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    • 2. 发明授权
    • Thin film photovoltaic assembly method
    • 薄膜光伏组装方法
    • US08716592B2
    • 2014-05-06
    • US10889521
    • 2004-07-12
    • Louis Anthony FerriKevin Zuege
    • Louis Anthony FerriKevin Zuege
    • H01L27/142
    • H01L31/046H01L31/0463H01L31/048H01L31/0504Y02E10/50
    • The present invention relates to a method of manufacturing thin film photovoltaic panels (TFPP). Instead of utilizing a conventional EVA based adhesive layer, material, the present invention uses an adhesive layer that may be applied in a liquid form and cures rapidly to form the TFFP. In one embodiment, the method provides for applying an adhesive layer in a liquid form along at least a portion of the exposed photovoltaic layer and substrate. In another embodiment, the method provides for applying a first layer adhesive in liquid form along at least one edge of the substrate and second layer of adhesive in liquid form generally bound by the first layer of adhesive. After application of the adhesive layer(s), a force may then be applied to adhere the front panel (or substrate), photovoltaic material layer, adhesive layer and backing panel and the adhesive layer transforms from a liquid to a solid.
    • 本发明涉及薄膜光伏面板(TFPP)的制造方法。 代替使用传统的EVA基粘合剂层,材料,本发明使用可以以液体形式施加的粘合剂层并快速固化以形成TFFP。 在一个实施例中,该方法提供沿着暴露的光伏层和衬底的至少一部分施加液体形式的粘合剂层。 在另一个实施方案中,该方法提供沿着衬底的至少一个边缘和液体形式的第二粘合剂层以液体形式施加一般由第一粘合剂层结合的第一层粘合剂。 在施加粘合剂层之后,可以施加力以粘附前面板(或基板),光伏材料层,粘合剂层和背衬板,并且粘合剂层从液体转变为固体。
    • 4. 发明授权
    • Dispensable non-adhesive desiccated matrix system for insulating glass units
    • 中空玻璃装置的可分散无粘合干燥基质系统
    • US06212756B1
    • 2001-04-10
    • US09235069
    • 1999-01-21
    • Louis Anthony Ferri
    • Louis Anthony Ferri
    • B21B146
    • B01J20/28026B01D53/261B01D53/28E06B3/67317E06B3/677Y10T29/49627Y10T29/49906Y10T29/4998Y10T428/25Y10T428/254Y10T428/259
    • The present invention includes a method of making an edge assembly for an insulating glass unit, the edge assembly including a closed hollow spacer, the method comprising (1) dispensing a flowable desiccating matrix formulation onto a portion of the spacer which will be inside the hollow spacer when the spacer has been closed; (2) allowing or causing the formulation to solidify into a solid matrix and to detach from any attachment to the spacer; and (3) closing the spacer whereby the detached matrix will be retained within the spacer. The present invention includes a thermoplastic desiccating matrix formulation comprising about 80 to about 30 weight % of the formulation of a thermoplastic material; and about 20 to about 70 weight % of the formulation of an adsorbent component, wherein the adsorbent component includes a moisture adsorbing material and a volatile organic chemical adsorbing material, of which 0-50 weight % of the adsorbent component is the adsorbent of volatile organic compounds; wherein the formulation, when dispensed as a liquid onto an inner surface of an edge assembly and allowed to cool to ambient temperature, forms a solid matrix having an outer surface which does not adhere to the inner surface of the edge assembly.
    • 本发明包括一种制造用于绝缘玻璃单元的边缘组件的方法,所述边缘组件包括封闭的中空间隔件,所述方法包括(1)将可流动的干燥基质制剂分配到间隔件的一部分上,该部分将在中空 当间隔件已经关闭时的间隔物; (2)允许或使制剂固化成固体基质并从任何附着物脱离到间隔物上; 和(3)闭合间隔物,由此分离的基质将保持在间隔物内。 本发明包括热塑性干燥基质制剂,其包含约80至约30重量%的热塑性材料制剂; 和约20至约70重量%的吸附剂组分,其中吸附剂组分包括水分吸附材料和挥发性有机化学吸附材料,其中0-50重量%的吸附剂组分是挥发性有机物的吸附剂 化合物 其中当作为液体分配到边缘组件的内表面并允许冷却至环境温度时,所述制剂形成具有不粘附到所述边缘组件的内表面的外表面的固体基质。
    • 7. 发明授权
    • Preformed flexible laminate
    • 预成型柔性层压板
    • US06355328B1
    • 2002-03-12
    • US09197725
    • 1998-11-23
    • James Lynn BaratuciRonald Ellsworth BuchananLouis Anthony FerriLanny Dean Ritz
    • James Lynn BaratuciRonald Ellsworth BuchananLouis Anthony FerriLanny Dean Ritz
    • B32B104
    • B29C47/28B29C47/0019B29C47/0021B29C47/0033B29C47/02E06B3/66328E06B2003/6638E06B2003/6639Y10T428/23Y10T428/239Y10T428/2804
    • A composite structure comprising a preformed flexible laminate in adhering contact with at least a first and second transparent or translucent panel members such as would be useful as an insulated glass unit. The flexible laminate contains an undulating spacer element either partially or totally embedded within a core material and has a polymeric coating on at least one surface thereof. The flexible laminate effectively seals the interior of the panel structure from air and/or moisture and maintains a desired distance between the panels. A multi-cavity extrusion die for forming the preformed flexible laminate has a core cavity for receiving the core material as well as the undulating continuous spacer element. Converging walls within the core cavity serve to embed at least one side of the spacer element in the core material and a land area forms a desired shape or configuration wherein the spacer element undulation is maintained. At least one polymeric feed cavity located downstream from said core cavity and said land area applies a polymeric film or coating to at least a surface of the embedded spacer element. A plurality of optional feed cavities can apply the same or different polymers to additional surfaces of the embedded spacer element and can totally cover or encapsulate the same.
    • 一种复合结构,包括与至少第一和第二透明或半透明面板构件粘合接触的预成型柔性层压材料,例如可用作绝缘玻璃单元。 柔性层压板包含部分或完全嵌入芯材中的起伏间隔元件,并且在其至少一个表面上具有聚合物涂层。 柔性层压板有效地将面板结构的内部与空气和/或湿气密封并且在面板之间保持期望的距离。 用于形成预制柔性层压板的多腔挤出模具具有用于接收芯材料的芯腔以及起伏的连续间隔元件。 芯腔内的会聚壁用于将间隔元件的至少一侧嵌入芯材料中,并且焊盘区域形成期望的形状或构造,其中保持间隔元件起伏。 位于所述芯腔和所述接合区域下游的至少一个聚合物进料腔将聚合物膜或涂层施加到至少嵌入的间隔元件的表面。 多个可选的进料腔可以将相同或不同的聚合物施加到嵌入式间隔元件的附加表面上,并且可以完全覆盖或封装该聚合物。