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    • 1. 发明申请
    • VOLUME HOLOGRAM TRANSFER FOIL
    • US20130182301A1
    • 2013-07-18
    • US13825413
    • 2011-07-13
    • Dai TsukadaKoji EtoNobuko OikawaMinoru AzakamiTakaki MiyachiShinya Sato
    • Dai TsukadaKoji EtoNobuko OikawaMinoru AzakamiTakaki MiyachiShinya Sato
    • G03H1/02
    • G03H1/02B42D25/328B44C1/1716G03H1/0248G03H1/0252G03H2250/10G03H2250/39G03H2250/43G03H2270/23
    • A primary object of the invention is to provide a volume hologram transfer foil which has good foil cutting characteristics and is used to manufacture a volume hologram laminate by transferring a volume hologram layer to an adherend by thermocompression. The above problem is solved by a volume hologram transfer foil comprising a base material, a protective layer formed on the base material, a volume hologram layer formed on the protective layer and having a volume hologram recorded, and a heat seal layer formed on the volume hologram layer, wherein the protective layer contains a hard coat component formed of an ionizing radiation-curable resin, a rupture elongation control component which improves the rupture elongation of the protective layer, and a foil cutting characteristic control component which has a thermal expansion coefficient different from those of the hard coat component and rupture elongation control component and is incompatible with the two components.
    • 本发明的主要目的是提供一种具有良好的箔切割特性的体积全息图转印箔,并用于通过热压缩将体积全息图层转移到被粘物上来制造体积全息图层叠体。 上述问题通过一种体积全息图转印箔来解决,该体积全息图转印箔包括基材,形成在基材上的保护层,形成在保护层上的具有体积全息图的体积全息图层,以及形成在体积上的热封层 全息图层,其中保护层含有由电离辐射固化树脂形成的硬涂层部件,改善保护层断裂伸长率的断裂伸长率控制部件和热膨胀系数不同的箔切割特性控制部件 与硬涂层组分和断裂伸长控制组分的那些组成并且与两种组分不相容。
    • 6. 发明申请
    • Backside protective sheet for solar battery module and solar battery module using the same
    • 太阳能电池模块背面保护板及使用其的太阳能电池模块
    • US20060166023A1
    • 2006-07-27
    • US10526582
    • 2003-02-28
    • Kuniaki YoshikataAtsuo TsuzukiKoujiro OhkawaTakaki Miyachi
    • Kuniaki YoshikataAtsuo TsuzukiKoujiro OhkawaTakaki Miyachi
    • B32B27/32B32B19/00
    • B32B17/10B32B17/10018B32B17/10788H01L31/049Y02E10/50Y10T428/31938B32B2367/00
    • There is provided a backside protective sheet for a solar battery module that is excellent in strength as well as in various properties such as weathering resistance, heat resistance, water resistance, light resistance, wind pressure resistance, hailstorm resistance, chemical resistance, moisture resistance, antifouling properties, light reflectivity, light diffusivity, and design, and is particularly excellent in the so-called “moisture resistance,” which is the ability to prevent the entry of moisture, oxygen and the like, and durability against performance degradation with time, particularly against hydrolytic degradation and the like, and is also excellent in protective capability. There is also provided a backside protective sheet for a solar battery module, which can facilitate inventory control by properly using the front side and back side of the protective sheet depending upon applications and is excellent in cost performance, and a solar battery module using the same. The backside protective sheet for a solar battery module comprises: a deposited assembly comprising a vapor-deposited film of an inorganic oxide provided on at least one side of a substrate; and a transparent or translucent heat-resistant polyolefin resin layer provided on both sides of the deposited assembly.
    • 提供了一种太阳能电池模块的背面保护片,其强度以及各种性能如耐候性,耐热性,耐水性,耐光性,耐风压性,防雹性,耐化学性,耐湿性, 防污性,光反射率,光扩散性和设计,并且在所谓的“防潮性”中是特别优异的,其是防止水分,氧气等进入的能力以及耐久性对耐性的降低, 特别是抗水解降解等,保护性也优异。 还提供了一种用于太阳能电池模块的背面保护片,其可以根据应用适当地使用保护片的前侧和后侧来促进库存控制,并且成本性能优异,并且使用其的太阳能电池模块 。 一种用于太阳能电池模块的背面保护片包括:沉积组件,其包括设置在基板的至少一侧上的无机氧化物的气相沉积膜; 以及设置在沉积组件两侧的透明或半透明的耐热聚烯烃树脂层。
    • 9. 发明申请
    • Encapsulant layer for photovoltaic module, photovoltaic module and method for manufacturing regenerated photovoltaic cell and regenerated transparent front face substrate
    • 用于光伏组件的封装层,光伏组件和用于制造再生光伏电池和再生的透明正面基板的方法
    • US20050051204A1
    • 2005-03-10
    • US10936974
    • 2004-09-09
    • Kasumi OiTakaki MiyachiIsao InoueKoujiro OhkawaHiroki Nakagawa
    • Kasumi OiTakaki MiyachiIsao InoueKoujiro OhkawaHiroki Nakagawa
    • B09B3/00C08F210/02C08F230/08C09D123/08C09D183/04H01L25/00H01L31/02H01L31/0203H01L31/04H01L31/042H01L31/18
    • B29B17/02B29B2017/0255H01L31/048Y02E10/50Y02P20/582Y02W30/622Y02W30/827
    • The main object of the present invention is to provide an encapsulant layer for photovoltaic module used in a photovoltaic module enabling recovering and recycling or reusing of reutilizeable resources such as a transparent front face substrate and photovoltaic cell and the like among constituents of a photovoltaic module, and to provide a method for manufacturing a regenerated photovoltaic cell and a regenerated transparent front face substrate. The present invention attains the above mentioned object by providing an encapsulant layer for photovoltaic module, wherein the encapsulant layer for photovoltaic module is used in a photovoltaic module formed by laminating: a transparent front face substrate; a photovoltaic cell carrying a wiring electrode and a takeoff electrode, and an encapsulant layer is placed on at least one surface; and a rear face protecting sheet, in this order, comprising a separable layer formed mainly of a thermoplastic resin (a) having a peeling strength from the transparent front face substrate, measured in a 180° peeling test under a 25° C. atmosphere, in a range of 1 N/15 mm width to 150 N/15 mm width, (b) having a Vicat softening temperature, measured based on JIS standard K7206, in a range of 60° C. to 128° C., and (c) having a melt mass flow rate, measured based on JIS standard K7210, in a range of 0.1 g/10 min to 50 g/10 min, and wherein (d) an output maintenance factor of photoelectronic power, before and after a test measured based on a standard, of the photovoltaic module using the encapsulant layer is in a range of 80% to 100%.
    • 本发明的主要目的是提供一种用于光伏组件中的光伏模块的密封剂层,其能够回收和再利用或再利用光伏组件的组成部分中的透明前面基板和光伏电池等可再利用的资源, 并且提供一种用于制造再生的光伏电池和再生的透明正面基板的方法。 本发明通过提供一种用于光伏组件的密封剂层来实现上述目的,其中用于光伏模块的密封剂层用于通过层压形成的光伏组件:透明正面基板; 携带布线电极和起飞电极的光伏电池和密封剂层放置在至少一个表面上; 和背面保护片,依次包括在25℃环境下在180°剥离试验中测量的主要由具有来自透明正面基板的剥离强度的热塑性树脂(a)形成的可分离层, 在宽度为1N / 15mm至150N / 15mm的范围内,(b)根据JIS标准K7206测定的维卡软化温度在60℃至128℃的范围内,和( c)根据JIS标准K7210测量的熔体质量流量在0.1g / 10min至50g / 10min的范围内,其中(d)测试前后光电子功率的输出维持系数 基于标准测量的使用密封剂层的光伏模块的范围在80%至100%的范围内。