CN213983366U - Rotatory solar energy landscape lamp - Google Patents
Rotatory solar energy landscape lamp Download PDFInfo
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- CN213983366U CN213983366U CN202023302534.XU CN202023302534U CN213983366U CN 213983366 U CN213983366 U CN 213983366U CN 202023302534 U CN202023302534 U CN 202023302534U CN 213983366 U CN213983366 U CN 213983366U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/50—Photovoltaic [PV] energy
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Abstract
The utility model discloses a rotatory solar energy landscape lamp belongs to solar energy landscape lamp technical field. A rotary solar landscape lamp is characterized in that fixing devices arranged on two sides of a base are connected with the base through conical fixing heads, so that the stability of the bottom of the landscape lamp is improved, and the landscape lamp is prevented from shaking and inclining; the fog condition monitoring head is arranged, when fog is serious, the first electric telescopic rod drives the lighting area to move downwards, the sliding plate is in contact with the limiting plate, the lighting area is stopped, lighting is carried out on a low part area, and the lighting effect can be exerted in heavy fog weather; the illuminating lamp shade is in a convex lens structure, so that the illumination degree is improved; solar panel below is provided with the recess, and when solar panel rose to the rotation axis top, bottom recess and rotation axis linked together receive the sunlight through photosensitive sensor, rotate through the rotation axis, drive solar panel 360 rotations, improve solar panel and receive the sunshine area, improve the light energy collection rate, improve the light energy conversion rate.
Description
Technical Field
The utility model belongs to the technical field of solar energy landscape lamp, especially, rotatory solar energy landscape lamp.
Background
Landscape lamps are also called decorative illuminating lamps, and are lamps with ornamental and illuminating functions. As an important infrastructure of landscape engineering, the landscape lamp not only needs to meet the requirements of night illumination in the aspects of brightness, irradiation range, light distribution characteristics and the like, but also emphasizes the harmony and unity of light, landscape and environment.
The solar panel of common solar energy landscape lamp sets up to integral type structure, can only receive the sunshine from a direction and shine, leads to the light energy collection rate low, and the light energy is stored inadequately simultaneously.
SUMMERY OF THE UTILITY MODEL
Utility model purpose: a rotary solar landscape lamp is provided to solve the above problems of the prior art.
The technical scheme is as follows: a rotary solar landscape lamp is characterized by comprising a base, a rotary shaft connected with the base, a stand column arranged above the base, a fog condition monitoring head connected with the stand column, fixing mechanisms arranged on two sides of the base, a fixed seat arranged at the bottom of the base, a motor arranged above the fixed seat, a first electric telescopic rod connected with the motor, an illumination area arranged above the first electric telescopic rod, a solar panel arranged above the illumination area and a top cover arranged above the solar panel;
the fixing mechanism comprises a fixing head arranged in the base, a clamping plate arranged above the fixing head, a connecting rod connected with the clamping plate, a spring arranged in the connecting rod, and a handle connected with the connecting rod;
solar panel below is provided with second electric telescopic handle, the solar panel below is provided with elastic support mechanism, the solar panel top is provided with photosensitive sensor.
In a further embodiment, the elastic supporting mechanism comprises an upper pressing plate arranged below the solar panel, and a compression spring connected with the upper pressing plate, wherein the compression spring is connected with a lower pressing plate; release solar panel to the lamp body outside at second electric telescopic handle, carry out sunshine and collect, elastic support mechanism follows solar panel and rises, and when solar panel descended, the spring in the elastic support mechanism played the cushioning effect, prevented that solar panel from damaging.
In a further embodiment, the top cover is arranged in a sliding structure, and the top cover is connected with the lamp body through a hinge; the hinge plays limiting role, and the moving stroke of the top cover is controlled at the same time, so that the hinge is designed into a sliding structure, the friction force in the opening and closing process is reduced, and the opening or closing is smoother.
In a further embodiment, the illumination area includes a plurality of sets of illumination lamps coupled together with the rotating shaft, a lamp housing disposed outside the illumination lamps; the illumination of the illumination area is improved, and meanwhile, the illuminating lamp is connected with the rotating shaft to realize rotary illumination; the illumination is improved.
In a further embodiment, the solar panel is connected with the rotating shaft, a groove is formed in the bottom of the solar panel, and the groove is attached to the end of the rotating shaft; when solar panel rose to the rotation axis top, bottom recess and rotation axis link together, receive the sunlight through photosensitive sensor, rotate through the rotation axis, drive solar panel 360 rotations, improve solar panel and receive the sunshine area, improve the light energy collection rate, improve the light energy conversion rate.
Has the advantages that: a rotary solar landscape lamp is characterized in that fixing devices arranged on two sides of a base are connected with the base through conical fixing heads, so that the stability of the bottom of the landscape lamp is improved, and the landscape lamp is prevented from shaking and inclining; the fog condition monitoring head is arranged, when fog is serious, the first electric telescopic rod drives the lighting area to move downwards, the sliding plate is in contact with the limiting plate, the lighting area is stopped, lighting is carried out on a low part area, and the lighting effect can be exerted in heavy fog weather; the illuminating lamp shade is in a convex lens structure, so that the illumination degree is improved; solar panel below is provided with the recess, and when solar panel rose to the rotation axis top, bottom recess and rotation axis linked together receive the sunlight through photosensitive sensor, rotate through the rotation axis, drive solar panel 360 rotations, improve solar panel and receive the sunshine area, improve the light energy collection rate, improve the light energy conversion rate.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural view of utility model a.
Fig. 3 is a schematic structural view of utility model B.
The reference signs are: the device comprises a top cover 1, a rotating shaft 2, an anti-collision layer 3, a launder 4, a lamp body 5, a fixing plate 6, a motor 7, a fixing seat 8, a base 9, a stand column 10, a fog condition monitoring head 11, a limiting plate 12, a first electric telescopic rod 13, a sliding plate 14, a lampshade 15, a lighting lamp 16, a supporting plate 17, a hinge 18, a photosensitive sensor 19, a solar panel 20, a second electric telescopic rod 21, a lower pressing plate 22, a compression spring 23, an upper pressing plate 24, a handle 25, a connecting rod 26, a spring 27, a clamping plate 28 and a fixing head 29.
Detailed Description
In the following description, numerous specific details are set forth in order to provide a more thorough understanding of the present invention. It will be apparent, however, to one skilled in the art, that the present invention may be practiced without one or more of these specific details. In other instances, well-known features have not been described in order to avoid obscuring the invention.
As shown in fig. 1 to 3, a rotary solar landscape lamp is composed of a top cover 1, a rotary shaft 2, an anti-collision layer 3, a gutter channel 4, a lamp body 5, a fixing plate 6, a motor 7, a fixing seat 8, a base 9, a column 10, a fog condition monitoring head 11, a limiting plate 12, a first electric telescopic rod 13, a sliding plate 14, a lampshade 15, a lighting lamp 16, a supporting plate 17, a hinge 18, a photosensitive sensor 19, a solar panel 20, a second electric telescopic rod 21, a lower pressing plate 22, a compression spring 23, an upper pressing plate 24, a handle 25, a connecting rod 26, a spring 27, a clamping plate 28 and a fixing head 29.
Detailed Description
As shown in fig. 1 to 3, the base 9 is disposed at a designated position, the fixing plate 6 is disposed inside the base 9, the fixing head 29 is connected to the fixing plate 6, the fixing head 29 is connected to the catch plate 28, the upper surface of the catch plate 28 is connected to the spring 27, the spring 27 is disposed inside the connecting rod 26, the connecting rod 26 is connected to the handle 25, the fixing base 8 is disposed at the bottom of the base 9, the motor 7 is disposed above the fixing base 8, the pillar 10 is disposed above the base 9, the fog condition monitoring head 11 is connected to the pillar 10, the lamp body 5 is disposed above the base 9, the first electric telescopic rod 13 is disposed inside the lamp body 5, the end of the first electric telescopic rod 13 is connected to the sliding plate 14, the middle of the first electric telescopic rod 13 is disposed with the limiting plate 12, the rotating shaft 2 is connected with the limiting plate 12, an illuminating lamp 16 is arranged above the sliding plate 14, a lampshade 15 is arranged outside the illuminating lamp 16, the illuminating lamp 16 is connected with the rotating shaft 2, the upper part of the illuminating lamp 16 is attached to the supporting plate 17, a second electric telescopic rod 21 is arranged above the supporting plate 17, a solar panel 20 is arranged above the second electric telescopic rod 21, an upper pressing plate 24 is arranged below the solar panel 20, the upper pressing plate 24 is connected with a compression spring 23, the compression spring 23 is connected with a lower pressing plate 22, a photosensitive sensor 19 is arranged above the solar panel 20, a top cover 1 is arranged above the lamp body 5, the top cover 1 is connected with the lamp body 5 through a hinge 18, and an anti-collision layer 3 is arranged outside the lamp body 5, a water flowing groove 4 is arranged between the lamp body 5 and the anti-collision layer 3.
As is well known, when the traditional solar landscape lamp is connected with the ground, the traditional solar landscape lamp is only connected with a long bolt, and the problems of inclination, shaking and the like of the solar landscape lamp occur due to overlong service time or untimely maintenance, so a fixing mechanism is additionally arranged; a fixed plate 6 is arranged in the base 9, the fixed head 29 is connected with the fixed plate 6, the fixed head 29 is connected with the clamping plate 28, the upper surface of the clamping plate 28 is connected with the spring 27, the spring 27 is arranged in the connecting rod 26, and the connecting rod 26 is connected with the handle 25; the fixing devices arranged on the two sides of the base 9 are connected with the base 9 through the conical fixing heads 29, so that the stability of the bottom of the landscape lamp is improved, and the landscape lamp is prevented from shaking and inclining.
In contrast, the solar landscape lamps used in daily life have unchanged light irradiation height and range, and cannot achieve good lighting effect in heavy fog weather, so fog condition monitoring is additionally arranged; a fixed seat 8 is arranged at the bottom of the base 9, a motor 7 is arranged above the fixed seat 8, the upright post 10 is arranged above the base 9, the fog condition monitoring head 11 is connected with the upright post 10, a lamp body 5 is arranged above the base 9, the first electric telescopic rod 13 is arranged inside the lamp body 5, the end part of the first electric telescopic rod 13 is connected with the sliding plate 14, a limiting plate 12 is arranged in the middle of the first electric telescopic rod 13, the rotating shaft 2 is connected with the limiting plate 12, an illuminating lamp 16 is arranged above the sliding plate 14, a lamp shade 15 is arranged outside the illuminating lamp 16, and the illuminating lamp 16 is connected with the rotating shaft 2; the fog condition monitoring head 11 is arranged, when fog is serious, the first electric telescopic rod 13 drives the lighting area to move downwards, the sliding plate 14 is in contact with the limiting plate 12, the lighting area is stopped, low-part area lighting is carried out, and the lighting effect can be achieved in heavy fog weather.
As a preferred scheme, the solar panel 20 of the common solar landscape lamp is designed into an integrated structure, and can only receive the sunlight irradiation from one direction, so that the light energy collection rate is low, and meanwhile, the light energy storage is insufficient, so that the influence is brought to the illumination, and the connection structure of the solar panel 20 is improved; a second electric telescopic rod 21 is arranged above the supporting plate 17, a solar panel 20 is arranged above the second electric telescopic rod 21, an upper pressing plate 24 is arranged below the solar panel 20, the upper pressing plate 24 is connected with a compression spring 23, the compression spring 23 is connected with a lower pressing plate 22, and a photosensitive sensor 19 is arranged above the solar panel 20; solar panel 20 below is provided with the recess, and when solar panel 20 rose to 2 tops of rotation axis, the bottom recess linked together with rotation axis 2, received the sunlight through photosensitive sensor 19, rotated through rotation axis 2, drove 360 rotations of solar panel, improved solar panel 20 and received the sunshine area, improved the light energy collection rate, improved the light energy conversion rate.
The utility model has the following working principle:
the base 9 is placed at a designated position, in order to prevent the base 9 from being connected with the ground insecurely, fixing mechanisms are arranged at two sides of the base 9, and the conical fixing heads 29 increase the fastening force, so that the base 9 is stably installed; a fog condition monitoring head 11 is arranged above a base 9, when visibility is not high in foggy weather, a motor 7 drives a first electric telescopic rod 13, the first electric telescopic rod 13 drives a sliding plate 14 to descend, a lighting lamp 16 moves downwards at the same time, when the position of the lower electric telescopic rod is certain, the sliding plate 14 is attached to a limiting plate 12, descending stops, lighting at the bottom is achieved, direction distinguishing of passersby is facilitated, and practicability is improved; a solar panel 20 is arranged above the lamp body 5, in order to improve the solar absorption area and the solar conversion rate, a groove is arranged below the solar panel 20 and matched with the end part of the rotating shaft 2, the second electric hydraulic rod pushes the solar panel 20 to the highest position and is connected with the rotating shaft 2, and the solar panel 20 rotates 360 degrees to increase the light absorption area; the top cover 1 is connected with the lamp body 5 by a hinge 18, so that the friction force is reduced; the anti-collision layer 3 is arranged outside the lamp body 5, so that the lamp body 5 is protected, and the service durability of the lamp body 5 is prolonged.
The preferred embodiments of the present invention have been described in detail with reference to the accompanying drawings, however, the present invention is not limited to the details of the above embodiments, and the technical concept of the present invention can be modified to perform various equivalent transformations, which all belong to the protection scope of the present invention.
Claims (6)
1. A rotary solar landscape lamp is characterized by comprising a base, a rotary shaft connected with the base, a stand column arranged above the base, a fog condition monitoring head connected with the stand column, fixing mechanisms arranged on two sides of the base, a fixed seat arranged at the bottom of the base, a motor arranged above the fixed seat, a first electric telescopic rod connected with the motor, an illumination area arranged above the first electric telescopic rod, a solar panel arranged above the illumination area and a top cover arranged above the solar panel;
the fixing mechanism comprises a fixing head arranged in the base, a clamping plate arranged above the fixing head, a connecting rod connected with the clamping plate, a spring arranged in the connecting rod, and a handle connected with the connecting rod;
solar panel below is provided with second electric telescopic handle, the solar panel below is provided with elastic support mechanism, the solar panel top is provided with photosensitive sensor.
2. The rotary solar landscape lamp of claim 1, wherein the resilient support mechanism comprises an upper pressure plate disposed below the solar panel, a compression spring coupled to the upper pressure plate, the compression spring coupled to a lower pressure plate.
3. The rotary solar landscape lamp of claim 1, wherein the top cover is provided in a sliding configuration, the top cover being connected to the lamp body by a hinge.
4. A rotary solar landscape lamp according to claim 1, wherein said illumination zone includes an illumination lamp coupled to said rotary shaft, a lamp housing disposed externally of said illumination lamp.
5. The rotary solar landscape lamp of claim 4, wherein the lamp shade is provided in a convex lens configuration, while the lamp shade is internally provided with the tri-phosphor.
6. The rotary solar landscape lamp of claim 1, wherein the solar panel is connected with the rotary shaft, and the bottom of the solar panel is provided with a groove, and the groove is attached with the end of the rotary shaft.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202023302534.XU CN213983366U (en) | 2020-12-31 | 2020-12-31 | Rotatory solar energy landscape lamp |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202023302534.XU CN213983366U (en) | 2020-12-31 | 2020-12-31 | Rotatory solar energy landscape lamp |
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CN213983366U true CN213983366U (en) | 2021-08-17 |
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CN202023302534.XU Active CN213983366U (en) | 2020-12-31 | 2020-12-31 | Rotatory solar energy landscape lamp |
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2020
- 2020-12-31 CN CN202023302534.XU patent/CN213983366U/en active Active
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