SOLAR-PROTECTION GLAZED ELEMENT WITH DIFFUSE REFLECTION

    公开(公告)号:US20240025155A1

    公开(公告)日:2024-01-25

    申请号:US18043242

    申请日:2021-08-10

    IPC分类号: B32B17/10

    摘要: A laminated glazing structure includes first and second transparent substrates separated by a lamination interlayer, the first substrate being positioned on the outer side of the laminated glazing structure and the second substrate being arranged on the inner side of the laminated glazing structure, each transparent substrate including two main faces, the laminated glazing structure including a functional coating having solar control properties; at least one absorbing element; at least one microstructured surface, the Rdq of which is at least 0.2°, at least one coating having reflective properties deposited in contact with the microstructured surface; the microstructured surface being arranged between the lamination interlayer and the second transparent substrate, the laminated glazing structure having a light transmission (LT) between 2 and 30%,

    Curved touch panel and method for fabricating the same
    4.
    发明授权
    Curved touch panel and method for fabricating the same 有权
    弯曲触摸面板及其制造方法

    公开(公告)号:US09477334B2

    公开(公告)日:2016-10-25

    申请号:US14530298

    申请日:2014-10-31

    发明人: Kyung-Chul Ahn

    摘要: A curved touch panel and a method for fabricating the same are disclosed. The curved touch panel with a predetermined curvature, includes a curved substrate having a curved upper surface and a curved lower surface, the upper surface being chemically strengthened and the lower surface being acid-etched, an adhesive layer disposed on one of the curved upper surface and the curved upper surface of the curved substrate, and a curved touch sensor plate with flexibility having a curved upper surface and curved lower surface disposed on the adhesive layer opposite to the curved substrate, wherein the curved upper surface and the curved lower surface are acid-etched, and the curved substrate, the adhesive layer, and the curved touch sensor plate are attached together.

    摘要翻译: 公开了一种弯曲触摸面板及其制造方法。 具有预定曲率的弯曲触摸面板包括具有弯曲上表面和弯曲下表面的弯曲基板,上表面被化学强化并且下表面被酸蚀刻,粘合层设置在弯曲的上表面 弯曲基板的弯曲上表面和弯曲的触感传感器板,其具有弯曲的上表面和弯曲的下表面,弯曲的下表面设置在与弯曲基板相对的粘合剂层上,其中弯曲的上表面和弯曲的下表面是酸 并且弯曲的基板,粘合剂层和弯曲的触摸传感器板被安装在一起。

    System and method for improving impact safety
    5.
    发明授权
    System and method for improving impact safety 有权
    改善冲击安全的系统和方法

    公开(公告)号:US09411452B2

    公开(公告)日:2016-08-09

    申请号:US13949118

    申请日:2013-07-23

    摘要: A system for improving the impact safety and methods for manufacturing and using same. The system includes a panel that comprises a panel surface having a frangible region. The panel can be formed from a translucent material, such as glass. The frangible region is indistinguishable from the remainder of the panel during normal conditions but enables the panel to break in a safe, predictable manner when a predetermined amount of force is applied to the frangible region. Thereby, the panel does not shatter or form sharp shards. Instead, the frangible region breaks away from the panel as an intact unit without internal fracturing. Risk of personal injury thereby can be minimized. The lack of sharp shards likewise facilitates clean up and replacement of the broken panel. The panel advantageously can be applied in video monitors and emergency equipment such as fire extinguisher cabinets disposed aboard passenger vehicles and in stationary environments such as the home or office.

    摘要翻译: 一种改善冲击安全性和制造和使用方法的系统。 该系统包括面板,其包括具有易碎区域的面板表面。 面板可以由诸如玻璃的半透明材料形成。 在正常情况下,脆弱区域与面板的其余部分无法区分,但是当将预定量的力施加到易碎区域时,能够以安全,可预测的方式打破面板。 因此,面板不会碎裂或形成锋利的碎片。 相反,易碎区域作为一个完整的单元而脱离了面板,没有内部压裂。 造成人身伤害的风险可以最小化。 缺乏锋利的碎片同样有助于清理和更换破碎的面板。 该面板有利地可以应用于视频监视器和应急设备,例如设置在乘客车辆上的灭火器柜和诸如家庭或办公室的固定环境中。

    System and method for laminating photovoltaic structures
    6.
    发明授权
    System and method for laminating photovoltaic structures 失效
    用于层压光伏结构的系统和方法

    公开(公告)号:US08766086B2

    公开(公告)日:2014-07-01

    申请号:US12888037

    申请日:2010-09-22

    IPC分类号: H01L31/0232

    摘要: A method for forming a laminated photovoltaic structure includes providing a sheet of transparent material having light concentrating features, disposing adhesive material adjacent to the sheet of transparent material, disposing photovoltaic strips adjacent to the adhesive material, wherein the photovoltaic strips are positioned relative to the sheet of transparent material in response to exitant light characteristics of the light concentrating features, wherein photovoltaic strips are coupled via associated bus bars, wherein gap regions are located between bus bars of neighboring photovoltaic strips, disposing a rigid layer of material adjacent to the photovoltaic strips to form a composite photovoltaic structure; and thereafter laminating the composite photovoltaic structure to fill the gap regions with adhesive material and to form the laminated photovoltaic structure, wherein adhesive material adheres to the bus bars.

    摘要翻译: 一种形成叠层光伏结构的方法包括提供具有光聚集特征的透明材料片,将粘合剂材料设置在透明材料片附近,将光伏条放置在邻近粘合剂材料的位置,其中光伏条相对于片材 透明材料响应于光聚集特征的出射光特性,其中光伏带通过相关联的母线耦合,其中间隙区域位于相邻光伏条带的汇流条之间,将邻近光伏条带的刚性材料层设置到 形成复合光伏结构; 然后层叠复合光伏结构以用粘合剂材料填充间隙区域并形成层叠的光伏结构,其中粘合材料粘附到母线上。

    Head-up display device and laminated glass for head-up display device
    7.
    发明授权
    Head-up display device and laminated glass for head-up display device 失效
    平视显示装置和平视显示装置的夹层玻璃

    公开(公告)号:US06414796B1

    公开(公告)日:2002-07-02

    申请号:US09701808

    申请日:2000-12-01

    IPC分类号: G02B2714

    摘要: For prevention of ghost images from occurring on head-up displays, a glass surface is ground, and a reflecting surface with a wedge-shaped cross section is formed. Furthermore, in order to reduce optical distortion at the edge portion of the reflecting surface, a ground surface contacting the reflecting surface with an angle between 150° and 210° is formed. In accordance with the enlargement of the reflecting surface accompanied by the tendency of head-up displays becoming larger, the reflecting surface is divided into at least two regions, and the angle of the reflecting surface is optimized for each region.

    摘要翻译: 为了防止在平视显示器上发生重影,玻璃表面被研磨,形成具有楔形横截面的反射表面。 此外,为了降低反射面的边缘部的光学变形,形成与反射面接触的角度为150°〜210°的接地面。 根据伴随着平视显示的趋势变大的反射面的扩大,将反射面分割为至少两个区域,并且对于每个区域优化反射面的角度。