M395724 五、新型說明: 【新型所屬之技術領域】 錄π 有關於一種窗戶結構’特別係有關於- 種R時k供發電、隔熱功能以及自我潔淨的窗戶結構 【先前技術】 習知之大樓的窗戶結構,主要係單純由厚玻璃所 構成在日照強烈的時候,陽光的紫外線以及熱輻射 會直接射入室内,造成室内的溫度上升。雖然習知窗 戶結構的玻璃表面會塗佈有隔熱材料或貼附隔熱膠 膜,然其並無法有效隔絕陽光的紫外線以及熱輻射。 【新型内容】 本創作即為了欲解決習知技術之問題而提供之一 種窗戶結構,包括一框體、一太陽能板、一板材以及 %熱薄膜。太陽能板設於該框體之中。板材設於該 框體之中’並與該太陽能板相對,該板材與該太陽能 板之間形成有一隔離腔。隔熱薄膜設於該太陽能板與 該板材之間,並分隔該隔離腔。 應用本創作,由於太陽能板具有足夠的穿透率, 因此從室内依然可以觀察到室外的景物。大部分陽光 的紫外線被太陽能板所吸收,以產生電能。而陽光所 產生的熱輻射被隔熱薄膜、隔離腔以及板材有效隔 絕。因此本創作可同時提供良好的視覺效果,以及節 能和隔熱的功效。 3 【實施方式】 第la圖係顯示本創作之窗戶結構1〇〇的前視 圖,第lb圖係顯示本創作之窗戶結構1〇〇的剖面圖。 參照第la以及lb圖,本創作之窗戶結構1〇〇包括一 框體110、一太陽能板120、一板材130、一隔熱薄 膜140、黏結材料150、二隔離框151以及一線盒160。 該太陽能板120、該板材130、該隔熱薄膜14〇、該 隔離框151以及該線盒160均設於該框體11〇之中。 s玄板材130與該太陽能板120相對,隔離框151夾設 於該太陽能板120以及該板材130之間。該太陽能板 120、該板材130以及該等隔離框151定義一隔離腔 170。隔熱薄膜140夾設於該等隔離框151之間,並 位於該太陽能板120以及該板材130之間,以將該隔 離腔170分隔為一第一子腔體171以及一第二子腔體 172。所有元件經由黏結材料150膠合。 該太陽能板120包括一第一表面121、一第二表 面122以及一光觸媒塗層123,該第一表面121相反 於該第二表面122,該第二表面122與該板材13〇相 對’該光觸媒塗層123形成於該第一表面pi之上。 線盒160則a又於該第一表面122之上,並位於該隔離 腔170之外。 該太陽能板120較佳為非晶矽太陽能板,其穿透 率為10%。該隔熱薄膜140較佳為一透明熱反射薄膜 (Transparent Heat Mirror film)。板材 13〇 為一透明板 材,較佳為玻璃板。 參照第lc圖,其係顯示本創作之窗戶結構1〇〇 M395724 的後視圖。該線盒160更包括連接線161以及連接線 162,用以輸送太陽能板丨2〇所產生的電能。該窗戶 結構100更包括一第一侧邊1〇1,該線盒16〇鄰近該 第一側邊101。 參照第2圖’其係顯示本創作之窗戶結構的組立 情形。窗戶結構100以及窗戶結構1〇〇,可以被視為一 窗戶單元,其中,該等窗戶結構的該等第一侧邊(第 一側邊101以及第一側邊10丨,)位於同一直線之上, 且3玄專線盒(線盒160以及線盒160’)相串聯。窗戶結 構100以及窗戶結構1〇〇,,亦可以被視為一窗戶單 元’其中’該等窗戶結構的該等第一側邊(第一側邊 101以及第一側邊101’’)彼此相對,且該等線盒相並 聯(線盒160以及線盒160,,)。 應用本創作,由於太陽能板具有足夠的穿透率, 因此從室内依然可以觀察到室外的景物。大部分陽光 被太陽能板所吸收,以產生電能。而陽光所產生的熱 輕射被隔熱薄膜、隔離腔以及板材有效隔絕。因此本 創作可同時提供良好的視覺效果,以及節能和隔熱的 功效。 參照第3a以及3b圖,其係顯示本創作之一變形 例’其係為一預鑄踏板200,包括一基板210、一框 架220以及複數個上述之窗戶結構1 〇〇。框架220包 括複數個框格221,並嵌設於該基板210之上。該等 窗戶結構100對應設置於該等框格221之中。該基板 210為混凝土板材。應用本創作之變形例,窗戶結構 100可以預鑄牆板200的形式快速鋪設於建築物的表 5 M395724 面,以提供節能、隔熱以及美觀的效果。 雖然本創作已以具體之較佳實施例揭露如上,然 其並非用以限定本創作,任何熟習此項技藝者,在不 脫離本創作之精神和範圍内,仍可作些許的更動與潤 飾,因此本創作之保護範圍當視後附之申請專利範圍 所界定者為準。 【圖式簡單說明】 第la圖係顯示本創作之窗戶結構的前視圖; 第lb圖係顯示本創作之窗戶結構的剖面圖; 第lc圖係顯示本創作之窗戶結構的後視圖; 第2圖係顯示本創作之窗戶的組立情形; 第3a圖係顯示本創作之一變形例的前視圖;以及 第3b圖係顯示本創作之一變形例的剖面圖。 【主要元件符號說明】M395724 V. New description: [New technical field] Recording π About a window structure 'Specially related to - R when it is used for power generation, heat insulation and self-cleaning window structure [Prior technology] The building of the conventional building The window structure is mainly composed of thick glass. When the sun is strong, the ultraviolet rays and heat radiation of the sun will directly enter the room, causing the temperature in the room to rise. Although the glass surface of the conventional window structure is coated with a heat insulating material or an insulating film, it does not effectively block the ultraviolet rays and heat radiation of sunlight. [New content] This creation provides a window structure for solving the problems of the prior art, including a frame, a solar panel, a panel, and a % thermal film. The solar panel is disposed in the frame. The sheet is disposed in the frame and opposite to the solar panel, and an isolation cavity is formed between the sheet and the solar panel. An insulating film is disposed between the solar panel and the sheet and separates the isolation chamber. With this creation, since the solar panel has sufficient penetration rate, outdoor scenery can still be observed from the inside. Most of the sunlight's ultraviolet rays are absorbed by solar panels to generate electricity. The heat radiation generated by sunlight is effectively separated by the heat insulating film, the isolation chamber and the sheet. Therefore, this creation can provide good visual effects as well as energy saving and heat insulation. [Embodiment] The first drawing shows a front view of the window structure of the present creation, and the lb is a sectional view showing the window structure of the present creation. Referring to FIGS. 1a and 1b, the window structure 1 of the present invention includes a frame 110, a solar panel 120, a sheet 130, a heat insulating film 140, a bonding material 150, two spacer frames 151, and a wire box 160. The solar panel 120, the sheet material 130, the heat insulating film 14A, the isolation frame 151, and the wire box 160 are all disposed in the frame body 11''. The sap plate 130 is opposed to the solar panel 120, and the isolation frame 151 is interposed between the solar panel 120 and the panel 130. The solar panel 120, the sheet 130, and the isolation frames 151 define an isolation chamber 170. The insulating film 140 is sandwiched between the isolation frames 151 and located between the solar panel 120 and the plate 130 to partition the isolation cavity 170 into a first sub-cavity 171 and a second sub-cavity. 172. All components are glued via bonding material 150. The solar panel 120 includes a first surface 121, a second surface 122, and a photocatalyst coating 123. The first surface 121 is opposite to the second surface 122. The second surface 122 is opposite to the sheet 13'. A coating 123 is formed over the first surface pi. The wire box 160 is then above the first surface 122 and outside the isolation chamber 170. The solar panel 120 is preferably an amorphous germanium solar panel having a transmittance of 10%. The heat insulating film 140 is preferably a transparent heat Mirror film. The sheet 13 is a transparent sheet, preferably a glass sheet. Referring to Figure lc, it shows a rear view of the window structure 1 〇〇 M395724 of the present creation. The wire box 160 further includes a connecting wire 161 and a connecting wire 162 for conveying the electric energy generated by the solar panel. The window structure 100 further includes a first side edge 〇1 adjacent to the first side edge 101. Referring to Fig. 2, it shows the assembly of the window structure of the present creation. The window structure 100 and the window structure 1 can be regarded as a window unit, wherein the first side edges (the first side 101 and the first side 10丨) of the window structures are in the same line Upper, and 3 Xuan special line boxes (line box 160 and line box 160') are connected in series. The window structure 100 and the window structure 1 can also be regarded as a window unit 'where the first side edges (the first side 101 and the first side 101'') of the window structure are opposite to each other And the wire boxes are connected in parallel (the wire box 160 and the wire box 160,). With this creation, since the solar panel has sufficient penetration rate, outdoor scenery can still be observed from the inside. Most of the sunlight is absorbed by solar panels to generate electricity. The heat generated by the sunlight is effectively insulated by the insulating film, the isolation chamber and the sheet. Therefore, this creation can provide good visual effects as well as energy saving and heat insulation effects. Referring to Figures 3a and 3b, there is shown a variation of the present invention, which is a pedal 200 comprising a substrate 210, a frame 220, and a plurality of the above-described window structures. The frame 220 includes a plurality of sashes 221 and is embedded on the substrate 210. The window structures 100 are correspondingly disposed in the sashes 221. The substrate 210 is a concrete sheet. With the modification of the present invention, the window structure 100 can be quickly laid on the surface of the building's Table 5 M395724 in the form of a wall panel 200 to provide energy saving, heat insulation and aesthetic effects. Although the present invention has been disclosed in the above preferred embodiments, it is not intended to limit the present invention, and those skilled in the art can make some modifications and refinements without departing from the spirit and scope of the present invention. Therefore, the scope of protection of this creation is subject to the definition of the scope of the patent application attached. BRIEF DESCRIPTION OF THE DRAWINGS The first drawing shows a front view of the window structure of the present creation; the lb is a sectional view showing the window structure of the present creation; the lc is a rear view showing the window structure of the present creation; The figure shows the assembly of the window of the present creation; the 3a is a front view showing a modification of the present creation; and the 3b is a sectional view showing a modification of the present creation. [Main component symbol description]
100、100’、100”〜窗戶結構; 1(U、101’、10Γ’〜第一側邊; 110〜框體; 121〜第一表面; 123〜光觸媒塗層; 140〜隔熱薄膜; 151〜隔離框; 161、162〜連接線; 171〜第一子腔體; 200〜預鑄牆板; 220〜框架; 120〜太陽能板; 122〜第二表面; 130〜板材; 150〜黏結材料; 160、160,、160” 〜 170〜隔離腔; 172〜第二子腔體; 210〜基板; 221〜框格。 線盒 6100, 100', 100" ~ window structure; 1 (U, 101', 10 Γ '~ first side; 110 ~ frame; 121 ~ first surface; 123 ~ photocatalyst coating; 140 ~ thermal insulation film; ~ isolation box; 161, 162~ connection line; 171~ first sub-cavity; 200~ 預鑄 wall panel; 220~ frame; 120~ solar panel; 122~ second surface; 130~ sheet; 150~ bonding material; 160, 160, 160" ~ 170 ~ isolation cavity; 172 ~ second sub-cavity; 210 ~ substrate; 221 ~ sash.