SURFACE COATING PROCESSES AND USES OF SAME
    2.
    发明申请
    SURFACE COATING PROCESSES AND USES OF SAME 有权
    表面涂层工艺及其用途

    公开(公告)号:US20100211158A1

    公开(公告)日:2010-08-19

    申请号:US12738548

    申请日:2008-10-16

    IPC分类号: A61F2/06 B05D3/00

    摘要: The present application relates to processes for coating surfaces and provides a method of forming a coating on a surface. The method involves bombarding a surface with particles having sufficient energy to remove surface material. At the same time an aerosol is delivered to the surface. The cooperative action of the particles impinging on the surface and the presence of the aerosol contribute to the formation of a coating on the surface.

    摘要翻译: 本申请涉及涂覆表面的方法,并提供了在表面上形成涂层的方法。 该方法包括用具有足够能量的颗粒轰击表面以除去表面材料。 同时将气溶胶输送到表面。 撞击表面的颗粒和气溶胶的协同作用有助于在表面上形成涂层。

    Surface coating processes and uses of same
    5.
    发明授权
    Surface coating processes and uses of same 有权
    表面涂层工艺及其用途

    公开(公告)号:US09254550B2

    公开(公告)日:2016-02-09

    申请号:US12738548

    申请日:2008-10-16

    摘要: The present application relates to processes for coating surfaces and provides a method of forming a coating on a surface. The method involves bombarding a surface with particles having sufficient energy to remove surface material. At the same time an aerosol is delivered to the surface. The cooperative action of the particles impinging on the surface and the presence of the aerosol contribute to the formation of a coating on the surface.

    摘要翻译: 本申请涉及涂覆表面的方法,并提供了在表面上形成涂层的方法。 该方法包括用具有足够能量的颗粒轰击表面以除去表面材料。 同时将气溶胶输送到表面。 撞击表面的颗粒和气溶胶的协同作用有助于在表面上形成涂层。

    ELECTROCHEMICAL DEVICE
    6.
    发明申请
    ELECTROCHEMICAL DEVICE 审中-公开
    电化学装置

    公开(公告)号:US20110189302A1

    公开(公告)日:2011-08-04

    申请号:US13056552

    申请日:2009-07-29

    摘要: There is provided an automated electrochemical device for generating a biocidal output solution, said device comprising: a flow-through electrochemical cell comprising an anodic chamber and a cathodic chamber for electrolysing an electrolyte to generate an anolyte solution and a catholyte solution; characterised in that the device further comprises: (i) a reservoir for storing catholyte; and (ii) a hydraulic circuit for recirculating catholyte from the reservoir to the anolyte on start-up of the cell, wherein input of catholyte of a compensating strength to the cell anodic chamber, is arranged so as to optimise the cell anolyte pH to produce a stable output solution at the start of the electrolysis process.

    摘要翻译: 提供了一种用于产生杀生物剂输出溶液的自动电化学装置,所述装置包括:流通电化学电池,包括阳极室和阴极室,用于电解电解质以产生阳极电解液和阴极电解液; 其特征在于,所述装置还包括:(i)用于存储阴极电解液的储存器; 和(ii)用于在电池启动时将阴极电解液从蓄液池再循环到阳极电解液的液压回路,其中输入具有对电解池阳极室的补偿强度的阴极电解液,以便优化细胞阳极电解液的pH以产生 在电解过程开始时稳定的输出溶液。

    Method of determining optical amplifier failures
    7.
    发明授权
    Method of determining optical amplifier failures 失效
    确定光放大器故障的方法

    公开(公告)号:US6064501A

    公开(公告)日:2000-05-16

    申请号:US788300

    申请日:1997-01-24

    摘要: The invention is directed to a failure detection system and method for detecting malfunction of an optical amplifier module with one or multiple transmission channels. The failure detection system comprises a unit for measuring a performance parameter of the module; a unit for providing an expected performance parameter; and a comparator unit for receiving the performance parameter and the expected performance parameter and producing an error signal when the performance parameter substantially departs from the expected performance parameter. The system also includes a display/alarm unit for receiving the error signal and accordingly signaling failure of the module. The performance parameter is an output value of the module; a correspondence between an output value and an input value for a transmission channel; a figure of merit (FOM.sup.t=t); a set of gains (g) for all transmission channels; and the dynamic range of the amplifier module.

    摘要翻译: 本发明涉及一种用于检测具有一个或多个传输信道的光放大器模块的故障的故障检测系统和方法。 故障检测系统包括用于测量模块的性能参数的单元; 用于提供预期性能参数的单元; 以及比较器单元,用于在性能参数基本上偏离预期性能参数时接收性能参数和预期性能参数并产生误差信号。 该系统还包括一个显示/报警单元,用于接收错误信号并相应地发出模块信号故障。 性能参数是模块的输出值; 传输信道的输出值和输入值之间的对应关系; 一个品质因数(FOMt = t); 所有传输通道的一组增益(g); 和放大器模块的动态范围。