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    • 23. 发明申请
    • FEEDBLOCK MULTIPLIER WITH THICKNESS GRADIENT VARIATION, FEEDBLOCK SYSTEM, METHOD, AND RELATED MULTILAYER STRUCTURE
    • 具有厚度梯度变化的馈线乘法器,馈线系统,方法和相关多层结构
    • US20130292871A1
    • 2013-11-07
    • US13464995
    • 2012-05-06
    • Jen-Huai ChangWen-Cheng WuChao-Ying Lin
    • Jen-Huai ChangWen-Cheng WuChao-Ying Lin
    • B29C47/06
    • B29C47/065B29C47/06B29C47/145B29C47/56B29C47/707
    • Disclosed are a feedblock multiplier with thickness gradient variation, a feedblock system, a method, and multilayer structure made by the method. The feedblock multiplier combines the functionalities of feedblock and multiplier conventionally used for producing the multilayer structure. The feedblock multiplier includes an input section for feeding fluid materials. A feedblock section is included for dividing the fluid delivered into multiple channels correspondingly. The fluids in the channels are segmented into two or more fluid segments by a segmenting section. The each fluid segment is delivered through corresponding channel-conversion section with thickness-gradient variation in the feedblock multiplier. Each channel-conversion section includes multiple channels with configurable positions. The fluids are then combined in a multiplier section for producing the multilayer structure with overlapped layers. The multilayer structure is outputted from an extruding section.
    • 公开了具有厚度梯度变化的进料块倍增器,通过该方法制成的进料块系统,方法和多层结构。 进料块乘法器结合了用于生产多层结构的进料块和倍增体的功能。 进料块倍增器包括用于供给流体材料的输入部分。 包括进料块部分,用于相应地分配输送到多个通道中的流体。 通道中的流体通过分段部分分成两个或更多个流体段。 每个流体段通过相应的通道转换段输送,在进料块乘法器中具有厚度梯度变化。 每个通道转换部分包括具有可配置位置的多个通道。 然后将流体合并在乘法器部分中,以生产具有重叠层的多层结构。 多层结构从挤出部输出。
    • 29. 发明申请
    • Method for Producing an Insulating Glass Pane
    • 绝缘玻璃板生产方法
    • US20120180936A1
    • 2012-07-19
    • US13386274
    • 2010-07-15
    • Peter Schuler
    • Peter Schuler
    • E06B3/24E06B3/663
    • E06B3/6733B05C5/0216B05C9/06B29C47/0019B29C47/026B29C47/065B29C47/145B29C47/364B29C47/367B29C47/54E06B3/66328E06B3/6775E06B2003/67378Y10T156/1798
    • The invention relates to a method for producing an insulating glass pane comprising a plastic spacer, wherein two glass panels (25, 49) arranged parallel to each other have a target distance from each other, by □forming a composite strand (26) by the temporal and spatial overlapping extrusion of at least two plastic partial strands (23, 24), wherein a first partial strand (23) is made of an adhesive first sealing compound (3), in which a moisture-binding substance is embedded, and a second partial strand (24) made of an adhesive and binding second sealing compound (4), a first glass panel (25) along the edge of the glass panel (25), specifically such that the beginning and end of the composite strand (26) abut and form a frame in that the first partial strand (23) is extruded with a predetermined first target thickness, which is greater than the target distance, and the second partial strand (24) is extruded with a predetermined second target thickness, which is greater than the target distance, on the glass panel (25), the partial strands (23, 24) are located next to each other in the composite strand (26) and thus immediately adjoin each other, and the first partial strand (23) is located within the frame formed by the second partial strand (24), □joining the first glass panel (25) to the second glass panel (49) such that the composite strand (26) is located between both glass panels (25, 49), connects them to each other, and keeps them at a distance from each other and □setting the target distance by pressing the joined glass panels (25, 49).
    • 本发明涉及一种用于制造包括塑料间隔件的绝缘玻璃板的方法,其中通过以下方式形成复合股线(26),其中彼此平行布置的两个玻璃面板(25,49)具有彼此的目标距离 至少两个塑料部分股线(23,24)的时间和空间重叠挤出,其中第一部分股线(23)由其中嵌入有水分结合物质的粘合剂第一密封化合物(3)制成,并且 第二部分股(24)由粘合剂和结合的第二密封化合物(4)制成,沿着玻璃面板(25)的边缘的第一玻璃面板(25),特别地使得复合股线(26)的开始和结束 )邻接并形成框架,其中第一部分股线(23)以大于目标距离的预定第一目标厚度挤压,并且第二部分股线(24)以预定的第二目标厚度挤压, 大于targ 在所述玻璃面板(25)上,部分股线(23,24)在所述复合股线(26)中彼此相邻并且因此彼此紧邻,并且所述第一部分股线(23)位于所述玻璃面板 所述框架由所述第二部分股线(24)形成,将所述第一玻璃面板(25)连接到所述第二玻璃面板(49),使得所述复合股线(26)位于两个玻璃面板(25,49)之间,连接 将它们彼此隔开,并且通过按压接合的玻璃面板(25,49)来设定目标距离。