Protective coating composition
    3.
    发明授权
    Protective coating composition 失效
    保护涂料组合物

    公开(公告)号:US07678429B2

    公开(公告)日:2010-03-16

    申请号:US10510555

    申请日:2003-04-08

    Abstract: A method of forming a coating on a powdered substrate, which method comprises introducing an atomized liquid and/or solid coating forming material and separately transporting a powdered substrate to be coated into an atmospheric plasma discharge and/or an ionized gas stream resulting therefrom, and exposing the powdered substrate to the atomized liquid and/or solid coating forming material.

    Abstract translation: 一种在粉末状基材上形成涂层的方法,该方法包括引入雾化的液体和/或固体涂层形成材料,并将待涂覆的粉末状基材分别输送到由其产生的大气等离子体放电和/或电离气流中,以及 将粉末状基材暴露于雾化液体和/或固体涂料形成材料。

    Gel and powder making
    4.
    发明授权
    Gel and powder making 失效
    凝胶和粉末制作

    公开(公告)号:US07438882B2

    公开(公告)日:2008-10-21

    申请号:US10510538

    申请日:2003-04-08

    CPC classification number: C23C4/134 C23C4/123

    Abstract: A method of forming a gel and/or powder of a metallic oxide, metalloid oxide and/or a mixed oxide or resin thereof from one or more respective organometallic liquid precursor(s) and/or organometalloid liquid precursor(s) by oxidatively treating said liquid in a non-thermal equilibrium plasma discharge and/or an ionised gas stream resulting therefrom and collecting the resulting product. The non-thermal equilibrium plasma is preferably atmospheric plasma glow discharge, continuous low pressure glow discharge plasma, low pressure pulse plasma or direct barrier discharge. The metallic oxides this invention particularly relates to are those in columns 3a and 4a of the periodic table namely, aluminium, gallium, indium, tin and lead and the transition metals. The metalloids may be selected from boron, silicon, germanium, arsenic, antimony and tellurium. Preferred metalloid oxide products made according to the process of the present invention are in particular oxides of silicon including silicone resins and the like, boron, antimony and germanium.

    Abstract translation: 一种由一种或多种相应的有机金属液体前体和/或有机金属液体前体形成金属氧化物,准金属氧化物和/或其混合氧化物或树脂的凝胶和/或粉末的方法,通过氧化处理所述 非热平衡等离子体放电中的液体和/或由此产生的电离气流并收集所得产物。 非热平衡等离子体优选为大气等离子体辉光放电,连续低压辉光放电等离子体,低压脉冲等离子体或直接屏障放电。 本发明的金属氧化物特别涉及元素周期表的第3a和4a栏,即铝,镓,铟,锡和铅以及过渡金属。 准金属可以选自硼,硅,锗,砷,锑和碲。 根据本发明方法制备的优选的准金属氧化物产物特别是硅的氧化物,包括硅树脂等,硼,锑和锗。

    Plasma System
    6.
    发明申请
    Plasma System 审中-公开
    等离子体系统

    公开(公告)号:US20090142514A1

    公开(公告)日:2009-06-04

    申请号:US11718610

    申请日:2005-11-03

    Abstract: A non-equilibrium atmospheric pressure plasma incorporating an atomised surface treatment agent is generated by applying a radio frequency high voltage to at least one electrode positioned within a dielectric housing while causing a process gas to flow from the inlet of the housing past the electrode to the outlet. The voltage applied is sufficiently high to generate a non-equilibrium atmospheric pressure plasma extending from the electrode at least to the outlet of the housing. The electrode may be combined with an atomiser for the surface treatment agent within the housing. The electrode may comprise a radioactive material. The surface to be treated can be positioned adjacent to the plasma outlet so that the surface is in contact with the plasma, and moved relative to the plasma outlet.

    Abstract translation: 通过对位于电介质外壳内的至少一个电极施加射频高压来产生包含雾化表面处理剂的非平衡大气压等离子体,同时使处理气体从壳体的入口流过电极至 出口。 施加的电压足够高以产生从电极至少延伸到壳体的出口的非平衡大气压力等离子体。 电极可以与壳体内的表面处理剂的雾化器结合。 电极可以包括放射性材料。 待处理的表面可以位于等离子体出口附近,使得表面与等离子体接触并且相对于等离子体出口移动。

    Atmospheric pressure plasma assembly
    7.
    发明申请
    Atmospheric pressure plasma assembly 审中-公开
    大气压等离子体组件

    公开(公告)号:US20050241582A1

    公开(公告)日:2005-11-03

    申请号:US10496021

    申请日:2003-04-08

    Abstract: An atmospheric plasma generation assembly (100) having a body (17) containing a reactive agent introducing means, a process gas introducing means and one or more multiple parallel electrode arrangements adapted for generating a plasma. Each electrode arrangement having at least one partially dielectric coated electrode (3, 4) said assembly being adapted such that the only means of exit for a process gas and atomised liquid or solid reactive agent introduced into said assembly is through the plasma region (6) between the aforementioned electrodes (3, 4). The assembly is adapted to move relative to a substrate (1) substantially adjacent to the aforementioned electrodes outermost tips (23). The assembly may also comprise an extractor unit surrounding the plasma generating assembly, comprising an extractor body (8) which is adapted to isolate the assembly from external atmosphere and provide a means of removing exhaust process gas, reactive agents and by-products.

    Abstract translation: 具有包含反应剂引入装置的主体(17),处理气体引入装置和适于产生等离子体的一个或多个多个平行电极装置的大气等离子体产生组件(100)。 每个电极布置具有至少一个部分电介质涂覆的电极(3,4),所述组件适于使得引入到所述组件中的工艺气体和雾化液体或固体反应剂的唯一出口装置通过等离子体区域(6) 在上述电极(3,4)之间。 组件适于相对于基本上邻近上述电极最外端(23)的衬底(1)移动。 组件还可以包括围绕等离子体产生组件的提取器单元,包括提取器主体(8),其适于将组件与外部气氛隔离,并提供去除废气处理气体,反应剂和副产物的手段。

    Gel and powder making
    8.
    发明申请
    Gel and powder making 失效
    凝胶和粉末制作

    公开(公告)号:US20050226802A1

    公开(公告)日:2005-10-13

    申请号:US10510538

    申请日:2003-04-08

    CPC classification number: C23C4/134 C23C4/123

    Abstract: A method of forming a gel and/or powder of a metallic oxide, metalloid oxide and/or a mixed oxide or resin thereof from one or more respective organometallic liquid precursor(s) and/or organometalloid liquid precursor(s) by oxidatively treating said liquid in a non-thermal equilibrium plasma discharge and/or an ionised gas stream resulting therefrom and collecting the resulting product. The non-thermal equilibrium plasma is preferably atmospheric plasma glow discharge, continuous low pressure glow discharge plasma, low pressure pulse plasma or direct barrier discharge. The metallic oxides this invention particularly relates to are those in columns 3a and 4a of the periodic table namely, aluminium, gallium, indium, tin and lead and the transition metals. The metalloids may be selected from boron, silicon, germanium, arsenic, antimony and tellurium. Preferred metalloid oxide products made according to the process of the present invention are in particular oxides of silicon including silicone resins and the like, boron, antimony and germanium.

    Abstract translation: 一种由一种或多种相应的有机金属液体前体和/或有机金属液体前体形成金属氧化物,准金属氧化物和/或其混合氧化物或树脂的凝胶和/或粉末的方法,通过氧化处理所述 非热平衡等离子体放电中的液体和/或由此产生的电离气流并收集所得产物。 非热平衡等离子体优选为大气等离子体辉光放电,连续低压辉光放电等离子体,低压脉冲等离子体或直接屏障放电。 本发明的金属氧化物特别涉及元素周期表的第3a和4a栏,即铝,镓,铟,锡和铅以及过渡金属。 准金属可以选自硼,硅,锗,砷,锑和碲。 根据本发明方法制备的优选的准金属氧化物产物特别是硅的氧化物,包括硅树脂等,硼,锑和锗。

    Atmospheric pressure plasma assembly
    9.
    发明申请
    Atmospheric pressure plasma assembly 审中-公开
    大气压等离子体组件

    公开(公告)号:US20050178330A1

    公开(公告)日:2005-08-18

    申请号:US10509711

    申请日:2003-04-08

    CPC classification number: H05H1/2406 H05H2001/2412

    Abstract: An atmospheric pressure plasma assembly (1) comprising a first and second pair of vertically arrayed, parallel spaced-apart planar electrodes (36) with at least one dielectric plate (31) between said first pair, adjacent one electrode and at least one dielectric plate (31) between said second pair adjacent one electrode, the spacing between the dielectric plate and the other dielectric plate or electrode of each of the first and second pairs of electrodes forming a first and second plasma regions (25,60) characterised in that the assembly further comprises a means of transporting a substrate (70,71,72) successively through said first and second plasma regions (25,60) and an atomiser (74) adapted to introduce an atomised liquid or solid coating making material into one of said first or second plasma regions.

    Abstract translation: 一种大气压等离子体组件(1),包括第一和第二对垂直排列的平行隔开的平面电极(36),所述平面电极具有在所述第一对之间,相邻的一个电极和至少一个电介质板之间的至少一个电介质板(31) (31)在所述第二对相邻的一个电极之间,所述电介质板和所述第一和第二对电极中的每一对电极的另一电介质板或电极之间的间隔形成第一和第二等离子体区域(25,60),其特征在于, 组件还包括将衬底(70,71,72)连续地传送通过所述第一和第二等离子体区域(25,60)和雾化器(74)的装置,所述雾化器适于将雾化的液体或固体涂层制造材料引入所述 第一或第二等离子体区域。

    Protective coating composition
    10.
    发明申请
    Protective coating composition 失效
    保护涂料组合物

    公开(公告)号:US20050158480A1

    公开(公告)日:2005-07-21

    申请号:US10510555

    申请日:2003-04-08

    Abstract: A method of forming a coating on a powdered substrate, which method comprises introducing an atomized liquid and/or solid coating forming material and separately transporting a powdered substrate to be coated into an atmospheric plasma discharge and/or an ionized gas stream resulting therefrom, and exposing the powdered substrate to the atomized liquid and/or solid coating forming material.

    Abstract translation: 一种在粉末状基材上形成涂层的方法,该方法包括引入雾化的液体和/或固体涂层形成材料,并将待涂覆的粉末状基材分别输送到由其产生的大气等离子体放电和/或电离气流中,以及 将粉末状基材暴露于雾化液体和/或固体涂料形成材料。

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