxiliary guide shaft (504) is further slidingly connected with the mounting support (106).

9. The energy-saving and environment-friendly energy storage street lamp according to claim 8, characterized in that, The extrusion connecting part (500) further comprises limiting check rings (505), reset springs d (506) and inclined extrusion frames (507); the limiting check rings (505) are provided in two, and the two limiting check rings (505) are fixedly installed at the front ends of the two circular guide rods (502); the reset springs d (506) are provided in two, and the two reset springs d (506) are sleeved outside the two circular guide rods (502), and the two reset springs d (506) are located between the U-shaped mounting frame (501) and the mounting frame (503); the inclined extrusion frames (507) are provided in two rows, and the two rows of inclined extrusion frames (507) are fixedly installed at the top of the mounting frame (503), and the two rows of inclined extrusion frames (507) also contact the outer ends of the two rows of auxiliary reinforcing rods (402).

10. The energy-saving and environment-friendly energy storage street lamp according to claim 9, characterized in that, The mounting support (106) is fixedly installed with a controller (600), and the controller (600) is also electrically connected with the solar panel (800); the mounting frame (503) is fixedly installed with a battery (700), and the battery (700) is also electrically connected with the controller (600); the mounting support (106) is fixedly installed with an LED lamp (900), and the LED lamp (900) is also electrically connected with the controller (600).