CN219659630U - Solar panel mounting structure of prefabricated house of assembled steel concrete - Google Patents

Solar panel mounting structure of prefabricated house of assembled steel concrete Download PDF

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Publication number
CN219659630U
CN219659630U CN202320565696.7U CN202320565696U CN219659630U CN 219659630 U CN219659630 U CN 219659630U CN 202320565696 U CN202320565696 U CN 202320565696U CN 219659630 U CN219659630 U CN 219659630U
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wire
rotating
pole piece
rod
steel concrete
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吕绪庆
刘炳霞
商丽华
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Shandong Mingda Construction Technology Co Ltd
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Shandong Mingda Construction Technology Co Ltd
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    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B10/00Integration of renewable energy sources in buildings
    • Y02B10/10Photovoltaic [PV]
    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy

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  • Photovoltaic Devices (AREA)

Abstract

The utility model discloses an assembled steel concrete prefabricated house solar panel mounting structure, which relates to the field of new energy, and comprises a fixed plate and a steel concrete prefabricated house; the application of this prefabricated house solar technology of assembled steel concrete, through control circuit's setting, when illumination intensity reduces, the circuit disconnection, the motor is inoperative, if cross the recess that the sliding block was not located M shape connecting rod this moment, the sliding rod extrudees the switch post all the time, make first pole piece and second pole piece laminating intercommunication each other, first wire, second wire and third wire intercommunication this moment, the motor continues to move, when the sliding block motion is as to the recess of M shape connecting rod, first pole piece and second pole piece keep away from each other, first pole piece and second pole piece disconnection, first wire at this moment, second wire and third wire disconnection, the motor no longer moves, set up like this can guarantee that single crystal photovoltaic board is located initial angle, single crystal photovoltaic board is not located initial direction after avoiding light to darken like this.

Description

一种装配式钢砼预制房屋太阳能板安装结构A kind of prefabricated steel concrete house solar panel installation structure

技术领域Technical field

本实用新型涉及新能源技术,具体涉及一种装配式钢砼预制房屋太阳能板安装结构。The utility model relates to new energy technology, and specifically relates to a solar panel installation structure for an assembled steel-concrete prefabricated house.

背景技术Background technique

卡合框架式是由钢制材料组成的结构,是主要的建筑结构类型之一,结构主要由型钢和钢板等制成的钢梁、钢柱、钢桁架等构件组成,钢材的特点是强度高、自重轻、整体刚性好、变形能力强,故用于建造大跨度和超高、超重型的建筑物特别适宜;材料匀质性和各向同性好,属理想弹性体,最符合一般工程力学的基本假定;现有的卡合结构之间承受动力荷载组合拼接差。The snap-in frame type is a structure composed of steel materials. It is one of the main types of building structures. The structure is mainly composed of steel beams, steel columns, steel trusses and other components made of steel and steel plates. The characteristic of steel is high strength. , light weight, good overall rigidity, and strong deformation ability, so it is particularly suitable for building large-span, ultra-high, and ultra-heavy buildings; the material has good homogeneity and isotropy, is an ideal elastomer, and is most in line with general engineering mechanics. The basic assumption is that the existing snap-in structures are poorly spliced to bear dynamic loads.

现有的装配式钢砼预制房屋在进行使用时,通常会使用太阳能发电作为电力来源,但是现有的太阳能装置在光线变暗后单晶光伏板不是位于初始状态,需要人工调节单晶光伏板方向。When existing prefabricated steel-concrete houses are in use, they usually use solar power as the source of electricity. However, the monocrystalline photovoltaic panels of existing solar devices are not in the initial state after the light dims, and the monocrystalline photovoltaic panels need to be manually adjusted. direction.

实用新型内容Utility model content

本实用新型的目的是提供一种装配式钢砼预制房屋太阳能板安装结构,以解决现有技术中的上述不足之处。The purpose of this utility model is to provide a prefabricated steel-concrete house solar panel installation structure to solve the above-mentioned shortcomings in the prior art.

为了实现上述目的,本实用新型提供如下技术方案:一种装配式钢砼预制房屋太阳能板安装结构,包括固定板和钢砼预制房,所述固定板通过安装结构固定连接在钢砼预制房屋顶,所述固定板顶部设置有顶盖,且顶盖上开设有多个定位孔,多个所述定位孔内均设置有太阳能机构,所述固定板顶部设置有驱动机构。In order to achieve the above purpose, the present utility model provides the following technical solution: a prefabricated steel concrete prefabricated house solar panel installation structure, including a fixed plate and a steel concrete prefabricated house. The fixed plate is fixedly connected to the roof of the steel concrete prefabricated house through the installation structure. , a top cover is provided on the top of the fixed plate, and a plurality of positioning holes are provided on the top cover. Solar mechanisms are provided in the plurality of positioning holes, and a driving mechanism is provided on the top of the fixed plate.

进一步地,所述安装结构包括螺栓固定机构和呈三角设置的安装架固定机构。Further, the installation structure includes a bolt fixing mechanism and a mounting bracket fixing mechanism arranged in a triangle.

进一步地,所述驱动机构包括与固定板顶部固定连接的电动机、多个对称固定连接在固定板顶部的第一限位块,且多个第一限位块转动连接同一个第二转动杆,所述第二转动杆贯穿设置有多个第二锥齿轮,所述固定板顶部设置有多对第二限位块,且一对第二限位块之间转动连接有同一个第一转动杆,所述第一转动杆与第二转动杆在同一平面上相互垂直,所述第一转动杆侧壁贯穿设置有多个第一锥齿轮,多个位于不同第一转动杆端部的第一锥齿轮与不同第二锥齿轮啮合。Further, the driving mechanism includes a motor fixedly connected to the top of the fixed plate, a plurality of first limiting blocks symmetrically fixedly connected to the top of the fixed plate, and the plurality of first limiting blocks are rotationally connected to the same second rotating rod, The second rotating rod is provided with a plurality of second bevel gears, a plurality of pairs of second limiting blocks are provided on the top of the fixed plate, and the same first rotating rod is rotatably connected between a pair of second limiting blocks. , the first rotating rod and the second rotating rod are perpendicular to each other on the same plane, the side wall of the first rotating rod is provided with a plurality of first bevel gears, and a plurality of first bevel gears located at different ends of the first rotating rod. The bevel gear meshes with a different second bevel gear.

进一步地,所述固定板顶部还设置有可储存电量的光伏发电系统。Furthermore, a photovoltaic power generation system capable of storing electricity is provided on the top of the fixed plate.

进一步地,所述太阳能机构包括对太阳能进行收集的单晶光伏板、转动柱和调节单晶光伏板角度的调节机构,所述转动柱顶部和单晶光伏板底部均设置有转动块,多个转动块相互转动连接,所述转动柱底部固定连接有与第一锥齿轮啮合的第三锥齿轮,且转动柱侧壁套设有底部与顶盖固定连接的固定环,所述转动柱贯穿定位孔,所述转动柱外侧套设有定位环,且定位环底部对称固定连接有呈L形设置的连接杆,且多个连接杆均与固定环固定连接。Further, the solar energy mechanism includes a single crystal photovoltaic panel for collecting solar energy, a rotating column and an adjusting mechanism for adjusting the angle of the single crystal photovoltaic panel. The top of the rotating column and the bottom of the single crystal photovoltaic panel are both provided with rotating blocks, and a plurality of The rotating blocks are rotationally connected to each other. The bottom of the rotating column is fixedly connected with a third bevel gear meshing with the first bevel gear. The side wall of the rotating column is covered with a fixed ring that is fixedly connected to the top cover at the bottom. The rotating column is positioned through hole, a positioning ring is set on the outside of the rotating column, and an L-shaped connecting rod is symmetrically and fixedly connected to the bottom of the positioning ring, and multiple connecting rods are fixedly connected to the fixed ring.

进一步地,所述调节机构包括第二定位杆、固定连接在第二定位杆顶部的螺纹杆以及与螺纹杆螺纹连接的第一定位杆,且第一定位杆顶部和单晶光伏板底部均设置有转动块,多个转动块相互转动连接,所述第二定位杆底部设置有滑动块,所述固定环侧壁套设有滑动杆,且滑动块在滑动杆上滑动,所述定位环内壁开设有环形滑槽,且滑槽内滑动连接有滑块,且第二定位杆贯穿滑块。Further, the adjustment mechanism includes a second positioning rod, a threaded rod fixedly connected to the top of the second positioning rod, and a first positioning rod threadedly connected to the threaded rod, and the top of the first positioning rod and the bottom of the single crystal photovoltaic panel are both provided There are rotating blocks, and multiple rotating blocks are rotationally connected to each other. A sliding block is provided at the bottom of the second positioning rod. A sliding rod is set on the side wall of the fixed ring, and the sliding block slides on the sliding rod. The inner wall of the positioning ring An annular chute is provided, and a slide block is slidably connected in the chute, and the second positioning rod penetrates the slide block.

进一步地,所述滑动杆包括一个未闭合圆环,且圆环与固定环之间通过连接杆固定连接,所述未闭合圆环固定连接有呈M形设置的连接杆。Furthermore, the sliding rod includes an unclosed circular ring, and the circular ring and the fixed ring are fixedly connected by a connecting rod. The unclosed circular ring is fixedly connected with a connecting rod arranged in an M shape.

进一步地,所述滑动块侧端开设有呈T形设置的滑动槽,且滑动块上开设有空腔,所述空腔顶部设置有第一极片,所述第一极片相对侧贯穿设置有开关柱,所述开关柱顶部设置有第二极片,且开关柱侧壁套设有弹簧,所述弹簧两端分别与第二极片和滑动块固定连接。Further, a T-shaped sliding groove is provided at the side end of the sliding block, and a cavity is provided on the sliding block. A first pole piece is provided at the top of the cavity, and the opposite side of the first pole piece is provided through There is a switch column, a second pole piece is provided on the top of the switch column, and a spring is set on the side wall of the switch column. Both ends of the spring are fixedly connected to the second pole piece and the sliding block respectively.

进一步地,所述电动机控制电路包括第一导线、第二导线、第三导线,所述电动机通过光敏控制电路与光伏发电系统连通,所述光敏控制电路输入端与光伏发电系统输出端通过第一导线连通,所述光敏控制电路接地端与光伏发电系统输出端通过第二导线连通,所述电动机电源输入端与第三导线连通,且电动机电源输出端与第二导线连通,所述第二导线和第三导线分别与第一极片和第二极片连通。Further, the motor control circuit includes a first wire, a second wire, and a third wire. The motor is connected to the photovoltaic power generation system through a photosensitive control circuit. The input end of the photosensitive control circuit and the output end of the photovoltaic power generation system are connected through a first The wires are connected, the ground terminal of the photosensitive control circuit is connected to the output terminal of the photovoltaic power generation system through a second wire, the motor power input terminal is connected to a third wire, and the motor power output terminal is connected to the second wire, and the second wire and the third conductor are connected to the first pole piece and the second pole piece respectively.

与现有技术相比,本实用新型提供的一种装配式钢砼预制房屋太阳能板安装结构,通过控制电路的设置,当光照强度降低时,电路断开,电动机不工作,如果过此时滑动块不位于M形连接杆的凹陷处,滑动杆始终挤压开关柱,使得第一极片和第二极片相互贴合连通,此时第一导线、第二导线和第三导线连通,电动机继续运动,当滑动块运动至于M形连接杆的凹陷处时,第一极片和第二极片相互远离,第一极片和第二极片断开,此时第一导线、第二导线和第三导线断连,电动机不再运动,这样设置可以保证单晶光伏板位于初始角度,这样设置可以避免光线变暗后单晶光伏板不是位于初始状态。Compared with the existing technology, the utility model provides a prefabricated steel-concrete house solar panel installation structure. Through the setting of the control circuit, when the light intensity decreases, the circuit is disconnected and the motor does not work. If it slides after this time, The block is not located in the depression of the M-shaped connecting rod. The sliding rod always squeezes the switch column so that the first pole piece and the second pole piece are connected to each other. At this time, the first wire, the second wire and the third wire are connected, and the motor Continuing to move, when the sliding block moves to the recess of the M-shaped connecting rod, the first pole piece and the second pole piece move away from each other, and the first pole piece and the second pole piece are disconnected. At this time, the first wire, the second wire and The third wire is disconnected and the motor no longer moves. This setting can ensure that the monocrystalline photovoltaic panel is at the initial angle. This setting can prevent the monocrystalline photovoltaic panel from not being in the initial state after the light dims.

附图说明Description of the drawings

为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本实用新型中记载的一些实施例,对于本领域普通技术人员来讲,还可以根据这些附图获得其他的附图。In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings needed to be used in the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only used in the present utility model. For some of the embodiments described, those of ordinary skill in the art can also obtain other drawings based on these drawings.

图1为本实用新型实施例提供的整体结构示意图;Figure 1 is a schematic diagram of the overall structure provided by an embodiment of the present utility model;

图2为图1中A处的结构放大示意图;Figure 2 is an enlarged schematic diagram of the structure at A in Figure 1;

图3为本实用新型实施例提供的太阳能机构结构示意图;Figure 3 is a schematic structural diagram of a solar energy mechanism provided by an embodiment of the present utility model;

图4为本实用新型实施例提供的太阳能机构左右二等角轴侧结构示意图;Figure 4 is a schematic structural diagram of the left and right equiangular axes of the solar mechanism provided by the embodiment of the present invention;

图5为本实用新型实施例提供的滑动块结构示意图;Figure 5 is a schematic structural diagram of a sliding block provided by an embodiment of the present utility model;

图6为本实用新型实施例提供的部分电路结构示意图。Figure 6 is a schematic diagram of a partial circuit structure provided by an embodiment of the present invention.

附图标记说明:Explanation of reference symbols:

1、固定板;2、顶盖;3、定位孔;4、太阳能机构;5、第一转动杆;6、第一锥齿轮;7、光伏发电系统;8、电动机;9、第一限位块;10、第二转动杆;11、第二锥齿轮;12、第二限位块;13、单晶光伏板;14、第一定位杆;15、转动块;16、螺纹杆;17、第二定位杆;18、转动柱;19、连接杆;20、定位环;21、滑动杆;22、固定环;23、滑块;24、滑槽;25、第三锥齿轮;26、滑动块;261、第一极片;262、第二极片;263、弹簧;264、开关柱;27、第一导线;28、第二导线;29、第三导线。1. Fixed plate; 2. Top cover; 3. Positioning hole; 4. Solar mechanism; 5. First rotating rod; 6. First bevel gear; 7. Photovoltaic power generation system; 8. Motor; 9. First limit block; 10. Second rotating rod; 11. Second bevel gear; 12. Second limiting block; 13. Single crystal photovoltaic panel; 14. First positioning rod; 15. Rotating block; 16. Threaded rod; 17. Second positioning rod; 18. Rotating column; 19. Connecting rod; 20. Positioning ring; 21. Sliding rod; 22. Fixed ring; 23. Slider; 24. Slide groove; 25. Third bevel gear; 26. Sliding block; 261, first pole piece; 262, second pole piece; 263, spring; 264, switch column; 27, first conductor; 28, second conductor; 29, third conductor.

具体实施方式Detailed ways

为了使本领域的技术人员更好地理解本实用新型的技术方案,下面将结合附图对本实用新型作进一步的详细介绍。In order to enable those skilled in the art to better understand the technical solution of the present utility model, the present utility model will be introduced in further detail below with reference to the accompanying drawings.

实施例一:Example 1:

请参阅图1-6,一种装配式钢砼预制房屋太阳能板安装结构,包括固定板1和钢砼预制房,固定板1通过安装结构固定连接在钢砼预制房屋顶,固定板1顶部设置有顶盖2,且顶盖2上开设有多个定位孔3,多个定位孔3内均设置有太阳能机构4,固定板1顶部设置有驱动机构,通过驱动机构可以随时调节单晶光伏板13与光照的角度,保证单晶光伏板13始终与光照角度垂直,保证单晶光伏板13最大的工作效率。Please refer to Figure 1-6. A prefabricated steel concrete prefabricated house solar panel installation structure includes a fixed plate 1 and a steel concrete prefabricated house. The fixed plate 1 is fixedly connected to the roof of the steel concrete prefabricated house through the installation structure. The top of the fixed plate 1 is set There is a top cover 2, and a plurality of positioning holes 3 are provided on the top cover 2. A solar mechanism 4 is provided in the plurality of positioning holes 3. A driving mechanism is provided on the top of the fixed plate 1. The single crystal photovoltaic panel can be adjusted at any time through the driving mechanism. The angle between 13 and the illumination ensures that the monocrystalline photovoltaic panel 13 is always perpendicular to the illumination angle, ensuring the maximum working efficiency of the monocrystalline photovoltaic panel 13 .

安装结构为呈三角设置的安装架固定机构,这样设置可以使得固定板1安装在平屋面的顶部,这样设置可以增加太阳能板的光照面积。The installation structure is a mounting frame fixing mechanism arranged in a triangle. This arrangement allows the fixing plate 1 to be installed on the top of the flat roof. This arrangement can increase the lighting area of the solar panel.

驱动机构包括与固定板1顶部固定连接的电动机8、多个对称固定连接在固定板1顶部的第一限位块9,且多个第一限位块9转动连接同一个第二转动杆10,其中第二转动杆10与电动机8输出端固定连接,第二转动杆10贯穿设置有多个第二锥齿轮11,固定板1顶部设置有多对第二限位块12,且一对第二限位块12之间转动连接有同一个第一转动杆5,第一转动杆5与第二转动杆10在同一平面上相互垂直,第一转动杆5侧壁贯穿设置有多个第一锥齿轮6,多个位于不同第一转动杆5端部的第一锥齿轮6与不同第二锥齿轮11啮合,这样设置当电动机8启动时,电动机8带动第二转动杆10转动,当第二转动杆10转动时,带动第二锥齿轮11转动,当第二锥齿轮11转动带动第一转动杆5端部的第一锥齿轮6转动,此时多个第一转动杆5均进行转动。The driving mechanism includes a motor 8 fixedly connected to the top of the fixed plate 1, a plurality of first limiting blocks 9 symmetrically fixedly connected to the top of the fixed plate 1, and the plurality of first limiting blocks 9 are rotationally connected to the same second rotating rod 10 , wherein the second rotating rod 10 is fixedly connected to the output end of the motor 8, the second rotating rod 10 is provided with a plurality of second bevel gears 11, a plurality of pairs of second limiting blocks 12 are provided on the top of the fixed plate 1, and a pair of second limiting blocks 12 are provided on the top of the fixed plate 1. The same first rotating rod 5 is rotatably connected between the two limiting blocks 12. The first rotating rod 5 and the second rotating rod 10 are perpendicular to each other on the same plane. A plurality of first rotating rods 5 are provided through the side wall of the first rotating rod 5. Bevel gear 6, a plurality of first bevel gears 6 located at the ends of different first rotating rods 5 mesh with different second bevel gears 11. In this way, when the motor 8 is started, the motor 8 drives the second rotating rod 10 to rotate. When the second rotating rod 10 rotates, it drives the second bevel gear 11 to rotate. When the second bevel gear 11 rotates, it drives the first bevel gear 6 at the end of the first rotating rod 5 to rotate. At this time, the plurality of first rotating rods 5 all rotate. .

固定板1顶部还设置有可储存电量的光伏发电系统7。The top of the fixed plate 1 is also provided with a photovoltaic power generation system 7 that can store electricity.

太阳能机构4包括对太阳能进行收集的单晶光伏板13、转动柱18和调节单晶光伏板13角度的调节机构,转动柱18顶部和单晶光伏板13底部均设置有转动块15,多个转动块15相互转动连接,转动柱18底部固定连接有与第一锥齿轮6啮合的第三锥齿轮25,这样设置的目的是当第一锥齿轮6转动时第三锥齿轮25同步转动,且转动柱18侧壁套设有底部与顶盖2固定连接的固定环22,转动柱18贯穿定位孔3,这样设置当第三锥齿轮25转动时可以带动转动柱18进行转动,当转动柱18进行转动时可以带动单晶光伏板13进行转动,转动柱18外侧套设有定位环20,且定位环20底部对称固定连接有呈L形设置的连接杆19,且多个连接杆19均与固定环22固定连接,这样设置可以保证定位环20的稳定。The solar energy mechanism 4 includes a single crystal photovoltaic panel 13 for collecting solar energy, a rotating column 18 and an adjustment mechanism for adjusting the angle of the single crystal photovoltaic panel 13. Both the top of the rotating column 18 and the bottom of the single crystal photovoltaic panel 13 are provided with rotating blocks 15, a plurality of The rotating blocks 15 are rotatably connected to each other, and the bottom of the rotating column 18 is fixedly connected with a third bevel gear 25 that meshes with the first bevel gear 6. The purpose of this arrangement is that when the first bevel gear 6 rotates, the third bevel gear 25 rotates synchronously, and The side wall of the rotating column 18 is covered with a fixed ring 22 whose bottom is fixedly connected to the top cover 2. The rotating column 18 penetrates the positioning hole 3. In this way, when the third bevel gear 25 rotates, the rotating column 18 can be driven to rotate. When the rotating column 18 When rotating, the monocrystalline photovoltaic panel 13 can be driven to rotate. A positioning ring 20 is set on the outside of the rotation column 18, and an L-shaped connecting rod 19 is symmetrically fixed at the bottom of the positioning ring 20, and multiple connecting rods 19 are connected with The fixed ring 22 is fixedly connected, and this arrangement can ensure the stability of the positioning ring 20 .

调节机构包括第二定位杆17、固定连接在第二定位杆17顶部的螺纹杆16以及与螺纹杆16螺纹连接的第一定位杆14,这样设置的目的是通过转动第一定位杆14可以调节第二定位杆17和第一定位杆14相对端距离发生变化,这样可以根据地理环境调节单晶光伏板13的初始角度,且第一定位杆14顶部和单晶光伏板13底部均设置有转动块15,多个转动块15相互转动连接,第二定位杆17底部设置有滑动块26,固定环22侧壁套设有滑动杆21,且滑动块26在滑动杆21上滑动,定位环20内壁开设有环形滑槽24,且滑槽24内滑动连接有滑块23,且第二定位杆17贯穿滑块23,这样设置的目的是当单晶光伏板13发生转动时可以带动滑动块26在滑动杆21上运动。The adjustment mechanism includes a second positioning rod 17, a threaded rod 16 fixedly connected to the top of the second positioning rod 17, and a first positioning rod 14 threadedly connected to the threaded rod 16. The purpose of this arrangement is to adjust the first positioning rod 14 by rotating it. The distance between the opposite ends of the second positioning rod 17 and the first positioning rod 14 changes, so that the initial angle of the single crystal photovoltaic panel 13 can be adjusted according to the geographical environment, and the top of the first positioning rod 14 and the bottom of the single crystal photovoltaic panel 13 are both provided with rotating Block 15, multiple rotating blocks 15 are rotatably connected to each other, a sliding block 26 is provided at the bottom of the second positioning rod 17, a sliding rod 21 is set on the side wall of the fixed ring 22, and the sliding block 26 slides on the sliding rod 21, and the positioning ring 20 An annular chute 24 is provided on the inner wall, and a slider 23 is slidingly connected in the chute 24, and the second positioning rod 17 penetrates the slider 23. The purpose of this arrangement is to drive the slider 26 when the single crystal photovoltaic panel 13 rotates. moves on the sliding rod 21.

滑动杆21包括一个未闭合圆环,且圆环与固定环22之间通过连接杆固定连接,未闭合圆环固定连接有呈M形设置的连接杆,这样设置的目的是当滑动块26在运动至M形连接杆的凹陷处时单晶光伏板13处于初始角度。The sliding rod 21 includes an unclosed ring, and the ring and the fixed ring 22 are fixedly connected by a connecting rod. The unclosed ring is fixedly connected with an M-shaped connecting rod. The purpose of this setting is to when the sliding block 26 is in When moving to the recess of the M-shaped connecting rod, the single crystal photovoltaic panel 13 is at the initial angle.

滑动块26侧端开设有呈T形设置的滑动槽,且滑动块26上开设有空腔,空腔顶部设置有第一极片261,第一极片261相对侧贯穿设置有开关柱264,开关柱264顶部设置有第二极片262,且开关柱264侧壁套设有弹簧263,弹簧263两端分别与第二极片262和滑动块26固定连接,这样个设置的目的是当滑动块26在滑动杆21上滑动时,滑动杆21始终挤压开关柱264,使得第一极片261和第二极片262相互贴合连通,当滑动块26运动至M形连接杆的凹陷处时,由于滑动块26两侧受到凹陷处侧壁的挤压,开关柱264会在弹簧263的拉动下,向下运动,此时第一极片261和第二极片262相互远离,第一极片261和第二极片262断开。A T-shaped sliding groove is provided on the side end of the sliding block 26, and a cavity is provided on the sliding block 26. A first pole piece 261 is provided on the top of the cavity, and a switch column 264 is provided on the opposite side of the first pole piece 261. A second pole piece 262 is provided on the top of the switch column 264, and a spring 263 is set on the side wall of the switch column 264. Both ends of the spring 263 are fixedly connected to the second pole piece 262 and the sliding block 26 respectively. The purpose of this arrangement is to slide the When the block 26 slides on the sliding rod 21, the sliding rod 21 always squeezes the switch column 264, so that the first pole piece 261 and the second pole piece 262 are in contact with each other. When the sliding block 26 moves to the depression of the M-shaped connecting rod, When, since both sides of the sliding block 26 are squeezed by the side walls of the recess, the switch column 264 will move downward under the pull of the spring 263. At this time, the first pole piece 261 and the second pole piece 262 move away from each other. The pole piece 261 and the second pole piece 262 are disconnected.

电动机8控制电路包括第一导线27、第二导线28、第三导线29,电动机8通过光敏控制电路与光伏发电系统7连通,其中光敏控制电路为光控开关亮通电路,这样设置可以在光照强度大于阀值时,电路连通,电动机8工作,在光照强度小于阀值时,电路断开,电动机8不工作,光敏控制电路输入端与光伏发电系统7输出端通过第一导线27连通,光敏控制电路接地端与光伏发电系统7输出端通过第二导线28连通,电动机8电源输入端与第三导线29连通,且电动机8电源输出端与第二导线28连通,第二导线28和第三导线29分别与第一极片261和第二极片262连通,这样设置的目的是,当光照强度降低时,电路断开,电动机8不工作,如果过此时滑动块26不位于M形连接杆的凹陷处时,滑动杆21始终挤压开关柱264,使得第一极片261和第二极片262相互贴合连通,此时第一导线27、第二导线28和第三导线29连通,电动机8继续运动,当滑动块26运动至于M形连接杆的凹陷处时,第一极片261和第二极片262相互远离,第一极片261和第二极片262断开,此时第一导线27、第二导线28和第三导线29断连,电动机8不再运动,这样设置可以保证在光线变暗时,滑动块26始终为位于M形连接杆的凹陷处,单晶光伏板13位于初始角度。The control circuit of the motor 8 includes a first wire 27, a second wire 28, and a third wire 29. The motor 8 is connected to the photovoltaic power generation system 7 through a photosensitive control circuit. The photosensitive control circuit is a light-controlled switch light-on circuit. This setting can be used when lighting When the intensity is greater than the threshold, the circuit is connected and the motor 8 works. When the light intensity is less than the threshold, the circuit is disconnected and the motor 8 does not work. The input end of the photosensitive control circuit and the output end of the photovoltaic power generation system 7 are connected through the first wire 27, and the photosensitive The ground terminal of the control circuit is connected to the output terminal of the photovoltaic power generation system 7 through the second wire 28, the power input terminal of the motor 8 is connected to the third wire 29, and the power output terminal of the motor 8 is connected to the second wire 28. The second wire 28 and the third wire 28 are connected to each other. The wires 29 are connected to the first pole piece 261 and the second pole piece 262 respectively. The purpose of this arrangement is that when the light intensity decreases, the circuit is disconnected and the motor 8 does not work. If the slider 26 is not in the M-shaped connection at this time, When the rod is in the recess, the sliding rod 21 always presses the switch column 264, so that the first pole piece 261 and the second pole piece 262 are connected to each other. At this time, the first wire 27, the second wire 28 and the third wire 29 are connected. , the motor 8 continues to move. When the sliding block 26 moves to the recess of the M-shaped connecting rod, the first pole piece 261 and the second pole piece 262 move away from each other, and the first pole piece 261 and the second pole piece 262 are disconnected. When the first wire 27, the second wire 28 and the third wire 29 are disconnected, the motor 8 no longer moves. This setting can ensure that when the light dims, the sliding block 26 is always located in the depression of the M-shaped connecting rod. Photovoltaic panel 13 is at the initial angle.

实施例二:Example 2:

请参阅图1-6,一种装配式钢砼预制房屋太阳能板安装结构,包括固定板1和钢砼预制房,固定板1通过安装结构固定连接在钢砼预制房屋顶,固定板1顶部设置有顶盖2,且顶盖2上开设有多个定位孔3,多个定位孔3内均设置有太阳能机构4,固定板1顶部设置有驱动机构,通过驱动机构可以随时调节单晶光伏板13与光照的角度,保证单晶光伏板13始终与光照角度垂直,保证单晶光伏板13最大的工作效率。Please refer to Figure 1-6. A prefabricated steel concrete prefabricated house solar panel installation structure includes a fixed plate 1 and a steel concrete prefabricated house. The fixed plate 1 is fixedly connected to the roof of the steel concrete prefabricated house through the installation structure. The top of the fixed plate 1 is set There is a top cover 2, and a plurality of positioning holes 3 are provided on the top cover 2. A solar mechanism 4 is provided in the plurality of positioning holes 3. A driving mechanism is provided on the top of the fixed plate 1. The single crystal photovoltaic panel can be adjusted at any time through the driving mechanism. The angle between 13 and the illumination ensures that the monocrystalline photovoltaic panel 13 is always perpendicular to the illumination angle, ensuring the maximum working efficiency of the monocrystalline photovoltaic panel 13 .

安装结构为螺栓固定机构,这样设置可以使得固定板1安装在斜屋面的顶部,这样设置可以在减少固定材料的同时增加太阳能板光照面积。The installation structure is a bolt fixing mechanism. This arrangement allows the fixing plate 1 to be installed on the top of the sloped roof. This arrangement can increase the lighting area of the solar panel while reducing fixing materials.

驱动机构包括与固定板1顶部固定连接的电动机8、多个对称固定连接在固定板1顶部的第一限位块9,且多个第一限位块9转动连接同一个第二转动杆10,其中第二转动杆10与电动机8输出端固定连接,第二转动杆10贯穿设置有多个第二锥齿轮11,固定板1顶部设置有多对第二限位块12,且一对第二限位块12之间转动连接有同一个第一转动杆5,第一转动杆5与第二转动杆10在同一平面上相互垂直,第一转动杆5侧壁贯穿设置有多个第一锥齿轮6,多个位于不同第一转动杆5端部的第一锥齿轮6与不同第二锥齿轮11啮合,这样设置当电动机8启动时,电动机8带动第二转动杆10转动,当第二转动杆10转动时,带动第二锥齿轮11转动,当第二锥齿轮11转动带动第一转动杆5端部的第一锥齿轮6转动,此时多个第一转动杆5均进行转动。The driving mechanism includes a motor 8 fixedly connected to the top of the fixed plate 1, a plurality of first limiting blocks 9 symmetrically fixedly connected to the top of the fixed plate 1, and the plurality of first limiting blocks 9 are rotationally connected to the same second rotating rod 10 , wherein the second rotating rod 10 is fixedly connected to the output end of the motor 8, the second rotating rod 10 is provided with a plurality of second bevel gears 11, a plurality of pairs of second limiting blocks 12 are provided on the top of the fixed plate 1, and a pair of second limiting blocks 12 are provided on the top of the fixed plate 1. The same first rotating rod 5 is rotatably connected between the two limiting blocks 12. The first rotating rod 5 and the second rotating rod 10 are perpendicular to each other on the same plane. A plurality of first rotating rods 5 are provided through the side wall of the first rotating rod 5. Bevel gear 6, a plurality of first bevel gears 6 located at the ends of different first rotating rods 5 mesh with different second bevel gears 11. In this way, when the motor 8 is started, the motor 8 drives the second rotating rod 10 to rotate. When the second rotating rod 10 rotates, it drives the second bevel gear 11 to rotate. When the second bevel gear 11 rotates, it drives the first bevel gear 6 at the end of the first rotating rod 5 to rotate. At this time, the plurality of first rotating rods 5 all rotate. .

固定板1顶部还设置有可储存电量的光伏发电系统7。The top of the fixed plate 1 is also provided with a photovoltaic power generation system 7 that can store electricity.

太阳能机构4包括对太阳能进行收集的单晶光伏板13、转动柱18和调节单晶光伏板13角度的调节机构,转动柱18顶部和单晶光伏板13底部均设置有转动块15,多个转动块15相互转动连接,转动柱18底部固定连接有与第一锥齿轮6啮合的第三锥齿轮25,这样设置的目的是当第一锥齿轮6转动时第三锥齿轮25同步转动,且转动柱18侧壁套设有底部与顶盖2固定连接的固定环22,转动柱18贯穿定位孔3,这样设置当第三锥齿轮25转动时可以带动转动柱18进行转动,当转动柱18进行转动时可以带动单晶光伏板13进行转动,转动柱18外侧套设有定位环20,且定位环20底部对称固定连接有呈L形设置的连接杆19,且多个连接杆19均与固定环22固定连接,这样设置可以保证定位环20的稳定。The solar energy mechanism 4 includes a single crystal photovoltaic panel 13 for collecting solar energy, a rotating column 18 and an adjustment mechanism for adjusting the angle of the single crystal photovoltaic panel 13. Both the top of the rotating column 18 and the bottom of the single crystal photovoltaic panel 13 are provided with rotating blocks 15, a plurality of The rotating blocks 15 are rotatably connected to each other, and the bottom of the rotating column 18 is fixedly connected with a third bevel gear 25 that meshes with the first bevel gear 6. The purpose of this arrangement is that when the first bevel gear 6 rotates, the third bevel gear 25 rotates synchronously, and The side wall of the rotating column 18 is covered with a fixed ring 22 whose bottom is fixedly connected to the top cover 2. The rotating column 18 penetrates the positioning hole 3. In this way, when the third bevel gear 25 rotates, the rotating column 18 can be driven to rotate. When the rotating column 18 When rotating, the monocrystalline photovoltaic panel 13 can be driven to rotate. A positioning ring 20 is set on the outside of the rotation column 18, and an L-shaped connecting rod 19 is symmetrically fixed at the bottom of the positioning ring 20, and multiple connecting rods 19 are connected with The fixed ring 22 is fixedly connected, and this arrangement can ensure the stability of the positioning ring 20 .

调节机构包括第二定位杆17、固定连接在第二定位杆17顶部的螺纹杆16以及与螺纹杆16螺纹连接的第一定位杆14,这样设置的目的是通过转动第一定位杆14可以调节第二定位杆17和第一定位杆14相对端距离发生变化,这样可以根据地理环境调节单晶光伏板13的初始角度,且第一定位杆14顶部和单晶光伏板13底部均设置有转动块15,多个转动块15相互转动连接,第二定位杆17底部设置有滑动块26,固定环22侧壁套设有滑动杆21,且滑动块26在滑动杆21上滑动,定位环20内壁开设有环形滑槽24,且滑槽24内滑动连接有滑块23,且第二定位杆17贯穿滑块23,这样设置的目的是当单晶光伏板13发生转动时可以带动滑动块26在滑动杆21上运动。The adjustment mechanism includes a second positioning rod 17, a threaded rod 16 fixedly connected to the top of the second positioning rod 17, and a first positioning rod 14 threadedly connected to the threaded rod 16. The purpose of this arrangement is to adjust the first positioning rod 14 by rotating it. The distance between the opposite ends of the second positioning rod 17 and the first positioning rod 14 changes, so that the initial angle of the single crystal photovoltaic panel 13 can be adjusted according to the geographical environment, and the top of the first positioning rod 14 and the bottom of the single crystal photovoltaic panel 13 are both provided with rotating Block 15, multiple rotating blocks 15 are rotatably connected to each other, a sliding block 26 is provided at the bottom of the second positioning rod 17, a sliding rod 21 is set on the side wall of the fixed ring 22, and the sliding block 26 slides on the sliding rod 21, and the positioning ring 20 An annular chute 24 is provided on the inner wall, and a slider 23 is slidingly connected in the chute 24, and the second positioning rod 17 penetrates the slider 23. The purpose of this arrangement is to drive the slider 26 when the single crystal photovoltaic panel 13 rotates. moves on the sliding rod 21.

滑动杆21包括一个未闭合圆环,且圆环与固定环22之间通过连接杆固定连接,未闭合圆环固定连接有呈M形设置的连接杆,这样设置的目的是当滑动块26在运动至M形连接杆的凹陷处时单晶光伏板13处于初始角度。The sliding rod 21 includes an unclosed ring, and the ring and the fixed ring 22 are fixedly connected by a connecting rod. The unclosed ring is fixedly connected with an M-shaped connecting rod. The purpose of this setting is to when the sliding block 26 is in When moving to the recess of the M-shaped connecting rod, the single crystal photovoltaic panel 13 is at the initial angle.

滑动块26侧端开设有呈T形设置的滑动槽,且滑动块26上开设有空腔,空腔顶部设置有第一极片261,第一极片261相对侧贯穿设置有开关柱264,开关柱264顶部设置有第二极片262,且开关柱264侧壁套设有弹簧263,弹簧263两端分别与第二极片262和滑动块26固定连接,这样个设置的目的是当滑动块26在滑动杆21上滑动时,滑动杆21始终挤压开关柱264,使得第一极片261和第二极片262相互贴合连通,当滑动块26运动至M形连接杆的凹陷处时,由于滑动块26两侧受到凹陷处侧壁的挤压,开关柱264会在弹簧263的拉动下,向下运动,此时第一极片261和第二极片262相互远离,第一极片261和第二极片262断开。A T-shaped sliding groove is provided on the side end of the sliding block 26, and a cavity is provided on the sliding block 26. A first pole piece 261 is provided on the top of the cavity, and a switch column 264 is provided on the opposite side of the first pole piece 261. A second pole piece 262 is provided on the top of the switch column 264, and a spring 263 is set on the side wall of the switch column 264. Both ends of the spring 263 are fixedly connected to the second pole piece 262 and the sliding block 26 respectively. The purpose of this arrangement is to slide the When the block 26 slides on the sliding rod 21, the sliding rod 21 always squeezes the switch column 264, so that the first pole piece 261 and the second pole piece 262 are in contact with each other. When the sliding block 26 moves to the depression of the M-shaped connecting rod, When, since both sides of the sliding block 26 are squeezed by the side walls of the recess, the switch column 264 will move downward under the pull of the spring 263. At this time, the first pole piece 261 and the second pole piece 262 move away from each other. The pole piece 261 and the second pole piece 262 are disconnected.

电动机8控制电路包括第一导线27、第二导线28、第三导线29,电动机8通过光敏控制电路与光伏发电系统7连通,其中光敏控制电路为光控开关亮通电路,这样设置可以在光照强度大于阀值时,电路连通,电动机8工作,在光照强度小于阀值时,电路断开,电动机8不工作,光敏控制电路输入端与光伏发电系统7输出端通过第一导线27连通,光敏控制电路接地端与光伏发电系统7输出端通过第二导线28连通,电动机8电源输入端与第三导线29连通,且电动机8电源输出端与第二导线28连通,第二导线28和第三导线29分别与第一极片261和第二极片262连通,这样设置的目的是,当光照强度降低时,电路断开,电动机8不工作,如果过此时滑动块26不位于M形连接杆的凹陷处时,滑动杆21始终挤压开关柱264,使得第一极片261和第二极片262相互贴合连通,此时第一导线27、第二导线28和第三导线29连通,电动机8继续运动,当滑动块26运动至于M形连接杆的凹陷处时,第一极片261和第二极片262相互远离,第一极片261和第二极片262断开,此时第一导线27、第二导线28和第三导线29断连,电动机8不再运动,这样设置可以保证在光线变暗时,滑动块26始终为位于M形连接杆的凹陷处,单晶光伏板13位于初始角度。The control circuit of the motor 8 includes a first wire 27, a second wire 28, and a third wire 29. The motor 8 is connected to the photovoltaic power generation system 7 through a photosensitive control circuit. The photosensitive control circuit is a light-controlled switch light-on circuit. This setting can be used when lighting When the intensity is greater than the threshold, the circuit is connected and the motor 8 works. When the light intensity is less than the threshold, the circuit is disconnected and the motor 8 does not work. The input end of the photosensitive control circuit and the output end of the photovoltaic power generation system 7 are connected through the first wire 27, and the photosensitive The ground terminal of the control circuit is connected to the output terminal of the photovoltaic power generation system 7 through the second wire 28, the power input terminal of the motor 8 is connected to the third wire 29, and the power output terminal of the motor 8 is connected to the second wire 28. The second wire 28 and the third wire 28 are connected to each other. The wires 29 are connected to the first pole piece 261 and the second pole piece 262 respectively. The purpose of this arrangement is that when the light intensity decreases, the circuit is disconnected and the motor 8 does not work. If the slider 26 is not in the M-shaped connection at this time, When the rod is in the recess, the sliding rod 21 always presses the switch column 264, so that the first pole piece 261 and the second pole piece 262 are connected to each other. At this time, the first wire 27, the second wire 28 and the third wire 29 are connected. , the motor 8 continues to move. When the sliding block 26 moves to the recess of the M-shaped connecting rod, the first pole piece 261 and the second pole piece 262 move away from each other, and the first pole piece 261 and the second pole piece 262 are disconnected. When the first wire 27, the second wire 28 and the third wire 29 are disconnected, the motor 8 no longer moves. This setting can ensure that when the light dims, the sliding block 26 is always located in the depression of the M-shaped connecting rod. Photovoltaic panel 13 is at the initial angle.

工作原理:使用时,通过控制电路的设置,当光照强度降低时,电路断开,电动机8不工作,如果过此时滑动块26不位于M形连接杆的凹陷处时,滑动杆21始终挤压开关柱264,使得第一极片261和第二极片262相互贴合连通,此时第一导线27、第二导线28和第三导线29连通,电动机8继续运动,当滑动块26运动至于M形连接杆的凹陷处时,第一极片261和第二极片262相互远离,第一极片261和第二极片262断开,此时第一导线27、第二导线28和第三导线29断连,电动机8不再运动,这样设置可以保证在光线变暗时,滑动块26始终为位于M形连接杆的凹陷处,单晶光伏板13位于初始角度。Working principle: During use, through the setting of the control circuit, when the light intensity decreases, the circuit is disconnected and the motor 8 does not work. If the sliding block 26 is not located in the depression of the M-shaped connecting rod at this time, the sliding rod 21 is always squeezed. Press the switch column 264 so that the first pole piece 261 and the second pole piece 262 are connected to each other. At this time, the first wire 27, the second wire 28 and the third wire 29 are connected. The motor 8 continues to move. When the slider 26 moves As for the recess of the M-shaped connecting rod, the first pole piece 261 and the second pole piece 262 are far away from each other, and the first pole piece 261 and the second pole piece 262 are disconnected. At this time, the first conductor 27, the second conductor 28 and The third wire 29 is disconnected and the motor 8 no longer moves. This arrangement can ensure that when the light dims, the sliding block 26 is always located in the depression of the M-shaped connecting rod and the single crystal photovoltaic panel 13 is located at the initial angle.

以上只通过说明的方式描述了本实用新型的某些示范性实施例,毋庸置疑,对于本领域的普通技术人员,在不偏离本实用新型的精神和范围的情况下,可以用各种不同的方式对所描述的实施例进行修正。因此,上述附图和描述在本质上是说明性的,不应理解为对本实用新型权利要求保护范围的限制。Certain exemplary embodiments of the present invention have been described above only by way of illustration. Needless to say, those of ordinary skill in the art can use various different embodiments without departing from the spirit and scope of the present invention. Modifications to the described embodiments are made. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of the claims of the present invention.

Claims (9)

1. The utility model provides an assembled steel concrete prefabricated house solar panel mounting structure, includes fixed plate (1) and steel concrete prefabricated house, its characterized in that, fixed plate (1) is through mounting structure fixed connection at steel concrete prefabricated house roof, fixed plate (1) top is provided with top cap (2), and has seted up a plurality of locating holes (3) on top cap (2), a plurality of all be provided with solar mechanism (4) in locating hole (3), fixed plate (1) top is provided with actuating mechanism.
2. The solar panel installation structure of the fabricated steel concrete prefabricated house according to claim 1, wherein the installation structure comprises a bolt fixing mechanism and a mounting frame fixing mechanism which is arranged in a triangular mode.
3. The solar panel installation structure of the prefabricated building of the fabricated steel concrete according to claim 1, wherein the driving mechanism comprises a motor (8) fixedly connected with the top of the fixed plate (1), a plurality of first limiting blocks (9) symmetrically and fixedly connected with the top of the fixed plate (1), the first limiting blocks (9) are rotationally connected with a same second rotating rod (10), the second rotating rod (10) is provided with a plurality of second bevel gears (11) in a penetrating manner, the top of the fixed plate (1) is provided with a plurality of pairs of second limiting blocks (12), the pair of second limiting blocks (12) are rotationally connected with a same first rotating rod (5), the first rotating rods (5) and the second rotating rods (10) are mutually perpendicular on the same plane, the side walls of the first rotating rods (5) are provided with a plurality of first bevel gears (6) in penetrating manner, and the first bevel gears (6) positioned at the end parts of different first rotating rods (5) are meshed with different second bevel gears (11).
4. A prefabricated house solar panel installation structure of fabricated steel concrete according to claim 3, wherein the top of the fixed plate (1) is further provided with a photovoltaic power generation system (7) capable of storing electric quantity.
5. The prefabricated house solar panel mounting structure of assembled steel concrete according to claim 4, wherein the solar energy mechanism (4) comprises a monocrystalline photovoltaic panel (13) for collecting solar energy, a rotating column (18) and an adjusting mechanism for adjusting the angle of the monocrystalline photovoltaic panel (13), the top of the rotating column (18) and the bottom of the monocrystalline photovoltaic panel (13) are both provided with rotating blocks (15), the rotating blocks (15) are connected with each other in a rotating way, a third bevel gear (25) meshed with the first bevel gear (6) is fixedly connected to the bottom of the rotating column (18), a fixed ring (22) fixedly connected with the top cover (2) is sleeved on the side wall of the rotating column (18), the rotating column (18) penetrates through the positioning hole (3), a positioning ring (20) is sleeved on the outer side of the rotating column (18), connecting rods (19) which are arranged in an L shape are symmetrically and fixedly connected to the bottom of the positioning ring (20), and the connecting rods (19) are fixedly connected with the fixed ring (22).
6. The solar panel mounting structure for the prefabricated building of the fabricated steel concrete according to claim 5, wherein the adjusting mechanism comprises a second positioning rod (17), a threaded rod (16) fixedly connected to the top of the second positioning rod (17) and a first positioning rod (14) in threaded connection with the threaded rod (16), rotating blocks (15) are arranged at the top of the first positioning rod (14) and the bottom of the single crystal photovoltaic panel (13), the rotating blocks (15) are connected in a mutually rotating mode, a sliding block (26) is arranged at the bottom of the second positioning rod (17), a sliding rod (21) is sleeved on the side wall of the fixed ring (22), the sliding block (26) slides on the sliding rod (21), an annular sliding groove (24) is formed in the inner wall of the positioning ring (20), a sliding block (23) is connected in a sliding mode, and the second positioning rod (17) penetrates through the sliding block (23).
7. The solar panel installation structure of the prefabricated building of the fabricated steel concrete according to claim 6, wherein the sliding rod (21) comprises an unclosed circular ring, the circular ring is fixedly connected with the fixed ring (22) through a connecting rod, and the unclosed circular ring is fixedly connected with the connecting rod which is arranged in an M shape.
8. The solar panel installation structure of the prefabricated house of the fabricated steel concrete according to claim 7, wherein a sliding groove which is arranged in a T shape is formed in the side end of the sliding block (26), a cavity is formed in the sliding block (26), a first pole piece (261) is arranged at the top of the cavity, a switch column (264) is arranged on the opposite side of the first pole piece (261) in a penetrating mode, a second pole piece (262) is arranged at the top of the switch column (264), a spring (263) is sleeved on the side wall of the switch column (264), and two ends of the spring (263) are fixedly connected with the second pole piece (262) and the sliding block (26) respectively.
9. The prefabricated house solar panel mounting structure according to claim 8, wherein the motor (8) control circuit comprises a first wire (27), a second wire (28) and a third wire (29), the motor (8) is communicated with the photovoltaic power generation system (7) through a photosensitive control circuit, the input end of the photosensitive control circuit is communicated with the output end of the photovoltaic power generation system (7) through the first wire (27), the ground end of the photosensitive control circuit is communicated with the output end of the photovoltaic power generation system (7) through the second wire (28), the power input end of the motor (8) is communicated with the third wire (29), the power output end of the motor (8) is communicated with the second wire (28), and the second wire (28) and the third wire (29) are respectively communicated with the first pole piece (261) and the second pole piece (262).
CN202320565696.7U 2023-03-22 2023-03-22 Solar panel mounting structure of prefabricated house of assembled steel concrete Expired - Fee Related CN219659630U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116260377A (en) * 2023-03-22 2023-06-13 山东明达建筑科技有限公司 Application of solar energy technology for a prefabricated steel-concrete prefabricated house

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116260377A (en) * 2023-03-22 2023-06-13 山东明达建筑科技有限公司 Application of solar energy technology for a prefabricated steel-concrete prefabricated house
CN116260377B (en) * 2023-03-22 2025-11-21 山东明达建筑科技有限公司 Assembled steel concrete prefabricated house based on solar technology

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