TWM427671U - Improvement for solar cell power generation module structure - Google Patents

Improvement for solar cell power generation module structure Download PDF

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Publication number
TWM427671U
TWM427671U TW100219490U TW100219490U TWM427671U TW M427671 U TWM427671 U TW M427671U TW 100219490 U TW100219490 U TW 100219490U TW 100219490 U TW100219490 U TW 100219490U TW M427671 U TWM427671 U TW M427671U
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Taiwan
Prior art keywords
solar cell
power generation
reinforcing rib
generation module
cell power
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TW100219490U
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Chinese (zh)
Inventor
Given-Yugen Hirayama
Hung-Ta Chou
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Perfect Source Technology Corp
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Priority to TW100219490U priority Critical patent/TWM427671U/en
Priority to JP2012001008U priority patent/JP3175503U/en
Publication of TWM427671U publication Critical patent/TWM427671U/en

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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
    • 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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Description

M427671 五、新型說明: 【新型所屬之技術領域】 本創作係關於一種改良太陽能電池發電模組結構,尤指一種 利用嵌入的結構、加強肋與支撑臂的結構將含有一以玻璃、太陽 能電池、封装材(EVA、PVB)、背板或玻璃層壓而成的太陽能電池 * 發電模組與一固定框體從三維的方向固定,以更形強化的太陽能 . 電池發電模組結構。 【先前技術】 請參閱第七圖,係一種習知的太陽能電池發電模組結構立體 分解圖式。如圖所示,該習知的太陽能電池發電模組結構2具有 一以刖板由聚甲基丙稀酸甲g旨(polymethyl methacrylate,PMMA>、 PTFE、聚對苯二曱酸二乙醋(p〇iyethyiene terephthalate,PET)、玻 璃、或塑膠所製成、太陽能電池(單晶矽、多晶矽、非晶矽、銅銦 ❿砸化物、合物半導體)、封装材由乙酸乙烯醋(ethylene-vinyl acetate, EVA)、聚四氟乙烯(poiytetrafluoroetlxylene,PTFE)或鑄模樹脂 • (easting resin)所製成、背板由 PMMA、PTFE、PET、玻璃、或塑 膠所製成(圖中未示)層壓而成的太陽能電池發電模組21與一固定 框體22。然,該太陽電池發電模組21在應用時是曝露於戶外,除 了接受強風的直接作用力、太陽的曝曬造成溫度升降產生的應力 與剪力之外,於寒帶氣候使用時必須承受積雪的重量等等,都是 可能導致整體結構崩解的因素。 3 M427671 再者,如中華民國新型專利號4534〇〇所揭露之太陽能電池模 板之承載框巾’請參Μ第八® ’係中華民麟型專職453400之 一代表圖式。如新型專利號453400所揭露『缺口 42aX,42bx,分 別叹於支撐壁4〇aX,4〇bX的等高位置,缺口 42aX,42bX的開口方 向均朝向矩形承載框i(本圖未示)的中心方向,用以嵌夾太陽能電 • 池模板5〇』’且第八圖所揭露之技術為二支撐壁40aX,40bX經由 . 二銜接翼11X,21X之搭接而結合起來。然,若以單一的結構而言, • 一缺口 42aX、一螺合部4laX與一支撐壁40aX的結構,仍嫌薄弱, 難以應付上述的強風的直接作用力、太陽的曝曬造成溫度升降產 生的應力與剪力、寒帶氣候使用時必須承受積雪的重量等等諸多 因素。且’以該新型專利號453400所揭露的連結式太陽能電池模 板,若是單一的框架崩解了,其它的框架亦必難以倖免。因此, 還是需從單一的框架結構進行強化的工作,才是根本之道。 於是’如何利用一種強化結構,以解決習知技術的缺失,將 φ 是熟悉該項技藝之人士的一項重要課題。 【新型内容】 本創作之主要目的在於提供一種改良太陽能電池發電模組結 構,以利用嵌入的結構、加強肋與支撐臂的結構將含有一以前板 由聚曱基丙婦酸甲酯(polymethyl methacrylate,PMMA)、PTFE、聚 對苯二甲酸二乙酯一(polyethylene terephthalate,PET)、玻璃、或塑 耀·所製成、太陽能電池(單晶石夕、多晶石夕、非晶碎、銅銦趟化物、 4 M427671 化合物半導體)、封裝材由乙酸乙烤g旨(ethyiene_vinyi如伽把, EVA)、聚四氟乙烯(polytetrafluoroethylene,PTFE)或鑄模樹脂 (casting resin)所製成、背板由PMMA、PTFE、PET、玻璃、或塑 膠所製成層壓而成的太陽能電池發電模組與一固定框體從三維的 方向固定,以更形強化太陽能電池發電模組結構。 一種改良太陽能電池發電模組結構,包括:至少一太陽能電 池發電模組,及至少定框體,該太陽能電池發電模組係可嵌M427671 V. New Description: [New Technology Field] This creation is about an improved solar cell power module structure, especially a structure that uses embedded structures, ribs and support arms to contain a glass, solar cell, Solar cells assembled from packaging materials (EVA, PVB), backsheet or glass* The power module and a fixed frame are fixed from the three-dimensional direction to enhance the solar energy. Battery power module structure. [Prior Art] Please refer to the seventh figure, which is a stereo exploded view of a conventional solar cell power generation module structure. As shown in the figure, the conventional solar cell power generation module structure 2 has a polymethyl methacrylate (PMMA), PTFE, and poly(terephthalic acid) diacetate. 〇vinylpyrene (ethylene-vinyl vinegar Acetate, EVA), polytetrafluoroethylene (PTFE) or mold resin (easting resin), back sheet made of PMMA, PTFE, PET, glass, or plastic (not shown) laminated The solar cell power generation module 21 and the fixed frame 22. However, the solar cell power generation module 21 is exposed to the outdoor when applied, except for the direct force of the strong wind and the temperature rise and fall caused by the sun exposure. In addition to shearing force, the weight of snow that must be withstood during cold weather use is a factor that may cause disintegration of the overall structure. 3 M427671 Furthermore, as disclosed in the Republic of China new patent number 4534〇〇 The solar cell template carrier frame towel 'Please refer to the eighth ® ' is a representative of the Chinese hualin type full-time 453400. As the new patent number 453400 reveals the "notch 42aX, 42bx, respectively, sighs the support wall 4〇aX, At the contour position of 4〇bX, the opening directions of the notches 42aX and 42bX are all oriented toward the center of the rectangular carrier frame i (not shown) for embedding the solar cell module 5〇′′ and the eighth figure is disclosed. The technology is that the two supporting walls 40aX, 40bX are joined by the overlapping of the two connecting wings 11X, 21X. However, in a single structure, a notch 42aX, a screwing portion 4laX and a supporting wall 40aX The structure is still weak, and it is difficult to cope with the direct force of the above-mentioned strong wind, the stress and shear force caused by the temperature rise and fall of the sun exposure, the weight of the snow that must be withstood when the cold zone climate is used, and the like. The connected solar cell template disclosed in 453400, if a single frame collapses, other frames will not be spared. Therefore, it is necessary to strengthen the work from a single frame structure. Therefore, 'how to use a reinforced structure to solve the lack of conventional technology, φ is an important subject for those familiar with the art. [New content] The main purpose of this creation is to provide an improved solar cell power generation. The module structure to utilize the structure of the embedded structure, the reinforcing ribs and the support arm will contain a front plate from polymethyl methacrylate (PMMA), PTFE, polyethylene terephthalate ( Polyethylene terephthalate (PET), glass, or plastic, solar cell (single crystal, polycrystalline, amorphous, copper indium telluride, 4 M427671 compound semiconductor), packaged with ethyl acetate g (ethyiene_vinyi such as Gamba, EVA), polytetrafluoroethylene (PTFE) or casting resin, laminated backsheet made of PMMA, PTFE, PET, glass, or plastic The solar cell power generation module and a fixed frame are fixed in a three-dimensional direction to further strengthen the structure of the solar cell power generation module. An improved solar cell power generation module structure comprises: at least one solar cell power generation module, and at least a fixed frame body, the solar cell power generation module can be embedded

入於該固定框體中,且固定框體具有至少一外框架及至少一可跨 接該外框架_對雜的加_ ;其巾,t太陽㈣池發電模組 與固定框顔合成為-紅太池發賴組結構時,該加強 肋係可強化該太陽能電池發電模組結構。 較佳地,該太陽能電池發電模組係單晶石夕、多晶石夕、非晶石夕、 銅銦硒化物或化合物半導體太陽能電池。 幸又佳地該固疋框體可為下列任一種形狀··圓形與多邊形。 較佳地’料驗具註少—接受部與至少-輯強化部, 該接受部係可接收該太電池發電模組的—外緣⑽該外緣 嵌入於接受部卜且接受部相鄰於該結翻化部之-端,結構強 化部係呈現-框架形,雜__加強肋相鄰之—邊之一内側 具有至少-_結構,轉轉加__之該邊之-相對邊呈 有至少-第-狀孔,且框架形與加強肋相鄰之邊具有至少—第 一固定孔,該第二_咖對於該第-較孔,如此,一第一 鎖固件可以從第—固⑽入,再W孔,並再進入力"; 5 M427671 強肋之-第-綱孔’該第—鎖固件於是以與加強肋平行之勢將 結構強化部與加強肋相互固定。 較佳地,料潍具有至少-接受部與至少-結構強化部, 該接受部係可接收該太陽能電池發電模組的一外緣,以將該外緣 嵌入於接受部卜且接受部相鄰於該結構強化部之一端,結構強 化部係呈現-框架形’該_形與該加強肋相鄰之-邊之一内側 具有至少-_結構,結構強化部相鄰_接受部之該端的相對 端具有—延伸部’該延伸部係以平行於該加強肋之勢自結構強化 部向外延伸,並抵頂住加強肋,延伸部具有一第三固定孔,如此, -第二鎖固件可以從該第三固定孔穿入,再進人加強肋之一第二 鎖固孔’該第二_件於是以與域肋垂直之勢將結構強化部與 加強肋相互固定。 較佳地,該接受部係可接收該太陽能電池發電模組的一外 緣,以將該外緣嵌入於接受部中,且接受部相鄰於該結構強化部 之一端’結構強化部係呈現一框架形,該框架形與該加強肋相鄰 Γ 側具有至少一鎖固結構,框架形與加強肋相鄰之該 ^之一相對邊具有至少-第四固定孔,且框架形與加強肋相鄰之 邊具有至少一第五固定孔,該第五固定孔係相對於該第四固定 如此’-第三鎖固件可以從第四固定孔穿入,再進入第五固 疋孔,並再進人加強肋之—第三_孔,該第三細件於是以盘 平行之勢將結構強化部與加強肋相互固定,結構強化部相 鄰於接文部之該端的相對端具有一延伸部,該延伸部係以平行於 6 M427671 力口強肋之勢自結構強化部向外延伸,並抵頂住加強肋,^伸部具 有一第六固定孔’如此’ 一第四鎖固件可以從該第六固定孔穿入, 再進入加強肋之一第四鎖固孔,該第四鎖固件於是以與加強肋垂 直之勢將結構強化部與加強肋相互固定。 【實施方式】 ' 絲閱第_圖’係本創作之—種改良太陽能電池發電模組結 # 構第一較佳實施例立體分解圖式。該改良太陽能電池發電模組 結構1包括:一太陽能電池發電模組n’該太陽能電池發電模組 11係一單晶矽、多晶矽、非晶矽、銅銦硒化物或化合物半導體太 陽能電池,及一固定框體12,太陽能電池發電模組U係可嵌入於 該固定框體12巾,且固定框體12具有一外框架121及二可跨接 δ亥外框架121兩相對方位的加強肋122、123,該固定框體12之外 框架121可為下列任一種形狀:圓形與多邊形,其中,該多邊形 •可為至少二邊形的構形,本實施例係以一四邊形為例,亦即一第 一邊1211、一第二邊1212、一第三邊1213及一第四邊1214 ;其 中,當太陽能電池發電模組u與固定框體12結合成為一體之太 陽能電池發電模組結構1時,該加強肋122、123係可強化該太陽 能電池發電模組結構1的結構強度。本實施例中,加強肋122、123 從水平的方位將太陽能電池發電模組u平分為受力的三等份,故 可以二等份分散太陽能電池發電模組u所受到的剪力與應力。 請參閱第二圖’係本創作之改良太陽能電池發電模組結構一 7 第二較佳實施例立體分解圖式。該改良太陽能電池發電模組結構 1包括:一太陽能電池發電模組u,,該太陽能電池發電模組u, 係一單晶矽、多晶矽、非晶矽、銅銦硒化物或化合物半導體的太 陽能電池;及一固定框體12, ’太陽能電池發電模組u,係可嵌入 於該固定框體12’中,且固定框體12’具有一外框架121,及二可跨 接該外框架121’兩相對方位的加強肋122’、123,,該固定框體12, 之外框架121’可為下列任一種形狀:圓形與多邊形,其中,該多 邊形可為至少三邊形的構形,本實施例係以一四邊形為例,亦即 一第一邊1211’、一第二邊1212’、一第三邊1213’及一第四邊 1214’ ;其中,當太陽能電池發電模組11’與固定框體12’結合成為 一體之太陽能電池發電模組結構丨,時,該加強肋122,、123,係可 強化太%能電池發電模組結構1’的結構強度。本實施例中,加強 肋122’、123’從垂直的方位將太陽能電池發電模組u分為受力的 三部份,故可以分散太陽能電池發電模組n’所受到的剪力與應 力。 請參閱第三圖,係本創作之改良太陽能電池發電模組結構一 第二較佳實施例立體分解圖式。該改良太陽能電池發電模組結構 1”包括:一太陽能電池發電模組11”,該太陽能電池發電模組u,, 係一單晶矽、多晶矽、非晶矽、銅銦硒化物或化合物半導體太陽 能電池;及一固定框體12”,太陽能電池發電模組η”係可嵌入於 該固定框體12”中,且固定框體12”具有一外框架121,’及四可跨接 該外框架12Γ兩相對方位的加強肋122”、123”、124”及125”,該 M427671 固定框體12”之外框架12Γ可為下列任一種形狀:圓形與多邊形, 其中,該多邊形可為至少三邊形的構形,本實施例係以一四邊形 為例,亦即一第一邊1211”、一第二邊1212”、一第三邊1213”及 一第四邊1214”;其中’當太陽能電池發電模組11”與固定框體12” 結合成為一體之太陽能電池發電模組結構1”時,該加強肋122”、 123”、124”及125”係可強化太陽能電池發電模組結構1”的結構強 度。本實施例中’加強肋122”、123”從水平的方位與加強肋124,,、Into the fixed frame body, and the fixed frame body has at least one outer frame and at least one can be connected to the outer frame _ pairs of impurities _; the towel, t sun (four) pool power module and fixed frame color synthesis - When the red Taichi is in the structure of the group, the reinforcing rib system can strengthen the structure of the solar cell power generation module. Preferably, the solar cell power generation module is a single crystal stone, a polycrystalline stone, an amorphous stone, a copper indium selenide or a compound semiconductor solar cell. Fortunately, the solid frame can be any of the following shapes: a circle and a polygon. Preferably, the 'receiving device has less injection-receiving portion and at least the reinforcing portion, the receiving portion is capable of receiving the outer edge (10) of the solar battery power module. The outer edge is embedded in the receiving portion and the receiving portion is adjacent to the receiving portion. The end of the knot turning part, the structural strengthening part is in the form of a frame, and the side of the side of the side of the side of the side of the side of the side of the side of the side of the side of the side of the side of the side of the side of the side of the side of the side Having at least a first-shaped hole, and the side of the frame shape adjacent to the reinforcing rib has at least a first fixing hole, and the second side is for the first-peripheral hole, such that a first locking member can be from the first solid (10) In, then W hole, and then enter the force " 5 M427671 Strong rib - the first hole 'The first - the lock is then parallel with the reinforcing rib to strengthen the structural reinforcement and the reinforcing rib. Preferably, the magazine has at least a receiving portion and at least a structural reinforcing portion, the receiving portion receiving an outer edge of the solar cell power generating module to embed the outer edge in the receiving portion and adjacent to the receiving portion At one end of the structural reinforcement portion, the structural reinforcement portion exhibits a frame-shaped shape, and the inner side of the side adjacent to the reinforcing rib has at least a structure, and the structural reinforcement portion is adjacent to the opposite end of the receiving portion. The end has an extension portion that extends outward from the structural reinforcement portion parallel to the reinforcing rib and abuts against the reinforcing rib, the extension portion has a third fixing hole, such that the second locking member can The second fixing hole penetrates into the second locking hole of the reinforcing rib. The second member then fixes the structural reinforcing portion and the reinforcing rib to each other perpendicular to the domain rib. Preferably, the receiving portion can receive an outer edge of the solar cell power generation module to embed the outer edge in the receiving portion, and the receiving portion is adjacent to one end of the structural reinforcing portion. a frame shape having at least one locking structure adjacent to the reinforcing rib, the frame shape having at least a fourth fixing hole adjacent to the reinforcing rib, and the frame shape and the reinforcing rib The adjacent side has at least one fifth fixing hole, and the fifth fixing hole is opposite to the fourth fixing. The third locking member can penetrate from the fourth fixing hole, enter the fifth fixing hole, and then Into the reinforcing rib - the third hole, the third thin member is to fix the structural reinforcing portion and the reinforcing rib to each other in parallel with the disk, and the structural reinforcing portion has an extending portion adjacent to the opposite end of the end of the receiving portion, The extension extends outward from the structural reinforcement portion parallel to the 6 M427671 strong rib and bears against the reinforcing rib, and the extension has a sixth fixing hole so that a fourth lock can be The sixth fixing hole penetrates and enters the reinforcing rib A fourth locking hole, the fourth locking member then fixing the structural reinforcing portion and the reinforcing rib to each other perpendicularly to the reinforcing rib. [Embodiment] The invention of the improved solar cell power generation module is a three-dimensional exploded view of the first preferred embodiment. The improved solar cell power generation module structure 1 comprises: a solar cell power generation module n'. The solar cell power generation module 11 is a single crystal germanium, polycrystalline germanium, amorphous germanium, copper indium selenide or compound semiconductor solar cell, and The fixed frame body 12, the solar cell power generation module U can be embedded in the fixed frame body 12, and the fixed frame body 12 has an outer frame 121 and two reinforcing ribs 122 that can bridge the opposite orientations of the outer frame 121. 123, the outer frame 121 of the fixed frame 12 can be any of the following shapes: a circle and a polygon, wherein the polygon can be at least a quadrilateral configuration, and the embodiment is a quadrilateral, that is, a first side 1211, a second side 1212, a third side 1213 and a fourth side 1214; wherein, when the solar cell power generation module u and the fixed frame 12 are combined into an integrated solar cell power generation module structure 1 The reinforcing ribs 122 and 123 can strengthen the structural strength of the solar cell power generation module structure 1. In this embodiment, the reinforcing ribs 122, 123 divide the solar cell power generation module u into three equal parts of the force from a horizontal orientation, so that the shear force and stress received by the solar cell power generation module u can be dispersed in two equal parts. Please refer to the second figure, which is a perspective exploded view of a second preferred embodiment of the improved solar cell power generation module structure. The improved solar cell power generation module structure 1 comprises: a solar cell power generation module u, which is a solar cell of a single crystal germanium, polycrystalline germanium, amorphous germanium, copper indium selenide or compound semiconductor. And a fixed frame 12, 'the solar cell power generation module u can be embedded in the fixed frame 12', and the fixed frame 12' has an outer frame 121, and two can bridge the outer frame 121' The two oppositely oriented reinforcing ribs 122', 123, the fixed frame 12, the outer frame 121' may be any of the following shapes: a circle and a polygon, wherein the polygon may be at least a triangular configuration, The embodiment is exemplified by a quadrilateral, that is, a first side 1211', a second side 1212', a third side 1213', and a fourth side 1214'; wherein, when the solar cell power generation module 11' is When the fixed frame 12' is combined into an integrated solar cell power generation module structure, the reinforcing ribs 122, 123 can strengthen the structural strength of the solar cell power generation module structure 1'. In the present embodiment, the reinforcing ribs 122', 123' divide the solar cell power generating module u into three parts of the force from a vertical orientation, so that the shearing force and stress applied to the solar cell power generating module n' can be dispersed. Please refer to the third figure, which is a perspective exploded view of a second preferred embodiment of the improved solar cell power generation module structure. The improved solar cell power generation module structure 1" includes: a solar cell power generation module 11", which is a single crystal germanium, polycrystalline germanium, amorphous germanium, copper indium selenide or compound semiconductor solar energy. a battery; and a fixed frame 12", the solar cell power generation module η" can be embedded in the fixed frame 12", and the fixed frame 12" has an outer frame 121, and the four can bridge the outer frame 12" two oppositely oriented reinforcing ribs 122", 123", 124" and 125", the outer frame 12" of the M427671 fixed frame 12" may be any of the following shapes: a circle and a polygon, wherein the polygon may be at least three In the embodiment of the present invention, a quadrilateral is taken as an example, that is, a first side 1211", a second side 1212", a third side 1213" and a fourth side 1214"; When the battery power generation module 11" and the fixed frame 12" are integrated into the integrated solar cell power generation module structure 1", the reinforcing ribs 122", 123", 124" and 125" can strengthen the solar cell power generation module structure 1 "Structural strength." In the present embodiment, the 'reinforcing ribs 122', 123' are oriented from the horizontal direction to the reinforcing ribs 124,

125”從垂直的方位將太陽能電池發電模組11”分為受力的九部 份,故可以分散太陽能電池發電模組11所受到的剪力與應力。 請參閱第四圖’係本創作之改良太陽能電池發電模組結構之 太陽能電池發電模組與固定框體之外框架、加強肋相互結合固定 之一第一應用上視剖面圖式。該外框架121具有一接受部121A與 一結構強化部121B,該接受部121A係呈凹形狀,以可接收該太 陽能電池發電模組11的-外緣11卜以將料緣⑴嵌入於接受 部121A中,且接受部121A相鄰於該結構強化部uiB之一邊 ㈣C,結構強化部121B係呈現—框架形,該框架形與該加強肋 122相鄰之-邊121BA之一内側具有二鎖固結構聰丄、i搬, 以供二螺絲斷未示)或其它固定件(圖中未示)穿人,而將改良太 陽能電池發麵組結構丨岐於其它物體上麵形與加強肋122 相鄰之該邊mBA之一減邊121BB具有n定孔_, 且框架形與加強肋122相鄰之邊121BA具有一第二固定孔 職’該第:固定孔丨腦係相對於該第—峡孔麵,如 9 M427671 此’ -第-鎖固件p可以從第一固定孔12lB3穿入,再進入第二 固定孔mB4,並再進人加強肋122之—第—鎖固孔i22i,該^ -鎖固件卩妓以與加強肋122平行之勢將結構強化部咖與加 強肋122相互固^ ’其中,該結構強化部121B相鄰於該接受部 121A之該邊121BC的相對邊12邮具有一延伸部咖,該延伸 部me係以平行於加強肋122之勢自結構強化部⑵B向外延The 125" solar battery power generation module 11" is divided into nine parts of the force from the vertical orientation, so that the shear force and stress received by the solar battery power generation module 11 can be dispersed. Please refer to the fourth figure, which is a top view of the solar cell power generation module of the improved solar cell power generation module structure and the outer frame of the fixed frame and the reinforcing ribs. The outer frame 121 has a receiving portion 121A and a structural reinforcing portion 121B. The receiving portion 121A has a concave shape to receive the outer edge 11 of the solar cell power generating module 11 to embed the material edge (1) in the receiving portion. In 121A, the receiving portion 121A is adjacent to one side (four) C of the structural reinforcing portion uiB, and the structural reinforcing portion 121B is in a frame shape, and the frame shape is adjacent to the reinforcing rib 122. The structure is sturdy, i moved, for two screws to be broken, or other fixing members (not shown) to wear, and the improved solar battery fascia structure is attached to the other objects and the reinforcing ribs 122 One of the sides of the mBA minus the edge 121BB has n fixed holes _, and the frame shape adjacent to the reinforcing rib 122 side 121BA has a second fixed hole job 'the first: fixed hole 丨 brain system relative to the first gorge The hole surface, such as 9 M427671, can be inserted from the first fixing hole 12lB3 into the second fixing hole mB4, and then enters the first locking hole i22i of the reinforcing rib 122, the ^ - the fastener 卩妓 is in parallel with the reinforcing rib 122, and the structural reinforcing portion and the reinforcing rib 122 are mutually The structure reinforcing portion 121B has an extending portion adjacent to the opposite side 12 of the side 121BC of the receiving portion 121A, and the extending portion me is parallel to the reinforcing rib 122 from the structural reinforcing portion (2)B. Extension

伸,並抵頂住加強肋122,且與該鎖固件p配合進而更形固定加 強肋122。 請參閱第五®,係本創作之改良太陽能電池發電模組結構之 太陽能電池發賴組翻定框體之外框架、加細目互結合固定 之-第二應用上視剖面圖式。該外框架121具有—接受部⑵A與 -結構強化部121B,該接受部121A係呈凹形狀,以可接收該太The reinforcing ribs 122 are extended and supported against the reinforcing ribs 122, and are engaged with the locking members p to fix the reinforcing ribs 122 more. Please refer to the fifth®, which is based on the improved solar cell power generation module structure of the solar cell reliance group, the frame outside the frame, and the combination of fine-grained and fixed--the second application top view. The outer frame 121 has a receiving portion (2) A and a structural reinforcing portion 121B, and the receiving portion 121A has a concave shape to receive the

陽能電池發電模組11的-外緣lu,靖料緣⑴嵌入於接受 部121A巾’且接受部121A相鄰於該結構強化部⑵b之一邊 mBC ’結構強化部121B係呈現—框架形,該框架形與該加強肋 122相鄰之-邊121BA之-内側具有二鎖固結構12mi、⑵B2 以供二螺絲(圖中未示)或其它固定件(圖中未示)穿人,而將改良太 陽能電池發賴組結構丨,於其它物體上,結顧化和ib相 鄰於該接受部121A之該邊121BC _對邊12邮具有—延伸部 121C,該延伸部121C係以平行於該加_ 122之勢自結構強化部 121B向外延伸,並抵頂住加強肋122,延伸部121〇具有一第三固 定孔121B5,如此’ -第二鎖固件p,可以從該第三固定孔咖5 M427671 穿入,再進入加強肋122之一第二鎖固孔1222,該第二鎖固件p, 於是以與加強肋122垂直之勢將結構強化部12汨與加強肋122相 互固定。 請參閱第六圖,係本創作之改良太陽能電池發電模組結構之 太陽能電池發電模組與固定框體之外框架、加強肋相互結合固定The outer edge lu of the solar battery power generation module 11 is embedded in the receiving portion 121A, and the receiving portion 121A is adjacent to the one side of the structural reinforcing portion (2) b. The structural reinforcing portion 121B is formed in a frame shape. The frame shape is adjacent to the reinforcing rib 122 - the inner side of the side 121BA has two locking structures 12mi, (2) B2 for two screws (not shown) or other fixing members (not shown) to be worn. The improved solar cell contiguous group structure 丨, on other objects, the aligning and ib adjacent to the side 121BC _ the opposite side 12 of the receiving portion 121A has an extension portion 121C, the extension portion 121C is parallel to the The potential of the _122 extends outward from the structural reinforcing portion 121B and abuts against the reinforcing rib 122. The extending portion 121 has a third fixing hole 121B5, such that the second locking member p can be removed from the third fixing hole. The coffee machine 5 M427671 penetrates into the second locking hole 1222 of one of the reinforcing ribs 122, and the second locking member p then fixes the structural reinforcing portion 12A and the reinforcing rib 122 to each other with a perpendicular force to the reinforcing rib 122. Please refer to the sixth figure, which is the solar cell power generation module of the improved solar cell power generation module structure and the outer frame and the reinforcing rib of the fixed frame.

之一第三應用上視剖面圖式。該外框架121具有一接受部mA與 一結構強化部121B,該接受部12iA係呈凹形狀,以可接收該太 陽能電池發電模、组Π的一外、緣ln,以將該外緣ηι嵌入於接受 琿121A中,且接夂部121A相鄰於該結構強化部121B之一邊 i2mc,結構強化部121B係呈現—框架形,雜架形與該加強肋 122相鄰之一邊121BA之一内側具有二鎖固結構121則、㈣2, 以供二螺絲耐未示)或其它固定件(圖中未示)穿入,而將改良太 陽能電池發賴組結構丨固定於其㈣體上,㈣形與加強肋122 相鄰之該邊121BA之-姆邊丨細具有—細固定孔丨腦, 且框架形與加強肋122相鄰之邊⑵BA具有至少一第五固定孔 。亥第五固疋孔121B7係相對於該第四固定孔121B6,如 此’-第三鎖固件P,,,可以從第四固定孔ι聰穿入,再進入第五 固定孔_,並再進入加強肋122之—第三鎖固孔1223,該第 二鎖固件!>’”於是以與加_122平行之勢將結構強化部與加強肋 122相互固定,射’結構強化部咖挪於接受部脱之該 邊121BC的相對邊121肋具有一延伸部咖,該延伸部服 係以平打於加強肋122之勢自結構強化部i2m向外延伸,並抵頂 住加強肋i22,延伸部121C具有—第六固定孔uiB8,如此,一 第四鎖固件p,,,,可峨該第六—⑽穿人,再進入加強肋 122之-第四細孔1224,該第四鎖固件P,,,,於是以與加強肋⑵ 垂直之勢將結構強化部121B與加⑽122相互固定。 因此,本創作提供的改良太陽能電池發電模組結構,是利用 嵌入的結構、城肋財料的結含有—域能電池發電模 、=與HU框體從三_方向固定,以更職化太陽能電池發電 換組結構。_ ’目前種種可能導致整體結構崩解的因素,如強 風的直接制力、太陽的顿造成溫度升降產生的應力與煎力' 於寒帶氣候使科必須承受積雪的重量料,都—併解決了。 於疋’本新型專财請案係利用新型人豐富的經驗 ,以極富 創思的構心’没计出簡單卻能充分解決習知技術的問題。因此, 本新型專利巾賴的魏,確實符合具有新穎性與進步性的專利 要件。 唯以上所述者’僅為本創作之較佳實施例,當不能以之限制 本創作lull。即大凡依摘作巾請專補圍所做之鱗變化及修 飾’仍將不失本創作之要義所在,亦不脫離本創作之精神和範圍, 故都應視為本創作的進一步實施狀況。 【圖式簡單說明】 第一圖係本創作之一種改良太陽能電池發電模組結構一第一 較佳實施例立體分解圖式; 12 M427671 組結構一第二較佳 第-圖係本創作之改良太陽能電池發電模 實施例立體分解圖式; 第二圖係翔作之改良太陽能電池發電模組結構—第三 實施例立體分解圖式; 一乂 第四圖係本創作之改良太陽能電池發電模組結構之太陽能電 池發電減與固定框體之外轉、加強肋相互結合固定之一第一 應用上視剖面圖式; • 第五_摘作之改良太電池發電餘結構之太陽能電 池發電模組_定框體之外框架、加強肋相互結合固定之一第二 應用上視剖面圖式; 第/、圖係糊作之改良太陽能電池發賴減構之太陽能電 池發電模組與固定框體之外框架、加強肋相聽合固定之一第三 應用上視剖面圖式; 第七圖係種驾知的太陽能電池發電模組結構立體分解圖 • 式;及 第八圖係中華民國新型專利號4534〇〇之一代表圖式。 【主要元件符號說明】 構 11太陽能電池發電模組 111外緣 12固定框體 2太陽能電池發電模組結構 21太陽能電池發電模組 22固定框體 1改良太陽能電池發電模組結 M427671 121外框架 12Γ外框架 122加強肋 122”加強肋 123加強肋 123”加強肋 1211第一邊 124”加強肋 1212第二邊 125”加強肋 1213第三邊 121Γ第一邊 1214第四邊 1212”第二邊 Γ改良太陽能電池發電模組結 1213”第三邊 構 1214”第四邊 11’太陽能電池發電模組 121A接受部 12’固定框體 121B結構強化部 121’外框架 111外緣 122’加強肋 121BC 邊 123’加強肋 121BA 邊 1211,第一邊 121B1鎖固結構 1212,第二邊 121B2鎖固結構 1213’第三邊 121BB 邊 1214’第四邊 121B3第一固定孔 1”改良太陽能電池發電模組結 121B4第二固定孔 構 P第一鎖固件 Π”太陽能電池發電模組 121BD 邊 12”固定框體 121C延伸部 M427671 121B5第三固定孔 P’第二鎖固件 1222第二鎖固孔 121B6第四固定孔 121B7第五固定孔 P’”第三鎖固件 1223第三鎖固孔 121B8第六固定孔 P””第四鎖固件 1224第四鎖固孔 42aX 缺口 42bX 缺口 40aX支撐壁 40bX支撐壁 11X銜接翼 21X銜接翼One of the third applications is a cross-sectional view. The outer frame 121 has a receiving portion mA and a structural reinforcing portion 121B. The receiving portion 12iA has a concave shape to receive the outer edge and the edge ln of the solar cell power generating mold and the group to embed the outer edge ηι. In the receiving 珲121A, and the connecting portion 121A is adjacent to one side i2mc of the structural reinforcing portion 121B, the structural reinforcing portion 121B is formed in a frame shape, and the miscellaneous frame shape and one side of the one side 121BA adjacent to the reinforcing rib 122 have The second locking structure 121, (4) 2, for the two screws to resist (not shown) or other fixing members (not shown) penetrate, and the improved solar cell reliance group structure is fixed on the (four) body, (4) shape and The edge rim of the reinforcing rib 122 adjacent to the side 121BA has a fine fixing hole camphor, and the side (2) BA of the frame shape adjacent to the reinforcing rib 122 has at least a fifth fixing hole. The fifth fixed bore 121B7 is opposite to the fourth fixing hole 121B6, so that the 'third lock P, can be penetrated from the fourth fixed hole ι, then enter the fifth fixed hole _, and then enter The third locking hole 1223 of the reinforcing rib 122, the second locking member >'" then fixes the structural reinforcing portion and the reinforcing rib 122 to each other in parallel with the adding _122, and the structural strengthening portion is moved to The opposite side 121 rib of the receiving portion 121BC has an extending portion, and the extending portion extends outward from the structural reinforcing portion i2m with a potential of the reinforcing rib 122, and abuts against the reinforcing rib i22, the extending portion The 121C has a sixth fixing hole uiB8. Thus, a fourth locking member p,, can be worn by the sixth (10), and then enters the fourth hole 1224 of the reinforcing rib 122, the fourth locking member P Therefore, the structural strengthening portion 121B and the addition (10) 122 are fixed to each other perpendicularly to the reinforcing rib (2). Therefore, the improved solar cell power generation module structure provided by the present invention utilizes the embedded structure and the knot of the rib material. Containing - domain energy battery generator, = and HU frame fixed from the three _ direction, More specialized solar cell power generation and replacement structure. _ 'The current various factors that may lead to the collapse of the overall structure, such as the direct force of strong winds, the stress caused by the temperature rise and fall of the sun, and the frying force The weight of the snow is all - and solved. Yu Yu's new special fund application system utilizes the rich experience of the new type of people, with a very creative mindset that does not count the simple but fully solves the problem of the conventional technology. Therefore, Wei of this new type of patent towel does meet the patent requirements of novelty and progress. Only the above-mentioned ones are only the preferred embodiment of this creation, when it is not possible to limit the creation of this creation. According to the excavation of the towel, please make up the changes and modifications of the scales. The theme of the creation will not be lost, and it will not be divorced from the spirit and scope of this creation. Therefore, it should be regarded as the further implementation of this creation. BRIEF DESCRIPTION OF THE DRAWINGS The first figure is an exploded perspective view of a first preferred embodiment of an improved solar cell power module structure of the present invention; 12 M427671 group structure a second preferred figure-picture system The stereoscopic exploded view of the modified solar cell power generation mode embodiment is created; the second figure is the improved solar cell power generation module structure of the Xiangcheng - the third embodiment is an exploded view; the fourth figure is the improved solar cell of the present invention. The solar cell power generation structure of the power generation module structure is reduced and the fixed frame body is rotated and the ribs are fixed and fixed together. The first application is a cross-sectional view of the first application; • The fifth _ extract is used to improve the solar cell power generation structure of the solar cell power generation structure. Module _ frame outside the frame body, the ribs are combined with each other to fix one of the second application top view; the / / figure is a modified solar cell reliance on the reduction of the solar cell power generation module and the fixed frame The third frame of the external frame and the rib reinforcement are fixed. The seventh figure is a three-dimensional exploded view of the solar cell power module structure; and the eighth figure is the new model of the Republic of China. One of the patent numbers 4534〇〇 represents a schema. [Main component symbol description] Structure 11 solar cell power generation module 111 outer edge 12 fixed frame 2 solar cell power generation module structure 21 solar cell power generation module 22 fixed frame 1 improved solar cell power generation module junction M427671 121 outer frame 12Γ Outer frame 122 reinforcing rib 122" reinforcing rib 123 reinforcing rib 123" reinforcing rib 1211 first side 124" reinforcing rib 1212 second side 125" reinforcing rib 1213 third side 121 Γ first side 1214 fourth side 1212" second side Γ Improved solar cell power generation module junction 1213" third side structure 1214" fourth side 11' solar cell power generation module 121A receiving portion 12' fixed frame body 121B structure reinforcing portion 121' outer frame 111 outer edge 122' reinforcing rib 121BC side 123' reinforcing rib 121BA side 1211, first side 121B1 locking structure 1212, second side 121B2 locking structure 1213' third side 121BB side 1214' fourth side 121B3 first fixing hole 1" improved solar cell power generation module junction 121B4 second fixing hole structure P first locking device Π "solar battery power generation module 121BD side 12" fixing frame 121C extension M427671 121B5 third fixed P' second locking member 1222 second locking hole 121B6 fourth fixing hole 121B7 fifth fixing hole P'" third locking member 1223 third locking hole 121B8 sixth fixing hole P"" fourth locking member 1224 fourth Locking hole 42aX Notch 42bX Notch 40aX Supporting wall 40bX Supporting wall 11X Connecting wing 21X Connecting wing

Claims (1)

六、申請專利範圍: 1. 一種改良太陽能電池發電模組結構,包括: 至少一太陽能電池發電模組;及 至少一固定框體,該太陽能電池發電模組係可嵌入於該固 定框體中,且固定框體具有至少一外框架及至少一可跨接該外 框架兩相對方位的加強肋; 其中,當太陽能電池發電模組與固定框體結合成為一體之 太陽能電池發電模組結構時,該加強肋係可強化該太陽能電池 發電模組結構。 2·如申請專利範圍第1項所述之改良太陽能電池發電模組結構,其 中,該太陽能電池發電模組可為下列任一種:單晶矽、多晶矽、 非晶矽、銅銦硒化物與化合物半導體太陽能電池。 3·如申請專麵圍第丨撕述之改良太陽能電池發賴組結構,其 中,s玄固定框體可為下列任一種形狀:圓形與多邊形。 4. 如申睛專利_第3賴述之改良太陽能電池發賴組結構,其 中,該多邊形可為至少三邊形的構形。 5. 如申凊專她圍第丨項所述之改良太陽能電池發賴組結構,其 中’該外框架具有至少一接受部與至少一結構強化部該接受 4係可接收社陽能電池發賴組的—外緣,以將料緣嵌入 ,接受部中’且接受勒鄰於該結構強化部之一端,結構強化 卩係呈現-樞架形,該框架形與該加_相鄰之一邊之一内侧 具有至少-鎖固結構,框架形與加強肋相鄰之該邊之一相對邊 具有至少一第一固定孔,且框架形與加強肋相鄰之邊具有至少 一第二固定孔,該第二固定孔係相對於該第一固定孔,如此, -第-鎖ID件可以從第—固定孔穿人,再進人第二固定孔,並 再進入加強肋之一第一鎖固孔,該第一鎖固件於是以與加強肋 平行之勢將結構強化部與加強肋相互固定。 6.如申請專利範圍第5項所述之改良太陽能電池發電模組結構,其 中’该結構強化部相鄰於該接受部之該端的相對端具有一延伸 ’該延伸部係以平行於該加強肋之勢自結構強化部向外延 伸’並抵頂住加強肋’且触細件配合’進而更職定加強 肋。 7·如申請專利細第丨項所述之改良太陽能電池發賴組結構,其 中,該外框架具有至少一接受部與至少一結構強化部,該接受 4係可接彡太陽能電池發電模組的-外緣’以將該外緣嵌入 於接文部巾’且射部相鄰於該結構強化部之—端,結構強化 部係呈現-框架形,該框架形與該加強肋相鄰之一邊之一内側 具有至少-鎖固結構,結構強化部相鄰於該接受部之該端的相 對端具有-延伸部’該延伸部係以平行於該加強肋之勢自結構 強化。卩向外延伸,並抵頂住加強肋,延伸部具有一第三固定 孔,如此,一第二鎖固件可以從該第三固定孔穿入,再進入加 強肋之-第二鎖固孔,該第二鎖固件於是以與加強肋垂直之勢 將結構強化部與加強肋相互固定。 如申%專利範圍第1項所述之改良太陽能電池發電模組結構,其 M427671 中,該外框架具有至少一接受部與 部係可接收該太陽能電池發,構_ ’該接受 部相鄰於該結翻化部之—端,結構強化 具有至少-伽1雜飾與該加__之—邊之一内側 "結構’购轉加触蝴之該邊之-相對邊 /、有至少一第四固定孔,且框架形與加強肋相鄰之邊具有至少 一第五固定孔,該第五固定孔係相對於該細固定孔,如此, -第三鎖固件可以從第四固定孔穿入再進入第五固定孔並 進力強肋之第二鎖固孔,該第三鎖固件於是以與加強肋 平灯之勢將結構強化部與加強肋相互固定,結構強化部相鄰於 接受部之該端的相對端具有—延伸部,該延伸部係以平行於加 強肋之勢自結構強化部向外延伸,並抵頂住加_,延伸部具 有-第六固定孔’如此’ 一第四鎖固件可以從該第六固定孔穿 入’再進入加強肋之-第四鎖固孔,該第四鎖固件於是以與加 強肋垂直之勢將結構強化部與加強肋相互固定。6. Patent application scope: 1. An improved solar cell power generation module structure, comprising: at least one solar cell power generation module; and at least one fixed frame body, the solar cell power generation module can be embedded in the fixed frame body, And the fixing frame has at least one outer frame and at least one reinforcing rib that can span the opposite orientations of the outer frame; wherein, when the solar cell power generation module and the fixed frame are combined into an integrated solar cell power generation module structure, The reinforcing rib system can strengthen the structure of the solar cell power generation module. 2. The improved solar cell power generation module structure according to claim 1, wherein the solar cell power generation module can be any one of the following: single crystal germanium, polycrystalline germanium, amorphous germanium, copper indium selenide and a compound. Semiconductor solar cells. 3. If you apply for a modified solar cell stagnation group structure, the s-stationary fixed frame can be any of the following shapes: circular and polygonal. 4. The improved solar cell repellency group structure of claim 3, wherein the polygon may have an at least trigonal configuration. 5. The application of the improved solar cell reliance group structure described in the above-mentioned item, wherein the outer frame has at least one receiving portion and at least one structural strengthening portion, the receiving 4 series can receive the solar cell battery The outer edge of the group is embedded in the receiving portion, and is received in the receiving portion and accepts one end of the structural reinforcing portion, and the structurally strengthened tethered system presents a pivot shape, and the frame shape is adjacent to one side of the adding An inner side has at least a locking structure, and at least one of the opposite sides of the side of the frame adjacent to the reinforcing rib has at least one first fixing hole, and the side of the frame shape adjacent to the reinforcing rib has at least one second fixing hole, The second fixing hole is opposite to the first fixing hole. Thus, the first locking ID member can pass through the first fixing hole, enter the second fixing hole, and enter the first locking hole of one of the reinforcing ribs. The first locking member then fixes the structural reinforcing portion and the reinforcing rib to each other in parallel with the reinforcing rib. 6. The improved solar cell power generation module structure of claim 5, wherein the structural reinforcement portion has an extension adjacent the opposite end of the receiving portion to extend parallel to the reinforcement The ribs extend outward from the structural reinforcement and 'but against the reinforcing ribs' and the contact members cooperate to further define the reinforcing ribs. The improved solar cell aging group structure according to the invention, wherein the outer frame has at least one receiving portion and at least one structural reinforcing portion, and the receiving 4 series can be connected to the solar cell power generation module. The outer edge is formed by embedding the outer edge in the splicing portion and the projecting portion is adjacent to the end of the structural reinforcing portion, the structural reinforcing portion exhibiting a frame shape, and the frame shape is adjacent to one side of the reinforcing rib An inner side has at least a locking structure, and the structural reinforcing portion has an -extension portion adjacent to an opposite end of the end of the receiving portion. The extension portion is reinforced from the structure parallel to the reinforcing rib. The 卩 extends outwardly and abuts against the reinforcing rib, and the extending portion has a third fixing hole. Thus, a second locking member can penetrate from the third fixing hole and enter the second locking hole of the reinforcing rib. The second locking member then fixes the structural reinforcing portion and the reinforcing rib to each other perpendicular to the reinforcing rib. The improved solar cell power generation module structure according to claim 1, wherein in the M427671, the outer frame has at least one receiving portion and a portion for receiving the solar cell, and the receiving portion is adjacent to the receiving portion. The end of the knot turning portion, the structural reinforcement has at least - gamma 1 miscellaneous and the plus _ _ one of the sides of the inner side "structure" purchase and touch the side of the butterfly - the opposite side /, there is at least one a fourth fixing hole, and the side of the frame shape adjacent to the reinforcing rib has at least one fifth fixing hole, the fifth fixing hole is opposite to the thin fixing hole, and thus, the third locking member can be worn from the fourth fixing hole And entering the fifth fixing hole and inserting the second locking hole of the strong rib, the third locking member then fixing the structural strengthening portion and the reinforcing rib to each other with the potential of the reinforcing rib flat lamp, and the structural strengthening portion is adjacent to the receiving portion The opposite end of the end has an extension portion extending outward from the structural reinforcement portion parallel to the reinforcing rib and abutting against the addition _, the extension portion having a - sixth fixing hole 'so' The locking member can penetrate from the sixth fixing hole Of the reinforcing ribs - the fourth locking holes, thus locking the fourth addition to the vertical reinforcing ribs bound structural reinforcement of the reinforcing rib portion and fixed to each other.
TW100219490U 2011-10-18 2011-10-18 Improvement for solar cell power generation module structure TWM427671U (en)

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TW100219490U TWM427671U (en) 2011-10-18 2011-10-18 Improvement for solar cell power generation module structure
JP2012001008U JP3175503U (en) 2011-10-18 2012-02-24 Solar power generation module structure

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JP6204720B2 (en) * 2012-07-05 2017-09-27 シャープ株式会社 Frame body and solar cell module provided with the frame body
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