WO2017032196A2 - 太阳能电池板可旋转摆动固定支架 - Google Patents

太阳能电池板可旋转摆动固定支架 Download PDF

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Publication number
WO2017032196A2
WO2017032196A2 PCT/CN2016/090919 CN2016090919W WO2017032196A2 WO 2017032196 A2 WO2017032196 A2 WO 2017032196A2 CN 2016090919 W CN2016090919 W CN 2016090919W WO 2017032196 A2 WO2017032196 A2 WO 2017032196A2
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Prior art keywords
solar panel
fixing
fixing member
transition connecting
disposed
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PCT/CN2016/090919
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English (en)
French (fr)
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WO2017032196A3 (zh
Inventor
王建郡
贺文祥
施军民
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苏州泽海电子塑胶有限公司
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Priority to JP2016600112U priority Critical patent/JP3212778U/ja
Publication of WO2017032196A2 publication Critical patent/WO2017032196A2/zh
Publication of WO2017032196A3 publication Critical patent/WO2017032196A3/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
    • 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
    • H02S20/20Supporting structures directly fixed to an immovable object
    • H02S20/22Supporting structures directly fixed to an immovable object specially adapted for buildings
    • H02S20/23Supporting structures directly fixed to an immovable object specially adapted for buildings specially adapted for roof structures
    • 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

Definitions

  • the invention relates to a slewing and swinging fixing bracket for a solar panel, in particular to a bracket for mounting and fixing a roof solar panel.
  • the use of solar energy sources in the prior art is to collect solar energy sources through solar panels.
  • the fixing bracket used for fixing the solar panel in the prior art has a fixed structure and a single function, and cannot be oscillated and rotated, and cannot be well adapted to the diversity of the roof, and can no longer meet the development requirements of the current solar panel.
  • the technical problem to be solved by the present invention is that the fixing bracket for fixing the solar panel in the prior art has a fixed structure, a single function, and cannot swing and rotate, which is not suitable for a variety of roofs.
  • the invention adopts an aluminum base assembly and a movable bracket assembly to achieve the purpose of reducing weight, and realizes the reliable grounding of the transmission solar panel through the steel conduction member;
  • the connecting screw connects the base assembly and the movable bracket assembly and realizes reliable coupling of the solar panels through the movable bracket assembly, thereby realizing the function of the entire fixing bracket.
  • the technical solution adopted by the present invention is:
  • a solar panel rotatable swing fixing bracket includes a base assembly and a movable bracket assembly vertically disposed above the base assembly by a transition connecting screw;
  • the base assembly includes a left fixing member, a right fixing member and a transition connecting member; the left fixing member and the right fixing member are cooperatively arranged and symmetrically arranged, and the left fixing member and the right fixing member are provided with a groove for mutually fixing and fixing the bracket.
  • the tops of the left fixing member and the right fixing member are respectively provided with horizontal flanges which are engaged with the transition connecting members; the transition connecting screw is vertically disposed at the top of the left fixing member; and the transition connecting member is horizontally turned through the transition connecting screw Edge, the transition piece, the left fixing piece and the right fixing piece are integrated into one body;
  • the movable bracket assembly comprises an upper clamping member, a lower clamping member and a conducting member; the lower clamping member is mounted on the transition connecting screw and is disposed on the periphery of the transitional connecting member, and the two ends of the lower clamping member are convexly arranged to support the support of the solar battery a plane; a card slot for mounting a conducting member is disposed on the supporting plane; the upper card member is mounted on the transition connecting screw, and both ends of the upper card member are convexly disposed to be bent corresponding to the supporting plane of the lower card member;
  • the upper surface corresponding to the support plane is a plane; a solar panel installation space is formed between the bend and the support plane, and the installation and fixation of the solar panel are clamped in the solar panel installation space by the transitional connection screw; the conduction member is inserted into the support In the card slot on the plane, the conductive member is convexly disposed on the conductive member and the conductive protrusion is pierced in the insertion member of
  • the left fixing member, the right fixing member, the upper clamping member and the lower clamping member are made of aluminum; and the conducting member is made of steel.
  • the left fixing member, the right fixing member, the upper card member and the lower card member made of aluminum are used to reduce the weight of the fixing bracket as a whole.
  • a further improvement of the above technical solution is that the conductive bumps are of a meandering type.
  • the technical solution of the invention adopts a ⁇ -shaped conductive protrusion, the purpose of which is to facilitate insertion into the card slot, and at the same time, to better contact the solar panel frame installed in the solar panel installation space, and effectively realize the grounding of the solar panel. problem.
  • a limiting protrusion is arranged on the exposed end of the conducting member.
  • the transition connecting screw is a hexagonal bolt and the bolt head is fixedly embedded on the horizontal flange of the left fixing member.
  • friction ribs are convexly disposed on a surface of the lower card member perpendicular to the support plane, and the friction ribs are uniformly disposed and symmetrically disposed.
  • the friction rib in the technical solution of the present invention can effectively enhance the friction of the solar panel to make the solar panel fixed more firmly; and the design of the friction rib can also effectively improve the rigidity of the lower card.
  • the invention has the following beneficial effects:
  • the solar panel of the invention can be rotatably oscillating and fixing the bracket, and the aluminum base assembly and the movable bracket assembly are used to achieve the purpose of reducing the weight, and the grounding problem of the solar panel is realized by the steel connecting member; finally, the transitional connecting screw is adopted.
  • the base assembly and the movable bracket assembly are connected and the solar panel is reliably mounted on a variety of roofs by the movable bracket assembly to realize the function of the entire fixed bracket.
  • the solar panel of the invention can be rotatably oscillating and fixing the bracket, and the main body has a simple overall structure, and the fixing and fixing of the left fixing member and the right fixing member are adopted to quickly realize the mounting and fixing of the fixing bracket; the fixing bracket is free from the traditional fixing
  • the structure of the bracket is fixed, the function is single, and it is impossible to swing and rotate, which is not suitable for the diversity of the roof, and meets the development requirements of the current solar panel.
  • Fig. 1 is a schematic perspective view of the present embodiment.
  • Figure 2 is an exploded view of Figure 1.
  • transition connecting screw 2, left fixing member, 3, right fixing member, 4, transition piece, 5, groove, 6, horizontal flange, 7, upper card, 8, lower card, 9, conduction parts, 10, support plane, 11, card slot, 12, bending, 13, solar panel installation space, 14, conductive bumps, 15, friction ribs, 16, limit bumps.
  • the solar panel rotatable swing fixing bracket includes a base assembly and a movable bracket assembly, and the movable bracket assembly is vertically disposed above the base assembly and Connected by a transitional connection screw 1.
  • the transition joint screw 1 in this embodiment employs a hexagonal bolt of the prior art.
  • the base assembly includes a left fixing member 2, a right fixing member 3, and a transition piece 4; the left fixing member, the right fixing member and the transition connecting member 4 in this embodiment are each made of aluminum.
  • the left fixing member 2 and the right fixing member 3 are matched and symmetrically disposed, and the left fixing member 2 and the right fixing member 3 are respectively provided with a groove 5 for mutually fixing and fixing the bracket, and the setting of the groove 5 is used for
  • the shape of the groove 5 can be designed according to the positional component to be fixed.
  • the top of the left and right fixings are respectively arranged a horizontal flange 6 with the connecting members engaged with each other; the transition connecting screw 1 is vertically disposed on the horizontal flange 6 at the top of the left fixing member 2, since the transition connecting screw 1 in this embodiment is used in the prior art
  • the hexagonal bolt in addition, the bolt head of the hexagon bolt is fixedly embedded on the horizontal flange 6 of the left fixing member 2; the transition connecting member 4 is engaged with the horizontal flange 6 through the transition connecting screw 1 so that the transition piece 4, The left fixing member 2 and the right fixing member 3 are engaged with each other.
  • the transition piece 4 in this embodiment is connected to the left fixing member 2 and the right fixing member 3, and the horizontal flange 6 is engaged into the card slot provided on the transition piece 4; the structure is designed to be suitable for the installation position.
  • the movable bracket assembly includes an upper card member 7, a lower card member 8 and a conduction member 9; the upper card member 7 and the lower card member 8 are made of aluminum; and the conduction member 9 is made of steel.
  • the lower card member 8 is mounted on the transitional connecting screw 1 and is disposed on the periphery of the transition piece 4, and the two ends of the lower card member 8 are convexly disposed to support the supporting plane 10 of the solar cell; the supporting plane 10 is provided for mounting the guide
  • a plurality of friction ribs 15 are disposed on the lower surface of the lower clamp member 8 perpendicular to the support plane, and the friction ribs 15 are uniformly disposed and symmetrically disposed.
  • the upper clamping member 7 is mounted on the transitional connecting screw 1 , and the two ends of the upper clamping member 7 are convexly disposed with the bending 12 corresponding to the supporting plane of the lower clamping member; the corresponding surface of the bending 12 corresponding to the supporting plane 10 is a plane; A solar panel mounting space 13 is formed between the bending and the supporting plane, and the mounting and fixing of the solar panel is clamped in the solar panel mounting space 13 through the transition connecting screw 1; the conducting member 9 is inserted into the card slot on the supporting plane 10.
  • the conductive member 14 is convexly disposed on the conductive member 9 and the conductive protrusion is in close contact with the solar panel in the insertion member of the conductive member.
  • the conductive bumps 14 are of a meandering type.
  • a limiting protrusion 16 is disposed on the exposed end of the conducting member 9, and the limiting protrusion 16 is provided for defining the depth of insertion of the conducting member 9 while also facilitating the operator's hand. as shown in picture 2.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Photovoltaic Devices (AREA)
  • Roof Covering Using Slabs Or Stiff Sheets (AREA)

Abstract

本发明公开一种太阳能电池板可旋转摆动固定支架,针对现有技术中用来固定太阳能电池板的固定支架由于结构固定、功能单一,无法进行摆动旋转,对多样性的屋面不能很好适应的问题。所述太阳能电池板可旋转摆动固定支架,包括底座组件、活动支架组件和过渡连接螺杆;底座组件包括左固定件、右固定件和过渡连接件;活动支架组件包括上卡件、下卡件和导通件。本固定支架,采用铝制的底座组件和活动支架组件来达到减轻重量的目的,通过钢制的导通件来实现太阳能板的可靠接地的目的;最终通过过渡连接螺杆连接底座组件和活动支架组件,并通过活动支架组件实现太阳能电池板在多样性屋面上的可靠简便安装,实现整个固定支架的功能。

Description

太阳能电池板可旋转摆动固定支架 技术领域
本发明涉及一种太阳能电池板可旋转摆动固定支架,尤其是一种用于屋顶太阳能电池板安装固定的支架。
背景技术
随着我国经济技术的发展,对可再生能源的利用也越来越普遍;目前,对于太阳能源的利用越来越广泛。现有技术中对太阳能源的利用是通过太阳能电池板来收集太阳能源。而现有技术中用来固定太阳能电池板的固定支架由于结构固定,功能单一,无法进行摆动旋转,对多样性的屋面不能很好的适应,已不能满足现在太阳能电池板的发展要求。
发明内容
本发明所要解决的技术问题是:针对现有技术中用来固定太阳能电池板的固定支架由于结构固定,功能单一,无法进行摆动旋转,对多样性的屋面不能很好适应的问题。
本发明的目的是提供一种结构简单的固定支架。为了匹配现在太阳能电池板的发展要求,本发明采用铝制的底座组件和活动支架组件来达到减轻重量的目的,通过钢制的导通件来实现传输太阳能板的可靠接地的目的;最终通过过渡连接螺杆连接底座组件和活动支架组件并通过活动支架组件实现太阳能电池板的可靠联接,实现整个固定支架的功能。
为解决上述技术问题,本发明采用的技术方案是:
一种太阳能电池板可旋转摆动固定支架,包括底座组件和通过过渡连接螺杆竖直设置在底座组件上方的活动支架组件;
底座组件包括左固定件、右固定件和过渡连接件;左固定件与右固定件相互配合且对称设置,左固定件与右固定件上均设置相互配合用于安装固定本支架的凹槽,左固定件与右固定件的顶部分别设置有与过渡连接件相互卡合的水平翻边;过渡连接螺杆竖直设置在左固定件的顶部;过渡连接件贯穿过渡连接螺杆卡合水平翻 边,使得过渡连接件、左固定件与右固定件卡合为一体;
活动支架组件包括上卡件、下卡件和导通件;下卡件装在过渡连接螺杆上且套装在过渡连接件的外围,下卡件的两端外凸设置用于支撑太阳能电池的支撑平面;支撑平面上设置用于安装导通件的卡槽;上卡件装在过渡连接螺杆上,上卡件的两端外凸设置与下卡件上支撑平面相对应的折弯;折弯上与支撑平面相对应面为平面;折弯与支撑平面之间形成太阳能电池板安装空间,且太阳能电池板的安装固定通过过渡连接螺杆夹紧在太阳能电池板安装空间内;导通件插入支撑平面上的卡槽内,导通件上外凸设置导电凸起且导电凸起在导通件插入卡槽内刺破并紧密接触太阳能电池板边框。
对上述技术方案的进一步改进,左固定件、右固定件、上卡件和下卡件采用铝材制成;导通件采用钢材制成。采用铝材制成左固定件、右固定件、上卡件和下卡件的作用是从整体上降低此固定支架的重量。采用钢材制成导通件来实现太阳能电池板的接地问题。
对上述技术方案的进一步改进,导电凸起为锲型。本发明技术方案采用锲型的导电凸起其目的是便于插入到卡槽内,同时也能更好地接触安装在太阳能电池板安装空间内的太阳能电池板边框,有效地实现太阳能电池板的接地问题。
对上述技术方案的进一步改进,导通件的外露端上设置限位凸起。
对上述技术方案的进一步改进,过渡连接螺杆为外六角螺栓且螺栓头采用嵌入的方式固定在左固定件的水平翻边上。
对上述技术方案的进一步改进,下卡件上与支撑平面相垂直的面上外凸设置摩擦肋,摩擦肋均布设置且对称设置。本发明技术方案中的摩擦肋能有效地增强太阳能电池板固定是的摩擦力使得太阳能电池板固定的更加牢靠;同时摩擦肋的设计也能有效地提高下卡件的刚度。
本发明与现有技术相比,其有益效果是:
本发明的太阳能电池板可旋转摆动固定支架,采用铝制的底座组件和活动支架组件来达到减轻重量的目的,通过钢制的导通件来实现太阳能电池板的接地问题;最终通过过渡连接螺杆连接底座组件和活动支架组件并通过活动支架组件实现太阳能电池板在多样性屋顶上的可靠安装,实现整个固定支架的功能。
本发明的太阳能电池板可旋转摆动固定支架,主体整体结构简单,采用左固定件与右固定件相互配合且对称设置的结构形式快速的实现本固定支架的安装固定;此固定支架摆脱了传统固定支架结构固定,功能单一,无法进行摆动旋转,对多样性的屋面不能很好适应的问题,满足现在太阳能电池板的发展要求。
附图说明
图1是本实施例的立体结构示意图。
图2是图1的爆炸视图。
图中:1、过渡连接螺杆,2、左固定件,3、右固定件,4、过渡连接件,5、凹槽,6、水平翻边,7、上卡件,8、下卡件,9、导通件,10、支撑平面,11、卡槽,12、折弯,13、太阳能电池板安装空间,14、导电凸起,15、摩擦肋,16、限位凸起。
具体实施方式
下面对本发明技术方案进行详细说明,但是本发明的保护范围不局限于所述实施例。
为使本发明的内容更加明显易懂,以下结合附图1-2和具体实施方式做进一步的描述。
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅用以解释本发明,并不用于限定本发明。
实施例:
如图1,为本实施例中的太阳能电池板可旋转摆动固定支架的立体结构视图;太阳能电池板可旋转摆动固定支架包括底座组件和活动支架组件,活动支架组件竖直设置在底座组件上方并通过过渡连接螺杆1连接。本实施例中的过渡连接螺杆1采用的是现有技术中的外六角螺栓。
底座组件包括左固定件2、右固定件3和过渡连接件4;本实施例中的左固定件、右固定件和过渡连接件4均采用铝材制成。左固定件2与右固定件3相互配合且对称设置,左固定件2与右固定件3上均设置相互配合用于安装固定本支架的凹槽5,此凹槽5的设置的作用是用于将本实施例固定支架固定到屋顶上,此凹槽5的形状可依据所需固定的位置部件而设计。左固定件与右固定件的顶部分别设置有与过 渡连接件相互卡合的水平翻边6;过渡连接螺杆1竖直设置在左固定件2的顶部的水平翻边6上,由于本实施例中的过渡连接螺杆1采用的是现有技术中的外六角螺栓,此外六角螺栓的螺栓头采用嵌入的方式固定在左固定件2的水平翻边6上;过渡连接件4贯穿过渡连接螺杆1卡合水平翻边6,使得过渡连接件4、左固定件2与右固定件3卡合为一体。此实施例中的过渡连接件4与左固定件2、右固定件3连接采用是水平翻边6卡合到过渡连接件4上设置的卡槽口内;此种结构设计适用于安装位置较低的现场使用。如图2所示。
活动支架组件包括上卡件7、下卡件8和导通件9;上卡件7和下卡件8采用铝材制成;导通件9采用钢材制成。下卡件8装在过渡连接螺杆1上且套装在过渡连接件4的外围,下卡件8的两端外凸设置用于支撑太阳能电池的支撑平面10;支撑平面10上设置用于安装导通件9的卡槽11;下卡件8上与支撑平面相垂直的面上外凸设置多个摩擦肋15,摩擦肋15均布设置且对称设置。上卡件7装在过渡连接螺杆1上,上卡件7的两端外凸设置与下卡件上支撑平面相对应的折弯12;折弯12上与支撑平面10相对应面为平面;折弯与支撑平面之间形成太阳能电池板安装空间13,且太阳能电池板的安装固定通过过渡连接螺杆1夹紧在太阳能电池板安装空间13内;导通件9插入支撑平面10上的卡槽11内,导通件9上外凸设置导电凸起14且导电凸起在导通件插入卡槽内紧密接触太阳能电池板。本实施例中导电凸起14为锲型。导通件9的外露端上设置限位凸起16,限位凸起16的设置用于限定导通件9插入的深度同时也便于操作者手拿。如图2所示。
本发明未涉及部分均与现有技术相同或采用现有技术加以实现。
如上所述,尽管参照特定的优选实施例已经表示和表述了本发明,但其不得解释为对本发明自身的限制。在不脱离所附权利要求定义的本发明的精神和范围前提下,可对其在形式上和细节上作出各种变化。

Claims (6)

  1. 太阳能电池板可旋转摆动固定支架,其特征在于,包括底座组件和通过过渡连接螺杆竖直设置在底座组件上方的活动支架组件;
    底座组件包括左固定件、右固定件和过渡连接件;左固定件与右固定件相互配合且对称设置,左固定件与右固定件上均设置相互配合用于安装固定本支架的凹槽,左固定件与右固定件的顶部分别设置有与过渡连接件相互卡合的水平翻边;过渡连接螺杆竖直设置在左固定件的顶部;过渡连接件贯穿过渡连接螺杆卡合水平翻边,使得过渡连接件、左固定件与右固定件卡合为一体;
    活动支架组件包括上卡件、下卡件和导通件;下卡件装在过渡连接螺杆上且套装在过渡连接件的外围,下卡件的两端外凸设置用于支撑太阳能电池的支撑平面;支撑平面上设置用于安装导通件的卡槽;上卡件装在过渡连接螺杆上,上卡件的两端外凸设置与下卡件上支撑平面相对应的折弯;折弯上与支撑平面相对应面为平面;折弯与支撑平面之间形成太阳能电池板安装空间,且太阳能电池板的安装固定通过过渡连接螺杆夹紧在太阳能电池板安装空间内;导通件插入支撑平面上的卡槽内,导通件上外凸设置导电凸起,导电凸起刺破太阳能电池板边框并紧密接触太阳能电池板边框。
  2. 如权利要求1所述的太阳能电池板可旋转摆动固定支架,其特征在于,左固定件、右固定件、上卡件和下卡件采用铝材制成;导通件采用钢材制成。
  3. 如权利要求1所述的太阳能电池板可旋转摆动固定支架,其特征在于,导电凸起为锲型。
  4. 如权利要求1所述的太阳能电池板可旋转摆动固定支架,其特征在于,导通件的外露端上设置限位凸起。
  5. 如权利要求1所述的太阳能电池板可旋转摆动固定支架,其特征在于,过渡连接螺杆为外六角螺栓且螺栓头采用嵌入的方式固定在左固定件的水平翻边上。
  6. 如权利要求1所述的太阳能电池板可旋转摆动固定支架,其特征在于,下卡件上与支撑平面相垂直的面上外凸设置摩擦肋,摩擦肋均布设置且对称设置。
PCT/CN2016/090919 2016-06-30 2016-07-21 太阳能电池板可旋转摆动固定支架 WO2017032196A2 (zh)

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