Inorganic nanocoating primed organic film
    1.
    发明授权
    Inorganic nanocoating primed organic film 有权
    无机纳米涂层底漆有机薄膜

    公开(公告)号:US09040120B2

    公开(公告)日:2015-05-26

    申请号:US13204483

    申请日:2011-08-05

    摘要: An inorganic nanolayer surface coated polymer film product is disclosed with enhancements such as improved metallization capability, low cost, low polymer additives and modifiers, improved recyclability, and good web properties. Also method for priming a flexible film substrate to enhance the reactivity or wettability of the substrate for metallization is disclosed. A substrate film is coated with one or more nanolayers of a metal or metal oxide applied by CCVD and/or PECVD at open atmosphere. The deposited coating acts to enhance the surface energy of the film substrate and to and reduce the surface gauge variation of the substrate or supporting film, thereby enhancing the wettability of the film substrate for metallization and/or to improve the anti-block characteristics of the film. The deposited coatings may also act as a barrier layer for lowering the permeability of light, gas and vapor transmission through the substrate.

    摘要翻译: 公开了无机纳米层表面涂覆的聚合物膜产品,其具有改进的金属化能力,低成本,低聚合物添加剂和改性剂,改善的可循环性和良好的网性能。 公开了一种用于引发柔性膜基底以提高用于金属化的基底的反应性或润湿性的方法。 在敞开的气氛下,用一个或多个通过CCVD和/或PECVD施加的金属或金属氧化物的纳米层涂覆基底膜。 沉积的涂层用于增强膜基材的表面能,并降低基材或支撑膜的表面规格变化,从而提高用于金属化的膜基材的润湿性和/或改善薄膜基材的抗块特性 电影。 沉积的涂层还可以用作阻挡层,用于降低通过基底的光,气体和蒸气透过率的渗透性。

    Electronic and optical devices and methods of forming these devices
    2.
    发明申请
    Electronic and optical devices and methods of forming these devices 有权
    电子和光学装置以及形成这些装置的方法

    公开(公告)号:US20060228064A1

    公开(公告)日:2006-10-12

    申请号:US11444542

    申请日:2006-06-02

    IPC分类号: G02F1/035

    摘要: Electronic and optical (or photonic) devices with variable or switchable properties and methods used to form these devices, are disclosed. More specifically, the present invention involves forming layers of conductive material and dielectric material or materials with varying conductivity and indexes of refraction to form various electronic and optical devices. One such layer of adjustable material is formed by depositing epitaxial or reduced grain boundary barium strontium titanate on the C-plane of sapphire.

    摘要翻译: 公开了具有可变或可切换特性的电子和光学(或光子)器件和用于形成这些器件的方法。 更具体地,本发明涉及形成具有导电性和折射率的导电材料和介电材料或材料的层,以形成各种电子和光学器件。 通过在蓝宝石的C平面上沉积外延或还原的晶界钡钛酸锶而形成一个这样的可调节材料层。

    ENERGY MANAGEMENT CONTROL SYSTEM BASED ON CLOUD COMPUTING AND METHOD THEREOF
    5.
    发明申请
    ENERGY MANAGEMENT CONTROL SYSTEM BASED ON CLOUD COMPUTING AND METHOD THEREOF 有权
    基于云计算的能源管理控制系统及其方法

    公开(公告)号:US20130066477A1

    公开(公告)日:2013-03-14

    申请号:US13582767

    申请日:2010-09-07

    申请人: Yongdong Jiang

    发明人: Yongdong Jiang

    IPC分类号: G06F1/32

    摘要: An energy source management control system based on cloud computing includes: a field controller (11), for field controlling each energy consumption device (10) according to user defined parameters and sending the user defined parameters to a cloud computing management control platform (13); an energy consumption parameter collector (12) for collecting parameters related to energy consumption of each energy consumption device (10) and sending the collected parameters to the cloud computing management control platform (13); the cloud computing management control platform (13), for adjusting a field control mode of the field controller (11) according to the collected parameters related to energy consumption of each energy consumption device (10) and the user defined parameters. A method for energy management control based on cloud computing is also provided.

    摘要翻译: 一种基于云计算的能源管理控制系统包括:一个现场控制器(11),用于根据用户定义的参数实时控制每个能量消耗装置(10),并将用户定义的参数发送给云计算管理控制平台(13) ; 能量消耗参数收集器(12),用于收集与每个能量消耗装置(10)的能量消耗相关的参数,并将收集的参数发送到云计算管理控制平台(13); 云计算管理控制平台(13),用于根据与每个能量消耗装置(10)的能量消耗相关的所收集的参数和用户定义的参数来调整现场控制器(11)的现场控制模式。 还提供了一种基于云计算的能量管理控制方法。

    Energy management control system and method based on cloud computing
    8.
    发明授权
    Energy management control system and method based on cloud computing 有权
    基于云计算的能源管理控制系统和方法

    公开(公告)号:US09350562B2

    公开(公告)日:2016-05-24

    申请号:US13582767

    申请日:2010-09-07

    申请人: Yongdong Jiang

    发明人: Yongdong Jiang

    IPC分类号: G06F1/32 H04L12/28 G01D4/00

    摘要: An energy source management control system based on cloud computing may include a field controller, an energy consumption parameter collector and a cloud computing management control platform. The field controller may control each energy consumption device according to user defined parameters and send the user defined parameters to the cloud computing management control platform. The energy consumption parameter collector may collect parameters related to energy consumption of each energy consumption device and send the collected parameters to the cloud computing management control platform. The cloud computing management control platform may adjust a field control mode of the field controller according to the collected parameters related to energy consumption of each energy consumption device and the user defined parameters.

    摘要翻译: 基于云计算的能源管理控制系统可以包括现场控制器,能量消耗参数采集器和云计算管理控制平台。 现场控制器可以根据用户定义的参数控制每个能量消耗装置,并将用户定义的参数发送到云计算管理控制平台。 能量消耗参数采集器可以收集与每个能量消耗装置的能量消耗相关的参数,并将收集的参数发送到云计算管理控制平台。 云计算管理控制平台可以根据与每个能量消耗设备的能耗相关的收集参数和用户定义的参数来调整现场控制器的现场控制模式。

    Process for forming high surface area embedded coating with high abrasion resistance
    9.
    发明授权
    Process for forming high surface area embedded coating with high abrasion resistance 有权
    具有高耐磨性的高表面积嵌入涂层成型工艺

    公开(公告)号:US08834964B2

    公开(公告)日:2014-09-16

    申请号:US12765703

    申请日:2010-04-22

    摘要: The process of the present invention significantly increases the durability of superhydrophobic surfaces, while retaining similar optical properties to those of the original surface. The process uses velocity and heat to take freshly formed nano- and ultrafine particles and can partially embed and chemically bond them to the substrate, creating a strongly bonded nano-to-submicron textured surface. This nanotextured surface can then be modified to have desirable surface properties; for example, it can be hydrophobic, oliophobic, or hydrophilic. The high points of the coating made with this process protect the remainder of the surface from abrasion, thus greatly increasing product life in many uses. In preferred embodiments, the process is used to coat transportation vehicle windshields.

    摘要翻译: 本发明的方法显着提高超疏水表面的耐久性,同时保持与原始表面相似的光学性质。 该方法使用速度和热量来取代新形成的纳米和超细颗粒,并且可以部分地嵌入和化学地将它们结合到基底上,产生强粘合的纳米到亚微米的纹理表面。 然后可以将该纳米纹理表面改性成具有期望的表面性质; 例如,它可以是疏水性的,唾液酸的或亲水的。 用这种方法制成的涂层的高点保护了表面的其余部分免受磨损,从而大大提高了许多用途中的产品寿命。 在优选实施例中,该方法用于涂覆运输车辆挡风玻璃。

    Process for Forming High Surface Area Embedded Coating with High Abrasion Resistance
    10.
    发明申请
    Process for Forming High Surface Area Embedded Coating with High Abrasion Resistance 有权
    具有高耐磨性的高表面积嵌入涂层的形成工艺

    公开(公告)号:US20110143094A1

    公开(公告)日:2011-06-16

    申请号:US12765703

    申请日:2010-04-22

    摘要: The process of the present invention significantly increases the durability of superhydrophobic surfaces, while retaining similar optical properties to those of the original surface. The process uses velocity and heat to take freshly formed nano- and ultrafine particles and can partially embed and chemically bond them to the substrate, creating a strongly bonded nano-to-submicron textured surface. This nanotextured surface can then be modified to have desirable surface properties; for example, it can be hydrophobic, oliophobic, or hydrophilic. The high points of the coating made with this process protect the remainder of the surface from abrasion, thus greatly increasing product life in many uses. In preferred embodiments, the process is used to coat transportation vehicle windshields.

    摘要翻译: 本发明的方法显着提高超疏水表面的耐久性,同时保持与原始表面相似的光学性质。 该方法使用速度和热量来取代新形成的纳米和超细颗粒,并且可以部分地嵌入和化学地将它们结合到基底上,产生强粘合的纳米到亚微米的织构表面。 然后可以将该纳米纹理表面改性成具有期望的表面性质; 例如,它可以是疏水性的,唾液酸的或亲水的。 用这种方法制成的涂层的高点保护了表面的其余部分免受磨损,从而大大提高了许多用途中的产品寿命。 在优选实施例中,该方法用于涂覆运输车辆挡风玻璃。