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    • 15. 发明申请
    • CORONA TREATMENT DEVICE
    • CORONA治疗装置
    • WO2013104753A3
    • 2013-11-21
    • PCT/EP2013050483
    • 2013-01-11
    • OCE TECH BV
    • KUYPERS HERMAN
    • B41F23/00B29C59/10H01T19/00
    • B41J2/385B29C59/10B41J11/0015H01T19/00H05H1/2406H05H2001/2412H05H2001/481
    • A corona treatment device is provided for treating a cut sheet material. The corona treatment device comprises a corona means for applying a corona plasma treatment onto a surface of a sheet, the corona means comprising a corona electrode, a sheet transporting means for transporting the sheet in the direction of a transport path along the corona means and a plurality of sheet guide elements for guiding the sheet along the corona means. The plurality of sheet guide elements is positioned between the corona electrode and the transport path thereby providing a predetermined distance between the transport path and the corona electrode. The plurality of sheet guide elements comprises at least a first sheet guide element extending in a direction at a first angle with respect to the sheet transport direction. The invention further pertains to a printing system for processing a cut sheet material comprising such a corona treatment device.
    • 提供了一种用于处理切割的片材的电晕处理装置。 电晕处理装置包括用于对片材的表面施加电晕等离子体处理的电晕装置,电晕装置包括电晕电极,用于沿着电晕装置沿传送路径的方向传送片材的片材传送装置和 多个纸张引导元件,用于沿着电晕装置引导纸张。 多个片材引导元件位于电晕电极和输送路径之间,从而在输送路径和电晕电极之间提供预定的距离。 多个片材引导元件包括至少第一片材引导元件,该第一片材引导元件沿相对于片材传送方向以第一角度的方向延伸。 本发明还涉及一种用于加工包括这种电晕处理装置的切割片材的印刷系统。
    • 17. 发明申请
    • A PLASMA FORMED IN A FLUID
    • 流体中形成的等离子体
    • WO2003096767A1
    • 2003-11-20
    • PCT/AU2003/000549
    • 2003-05-08
    • CHANG, Chak, Man, Thomas
    • CHANG, Chak, Man, Thomas
    • H05H1/24
    • H05H1/48H05H1/2406H05H2001/2418H05H2001/481H05H2245/121Y02W10/37
    • A method and apparatus for generating plasma in a fluid. The fluid (3) is placed in a bath (2) having a pair of spaced electrodes (4, 6) forming a cathode and an anode. A stream of bubbles is introduced or generated within the fluid adjacent to the cathode. A potential difference is applied across the cathode and anode such that a glow discharge is formed in the bubble region and a plasma of ionised gas molecules is formed within the bubbles. The plasma may then be used in electrolysis, gas production, effluent treatment or sterilisation, mineral extraction, production of nanoparticles or material enhancement. The method can be carried out at atmospheric pressure and room temperature. The electrodes may carry means to trap the bubbles in close proximity. Partitions may be present between the electrodes.
    • 一种用于在流体中产生等离子体的方法和装置。 将流体(3)放置在具有形成阴极和阳极的一对间隔开的电极(4,6)的浴槽(2)中。 在与阴极相邻的流体内引入或产生气泡。 在阴极和阳极之间施加电位差,使得在气泡区域中形成辉光放电,并且在气泡内形成电离气体分子的等离子体。 然后可以将等离子体用于电解,气体生产,废水处理或灭菌,矿物提取,纳米颗粒的生产或材料增强。 该方法可以在大气压和室温下进行。 电极可以携带将气泡捕获在近处的装置。 电极之间可能存在分隔。