CEILING TILE
    44.
    发明申请
    CEILING TILE 有权
    天花板

    公开(公告)号:US20150017378A1

    公开(公告)日:2015-01-15

    申请号:US14373855

    申请日:2012-06-19

    发明人: Norman Stone

    IPC分类号: E04B9/04 B32B38/00 E04B1/92

    摘要: The ceiling tile, in one embodiment of the invention, is a laminate of a rigid core layer, such as gypsum, having one surface covered by a display layer of plastic sheet material. An opposite surface of the core layer is covered by a layer of light reflective material. The design layer has a design surface that is viewable when the tile is installed in a ceiling, and the light reflective layer has an exposed light reflective surface. Both the design layer and the light reflective layer form leak tight seals on the opposite surfaces of the rigid core layer. The entire peripheral edge of the tile laminate and marginal portions of the design surface and light reflective surface are covered by a plastic leak tight tape that forms a gas tight seal at the peripheral edge of the tile laminate.

    摘要翻译: 在本发明的一个实施例中,天花板瓦片是由诸如石膏的刚性芯层的层压体,其一个表面被塑料片材料的显示层覆盖。 芯层的相对表面被一层光反射材料覆盖。 设计层具有当瓦片安装在天花板中时可观察到的设计表面,并且光反射层具有暴露的光反射表面。 设计层和光反射层都在刚性芯层的相对表面上形成密封密封。 瓷砖层压板的整个外围边缘和设计表面和光反射表面的边缘部分被塑料密封胶带覆盖,塑料密封胶带在瓷砖层压板的周边边缘处形成气密密封。

    THE COMPOSITE REINFORCEMENT
    47.
    发明申请
    THE COMPOSITE REINFORCEMENT 有权
    复合增强

    公开(公告)号:US20120076969A1

    公开(公告)日:2012-03-29

    申请号:US13375828

    申请日:2010-05-31

    IPC分类号: B32B13/04

    摘要: Composite reinforcement “Astrofleks” is used in building structures for reinforcement of insulation wall panels, solid concrete and prefabricated buildings. The composite reinforcement comprises the outer layer (1), inside of which the inner layer (2) is placed, on the outer surface of outer layer (1) there are relief elements (3) to improve adhesion of nanocomposite reinforcement with concrete. According to embodiment number 1, layer (1) is made of nanocomposite carbon in which the polymer matrix is modified by carbon nanostructures. Layer (2) is made of lightweight highly mobile concrete, containing in its composition components in the following ratio (% wt.): Cement—20-50; filler—70-30; plasticizer—0.02-2.5; water—the rest. According to embodiment number 2, layer (1) is made of nanocomposite carbon in which the polymer matrix is modified by polyhedral multi-layered carbon nanostructures of fulleroid type at a ratio of 0.01-10% by weight of the polymer matrix. Layer (2) is made of lightweight highly mobile nanobeton containing in its composition components in the following ratio (% wt.): Cement—24-48; filler—60-30; modified basalt fiber—2-6; plasticizer—0.05-3.0; water—the rest. According to embodiment number 3, a layer (1) is made of nanocomposite carbon. Layer (2) is made of lightweight f highly mobile nanobeton containing in its composition components in the following ratio (% wt.): Cement—20-50; filler—50-20; plasticizer—0.02-2.5; water-soluble epoxy resin—0.2-25; water—the rest. Concrete mixture for a lightweight highly mobile nanobeton additionally contains a water soluble epoxy resin.

    摘要翻译: 复合钢筋“Astrofleks”用于建筑结构,用于加固绝缘墙板,固体混凝土和预制建筑物。 复合增强件包括在外层(1)的外表面上设置有内层(2)的外层(1),其中有释放元件(3),以提高纳米复合材料与混凝土的粘合性。 根据实施例1,层(1)由纳米复合碳制成,其中聚合物基体被碳纳米结构改性。 层(2)由轻质高度移动的混凝土制成,其组成成分按以下比例(%wt。):水泥-20-50; 填料-70-30; 增塑剂-0.02-2.5; 水 - 其余。 根据实施例2,层(1)由纳米复合碳制成,其中聚合物基体以聚烯烃类型的多面体多层碳纳米结构以0.01-10重量%的比例被改性。 层(2)由轻质高度移动的纳米管制成,其组成成分含有以下比例(%重量):水泥24-48; 填料-60-30; 改性玄武岩纤维-2-6; 增塑剂-0.05-3.0; 水 - 其余。 根据实施例3,层(1)由纳米复合碳制成。 层(2)由轻质的高度移动的纳米管制成,其组成成分以下列比例(%wt。):水泥-20-50; 填料-50-20; 增塑剂-0.02-2.5; 水溶性环氧树脂-0.2-25; 水 - 其余。 用于轻质高度移动的纳米酮的混凝土混合物另外含有水溶性环氧树脂。