TWM425871U - Energy-saving glass - Google Patents

Energy-saving glass Download PDF

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Publication number
TWM425871U
TWM425871U TW100222828U TW100222828U TWM425871U TW M425871 U TWM425871 U TW M425871U TW 100222828 U TW100222828 U TW 100222828U TW 100222828 U TW100222828 U TW 100222828U TW M425871 U TWM425871 U TW M425871U
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Taiwan
Prior art keywords
energy
coating
glass
saving glass
functional layer
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TW100222828U
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Chinese (zh)
Inventor
Zhang-Neng Xiao
Original Assignee
Meter Nano Technology Company
Zhang-Neng Xiao
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Application filed by Meter Nano Technology Company, Zhang-Neng Xiao filed Critical Meter Nano Technology Company
Priority to TW100222828U priority Critical patent/TWM425871U/en
Publication of TWM425871U publication Critical patent/TWM425871U/en

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  • Laminated Bodies (AREA)

Description

五、新型說明: 【新型所屬之技術領域】 [0001] [0002] [0003] 本創作係有關於一種節能玻璃,尤其是指一種不僅 在其製作過程能更為簡易便利,且更能延長其使用壽命 ,而能更增其整體施行使用上之實用功效性的節能玻璃 創新設計者。 【先前技術】 按,由於透光性及美觀的需求,玻璃已大量地被運 用在建築物上,而對於位處較為炎熱的地區來說,玻璃 建材運用在建築物上’極易導致大量的輻射熱量經由玻 璃而傳入室内,無形之中增加了室内空調的負載,也造 成了能源的消耗;也因此,一般建築物普遍皆選用具有 隔熱功效之玻璃建材,以減少輻射熱量穿透玻璃而進入 室内,及達到節省能源的目的。 其中,就一般常見具有隔熱功效之玻璃建材而言, 其大致上可分為膠合玻璃或中空玻璃,請一併參閱第二 圖現有之結構示意圖所示,該膠合玻璃結構之隔熱玻璃 (4 )主要係於玻璃片(41) 一端面塗佈〔鋪上〕有 PVB(P〇ly(vinyl butyral)» 聚乙烯醇缩丁醛〕之黏著層(4 2 ),且於該黏著層( 4 2)外端面黏附有隔熱紙(43),並於隔熱紙(4 3)外端面亦塗佈〔鋪上〕有pvB〔p〇 i y (▽ 土 nyl butyra";聚乙烯醇缩丁醛〕之黏著 層(4 4),再於該黏著層(4 4)外端面黏附另—玻 璃片(4 5),即能藉由該隔熱紙(4 3)具有隔熱功 表單編號A0101 第3頁/共11頁 [0004]M425871 效。 然而,上述隔熱玻璃雖可達到減少輻射熱量穿透玻 璃進入室内及達到節省能源目的之預期功效,但也在其 實際施行使用上發現,該隔熱玻璃具有下列缺點: [0005] 1. 該隔熱玻璃之隔熱纸在製作過程中需要有龐大的機 械設備、繁複之工序,使得需要投資大量之人力、 物力,實非一般中小企業所能為之,故不能有效降 低製作成本,相對即會導致其售價較為偏高。 2. 該隔熱玻璃之隔熱紙在黏附過程中極為不易使其平 整,常會有皺折、氣泡的產生,造成其製作上極大 的不便,並在長期使用後,該隔熱紙會產生劣化, 導致影響隔熱玻璃整體透明度之情況發生。 緣是,創作人有鑑於此,秉持多年該相關行業之豐 富設計開發及實際製作經驗,針對現有之結構及缺失予 以研究改良,提供一種節能玻璃,以期達到更佳實用價 值性之目的者。 【新型内容】 [0006] 本創作之節能玻璃,其主要係設有玻璃層,於該玻 璃層上塗佈有抗紅外線塗層,再於該抗红外線塗層上設 有功能層,該功能層為壓克力樹脂,且於該功能層上再 塗佈〔鋪上〕有PVB樹脂供黏附另一片玻璃,或令該 功能層為加入有紫外光吸收劑及抗菌劑之壓克力樹脂; 藉此,使得節能玻璃由於不需使用隔熱紙,而直接於玻 璃層上塗佈有抗紅外線塗層,即能於其使用上具有抗紅 外線功能,不僅在其製作過程中能大量減少製作工序, 表單编號A0101 第4頁/共11頁 令其製作時更為簡易便利,相對能降低其製作成本,且 更能延長其使用壽命,並能作為膠合玻璃或單層節能玻 璃或中空節能玻璃使用,而更增其整體施行使用上之實 用功效性者。 【實施方式】 為令本創作所運用之技術内容'創作目的及其達成 之功效有更完整且清楚的揭露,茲於下詳細說明之,並 請一併參閱所揭之圖式及圖號: 首先,請參閱第一圖本創作之結構示意圖所示,本 創作主要係設有一玻璃層(1 ),於該玻璃層(1 )上 塗佈有抗紅外線塗層(2.),再於該抗紅外線塗層(2 )上設有功能層(3);其中: 該抗紅外線塗層(2),其可為奈米氧化鎢隔熱塗 料、奈米銻錫氧化物〔ΑΤΟ〕隔熱塗料、奈米六硼化 鑭〔L a Β 6〕隔熱塗料或奈米碳黑隔熱塗料,且硬化溫 度時間為1 2 0 eC、2 0分鐘。 110] 該功能層(3 ),其可為壓克力樹脂,且烘乾溫度 時間為1 2 0°C、1分鐘,以能於該功能層(3 )上再 塗佈〔舖上〕有 PVB〔P〇ly(vinyl bu tyral) ’聚乙烯醇缩丁醛〕樹脂供黏附另一片玻 璃,以製作膠合玻璃;或令該功能層(3 )為加入有紫 外光吸收劑及抗菌劑之壓克力樹脂,且烘乾溫度時間為 1 2 0°C、1分鐘,固化條件為UV A光源,照射能量 為1 0 0 m J/CM2,其表面鉛筆硬度為3 H〔抗到用 〕、抗紫外光為9 9%、對金黃色葡萄球菌之_菌率為 表事编號A0101 第.5頁/共11頁 、 9 9 . 9 9%,以具有抗到抗菌抗紫外線功能,而能作 為單層節能玻璃或中空節能玻璃之用。 [〇〇11] 如此一來’使得於該玻璃層(1 )上塗佈有抗紅外 線塗層(2 )後,以1 2 0°C之溫度加熱2 0分鐘,令 抗紅外線塗層(2 )於玻璃層(1 )上結合硬化,待其 冷卻後’再於硬化後之紅外線塗層(2)上設有壓克力 樹脂之功能層(3),以再藉由PVB樹脂黏附另一片 玻璃或添加入紫外光吸收劑及抗菌劑做為抗刮抗菌抗紫 外線功能,不僅在其整體製作上更為簡易便利,且更能 延長使用壽命者。 [0012] 藉由以上所述’本創作結構之組成與使用實施說明 可知,本創作與現有結構相較之下,本創作具有下列優 點: [0013] 1.本創作主要係於該玻璃層上直接塗佈有抗红外線塗 層,即可令玻璃於使用上不僅具有抗紅外線功能, 且能作為膠合玻璃或單層節能玻璃或令空節能玻璃 使用,而在其製作過程能更為簡易便利者。 2*本創作由於係在該玻璃層上塗佈有抗紅外線塗層’ 利用抗紅外線塗層令玻璃在使用上具有抗紅外線功 忐,使得其在施行使用上更能延長使用壽命者。 前述之實施例或圖式並非限定本創作之結構樣態, 任何所屬技術領域巾具有通常知識者之適當變化或修飾 白應視為不脫離本創作之專利範嘴。 [0014] ^ ▲综上所述’賴作實_確能達簡_之使用功 表單編二1。,其所揭路之具體構造,不僅未曾見於同類產品中 第6頁/共11頁 M425871 ,亦未曾公開於申請前,誠已完全符合專利法之規定與 要求,爰依法提出新型專利之申請,懇請惠予審查,並 賜准專利,則實感德便。 【圖式簡單說明】 [0015] 第一圖:本創作之結構示意圖 [0016] 第二圖:現有之結構示意圖 【主要元件符號說明】 [0017] ( 1 ) 玻璃層 (2 ) 抗紅外線塗層 [0018] (3) 功能層 (4) 隔熱玻璃 [0019] ( 4 1 )玻璃片 (4 2 )黏著層 [0020] ( 4 3 )隔熱紙 (4 4 )黏著層 [0021] ( 4 5 )玻璃片 表單編號A0101 第7頁/共11頁V. New Description: [New Technology Field] [0001] [0002] [0003] This creation is about an energy-saving glass, especially one that is not only easier and more convenient in its production process, but also more prolonged. An innovative designer of energy-saving glass that has a long service life and can increase the practical utility of its overall application. [Prior Art] According to the requirements of light transmission and aesthetics, glass has been widely used in buildings, and for hot areas, glass building materials are used on buildings, which can easily lead to a large number of The radiant heat is transferred into the room through the glass, which invisibly increases the load of the indoor air conditioner and also causes the energy consumption. Therefore, the general building generally uses the glass building materials with heat insulation effect to reduce the radiant heat penetration of the glass. And enter the room, and achieve energy-saving purposes. Among them, in the case of glass building materials which are generally commonly used for heat insulation, they can be roughly classified into glued glass or hollow glass. Please refer to the prior art schematic diagram of the second figure, the insulating glass of the glued glass structure ( 4) Mainly applied to the glass sheet (41) with an adhesive layer (4 2 ) of PVB (Pp-ly (vinyl butyral)» polyvinyl butyral) coated on one end surface, and on the adhesive layer ( 4 2) The outer end surface is adhered with heat-insulating paper (43), and the outer end surface of the heat-insulating paper (4 3) is also coated with [pvB] [p〇iy (▽η nyl butyra"; polyvinyl alcohol Adhesive layer (4 4) of aldehyde], and another glass sheet (45) adhered to the outer end surface of the adhesive layer (4 4), that is, the heat insulating paper (43) can have heat insulating work form number A0101 Page 3 of 11 [0004] M425871 effect. However, although the above-mentioned insulating glass can achieve the expected effect of reducing the amount of radiant heat penetrating into the room and achieving energy saving, it is also found in its actual implementation. Insulating glass has the following disadvantages: [0005] 1. The insulating paper of insulating glass needs to be in the process of production. The mechanical equipment and complicated procedures make it necessary to invest a large amount of manpower and material resources, which is not what ordinary SMEs can do. Therefore, the production cost cannot be effectively reduced, and the relative price will be relatively high. Glass insulation paper is extremely difficult to flatten during the adhesion process, often resulting in wrinkles and bubbles, which causes great inconvenience in its production, and after long-term use, the insulation paper will deteriorate, resulting in insulation The overall transparency of the glass occurs. The reason is that the creators have given this year's rich experience in design and development and practical production of the relevant industries, and have researched and improved the existing structures and defects to provide an energy-saving glass for better use. The purpose of value. [New content] [0006] The energy-saving glass of this creation is mainly provided with a glass layer, which is coated with an anti-infrared coating on the glass layer, and then provided on the anti-infrared coating. a functional layer, which is an acrylic resin, and is coated on the functional layer with a PVB resin for adhering another glass, or The functional layer is an acrylic resin to which an ultraviolet light absorber and an antibacterial agent are added; thereby, the energy-saving glass is coated with an anti-infrared coating directly on the glass layer because no heat insulating paper is needed. It has anti-infrared function in its use, which not only can greatly reduce the production process in the process of its production. Form No. A0101, page 4 / 11 pages makes it easier and more convenient to manufacture, which can reduce its production cost and more. It can extend its service life and can be used as glued glass or single-layer energy-saving glass or hollow energy-saving glass, and it can increase the practical effect of its overall implementation. [Embodiment] The technical content used in this creation The purpose of creation and the effect of its achievement are more completely and clearly disclosed. Please elaborate on it below, and please refer to the drawings and drawing numbers: First, please refer to the first figure. This creation mainly consists of a glass layer (1) coated with an anti-infrared coating (2.) and a functional layer on the anti-infrared coating (2). ); Medium: The anti-infrared coating (2), which can be a nano-tungsten oxide thermal insulation coating, a nano-tantalum oxide [ΑΤΟ] thermal insulation coating, a nano borohydride bismuth [L a Β 6] thermal insulation coating Or nano carbon black insulation coating, and the hardening temperature time is 1 2 0 eC, 20 minutes. 110] the functional layer (3), which may be an acrylic resin, and has a drying temperature of 120 ° C for 1 minute, so as to be able to be coated on the functional layer (3) PVB [P〇ly (vinyl bu tyral) 'polyvinyl butyral resin) for adhering another glass to make a laminated glass; or the functional layer (3) is a pressure with an ultraviolet light absorber and an antibacterial agent Cree resin, and the drying temperature is 1 2 0 ° C, 1 minute, the curing condition is UV A light source, the irradiation energy is 100 m J/CM2, and the surface pencil hardness is 3 H [anti-use], The anti-ultraviolet light is 9 9%, and the bacteriostatic rate against Staphylococcus aureus is A0101, page 5/11 pages, 99.99%, with anti-bacterial and anti-UV functions, Used as a single layer of energy-saving glass or hollow energy-saving glass. [〇〇11] As a result, the glass layer (1) is coated with an anti-infrared coating (2), and then heated at a temperature of 120 ° C for 20 minutes to make an anti-infrared coating (2). ) bonding hardened on the glass layer (1), and after cooling it, 'the functional layer (3) of acrylic resin is placed on the infrared coating (2) after hardening, and another piece is adhered by PVB resin. Glass or added UV absorber and antibacterial agent as anti-scratch anti-bacterial and anti-UV function, not only in its overall production is more convenient and convenient, and can extend the service life. [0012] By the above description of the composition and use of the present construction structure, the present creation has the following advantages compared with the existing structure: [0013] 1. This creation is mainly on the glass layer. Directly coated with an anti-infrared coating, the glass can be used not only as an anti-infrared function, but also as a glued glass or a single-layer energy-saving glass or an air-saving glass, which is easier and more convenient in its production process. . 2* This creation is based on the application of an anti-infrared coating on the glass layer. The use of an anti-infrared coating gives the glass an anti-infrared function in use, making it more durable in use. The foregoing embodiments or drawings are not intended to limit the structure of the present invention, and any suitable variations or modifications of the subject matter of the art should be regarded as not departing from the scope of the invention. [0014] ^ ▲ In summary, the work of the _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ The specific structure of the road has not been seen in the same product, page 6 / 11 pages of M425871, nor has it been disclosed before the application, Cheng has fully complied with the provisions and requirements of the Patent Law, and has filed a new patent application according to law. I would like to ask for a review and grant a patent. BRIEF DESCRIPTION OF THE DRAWINGS [0015] First: Schematic diagram of the present creation [0016] Second: Schematic diagram of the existing structure [Description of main components] [0017] (1) Glass layer (2) Anti-infrared coating [0018] (3) Functional layer (4) Insulating glass [0019] ( 4 1 ) Glass sheet (4 2 ) Adhesive layer [0020] ( 4 3 ) Insulating paper (4 4 ) Adhesive layer [0021] (4 5) Glass piece form number A0101 Page 7 of 11

Claims (1)

M425871 々、申請專利範圍: 1 . 一種節能玻璃,其主要係設有玻璃層,於該玻璃層上設有 抗紅外線塗層,再於該抗紅外線塗層上設有功能層;其中 該功能層,其為壓克力樹脂。 2 . —種節能玻璃,其主要係設有玻璃層,於該玻璃層上設有 抗紅外線塗層,再於該抗紅外線塗層上設有功能層;其中 該功能層,其為加入有紫外光吸收劑及抗菌劑之壓克 力樹脂。 3 .如申請專利範圍第1或2項所述節能玻璃,其中,該抗紅 外線塗層為奈米氧化鶴隔熱塗料。 4 .如申請專利範圍第1或2項所述節能玻璃,其中,該抗紅 外線塗層為奈米銻錫氧化物〔A T◦〕隔熱塗料。 5 .如申請專利範圍第1或2項所述節能玻璃,其中,該抗红 外線塗層為奈米六硼化鑭〔LaBe〕隔熱塗料。 D 6 .如申請專利範圍第1或2項所述節能玻璃,其中,該抗紅 外線塗層為奈米碳黑隔熱塗料。 7 .如申請專利範圍第1或2項所述節能玻璃,其中,該抗紅 外線塗層之硬化溫度時間為1 2 0°C、2 0分鐘。 8 .如申請專利範圍第1項所述節能玻璃,其中,該功能層之 烘乾溫度時間為1 2 0°C、1分鐘。 9 .如申請專利範圍第1項所述節能玻璃,其中,該功能層上 再設有 PVB〔Poly(vinyl butyral ),聚乙烯醇缩丁醛〕樹脂供黏附另一片玻璃。 10 .如申請專利範圍第2項所述節能玻璃,其中,該功能層之 100222828 表單编號A0101 第8頁/共11頁 1002075058-0 M425871 烘乾溫度時間為1 2 0°C、1分鐘,固化條件為UV A光 源,照射能量為1 0 0 m J/C Μ 2。 100222828 表單編號Α0101 第9頁/共11頁 1002075058-0M425871 々, the scope of application for patents: 1. An energy-saving glass, which is mainly provided with a glass layer, an anti-infrared coating is disposed on the glass layer, and a functional layer is further disposed on the anti-infrared coating; wherein the functional layer It is an acrylic resin. 2 . An energy-saving glass, which is mainly provided with a glass layer, an anti-infrared coating is disposed on the glass layer, and a functional layer is further disposed on the anti-infrared coating; wherein the functional layer is added with ultraviolet light Acrylic resin for light absorbers and antibacterial agents. 3. The energy-saving glass according to claim 1 or 2, wherein the anti-red exterior coating is a nano-oxidized crane thermal insulation coating. 4. The energy-saving glass according to claim 1 or 2, wherein the anti-red outer coating is a nano-tin oxide (A T◦) heat-insulating coating. 5. The energy-saving glass according to claim 1 or 2, wherein the anti-red exterior coating is a LaBe thermal insulation coating. The energy-saving glass according to claim 1 or 2, wherein the anti-red outer coating is a nano carbon black heat insulating coating. 7. The energy-saving glass according to claim 1 or 2, wherein the anti-red outer coating has a hardening temperature of 120 ° C for 20 minutes. 8. The energy-saving glass according to claim 1, wherein the functional layer has a drying temperature of 120 ° C for 1 minute. 9. The energy-saving glass according to claim 1, wherein the functional layer is further provided with PVB (Poly (vinyl butyral), polyvinyl butyral) resin for adhering another glass. 10. The energy-saving glass according to item 2 of the patent application scope, wherein the functional layer is 100222828, the form number A0101, the eighth page, the total of 11 pages, 1002075058-0, M425871, the drying temperature time is 1 2 0 ° C, 1 minute, The curing conditions were UV A light source and the irradiation energy was 100 m J/C Μ 2 . 100222828 Form number Α0101 Page 9 of 11 1002075058-0
TW100222828U 2011-12-02 2011-12-02 Energy-saving glass TWM425871U (en)

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