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    • 3. 发明申请
    • PROCESS FOR MANUFACTURING A COMPOSITE FILM AND USE OF SAID FILM
    • 制造复合膜的方法和使用电影
    • WO1990006849A1
    • 1990-06-28
    • PCT/AT1989000125
    • 1989-12-21
    • ISOVOLTA ÖSTERREICHISCHE ISOLIERSTOFFWERKE ...ROTTER, GerhardPLESSING, Albert, K.
    • ISOVOLTA ÖSTERREICHISCHE ISOLIERSTOFFWERKE ...
    • B32B27/18
    • B32B27/08B32B7/12B32B27/304B32B2327/12B32B2605/006B63H9/0657
    • A plastic composite film resistant to UV radiation is manufactured by continuously bonding an endless supporting film made of a thermoplastic material, in particular polyethylene terephthalate, to two covering films made of a material resistant to UV radiation, such as polyvinylidene fluoride or polyvinyl fluoride, using an adhesive based on polyurethane or a polyesterimide resin. The covering films and/or the adhesive contain materials which absorb UV radiation. The polyethylene terephthalate supporting film, for example, which is made of a material attacked by UV radiation, is thereby protected against UV radiation. A further advantage of this composite film is its high tear strength, which is greater than the sum of the tear strengths of the individual films used to manufacture the composite film. The composite film can therefore be used advantageously in thicknesses of 0.08 to 0.03 mm as a material for making sails or sail windows.
    • 通过将由热塑性材料特别是聚对苯二甲酸乙二醇酯制成的环形支撑膜连续地粘合到由耐紫外线的材料(例如聚偏二氟乙烯或聚氟乙烯)制成的两个覆盖膜上来制造耐紫外线辐射的塑料复合膜,其使用 基于聚氨酯或聚酯酰亚胺树脂的粘合剂。 覆盖膜和/或粘合剂含有吸收UV辐射的材料。 因此,例如由抗紫外线辐射的材料制成的聚对苯二甲酸乙二醇酯支撑膜被防止UV辐射。 该复合膜的另一个优点是其高撕裂强度,其大于用于制造复合膜的各个膜的撕裂强度之和。 因此,作为制造帆或帆窗的材料,可以有利地使用复合膜作为0.08〜0.03mm的厚度。
    • 7. 发明申请
    • PROCESS AND DEVICE FOR MANUFACTURING PHOTOVOLTAIC MODULES
    • 用于生产光伏组件和设备用于实施IT
    • WO1994029106A1
    • 1994-12-22
    • PCT/AT1994000073
    • 1994-06-07
    • ISOVOLTA ÖSTERREICHISCHE ISOLIERSTOFFWERKE AKTIENGESELLSCHAFTFALK, JohannPLESSING, Albert, K.
    • ISOVOLTA ÖSTERREICHISCHE ISOLIERSTOFFWERKE AKTIENGESELLSCHAFT
    • B32B31/00
    • B32B37/1018B32B17/10788B32B17/10816B32B37/003B32B37/1027B32B39/00B32B2457/12H01L31/048Y02E10/50
    • A process and device are disclosed for manufacturing photovoltaic modules made from laminates. The process has the following steps: (a) a modular stack (2) of previously stacked solar cell system, encapsulating materials and separating foils is brought to the loading station (1); (b) the modular stack (2) is conveyed to a vacuum laminator (5) which is then closed and evacuated, and the modular stack (2) is heated up to the softening temperature of the plastic sealing layers arranged in the encapsulating materials by pressing the heating plate (21) on the thermoconductive support plate (3); (c) the composite (2') formed after the vacuum laminator (5) is aired without cooling once again the heating plate (21) is conveyed to the hardening furnace (10); (d) the hardened laminate (2") is then conveyed to the cooling zone (12); and (e) the finished laminate is removed from the removal station (14) at the end of the manufacturing process. Steps (a) to (e) are cyclically carried out at the same time and in parallel.
    • 公开的是一种方法和用于制造设置在层叠体的基础上,其特征在于,光伏模块的装置:(a)一种模块堆(2),其已经verschlichtet从太阳能电池系统中,包封材料,以及在所述装载站(1)的剥离片被施加,并且其中 (b)该模块堆(2)在真空层压机(5)被输送,然后将其关闭,抽真空,通过按热板(21)到热传导支承板(3)的软化温度在包封塑料密封层排列 被加热和(5)不经冷却加热板(21)(2“)被输送到淬火炉(10),以及其中(d)的固化的层合体(2“)曝气真空层压后形成,其中(c)复合然后 到在抽取工位输送的冷却区(12),和(e)(14)从制造过程中除去。根据本发明的AV Ahrens的步骤(a)到(e)同时且在拉方法平行。