Method and System for Producing a Gas-Sensitive Substrate
    131.
    发明申请
    Method and System for Producing a Gas-Sensitive Substrate 审中-公开
    生产气敏基材的方法和系统

    公开(公告)号:US20150182985A1

    公开(公告)日:2015-07-02

    申请号:US14641103

    申请日:2015-03-06

    CPC classification number: B05C11/00 B05D1/02 G01N31/22

    Abstract: A method includes forming a gas-sensitive substrate during a production process by dispensing one or more gas-sensitive materials onto the substrate and drying the one or more gas-sensitive materials on the substrate. The method also includes adjusting the production process based on one or more sensor measurements associated with the substrate and/or the production process. Adjusting the production process could include conditioning air around the substrate so that the conditioned air has one or more specified characteristics and adjusting the one or more specified characteristics based on the one or more sensor measurements. The one or more sensor measurements could include one or more measurements of a moisture content of the substrate. Adjusting the production process could also include adjusting a tension of the substrate. The one or more gas-sensitive materials could be deposited in multiple regions of the substrate, such as along multiple tracks extending lengthwise down the substrate.

    Abstract translation: 一种方法包括在制造过程中通过将一种或多种气体敏感材料分配到基底上并干燥基底上的一种或多种气体敏感材料来形成气敏基材。 该方法还包括基于与衬底和/或生产过程相关联的一个或多个传感器测量来调整生产过程。 调整生产过程可以包括调节基底周围的空气,使得调节空气具有一个或多个特定特征,并且基于一个或多个传感器测量来调整一个或多个指定特征。 一个或多个传感器测量可以包括基底的水分含量的一个或多个测量。 调整生产过程也可以包括调整基材的张力。 一种或多种气体敏感材料可以沉积在基底的多个区域中,例如沿沿着基底纵向延伸的多个轨道。

    Air disengagement assembly and method for manufacturing dip-molded articles out of RTV silicone by fully automated process
    134.
    发明授权
    Air disengagement assembly and method for manufacturing dip-molded articles out of RTV silicone by fully automated process 有权
    通过全自动化工艺从RTV硅胶制造浸渍模制品的空气分离组件和方法

    公开(公告)号:US09005508B2

    公开(公告)日:2015-04-14

    申请号:US14095841

    申请日:2013-12-03

    Applicant: Polyzen Inc.

    Abstract: An automated mandrel dip coating process assembly for RTV silicone dispersions is described, including an enclosure adapted to hold a moisture-cure ambient temperature curable medium for mandrel dip molding and at least one mandrel having a surface for contacting the moisture-cure ambient temperature curable medium. An automated motive drive assembly is arranged to removably translate one or more of the mandrel(s) into contact with the moisture-cure ambient temperature curable medium in the enclosure, and to subsequently translate at least one mandrel contacted with the moisture-cure ambient temperature curable medium into at least one of (A) contact with a bubble crusher in the enclosure, and (B) disengagement from the moisture-cure ambient temperature curable medium in the enclosure and rotation of the mandrel at a vertical displacement angle of from 70° to 110°. By such arrangement, air bubble entrapment on the dip molded film on the mandrel is avoided, and controlled film thickness is achieved at desired location(s) so that the product molded film article is free of pinholes and air bubble inclusions in the film, and complies with desired thickness specifications.

    Abstract translation: 描述了一种用于RTV硅氧烷分散体的自动化芯棒浸涂工艺组件,包括适于容纳用于芯棒浸渍成型的湿固化环境温度可固化介质的外壳和至少一个具有用于接触湿气固化环境温度可固化介质的表面的芯棒 。 自动动力驱动组件被布置成可移除地将一个或多个心轴移动到与外壳中的湿气固化环境温度可固化介质接触,并随后平移与湿气固化环境温度接触的至少一个心轴 (A)与外壳中的气泡破碎机接触中的至少一种,和(B)脱离壳体内的湿气固化环境温度可固化介质并以70°的垂直位移角度旋转心轴 至110°。 通过这样的布置,避免了在心轴上的浸渍模塑膜上的气泡滞留,并且在期望的位置处实现了受控的膜厚度,使得产品模制膜制品在膜中没有针孔和气泡夹杂物, 符合所需的厚度规格。

    Robotic Object Coating System
    137.
    发明申请
    Robotic Object Coating System 有权
    机器人涂料系统

    公开(公告)号:US20150081073A1

    公开(公告)日:2015-03-19

    申请号:US14030534

    申请日:2013-09-18

    Abstract: A method and apparatus for coating a group of objects may be provided. A three-dimensional model of the group of objects may be generated. Segments that represent each object in the group of objects in the three-dimensional model may be formed. Instructions for coating the group of objects may be generated based on the segments. The instructions may be configured to cause a robotic coating system to coat the group of objects.

    Abstract translation: 可以提供用于涂覆一组物体的方法和装置。 可以生成一组对象的三维模型。 可以形成表示三维模型中的对象组中的每个对象的段。 可以基于段来生成用于涂覆对象组的说明。 说明书可以被配置成使机器人涂层系统涂覆一组物体。

    Organic vapor jet print head with solder joint
    138.
    发明授权
    Organic vapor jet print head with solder joint 有权
    有机蒸汽喷射打印头带焊点

    公开(公告)号:US08944309B2

    公开(公告)日:2015-02-03

    申请号:US13774117

    申请日:2013-02-22

    Abstract: A solder joint may be used to attach components of an organic vapor jet printing device together with a fluid-tight seal that is capable of performance at high temperatures. The solder joint includes one or more metals that are deposited over opposing component surfaces, such as an inlet side of a nozzle plate and/or an outlet side of a mounting plate. The components are pressed together to form the solder joint. Two or more of the deposited metals may be capable of together forming a eutectic alloy, and the solder joint may be formed by heating the deposited metals to a temperature above the melting point of the eutectic alloy. A diffusion barrier layer and an adhesion layer may be included between the solder joint and each of the components.

    Abstract translation: 可以使用焊接接头连接有机蒸气喷射印刷装置的部件以及能够在高温下表现的流体密封。 焊点包括沉积在相对的部件表面上的一种或多种金属,例如喷嘴板的入口侧和/或安装板的出口侧。 将这些部件压在一起形成焊点。 两种或更多种沉积的金属可以一起形成共晶合金,并且可以通过将沉积的金属加热到高于共晶合金的熔点的温度来形成焊接接头。 焊料接头和各部件之间可以包括扩散阻挡层和粘附层。

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