WO2021077357A1 - 一种具有调节角度功能的太阳能电池板 - Google Patents

一种具有调节角度功能的太阳能电池板 Download PDF

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Publication number
WO2021077357A1
WO2021077357A1 PCT/CN2019/113037 CN2019113037W WO2021077357A1 WO 2021077357 A1 WO2021077357 A1 WO 2021077357A1 CN 2019113037 W CN2019113037 W CN 2019113037W WO 2021077357 A1 WO2021077357 A1 WO 2021077357A1
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screw
rod
frame
sleeve
transmission disc
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PCT/CN2019/113037
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English (en)
French (fr)
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赵翊彤
孙燕
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赵翊彤
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Publication of WO2021077357A1 publication Critical patent/WO2021077357A1/zh

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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02SGENERATION OF ELECTRIC POWER BY CONVERSION OF INFRARED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, e.g. USING PHOTOVOLTAIC [PV] MODULES
    • H02S20/00Supporting structures for PV modules
    • H02S20/30Supporting structures being movable or adjustable, e.g. for angle adjustment
    • H02S20/32Supporting structures being movable or adjustable, e.g. for angle adjustment specially adapted for solar tracking
    • 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

Definitions

  • the invention relates to the technical field of solar energy, in particular to a solar cell panel with an angle adjustment function.
  • Solar cells are batteries that convert light energy into electrical energy. They are energy-saving and environmentally friendly and can make full use of natural resources to save electricity. Solar energy itself is clean, pollution-free and easy to obtain, which can reduce environmental pressure.
  • the purpose of the present invention is to provide a solar cell panel with an angle adjustment function to solve the above background technology. It is proposed that the existing solar cell panel cannot adjust the angle according to the change of the sun's rays, resulting in that the solar cell cannot fully utilize the sun's light. The problem.
  • a solar panel with an angle adjustment function including a solar panel, a first screw, a sleeve, and a stopper, the solar panel is located above the frame, and the solar panel is located above the frame.
  • a first rotating shaft is provided at the connection between the lower part of the first screw rod and the frame, the first screw rod is installed through the inside of the frame, and the connection between the first screw rod and the frame is equipped with a bearing, and the rod end of the first screw rod is connected with A knob, the sleeve is installed on the outer wall of the first screw rod, and one end of the push rod is connected above the sleeve, and a second shaft is installed at the connection between the sleeve and the push rod, and the other end of the push rod is fixed At the bottom of the movable block, a sliding rod is installed through the movable block.
  • the movable block is connected to one end of another push rod through the sliding rod, and the other end of the other push rod is connected to the upper side of the battery plate.
  • a second screw rod is installed on the block, and another bearing is provided at the connection between the movable block and the second screw rod.
  • the stopper is fixed on the outer wall of the second screw rod, and the second screw rod is installed with a drive disc,
  • the outer wall of the transmission disc is connected with a belt, and the transmission disc and the belt are both arranged inside the fixed box, the transmission disc is connected to another transmission disc through the belt, and a connecting rod is arranged inside the other transmission disc, and Another knob is connected to the rod end of the connecting rod.
  • the battery plate and the frame constitute a rotating structure, and the frame and the first screw rod are connected through.
  • the first screw rod is designed with two thread-like structures, and the two thread-like structures on the first screw rod have opposite directions.
  • the inner wall of the sleeve is designed as a threaded structure, and the sleeve is threadedly connected with the first screw rod.
  • the push rod and the sliding rod form a rotating structure
  • the sliding rod and the movable block form a relative sliding structure
  • two second screw rods are provided symmetrically with respect to the central axis of the frame, and the second screw rods are threadedly connected with the stopper.
  • the beneficial effect of the present invention is that the solar cell with the function of adjusting the angle can adjust the angle of the solar cell with the change of the sun's rays, so that the solar cell can fully absorb the sun's rays;
  • the first screw rod is provided with two oppositely-directed threads.
  • the rotation of the first screw rod can drive the two sleeves to move in the opposite direction on the first screw rod, so as to change the angle of the push rod.
  • the movable block is provided with a groove, and the sliding rod is arranged in the groove on the movable block to slide in the groove on the movable block, so that the angle of the solar panel is changed;
  • the stopper penetrates the groove provided on the movable block, and the stopper is threadedly connected with the second screw rod.
  • the stopper can move on the second screw rod with the rotation of the second screw rod, thereby blocking the sliding rod, Make the angle of the solar panel fixed.
  • Figure 1 is a schematic side view of the structure of the present invention
  • FIG. 2 is a schematic diagram of the top view structure of the installation of the first screw rod of the present invention
  • FIG. 3 is a schematic diagram of the side view structure of the second screw rod of the present invention.
  • Figure 4 is a schematic diagram of the front view of the installation of the stopper of the present invention.
  • Fig. 5 is a schematic diagram of the back structure of the present invention.
  • a solar panel with angle adjustment function including a solar panel 1, a frame 2, a first rotating shaft 3, a first screw 4, a knob 5, and a sleeve 6.
  • Located above the frame 2, and below the battery plate 1 and the connection of the frame 2 is provided with a first rotating shaft 3
  • the first screw 4 is installed on the inside of the frame 2
  • a bearing 12 is installed
  • the rod end of the first screw rod 4 is connected with a knob 5
  • the sleeve 6 is installed on the outer wall of the first screw rod 4, and one end of the push rod 9 is connected above the sleeve 6, and the sleeve 6
  • a second shaft 7 is installed at the connection with the push rod 9.
  • the other end of the push rod 9 is fixed at the bottom of the movable block 8, and the movable block 8 is installed with a sliding rod 10 through it.
  • the movable block 8 is connected to the other through the sliding rod 10
  • One end of the push rod 9 is connected to each other, and the other end of the other push rod 9 is connected to the upper side of the battery plate 1.
  • a second screw rod 11 is installed on the movable block 8, and the connection between the movable block 8 and the second screw rod 11 is provided There is another bearing 12, the stopper 13 is fixed on the outer wall of the second screw 11, and the second screw 11 is equipped with a transmission disc 14.
  • the outer wall of the transmission disc 14 is connected with a belt 15, and the transmission disc 14 and the belt 15 are both Set inside the fixed box 16, the transmission disc 14 is connected to another transmission disc 14 through a belt 15, and the other transmission disc 14 is provided with a connecting rod 17 inside, and the rod end of the connecting rod 17 is connected with another knob 5 ;
  • the battery plate 1 and the frame 2 form a rotating structure, and the frame 2 is connected with the first screw rod 4 through.
  • the connection between the battery plate 1 and the frame 2 is provided with a first rotating shaft 3, and the battery plate 1 can rotate around the first rotating shaft 3 , So that the first screw 4 can be fixed inside the frame 2, so that the sleeve 6 on the outer wall of the first screw 4 will not fall out of the frame 2 when sliding along the first screw 4;
  • the first screw 4 is designed with two thread-like structures, and the two thread-like structures on the first screw 4 have opposite directions.
  • the inner wall of the sleeve 6 is designed as a threaded structure, and the sleeve 6 and the first screw 4 Threaded connection, the rotation of the first screw 4 can drive the sleeve 6 to always move in the opposite direction, so that the sleeve 6 drives the push rod 9 to move, and the push rod 9 drives the movable block 8 to rise and fall, thereby changing the battery panel 1.
  • Angle
  • the push rod 9 and the slide rod 10 constitute a rotating structure, and the slide rod 10 and the movable block 8 constitute a relative sliding structure.
  • the connection between the push rod 9 and the slide rod 10 exists in the gap, and the push rod 9 can rotate around the slide rod 10 to make the The angle of the solar cell can be changed, and the sliding rod 10 can slide along the groove on the movable block 8 (shown in the figure, but not marked) under the push of the push rod 9;
  • second screw rods 11 There are two second screw rods 11 symmetrically arranged with respect to the central axis of the frame 2, and the second screw rod 11 is threadedly connected with the stopper 13, so that the rotation of the second screw rod 11 can drive the stopper 13 to move, so that the stopper 13 can
  • the sliding rod 10 is fixed to fix the angle of the battery panel 1 so that both sides of the battery panel 1 can be fixed by the stoppers 13 on the second screw rod 11 to make the solar cell more stable.
  • the rotation of the first screw 4 drives the sleeve 6 on the outer wall of the first screw 4 to move along the first screw 4, and the bottom of the sleeve 6 is clamped on the groove of the frame 2 (in the figure) It has been drawn but not marked), so that the sleeve 6 can be displaced along the groove of the frame 2, so that the displacement process of the sleeve 6 is more stable. Because the two threads on the first screw 4 are in opposite directions, The two sleeves 6 on the first screw 4 always move in opposite directions. The sleeve 6 is connected to the push rod 9 through the second rotating shaft 7.
  • the movable block 8 is designed as a "U"-shaped structure, and the movable block 8 is connected to the other through the sliding rod 10
  • One end of a push rod 9 is connected to each other, the sliding rod 10 is arranged in a groove on the movable block 8 (shown in the figure, but not marked), and the other end of the other push rod 9 is fixed on the upper side of the battery plate 1.
  • the lifting of the movable block 8 can drive the upper side of the battery plate 1 to rise through another push rod 9, and the lower side of the battery plate 1 is connected to the frame 2 through the first rotating shaft 3, so that the battery plate 1 can go around the first rotating shaft 3 Rotate to change the angle of the battery plate 1.
  • a second screw 11 is installed on the movable block 8, and another bearing 12 is installed at the connection between the movable block 8 and the second screw 11, so that the second screw 11 The rotation is smoother.
  • a transmission disc 14 is installed on the second screw rod 11. The outer wall of the transmission disc 14 is connected with a belt 15.
  • the transmission disc 14 rotates with another transmission disc 14 through the belt 15, and the inner side of the other transmission disc 14 is connected with a connection Rod 17, the rod end of the connecting rod 17 is fixed with another knob 5, turning the other knob 5 causes the other knob 5 to drive the connecting rod 17 to rotate, so that the other transmission disc 14 on the connecting rod 17 rotates, so that the transmission disc 14
  • the drive disc 14 on the second screw rod 11 is driven to rotate by the belt 15 to rotate the second screw rod 11.
  • the transmission disc 14 and the belt 15 are both arranged in the fixed box 16, and the fixed box 16 can carry out the transmission disc 14 and the belt 15
  • a stop 13 is connected to the outside of the second screw 11, and the bottom of the stop 13 is designed as a threaded structure.
  • the stop 13 is threadedly connected with the second screw 11, so that the rotation of the second screw 11 can drive the stop 13 is displaced, the stopper 13 is connected to the movable block 8 through, the top of the stopper 13 penetrates and is arranged in the groove on the movable block 8, and the upper end of the stopper 13 is located in the groove on the movable block 8, which can carry out the sliding rod 10
  • Blocking prevents the sliding rod 10 from sliding autonomously, thereby fixing the battery board 1 so as to facilitate the adjustment of the angle of the battery board 1 according to the direction of light.

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  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Development (AREA)
  • Photovoltaic Devices (AREA)

Abstract

一种具有调节角度功能的太阳能电池板,包括电池板(1)、第一丝杆(4)、套管(6)和挡块(13),所述电池板(1)位于框架(2)的上方,所述第一丝杆(4)贯穿安装于框架(2)的内侧,所述套管(6)安装于第一丝杆(4)的外壁,推杆(9)的另一端固定于活动块(8)的底部,所述活动块(8)通过滑杆(10)与另一推杆(9)的一端相互连接,所述活动块(8)上安装有第二丝杆(11),且活动块(8)与第二丝杆(11)的连接处设置有另一轴承(12),所述挡块(13)固定于第二丝杆(11)的外壁,传动盘(14)的外壁连接有皮带(15),所述传动盘(14)通过皮带(15)与另一传动盘(14)相互连接,且另一传动盘(14)的内部设置有连接杆(17)。该具有调节角度功能的太阳能电池板,能够随着太阳光线的变化对该太阳能电池的角度进行调节,使该太阳能电池能够充分吸收太阳光照。

Description

一种具有调节角度功能的太阳能电池板 技术领域
本发明涉及太阳能技术领域,具体为一种具有调节角度功能的太阳能电池板。
背景技术
太阳能电池是将光能转化为电能的电池,具有节能环保的特点能够充分利用自然资源节约用电,太阳能本身清洁无污染且简单易得,能够减少环境的压力。
然而现有的太阳能电池板不能够随着太阳光线的变化进行角度调节,导致太阳能电池不能充分的利用太阳光。针对上述问题,急需在原有的太阳能电池基础上进行创新设计。
发明内容
本发明的目的在于提供一种具有调节角度功能的太阳能电池板,以解决上述背景技术提出现有的太阳能电池板不能够随着太阳光线的变化进行角度调节,导致太阳能电池不能充分的利用太阳光的问题。
为实现上述目的,本发明提供如下技术方案:一种具有调节角度功能的太阳能电池板,包括电池板、第一丝杆、套管和挡块,所述电池板位于框架的上方,且电池板的下方与框架的连接处设置有第一转轴,所述第一丝杆贯穿安装于框架的内侧,且第一丝杆与框架的连接处安装有轴承,并且第一丝杆的杆端连接有旋钮,所述套管安装于第一丝杆的外壁,且套管的上方连接有推杆的一端,并且套管与推杆的连接处安装有第二转轴,所述推杆的另一端固定于活动块的底部,且活动块上贯穿安装有滑杆,所述活动块通过滑杆与另一推杆的一端相互连接,且另一推杆的另一端连接于电池板上方,所述活动块上安装有第二丝杆,且活动块与第二丝杆的连接处设置有另一轴承,所述挡块固定于第二丝杆的外壁,且第二丝杆上安装有传动盘,所述传动盘 的外壁连接有皮带,且传动盘与皮带均设置于固定盒的内部,所述传动盘通过皮带与另一传动盘相互连接,且另一传动盘的内部设置有连接杆,并且连接杆的杆端连接有另一旋钮。
优选的,所述电池板与框架构成转动结构,且框架与第一丝杆贯穿连接。
优选的,所述第一丝杆上设计有2段螺纹状结构,且第一丝杆上的2段螺纹状结构方向相反。
优选的,所述套管的内壁设计为螺纹状结构,且套管与第一丝杆螺纹连接。
优选的,所述推杆与滑杆构成转动结构,且滑杆与活动块构成相对滑动结构。
优选的,所述第二丝杆关于框架的中心轴线对称设置有2个,且第二丝杆与挡块螺纹连接。
与现有技术相比,本发明的有益效果是:该具有调节角度功能的太阳能电池,能够随着太阳光线的变化对该太阳能电池的角度进行调节,使该太阳能电池能够充分吸收太阳光照;
1.第一丝杆上设置有2段方向相反的螺纹,第一丝杆的转动能够带动2个套管在第一丝杆始终朝着相反的方向运动,从而使推杆的夹角产生变化,以带动活动块进行升降,以便调节太阳能电池板的角度;
2.活动块上设置有槽,滑杆设置在活动块上的槽内能够在活动块上的槽内滑动,使太阳能板的角度产生变化;
3.挡块贯通设置在活动块上的槽内,且挡块与第二丝杆螺纹连接,挡块能够随着第二丝杆的转动,在第二丝杆上移动,从而挡住滑杆,使太阳能板的角度固定。
附图说明
图1为本发明侧视结构示意图;
图2为本发明第一丝杆安装俯视结构示意图;
图3为本发明第二丝杆安装侧视结构示意图;
图4为本发明挡块安装正视结构示意图;
图5为本发明背面结构示意图。
图中:1、电池板;2、框架;3、第一转轴;4、第一丝杆;5、旋钮;6、套管;7、第二转轴;8、活动块;9、推杆;10、滑杆;11、第二丝杆;12、轴承;13、挡块;14、传动盘;15、皮带;16、固定盒;17、连接杆。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
请参阅图1-5,本发明提供一种技术方案:一种具有调节角度功能的太阳能电池板,包括电池板1、框架2、第一转轴3、第一丝杆4、旋钮5、套管6、第二转轴7、活动块8、推杆9、滑杆10、第二丝杆11、轴承12、挡块13、传动盘14、皮带15、固定盒16和连接杆17,电池板1位于框架2的上方,且电池板1的下方与框架2的连接处设置有第一转轴3,第一丝杆4贯穿安装于框架2的内侧,且第一丝杆4与框架2的连接处安装有轴承12,并且第一丝杆4的杆端连接有旋钮5,套管6安装于第一丝杆4的外壁,且套管6的上方连接有推杆9的一端,并且套管6与推杆9的连接处安装有第二转轴7,推杆9的另一端固定于活动块8的底部,且活动块8上贯穿安装有滑杆10,活动块8通过滑杆10与另一推杆9的一端相互连接,且另一推杆9的另一端连接于电池板1上方,活动块8上安装有第二丝杆11,且活动块8与第二丝杆11的连接处设置有另一轴承12,挡块13固定于第二丝杆11的外壁,且第二丝杆11上安装有传动盘14,传动盘14的外壁连接有皮带15,且传动盘14 与皮带15均设置于固定盒16的内部,传动盘14通过皮带15与另一传动盘14相互连接,且另一传动盘14的内部设置有连接杆17,并且连接杆17的杆端连接有另一旋钮5;
电池板1与框架2构成转动结构,且框架2与第一丝杆4贯穿连接,电池板1与框架2的连接处设置有第一转轴3,电池板1能够绕着第一转轴3进行转动,使第一丝杆4能够固定在框架2内部,使第一丝杆4外壁的套管6在沿着第一丝杆4滑动时不会脱出框架2外;
第一丝杆4上设计有2段螺纹状结构,且第一丝杆4上的2段螺纹状结构方向相反,套管6的内壁设计为螺纹状结构,且套管6与第一丝杆4螺纹连接,第一丝杆4的转动能够带动套管6始终朝着相反的方向运动,以便套管6带动推杆9移动,使推杆9带动活动块8进行升降,从而改变电池板1的角度;
推杆9与滑杆10构成转动结构,且滑杆10与活动块8构成相对滑动结构推杆9与滑杆10的连接存在在间隙,推杆9能够绕着滑杆10进行转动,使该太阳能电池的角度能够产生变化,滑杆10能够在推杆9推动下沿着活动块8上的槽内(图中已画出,但未标注)进行滑动;
第二丝杆11关于框架2的中心轴线对称设置有2个,且第二丝杆11与挡块13螺纹连接,是第二丝杆11的转动能够带动挡块13运动,使挡块13能够对滑杆10进行固定,以便固定住电池板1的角度,使电池板1的两侧均能够被第二丝杆11上的挡块13固定住,使该太阳能电池更加稳固。
工作原理:在使用该具有调节角度功能的太阳能电池时,首先根据图2,转动旋钮5,使旋钮5的转动带动第一丝杆4转动,第一丝杆4与框架2的连接处安装有轴承12,轴承12能减少使第一丝杆4与框架2之间的磨损,使第一丝杆4的转动更为顺畅;
根据图1-5,使第一丝杆4的转动带动第一丝杆4外壁的套管6沿着第一 丝杆4进行位移,套管6的底部卡在框架2的槽上(图中已画出,但未标注),使套管6能够沿着框架2的槽进行位移,从而使套管6位移的过程更加的平稳,由于第一丝杆4上的2段螺纹方向相反,使第一丝杆4上的2个套管6始终朝着相反的方向进行位移,套管6通过第二转轴7与推杆9相互连接,套管6相互接近时,能够带动2个推杆9相互接近,使2个推杆9之间的夹角变小,使推杆9能够推动活动块8升高,活动块8设计为“U”字型结构,活动块8通过滑杆10与另一推杆9的一端相互连接,滑杆10设置于活动块8上的槽内(图中已画出,但未标注)且另一推杆9的另一端固定在电池板1的上侧,活动块8的升高能够通过另一推杆9带动电池板1的上侧上升,且电池板1的下侧通过第一转轴3与框架2相互连接,使电池板1能够绕着第一转轴3转动,使电池板1角度发生改变,活动块8上安装有第二丝杆11,且活动块8与第二丝杆11的连接处安装有另一轴承12,使第二丝杆11的转动更为顺畅,第二丝杆11上安装传动盘14,传动盘14的外壁连接有皮带15,传动盘14通过皮带15与另一传动盘14转动,另一传动盘14的内侧连接有连接杆17,连接杆17的杆端固定有另一旋钮5,转动另一旋钮5使另一旋钮5带动连接杆17转动,从而使连接杆17上的另一传动盘14转动,使传动盘14通过皮带15带动第二丝杆11上的传动盘14转动,使第二丝杆11转动,传动盘14和皮带15均设置在固定盒16内,固定盒16能够对传动盘14和皮带15进行保护,第二丝杆11的外侧连接有挡块13,挡块13的底部设计为螺纹状结构,挡块13与第二丝杆11螺纹连接,使第二丝杆11的转动能够带动挡块13产生位移,挡块13与活动块8贯穿连接,挡块13的顶部贯通设置于活动块8上的槽中,挡块13的上端位于活动块8上的槽中,能够对滑杆10进行阻挡,防止滑杆10自主滑动,从而将电池板1固定,便于根据光照的方向对电池板1的角度进行调节。
尽管参照前述实施例对本发明进行了详细的说明,对于本领域的技术人 员来说,其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换,凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (6)

  1. 一种具有调节角度功能的太阳能电池板,包括电池板(1)、第一丝杆(4)、套管(6)和挡块(13),其特征在于:所述电池板(1)位于框架(2)的上方,且电池板(1)的下方与框架(2)的连接处设置有第一转轴(3),所述第一丝杆(4)贯穿安装于框架(2)的内侧,且第一丝杆(4)与框架(2)的连接处安装有轴承(12),并且第一丝杆(4)的杆端连接有旋钮(5),所述套管(6)安装于第一丝杆(4)的外壁,且套管(6)的上方连接有推杆(9)的一端,并且套管(6)与推杆(9)的连接处安装有第二转轴(7),所述推杆(9)的另一端固定于活动块(8)的底部,且活动块(8)上贯穿安装有滑杆(10),所述活动块(8)通过滑杆(10)与另一推杆(9)的一端相互连接,且另一推杆(9)的另一端连接于电池板(1)上方,所述活动块(8)上安装有第二丝杆(11),且活动块(8)与第二丝杆(11)的连接处设置有另一轴承(12),所述挡块(13)固定于第二丝杆(11)的外壁,且第二丝杆(11)上安装有传动盘(14),所述传动盘(14)的外壁连接有皮带(15),且传动盘(14)与皮带(15)均设置于固定盒(16)的内部,所述传动盘(14)通过皮带(15)与另一传动盘(14)相互连接,且另一传动盘(14)的内部设置有连接杆(17),并且连接杆(17)的杆端连接有另一旋钮(5)。
  2. 根据权利要求1所述的一种具有调节角度功能的太阳能电池板,其特征在于:所述电池板(1)与框架(2)构成转动结构,且框架(2)与第一丝杆(4)贯穿连接。
  3. 根据权利要求1所述的一种具有调节角度功能的太阳能电池板,其特征在于:所述第一丝杆(4)上设计有2段螺纹状结构,且第一丝杆(4)上的2段螺纹状结构方向相反。
  4. 根据权利要求1所述的一种具有调节角度功能的太阳能电池板,其特征在于:所述套管(6)的内壁设计为螺纹状结构,且套管(6)与第一丝杆(4)螺纹连接。
  5. 根据权利要求1所述的一种具有调节角度功能的太阳能电池板,其特征在于:所述推杆(9)与滑杆(10)构成转动结构,且滑杆(10)与活动块(8)构成相对滑动结构。
  6. 根据权利要求1所述的一种具有调节角度功能的太阳能电池板,其特征在于:所述第二丝杆(11)关于框架(2)的中心轴线对称设置有2个,且第二丝杆(11)与挡块(13)螺纹连接。
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