JP2014216364A - Solar cell module - Google Patents

Solar cell module Download PDF

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Publication number
JP2014216364A
JP2014216364A JP2013090074A JP2013090074A JP2014216364A JP 2014216364 A JP2014216364 A JP 2014216364A JP 2013090074 A JP2013090074 A JP 2013090074A JP 2013090074 A JP2013090074 A JP 2013090074A JP 2014216364 A JP2014216364 A JP 2014216364A
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solar cell
cell panel
cell module
fitting
receiving surface
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JP6215562B2 (en
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守孝 中村
Moritaka Nakamura
守孝 中村
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Sharp Corp
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Sharp Corp
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Priority to JP2013090074A priority Critical patent/JP6215562B2/en
Priority to PCT/JP2014/057658 priority patent/WO2014174948A1/en
Priority to CN201490000592.0U priority patent/CN205160453U/en
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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
    • H02S30/00Structural details of PV modules other than those related to light conversion
    • H02S30/10Frame 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
    • 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

PROBLEM TO BE SOLVED: To provide a solar cell module in which sand and dust are less likely to accumulate on the light-receiving surface.SOLUTION: In a solar cell module consisting of a solar cell panel and a frame for supporting solar cells by fitting to the end of the solar panel, the frame has a fitting portion to be fitted to the solar panel, the fitting portion has an edge, the end of the solar panel is fitted to the fitting portion, and the light-receiving surface of the solar panel is in contact with the edge.

Description

本発明は太陽電池モジュールに関するものである。   The present invention relates to a solar cell module.

太陽電池モジュールは、一般的に、太陽電池パネルと枠体とにより構成されている。図7は、従来の太陽電池モジュールの端部の断面を示す図である。図7において、太陽電池モジュール50は太陽電池パネル51と枠体52からなる。太陽電池パネル51の表面側である受光面ガラス51a上(図面では下側となっている)に、熱硬化性樹脂であるEVA(エチレンビニルアセテート)でなる受光面側封止層51b、多結晶シリコンにより形成された太陽電池セル51d、EVAでなる裏面側封止層51c、裏面側封止耐候性フィルム51eがこの順に積層されて、一体化ラミネート加工されたスーパーストレート型構造である。このように、太陽電池パネル51は、耐候性が確保された矩形状で、厚さが5mm程度の薄板として構成されている。尚、上記太陽電池セル51dは、単結晶シリコンやアモルファスシリコン等で形成されたものであってもよい。   The solar cell module is generally composed of a solar cell panel and a frame. FIG. 7 is a view showing a cross section of an end portion of a conventional solar cell module. In FIG. 7, the solar cell module 50 includes a solar cell panel 51 and a frame body 52. A light-receiving surface side sealing layer 51b made of EVA (ethylene vinyl acetate), which is a thermosetting resin, is formed on the light-receiving surface glass 51a (the lower side in the drawing) which is the surface side of the solar cell panel 51. A solar cell 51d made of silicon, a back side sealing layer 51c made of EVA, and a back side sealing weather resistant film 51e are laminated in this order, and have a super straight type structure that is integrally laminated. As described above, the solar cell panel 51 is formed as a thin plate having a rectangular shape having a weather resistance and a thickness of about 5 mm. The solar battery cell 51d may be made of single crystal silicon, amorphous silicon, or the like.

端面封止部材53は、太陽電池パネル51の端部51fの外形に沿って形成された枠形状をしており、エラストマー樹脂や、シリコン樹脂等の樹脂により形成されている。又、端面封止部材53は、太陽電池パネル51の表面側に当接する上側封止片53aと、太陽電池パネル51の裏面側に当接する下側封止片53bと、太陽電池パネル51の端部51fの端面に当接する横側封止片53cとからなる断面略コ字状に形成されており、このコ字状の部分が溝部53f(封止用溝部)を構成している。この溝部53fに、太陽電池パネル51の端部51fが嵌め込まれて封止される。   The end surface sealing member 53 has a frame shape formed along the outer shape of the end portion 51f of the solar cell panel 51, and is formed of a resin such as an elastomer resin or a silicon resin. The end surface sealing member 53 includes an upper sealing piece 53 a that contacts the front surface side of the solar cell panel 51, a lower sealing piece 53 b that contacts the back surface side of the solar cell panel 51, and an end of the solar cell panel 51. It is formed in a substantially U-shaped cross section comprising a lateral sealing piece 53c that contacts the end surface of the portion 51f, and this U-shaped portion constitutes a groove 53f (sealing groove). The end portion 51f of the solar cell panel 51 is fitted into the groove portion 53f and sealed.

特開2005-347291号公報JP 2005-347291 A

しかしながら、前述のような構造では、枠体と受光面ガラスの間の隙間に充填されている封止部材の厚さによって、枠体と受光面ガラスの間に段差ができる。段差には、砂や塵を吸着しやすく柔らかい封止樹脂が詰まっており、その表面に砂や塵が吸着し、封止樹脂が起点となって汚れが光電変換素子全面まで及んで太陽電池モジュールの発電性能を損なう怖れがあった。また、段差に溜まった砂や塵は、降雨などによっても取り除きにくく、それらがガラス表面に移動して、太陽電池前面のガラスが汚れ、発電量が低下する原因となっていた。   However, in the structure as described above, there is a step between the frame and the light receiving surface glass depending on the thickness of the sealing member filled in the gap between the frame and the light receiving surface glass. The step is clogged with soft sealing resin that easily adsorbs sand and dust, and sand and dust are adsorbed on the surface, and the sealing resin is the starting point and the dirt reaches the entire surface of the photoelectric conversion element. There was a fear of impairing the power generation performance. In addition, sand and dust accumulated in the steps are difficult to remove due to rainfall and the like, and they move to the glass surface, causing the glass in front of the solar cell to become dirty and reduce the amount of power generation.

本発明は、上述の問題点を鑑みなされたものであり、受光面に砂や塵がたまりにくい太陽電池モジュールを提供するものである。   The present invention has been made in view of the above-described problems, and provides a solar cell module in which sand and dust are unlikely to collect on a light receiving surface.

本発明の太陽電池モジュールは、太陽電池パネルと、太陽電池パネルの端部と嵌合して太陽電池を支持するための枠体からなる太陽電池モジュールであって、枠体は、太陽電池パネルと嵌合するための嵌合部を有し、嵌合部はエッジ部を有し、太陽電池パネルの端部は、嵌合部と嵌合するとともに、太陽電池パネルの受光面は、エッジ部に当接してなるものである。   The solar cell module of the present invention is a solar cell module including a solar cell panel and a frame body that is fitted to an end portion of the solar cell panel and supports the solar cell. It has a fitting part for fitting, the fitting part has an edge part, the end part of the solar cell panel is fitted with the fitting part, and the light receiving surface of the solar cell panel is on the edge part. It comes into contact.

また、本発明の太陽電池モジュールは、エッジ部は、嵌合部の上辺部から延設されてなり、先端に向かって太陽電池パネルの方に傾斜して形成されてなるものを含む。   In the solar cell module of the present invention, the edge portion includes the one formed by extending from the upper side portion of the fitting portion and being inclined toward the solar cell panel toward the tip.

また、本発明の太陽電池モジュールは、エッジ部は、先細であるものを含む。   Moreover, the solar cell module of this invention contains what an edge part is tapered.

また、本発明の太陽電池モジュールは、嵌合部の下壁は、太陽電池パネルの受光面に対して傾斜した、第1の傾斜部と第2の傾斜部とを有し、第1の傾斜部は、エッジ部の傾斜と対応して傾斜してなり、第2の傾斜部は、太陽電池の端部の裏面の形状に対応して傾斜してなるものを含む。   Moreover, the solar cell module of this invention has a 1st inclination part and a 2nd inclination part with which the lower wall of the fitting part inclined with respect to the light-receiving surface of a solar cell panel, and 1st inclination The portion is inclined corresponding to the inclination of the edge portion, and the second inclined portion includes an inclination corresponding to the shape of the back surface of the end portion of the solar cell.

また、本発明の太陽電池モジュールは、太陽電池パネルの端部にテープ状の弾性部材が貼り付けられてなり、弾性部材は、太陽電池パネルの端部の、受光面側と端面と裏面側を覆うものを含む。   The solar cell module of the present invention has a tape-like elastic member attached to the end portion of the solar cell panel, and the elastic member has a light receiving surface side, an end surface, and a back surface side of the end portion of the solar cell panel. Including coverings.

本発明により、砂や塵が太陽電池パネル表面に堆積しにくくなり、信頼性の高い太陽電池モジュールを提供することができる。   According to the present invention, sand and dust hardly accumulate on the surface of the solar cell panel, and a highly reliable solar cell module can be provided.

本発明の太陽電池モジュールを示す平面図である。It is a top view which shows the solar cell module of this invention. 本発明の太陽電池モジュールを構成する太陽電池パネル端部の断面図である。It is sectional drawing of the solar cell panel edge part which comprises the solar cell module of this invention. 本発明の太陽電池モジュールに使用される枠体の断面図である。It is sectional drawing of the frame used for the solar cell module of this invention. 本発明の太陽電池モジュールに使用される太陽電池パネルと、枠体との嵌合の過程を説明する説明図である。It is explanatory drawing explaining the process of a fitting with the solar cell panel used for the solar cell module of this invention, and a frame. 本発明の太陽電池モジュールの端部の断面図である。It is sectional drawing of the edge part of the solar cell module of this invention. 本発明の太陽電池モジュールを構成する太陽電池パネル端部の別の実施の形態を示す説明図である。It is explanatory drawing which shows another embodiment of the solar cell panel edge part which comprises the solar cell module of this invention. 従来の太陽電池モジュールの端部の断面図である。It is sectional drawing of the edge part of the conventional solar cell module.

(実施の形態1)
以下、図面を参照しつつ、本発明の実施の形態に係る説明する。以下の説明では同一の部品には同一の符号を付してある。それらの名称および機能も同じである。したがって、それらについて詳細な説明は繰り返さない。
(Embodiment 1)
Hereinafter, embodiments of the present invention will be described with reference to the drawings. In the following description, the same parts are denoted by the same reference numerals. Their names and functions are also the same. Therefore, detailed description thereof will not be repeated.

図1は、本発明の太陽電池モジュールを示す平面図である。図1において、太陽電池モジュール1は、太陽電池パネル10と枠体20からなる。太陽電池パネル10の各辺には、端部に太陽電池パネル10を支持するための枠体20が嵌めこまれて取り付けられ、太陽電池モジュール1を形成している。枠体20は、アルミニウムやステンレスなど耐侯性のある金属が用いられる。   FIG. 1 is a plan view showing a solar cell module of the present invention. In FIG. 1, the solar cell module 1 includes a solar cell panel 10 and a frame body 20. A frame 20 for supporting the solar cell panel 10 is fitted and attached to each side of the solar cell panel 10 to form the solar cell module 1. The frame 20 is made of a metal having weather resistance such as aluminum or stainless steel.

図2は、本発明の太陽電池モジュールを構成する太陽電池パネル端部の断面図である。図2において、太陽電池パネル10は、受光面側の透光性絶縁基板である受光面ガラス11と、裏面側の耐候性フィルム12の間に、結晶系太陽電池やアモルファス太陽電池などの光電変換素子13をPVB(ポリビニルブチラール)やEVAなどの透明樹脂14とともに封止して形成される。封止はラミネータを用いて行われるが、ラミネート工程において、EVAが加熱されて溶けて流動化し、端部のEVAは外に逃げるよう移動するため、裏面の形状が、端にいくにつれ薄くなるように形成される。そのため、太陽電池パネル10の裏面の端部は、端面に近づくにしたがって、透明樹脂14の厚さが薄くなり、傾斜した形状を有している。例えば、受光面ガラス11の厚みを2.8mm、パネル中央部のパネルの厚さを4.47mmとすると、パネル端部の厚みは3.5mmである。   FIG. 2 is a cross-sectional view of the end portion of the solar cell panel constituting the solar cell module of the present invention. In FIG. 2, a solar cell panel 10 includes a photoelectric conversion such as a crystalline solar cell or an amorphous solar cell between a light-receiving surface glass 11 which is a light-transmitting insulating substrate on the light-receiving surface side and a weather-resistant film 12 on the back surface side. The element 13 is formed by being sealed together with a transparent resin 14 such as PVB (polyvinyl butyral) or EVA. Sealing is performed using a laminator, but in the laminating process, EVA is heated and melted and fluidized, and the EVA at the end moves away so that the shape of the back surface becomes thinner as it goes to the end. Formed. Therefore, the end of the back surface of the solar cell panel 10 has an inclined shape with the thickness of the transparent resin 14 becoming thinner as it approaches the end surface. For example, if the thickness of the light receiving surface glass 11 is 2.8 mm and the thickness of the panel at the center of the panel is 4.47 mm, the thickness of the panel end is 3.5 mm.

太陽電池パネル10の端部には、ブチルゴムなどの弾性体を使用したテープなどで構成された弾性部材15が端部を覆うように貼り付けられている。ブチルゴムは柔軟に変形し、粘着性もあるので、弾性部材15の材料として好適である。   An elastic member 15 made of a tape using an elastic body such as butyl rubber is attached to the end of the solar cell panel 10 so as to cover the end. Butyl rubber is suitable as a material for the elastic member 15 because it deforms flexibly and has adhesiveness.

弾性部材15は、受光面部15a、端面部15b、裏面部15cからなり、それぞれ太陽電池パネル端部の受光面、端面、および裏面を覆っている。例えば、弾性部材15として、幅が17mmのテープを使用する場合、受光面ガラス11の端から6.75mm内側のところから、端面、裏面にわたって接着されている。また、圧縮しない状態のテープの厚みは0.8〜1.2mm程度である。弾性部材15として、テープ状の部材を使用することにより、均一な厚さの弾性部材を、正確な位置に配置することができる。   The elastic member 15 includes a light receiving surface portion 15a, an end surface portion 15b, and a back surface portion 15c, and covers the light receiving surface, the end surface, and the back surface of the end portion of the solar cell panel, respectively. For example, when a tape having a width of 17 mm is used as the elastic member 15, the elastic member 15 is bonded from the inside of the light receiving surface glass 11 to the end surface and the back surface from the inside of 6.75 mm. Moreover, the thickness of the tape which is not compressed is about 0.8 to 1.2 mm. By using a tape-shaped member as the elastic member 15, the elastic member having a uniform thickness can be disposed at an accurate position.

図3は、本発明の太陽電池モジュールに使用される太陽電池パネルと嵌合する枠体の断面図である。図3において、枠体20は、基部21と、基部21上に設けられた箱状部22と、箱状部22上に設けられ、枠体20に太陽電池パネル10と嵌合するための嵌合部23からなる。箱状部22の上壁24は嵌合部23の下壁26と共有している。   FIG. 3 is a cross-sectional view of a frame that fits into a solar cell panel used in the solar cell module of the present invention. In FIG. 3, a frame body 20 is provided on a base portion 21, a box-shaped portion 22 provided on the base portion 21, and the box-shaped portion 22, and is fitted to the frame body 20 for fitting with the solar cell panel 10. It consists of a joint 23. The upper wall 24 of the box-shaped part 22 is shared with the lower wall 26 of the fitting part 23.

嵌合部23の上壁24は、上辺部24aとエッジ部24bからなる。上辺部24aは、嵌合部23の奥から所定長さの部分であって、基部21に対して平行に形成されている。エッジ部24bは、上辺部24aから延設された部分であって、先端にむかうにつれ、基部21に近づくように曲がっている。エッジ部24bの先端は、先細に形成されており、太陽電池パネル10に当接したとき、太陽電池パネル10となす角度が鈍角になるようになっている。上辺部24aと、エッジ部24bの先端は、例えば0.5mm程度の高さの差がある。この高さの差によって上辺部24a直下に空間25が形成される。   The upper wall 24 of the fitting part 23 includes an upper side part 24a and an edge part 24b. The upper side portion 24 a is a portion having a predetermined length from the back of the fitting portion 23 and is formed in parallel to the base portion 21. The edge portion 24b is a portion extending from the upper side portion 24a, and is bent so as to approach the base portion 21 toward the tip. The tip of the edge portion 24b is tapered, and the angle formed with the solar cell panel 10 is an obtuse angle when contacting the solar cell panel 10. The tip of the upper side 24a and the edge 24b has a height difference of about 0.5 mm, for example. Due to this height difference, a space 25 is formed immediately below the upper side portion 24a.

嵌合部23の上辺部24aから延設されたエッジ部24bは、エッジ部24bの先端に向かうに従って、基部21の方に曲がっているので、枠体20と太陽電池パネル10を嵌合させたとき、エッジ部24bは受光面ガラス11と当接し、エッジ部24bの先端と上辺部24aの高さの差でできた空間25に太陽電池パネル10に貼り付けられた弾性部材15の受光面部15aが収まることになる。   Since the edge part 24b extended from the upper side part 24a of the fitting part 23 is bent toward the base part 21 toward the tip of the edge part 24b, the frame 20 and the solar cell panel 10 are fitted. At this time, the edge portion 24b is in contact with the light receiving surface glass 11, and the light receiving surface portion 15a of the elastic member 15 attached to the solar cell panel 10 in the space 25 formed by the height difference between the tip of the edge portion 24b and the upper side portion 24a. Will fit.

嵌合部23の下壁26は、嵌合部入口27から奥部28に向かって傾斜している。嵌合部入口27付近の第1の傾斜部26aは、エッジ部24bの形状に対応する傾斜を有しており、太陽電池パネル10が挿入されるのに必要な幅を確保することができる。また、嵌合部の奥部28に近い部分の第2の傾斜部26bは、太陽電池パネル10の端部の形状に沿った形状に形成されている。すなわち、太陽電池パネル10の端部裏面の形状に対応して傾斜してなり、嵌合部の奥部28に近づくにしたがって狭くなっている。このように、嵌合部23の下壁26は第1の傾斜部26aと、第2の傾斜部26bの2種類の傾斜面を有している。   The lower wall 26 of the fitting portion 23 is inclined from the fitting portion inlet 27 toward the back portion 28. The first inclined portion 26a in the vicinity of the fitting portion entrance 27 has an inclination corresponding to the shape of the edge portion 24b, and can secure a width necessary for the solar cell panel 10 to be inserted. In addition, the second inclined portion 26 b in a portion near the back portion 28 of the fitting portion is formed in a shape along the shape of the end portion of the solar cell panel 10. That is, it inclines corresponding to the shape of the end back surface of the solar cell panel 10 and becomes narrower as it approaches the back portion 28 of the fitting portion. Thus, the lower wall 26 of the fitting part 23 has two types of inclined surfaces, the first inclined part 26a and the second inclined part 26b.

図4は、太陽電池パネルと、枠体との嵌合の過程を説明する説明図である。   FIG. 4 is an explanatory view illustrating the process of fitting the solar cell panel and the frame.

図4(a)は、挿入前の太陽電池パネルと枠体との位置関係を示す図である。太陽電池パネル10の端部は、枠体20の嵌合部23にほぼ水平に挿入される。   Fig.4 (a) is a figure which shows the positional relationship of the solar cell panel and frame before insertion. The end portion of the solar cell panel 10 is inserted almost horizontally into the fitting portion 23 of the frame body 20.

図4(b)は、太陽電池パネルが枠体に挿入される様子を示す図である。太陽電池パネル10の弾性部材15は、上壁24と下壁26に圧縮されながら、嵌合部の奥部28に向けて挿入される。嵌合部入口27付近の第1の傾斜部26aは、エッジ部24bの形状に対応して傾斜し、奥に向かって高くなっているのに対し、エッジ部24bの先端は低くなっているので、太陽電池パネル10は、弾性部材15の裏面部15cを、第1の傾斜部26aに押し付けるようにして挿入される。   FIG.4 (b) is a figure which shows a mode that a solar cell panel is inserted in a frame. The elastic member 15 of the solar cell panel 10 is inserted toward the back portion 28 of the fitting portion while being compressed by the upper wall 24 and the lower wall 26. The first inclined portion 26a in the vicinity of the fitting portion entrance 27 is inclined corresponding to the shape of the edge portion 24b and is higher toward the back, whereas the tip of the edge portion 24b is lower. The solar cell panel 10 is inserted so as to press the back surface portion 15c of the elastic member 15 against the first inclined portion 26a.

図4(c)は、太陽電池パネルが枠体にさらに挿入される様子を示す図である。太陽電池パネル10は、弾性部材15の裏面部15cを、第2の傾斜部26bに押し付けるようにして挿入される。一方、弾性部材15の受光面部15aは、嵌合部23に挿入されるに従い、上壁24の形状に沿って拡張する。その結果、太陽電池パネル10が嵌合部の奥部28付近まで挿入されたとき、弾性部材15は、上辺部24a直下の受光面部15aよりも、裏面部15cの方が圧縮された状態になる。   FIG.4 (c) is a figure which shows a mode that a solar cell panel is further inserted in a frame. The solar cell panel 10 is inserted so as to press the back surface portion 15c of the elastic member 15 against the second inclined portion 26b. On the other hand, the light receiving surface portion 15 a of the elastic member 15 expands along the shape of the upper wall 24 as it is inserted into the fitting portion 23. As a result, when the solar cell panel 10 is inserted to the vicinity of the back portion 28 of the fitting portion, the elastic member 15 is in a state in which the back surface portion 15c is compressed more than the light receiving surface portion 15a directly below the upper side portion 24a. .

図5は、本発明の太陽電池モジュールの端部の断面図であり、図1におけるA−A’断面を示すものである。太陽電池パネル10を嵌合部23の奥部28まで挿入すると弾性部材15の受光面部15aは、上壁24と密着する。また、弾性部材15の端面部15bは、奥壁29と密着する。また、弾性部材15の裏面部15cは、下壁26と密着する。   FIG. 5 is a cross-sectional view of the end portion of the solar cell module of the present invention, showing the A-A ′ cross section in FIG. 1. When the solar cell panel 10 is inserted to the back portion 28 of the fitting portion 23, the light receiving surface portion 15 a of the elastic member 15 is in close contact with the upper wall 24. Further, the end surface portion 15 b of the elastic member 15 is in close contact with the back wall 29. Further, the back surface portion 15 c of the elastic member 15 is in close contact with the lower wall 26.

太陽電池パネル10の裏面側端部と第2の傾斜部26bの形状がほぼ同じなので、太陽電池パネル10を奥部28まで挿入したとき、弾性部材15の裏面部15cは、ほぼ一定の厚さになり、均等に弾性部材15に圧力がかかるようになる。   Since the shape of the back surface side end portion of the solar cell panel 10 and the second inclined portion 26b is substantially the same, when the solar cell panel 10 is inserted to the back portion 28, the back surface portion 15c of the elastic member 15 has a substantially constant thickness. Thus, the pressure is applied to the elastic member 15 evenly.

太陽電池パネル10を枠体20と嵌合させる過程において、弾性部材15の裏面部15cは、下壁26に押し付けられて圧縮されながら挿入される。一方、弾性部材15の受光面部15aは、太陽電池パネル10を奥まで挿入すると、上辺部24a直下の空間25に収まる。すなわち、受光面部15aは、嵌合部の奥部28まで挿入したとき、空間25に入り込んで拡張し、圧縮率が小さくなる。そのため、挿入しようとする力を加えたままの状態では、受光面部15aよりも、裏面部15cの方が圧縮された状態になる。すなわち、裏面部15cの方が、受光面部15aよりも圧縮率が高く反発力が強い。そのため、挿入しようとする力を加えるのを止めると、太陽電池パネル10は、上壁24の方向に移動し、太陽電池パネル10の受光面ガラス11は、裏面部15cの反発力によって、エッジ部24bに押し付けられて当接する。挿入完了後の弾性部材であるテープの厚さは0.4〜0.6mm程度である。   In the process of fitting the solar cell panel 10 with the frame body 20, the back surface portion 15 c of the elastic member 15 is pressed against the lower wall 26 and inserted while being compressed. On the other hand, the light receiving surface portion 15a of the elastic member 15 fits in the space 25 immediately below the upper side portion 24a when the solar cell panel 10 is inserted to the back. That is, when the light-receiving surface portion 15a is inserted up to the back portion 28 of the fitting portion, the light-receiving surface portion 15a enters the space 25 and expands, and the compression rate decreases. Therefore, in the state where the force to be inserted is applied, the back surface portion 15c is compressed more than the light receiving surface portion 15a. That is, the back surface portion 15c has a higher compression rate and a stronger repulsive force than the light receiving surface portion 15a. Therefore, when the application of the force to be inserted is stopped, the solar cell panel 10 moves in the direction of the upper wall 24, and the light receiving surface glass 11 of the solar cell panel 10 is edged by the repulsive force of the back surface portion 15c. 24b is pressed against and abuts. The thickness of the tape which is an elastic member after the insertion is completed is about 0.4 to 0.6 mm.

受光面ガラス11と、エッジ部24bが当接しているので、受光面において枠体20の嵌合部23と太陽電池パネル10の間隙はない。したがって、当接している箇所から内側へは、砂や塵が侵入する恐れはなく、エッジ部24bより内側に配置された弾性部材15は、砂やほこりにさらされない。その結果、受光面ガラス11上には、弾性部材15に付着した砂や塵が移動してくることはない。さらに、エッジ部24bと受光面ガラス11の角度は鈍角になっているため砂や塵が堆積しにくくなるので、受光面への砂や塵の堆積による太陽電池モジュール1の発電性能の低下を防ぐことができる。   Since the light receiving surface glass 11 and the edge portion 24b are in contact with each other, there is no gap between the fitting portion 23 of the frame 20 and the solar cell panel 10 on the light receiving surface. Therefore, there is no fear that sand or dust may enter from the abutting portion to the inside, and the elastic member 15 disposed inside the edge portion 24b is not exposed to the sand or dust. As a result, sand and dust attached to the elastic member 15 do not move on the light receiving surface glass 11. Furthermore, since the angle between the edge portion 24b and the light receiving surface glass 11 is an obtuse angle, it is difficult for sand and dust to accumulate, so that the power generation performance of the solar cell module 1 is prevented from being deteriorated due to the accumulation of sand and dust on the light receiving surface. be able to.

また、受光面ガラス11と、エッジ部24bとが当接している箇所から内側には雨水が浸入しにくくなるので、太陽電池モジュール1の耐久性を向上させることができる。さらに、雨水によって、太陽電池モジュール1上に堆積した砂や塵が洗い流されやすくなる。   In addition, since rainwater is less likely to enter the inside from the place where the light receiving surface glass 11 and the edge portion 24b are in contact with each other, the durability of the solar cell module 1 can be improved. Furthermore, sand and dust deposited on the solar cell module 1 are easily washed away by rainwater.

雨水が蒸発すると雨水に含まれていた塵やほこりが、雨水がたまっていた個所に付着することがあるが、エッジ部24bは先細に形成され、エッジ部24bと受光面ガラス11の角度は鈍角になっているため、受光面ガラス11との当接している箇所に水滴などがたまりにくい。そのため水がスムーズに流れ、雨水がとどまりにくいので、塵やほこりがエッジ部24bに堆積しにくくなる。   When rainwater evaporates, dust and dust contained in the rainwater may adhere to the location where the rainwater has accumulated, but the edge portion 24b is formed to be tapered, and the angle between the edge portion 24b and the light receiving surface glass 11 is an obtuse angle. Therefore, it is difficult for water droplets or the like to collect at a position where the light receiving surface glass 11 is in contact. Therefore, the water flows smoothly and the rainwater does not stay easily, so that dust and dust are less likely to accumulate on the edge portion 24b.

また、太陽電池パネル10の端部の弾性部材15は、太陽電池パネル端部を覆うように形成されているので、太陽電池パネル10の端部を保護するとともに、端部への水などの侵入を確実に防ぐことができる。また、枠体20の嵌合部23に密着しているので、嵌合部23と弾性部材15の間への水の浸入を防止することができ、太陽電池モジュール1の耐久性を高めることができる。   Moreover, since the elastic member 15 at the end of the solar cell panel 10 is formed so as to cover the end of the solar cell panel, the end of the solar cell panel 10 is protected and water or the like enters the end. Can be surely prevented. Moreover, since it closely_contact | adheres to the fitting part 23 of the frame 20, the penetration | invasion of the water between the fitting part 23 and the elastic member 15 can be prevented, and durability of the solar cell module 1 can be improved. it can.

さらに、太陽電池パネル10と枠体20の嵌合部23とを密着させるための部材として、両面に接着層のあるシート状の弾性部材15用いることにより、太陽電池パネル10を枠体20に密着させて確実に枠体20に固定することができる。また、弾性部材15としてテープ状の部材を用いることにより、弾性部材15の位置や厚さおよび弾性部材15の量を確実にコントロールすることができる。そのため、弾性部材15の受光面部15aが嵌合部23の上壁24の上辺部24a直下の空間25に確実に収めることができるとともに、太陽電池パネル10を上壁24方向に押し付けるように固定できるので、受光面ガラス11をエッジ部24bに確実に当接させることができる。
(実施の形態2)
図6は、本発明の太陽電池モジュールを構成する太陽電池パネル端部の別の実施の形態を示す説明図である。図6(a)において、封止キャップ16は、太陽電池パネル10の端部の形状に合うように形成されている。図6(b)に示されるように、封止キャップ16を太陽電池パネル10の端部に挿入することで太陽電池パネル10の端部を保護するとともに、弾性部材として実施例1におけるテープに対応する機能を有するものである。
Furthermore, the solar cell panel 10 is adhered to the frame body 20 by using a sheet-like elastic member 15 having an adhesive layer on both sides as a member for bringing the solar cell panel 10 and the fitting portion 23 of the frame body 20 into close contact with each other. And can be securely fixed to the frame 20. Further, by using a tape-like member as the elastic member 15, the position and thickness of the elastic member 15 and the amount of the elastic member 15 can be reliably controlled. Therefore, the light receiving surface portion 15a of the elastic member 15 can be securely stored in the space 25 immediately below the upper side portion 24a of the upper wall 24 of the fitting portion 23 and can be fixed so as to press the solar cell panel 10 toward the upper wall 24. Therefore, the light-receiving surface glass 11 can be reliably brought into contact with the edge portion 24b.
(Embodiment 2)
FIG. 6 is explanatory drawing which shows another embodiment of the solar cell panel edge part which comprises the solar cell module of this invention. In FIG. 6A, the sealing cap 16 is formed to match the shape of the end of the solar cell panel 10. 6B, the sealing cap 16 is inserted into the end portion of the solar cell panel 10 to protect the end portion of the solar cell panel 10 and corresponds to the tape in Example 1 as an elastic member. It has the function to do.

今回開示された実施の形態は、すべての点で例示であって制限的なものではないと考えられるべきである。本発明の範囲は上記した説明ではなくて特許請求の範囲によって示され、特許請求の範囲と均等の意味および範囲内でのすべての変更が含まれることが意図される。   The embodiment disclosed this time should be considered as illustrative in all points and not restrictive. The scope of the present invention is defined by the terms of the claims, rather than the description above, and is intended to include any modifications within the scope and meaning equivalent to the terms of the claims.

1 太陽電池モジュール、10 太陽電池パネル、11 受光面ガラス、12 耐候性フィルム、13 光電変換素子、14 透明樹脂、15 弾性部材、15a 受光面部、15b 端面部、15c 裏面部、20 枠体、21 基部、22 箱状部、23 嵌合部、24 上壁、24a 上辺部、24b エッジ部 25 空間、26 下壁、26a 第1の傾斜部、26b 第2の傾斜部、27 嵌合部入口、28 奥部、29 奥壁
DESCRIPTION OF SYMBOLS 1 Solar cell module, 10 Solar cell panel, 11 Light-receiving surface glass, 12 Weather resistance film, 13 Photoelectric conversion element, 14 Transparent resin, 15 Elastic member, 15a Light-receiving surface part, 15b End surface part, 15c Back surface part, 20 Frame, 21 Base part, 22 Box-shaped part, 23 Fitting part, 24 Upper wall, 24a Upper side part, 24b Edge part 25 Space, 26 Lower wall, 26a First inclined part, 26b Second inclined part, 27 Fitting part inlet, 28 back, 29 back wall

Claims (5)

太陽電池パネルと、前記太陽電池パネルの端部と嵌合して太陽電池を支持するための枠体からなる太陽電池モジュールであって、
前記枠体は、太陽電池パネルと嵌合するための嵌合部を有し、
前記嵌合部はエッジ部を有し
前記太陽電池パネルの端部は、前記嵌合部と嵌合するとともに、前記太陽電池パネルの受光面は、前記エッジ部に当接してなる太陽電池モジュール。
A solar cell module comprising a solar cell panel and a frame for fitting the end of the solar cell panel to support the solar cell,
The frame body has a fitting portion for fitting with a solar cell panel,
The fitting portion has an edge portion. A solar cell module in which an end portion of the solar cell panel is fitted with the fitting portion, and a light receiving surface of the solar cell panel is in contact with the edge portion.
前記エッジ部は、前記嵌合部の上辺部から延設されてなり、先端に向かって太陽電池パネルの方に傾斜して形成されてなる請求項1に記載の太陽電池モジュール。   The solar cell module according to claim 1, wherein the edge portion extends from an upper side portion of the fitting portion and is inclined toward the solar cell panel toward the tip. 前記エッジ部は、先細である請求項1または2に記載の太陽電池モジュール。   The solar cell module according to claim 1, wherein the edge portion is tapered. 前記嵌合部の下壁は、前記太陽電池パネルの受光面に対して傾斜した、第1の傾斜部と第2の傾斜部とを有し、
前記第1の傾斜部は、前記エッジ部の傾斜と対応して傾斜してなり、
前記第2の傾斜部は、前記太陽電池の端部の裏面の形状に対応して傾斜してなる、
請求項1から3のいずれかに記載の太陽電池モジュール。
The lower wall of the fitting portion has a first inclined portion and a second inclined portion that are inclined with respect to the light receiving surface of the solar cell panel,
The first inclined portion is inclined corresponding to the inclination of the edge portion,
The second inclined portion is inclined corresponding to the shape of the back surface of the end portion of the solar cell.
The solar cell module according to any one of claims 1 to 3.
前記太陽電池パネルの端部にテープ状の弾性部材が貼り付けられてなり、
前記弾性部材は、前記太陽電池パネルの端部の、受光面側と端面と裏面側を覆う、請求項1から4のいずれかに記載の太陽電池モジュール。
A tape-like elastic member is attached to the end of the solar cell panel,
The solar cell module according to any one of claims 1 to 4, wherein the elastic member covers a light receiving surface side, an end surface, and a back surface side of an end portion of the solar cell panel.
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KR102159900B1 (en) * 2020-02-17 2020-09-24 이선찬 the supporting frame of the sunlight panel

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