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    • 2. 发明申请
    • Flame-perforated films
    • 火焰穿孔膜
    • US20060127639A1
    • 2006-06-15
    • US11343541
    • 2006-01-31
    • Mark StrobelMichael UlshJoel Getschel
    • Mark StrobelMichael UlshJoel Getschel
    • B32B3/10
    • B26F1/26Y10S425/037Y10T428/24273
    • An apparatus and methods for flame-perforating films. A preferred embodiment of the apparatus includes a frame, support surface attached to the frame, where the support surface includes a plurality of lowered portions, a burner attached to the frame opposite the support surface, where the burner supports a flame, and where the flame includes a flame tip opposite the burner and a film contacting the support surface, where the flame of the burner is in contact with the film, where the burner is positioned such that the distance between an unimpinged flame tip of the flame and the burner is at least one-third greater than the distance between the film and the burner.
    • 一种用于火焰穿孔膜的设备和方法。 该装置的优选实施例包括框架,附接到框架的支撑表面,其中支撑表面包括多个下降部分,附接到框架与支撑表面相对的燃烧器,其中燃烧器支撑火焰,并且其中火焰 包括与燃烧器相对的火焰末端和接触支撑表面的膜,其中燃烧器的火焰与膜接触,其中燃烧器被定位成使得火焰未燃烧的火焰尖端和燃烧器之间的距离在 比胶片和燃烧器之间的距离大至少三分之一。
    • 3. 发明申请
    • METHODS AND APPARATUS FOR OXYGEN ENRICHED FLAME-PERFORATION OF A POLYMER FILM
    • 聚合物薄膜氧气强化的方法和装置
    • US20070084402A1
    • 2007-04-19
    • US11564996
    • 2006-11-30
    • Joel GetschelMark StrobelMichael Ulsh
    • Joel GetschelMark StrobelMichael Ulsh
    • B05C13/02
    • B29C59/08B29C2793/0045Y10S425/037
    • The present invention provides an apparatus and methods for flame-perforating polymeric films with an oxygen-enriched flame. One embodiment of the apparatus includes a frame, a support surface attached to the frame, where the support surface includes a plurality of lowered portions, an oxygen-enrichment system for increasing the amount of oxygen in the combustible mixture, a burner attached to the frame opposite the support surface, where the burner supports a stable flame, and a film contacting the support surface, where the flame of the burner is directed towards the film to cause the film to be perforated. One embodiment of the method of flame perforating a polymeric film includes igniting an oxygen-enriched combustible mixture to form a stable flame, wherein the flame generated by the oxygen-enriched combustible mixture provides more uniform perforations.
    • 本发明提供了一种用富氧火焰对聚合物膜进行火焰穿孔的装置和方法。 该装置的一个实施例包括框架,附接到框架的支撑表面,其中支撑表面包括多个下降部分,用于增加可燃混合物中的氧气量的富氧系统,附接到框架的燃烧器 与燃烧器支撑稳定火焰的支撑表面相对,以及接触支撑表面的膜,其中燃烧器的火焰指向膜以使膜被穿孔。 火焰穿孔聚合物膜的方法的一个实施方案包括点燃富氧可燃混合物以形成稳定的火焰,其中由富氧可燃混合物产生的火焰提供更均匀的穿孔。
    • 4. 发明申请
    • Methods and apparatus for oxygen enriched flame-perforation of a polymer film
    • 聚合物膜的富氧火焰穿孔的方法和装置
    • US20050073070A1
    • 2005-04-07
    • US10679633
    • 2003-10-06
    • Joel GetschelMark StrobelMichael Ulsh
    • Joel GetschelMark StrobelMichael Ulsh
    • B29C59/08B29C69/00
    • B29C59/08B29C2793/0045Y10S425/037
    • The present invention provides an apparatus and methods for flame-perforating polymeric films with an oxygen-enriched flame. One embodiment of the apparatus includes a frame, a support surface attached to the frame, where the support surface includes a plurality of lowered portions, an oxygen-enrichment system for increasing the amount of oxygen in the combustible mixture, a burner attached to the frame opposite the support surface, where the burner supports a stable flame, and a film contacting the support surface, where the flame of the burner is directed towards the film to cause the film to be perforated. One embodiment of the method of flame perforating a polymeric film includes igniting an oxygen-enriched combustible mixture to form a stable flame, wherein the flame generated by the oxygen-enriched combustible mixture provides more uniform perforations.
    • 本发明提供了一种用富氧火焰对聚合物膜进行火焰穿孔的装置和方法。 该装置的一个实施例包括框架,附接到框架的支撑表面,其中支撑表面包括多个下降部分,用于增加可燃混合物中的氧气量的富氧系统,附接到框架的燃烧器 与燃烧器支撑稳定火焰的支撑表面相对,以及接触支撑表面的膜,其中燃烧器的火焰指向膜以使膜被穿孔。 火焰穿孔聚合物膜的方法的一个实施方案包括点燃富氧可燃混合物以形成稳定的火焰,其中由富氧可燃混合物产生的火焰提供更均匀的穿孔。
    • 5. 发明授权
    • On-line, continuous monitoring in solar cell and fuel cell manufacturing using spectral reflectance imaging
    • 使用光谱反射成像在线,连续监测太阳能电池和燃料电池制造
    • US09234843B2
    • 2016-01-12
    • US14238918
    • 2011-08-25
    • Bhushan SoporiPrzemyslaw RupnowskiMichael Ulsh
    • Bhushan SoporiPrzemyslaw RupnowskiMichael Ulsh
    • G01N21/55G01N21/27G01N21/89G01N21/898G01N21/95
    • G01N21/55G01N21/27G01N21/8901G01N21/898G01N21/9501
    • A monitoring system 100 comprising a material transport system 104 providing for the transportation of a substantially planar material 102, 107 through the monitoring zone 103 of the monitoring system 100. The system 100 also includes a line camera 106 positioned to obtain multiple line images across a width of the material 102, 107 as it is transported through the monitoring zone 103. The system 100 further includes an illumination source 108 providing for the illumination of the material 102, 107 transported through the monitoring zone 103 such that light reflected in a direction normal to the substantially planar surface of the material 102, 107 is detected by the line camera 106. A data processing system 110 is also provided in digital communication with the line camera 106. The data processing system 110 is configured to receive data output from the line camera 106 and further configured to calculate and provide substantially contemporaneous information relating to a quality parameter of the material 102, 107. Also disclosed are methods of monitoring a quality parameter of a material.
    • 监测系统100包括材料输送系统104,其提供通过监测系统100的监测区域103输送基本上平面的材料102,107。系统100还包括线照相机106,其被定位成跨越监测系统100获得多条线图像 材料102,107的宽度在其被传送通过监视区域103时。系统100还包括照明源108,其提供通过监视区域103传送的材料102,107的照明,使得沿正常方向反射的光 材料102,107的基本上平坦的表面被线路摄像机106检测。数据处理系统110还被提供为与线路摄像机106进行数字通信。数据处理系统110被配置为接收从线路 相机106,并进一步被配置为计算和提供与质量参数有关的基本同时期的信息 材料102,107的质量。还公开了监测材料的质量参数的方法。
    • 7. 发明申请
    • Methods for flame-perforating films
    • 火焰穿孔膜的方法
    • US20060125139A1
    • 2006-06-15
    • US11343766
    • 2006-01-31
    • Mark StrobelMichael UlshJoel Getschel
    • Mark StrobelMichael UlshJoel Getschel
    • B28B1/48
    • B26F1/26Y10S425/037Y10T428/24273
    • An apparatus and methods for flame-perforating films. A preferred embodiment of the apparatus includes a frame, support surface attached to the frame, where the support surface includes a plurality of lowered portions, a burner attached to the frame opposite the support surface, where the burner supports a flame, and where the flame includes a flame tip opposite the burner and a film contacting the support surface, where the flame of the burner is in contact with the film, where the burner is positioned such that the distance between an unimpinged flame tip of the flame and the burner is at least one-third greater than the distance between the film and the burner.
    • 一种用于火焰穿孔膜的设备和方法。 该装置的优选实施例包括框架,附接到框架的支撑表面,其中支撑表面包括多个下降部分,附接到框架与支撑表面相对的燃烧器,其中燃烧器支撑火焰,并且其中火焰 包括与燃烧器相对的火焰末端和接触支撑表面的膜,其中燃烧器的火焰与膜接触,其中燃烧器被定位成使得火焰未燃烧的火焰尖端和燃烧器之间的距离在 比胶片和燃烧器之间的距离大至少三分之一。
    • 8. 发明申请
    • Apparatus for flame-perforating films
    • 火焰穿孔膜的设备
    • US20060127523A1
    • 2006-06-15
    • US11344503
    • 2006-01-31
    • Mark StrobelMichael UlshJoel Getschel
    • Mark StrobelMichael UlshJoel Getschel
    • B26F1/26
    • B26F1/26Y10S425/037Y10T428/24273
    • An apparatus and methods for flame-perforating films. A preferred embodiment of the apparatus includes a frame, support surface attached to the frame, where the support surface includes a plurality of lowered portions, a burner attached to the frame opposite the support surface, where the burner supports a flame, and where the flame includes a flame tip opposite the burner and a film contacting the support surface, where the flame of the burner is in contact with the film, where the burner is positioned such that the distance between an unimpinged flame tip of the flame and the burner is at least one-third greater than the distance between the film and the burner.
    • 一种用于火焰穿孔膜的设备和方法。 该装置的优选实施例包括框架,附接到框架的支撑表面,其中支撑表面包括多个下降部分,附接到框架与支撑表面相对的燃烧器,其中燃烧器支撑火焰,并且其中火焰 包括与燃烧器相对的火焰末端和接触支撑表面的膜,其中燃烧器的火焰与膜接触,其中燃烧器被定位成使得火焰未燃烧的火焰尖端和燃烧器之间的距离在 比胶片和燃烧器之间的距离大至少三分之一。