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公开(公告)号:CN102199769A
公开(公告)日:2011-09-28
申请号:CN201110120822.X
申请日:2011-05-11
Applicant: 江苏大学 , 中国人民解放军空军工程大学
IPC: C23C24/04
CPC classification number: B05D3/148 , C23C14/28 , C23C24/082
Abstract: 本发明涉及一种利用激光诱导的等离子体连续爆炸产生强冲击波在金属表面获得纳米涂层的方法与装置,涉及激光技术和表面强化技术领域。本发明激光器激发的激光辐射耐高压玻璃管道上端口的黑漆粒子,黑漆粒子吸收激光能量,瞬时气化、击穿、电离,产生等离子体,等离子受后续激光辐射,迅速积累能量引发膨胀爆炸,形成初始等离子体爆轰冲击波,在耐高压玻璃导管中传播;高温高能等离子体沿着黑漆条带一直重复膨胀爆炸,到达下端口冲击波压力明显跃升,将纳米颗粒嵌入到合金材料表面,形成纳米颗粒涂层。表层发生强塑性应变和大密度位错,在其表层产生了大幅残余压应力,有效提高材料的抗疲劳性能。
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公开(公告)号:CN1416477A
公开(公告)日:2003-05-07
申请号:CN01806380.2
申请日:2001-03-02
Applicant: LG电子株式会社
IPC: C23C16/54
CPC classification number: B05D1/62 , B05D3/148 , B05D2252/02 , C23C16/509 , C23C16/545 , C23C16/56
Abstract: 本发明公开了至少包含一个室的等离子聚合系统。在所述室中产生反应性气体的等离子体而使片材表面聚合之后,向该室中加入氧气和氮气的混合气体以阻止片材聚合性能的恶化。空气可作为混合气体供应。
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公开(公告)号:CN1272141A
公开(公告)日:2000-11-01
申请号:CN98805947.9
申请日:1998-12-03
IPC: C23C16/44
CPC classification number: C23C16/503 , B05D1/62 , B05D3/148 , B05D5/083 , C23C16/30 , C23C16/50 , C23C16/515 , C23C16/56 , F25B47/003 , F28F13/18 , F28F2245/02 , F28F2245/04
Abstract: 本发明提供了一种利用等离子体聚合进行表面处理的方法,该方法通过DC放电等离子体对金属表面进行处理以提高该金属在制冷和空调装置中的应用,包括如下步骤:在反应室内安装阴极电极和表面待改进的金属基质的阳极电极;将反应室内的压力维持在预定的真空度下;向反应室内送入反应气体,所述反应气体包括预定压力的不饱和脂肪烃单体气或含氟单体气和含硅单体气,和预定压力的非聚合气;以及为获得DC放电,向电极施加电压,以此获得由不饱和脂肪烃单体气和非聚合气产生的正、负离子和激离基所组成的等离子体,然后通过等离子体沉积在阳极电极表面上形成具有亲水性的聚合物。本发明还提供了利用RF等离子体通过等离子聚合反应对金属进行表面出来的方法,以提高该金属在制冷和空调装置中如在构造热交换器中的应用。
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公开(公告)号:WO2012151790A1
公开(公告)日:2012-11-15
申请号:PCT/CN2011/077734
申请日:2011-07-28
IPC: C23C24/04
CPC classification number: B05D3/148 , C23C14/28 , C23C24/082
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公开(公告)号:WO2005053862A1
公开(公告)日:2005-06-16
申请号:PCT/EP2004/013278
申请日:2004-11-23
Applicant: BAYER MATERIALSCIENCE AG , THURM, Siegfried , MAGER, Michael , MALEIKA, Robert , NOREIKS, Uwe
Inventor: THURM, Siegfried , MAGER, Michael , MALEIKA, Robert , NOREIKS, Uwe
IPC: B05D3/14
Abstract: Die Erfindung beschreibt ein Verfahren zum Beschichten eines Substrats mit wenigstens zwei Schichten, gekennzeichnet durch die folgenden Schritte: a) Aufbringen einer ersten Schicht, enthaltend eine erste anorganische Komponente, auf ein Substrat oder auf eine von wenigstens einer auf einem Substrat aufgebrachten Schicht; b) Behandeln der ersten Schicht mit einem Plasma; c) Aufbringen einer zweiten Schicht, enthaltend eine zweite anorganische Komponente, auf die erste, mit Plasma gemäß b) behandelte Schicht.
Abstract translation: 本发明描述了用于涂覆具有至少两个层的衬底,其特征在于以下步骤的方法:a)将含有第一无机组分的第一层,以在衬底或通过在基板上的至少一个层施加的力; b)用等离子体的第一层; C)根据b)处理过的层上施加包含第二无机成分的第二层,与第一,与等离子体。
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公开(公告)号:US11779706B2
公开(公告)日:2023-10-10
申请号:US17464397
申请日:2021-09-01
Applicant: Becton Dickinson France
Inventor: Cédric Foucher , Virginie Santucci-Aribert
IPC: A61M5/31 , C10M107/50 , B05D3/14 , C10M155/02 , C10N40/00 , C10N50/00 , C10N60/04 , C10N70/00
CPC classification number: A61M5/3129 , B05D3/147 , B05D3/148 , C10M107/50 , C10M155/02 , A61M2005/3131 , A61M2205/0222 , A61M2205/0238 , C10M2229/0415 , C10N2040/50 , C10N2050/023 , C10N2060/04 , C10N2070/00 , C10M2229/0415 , C10N2060/04
Abstract: The invention relates to a lubricant coating (5) for a medical injection device (1), comprising successively: —a bottom layer (50) in contact with the medical device surface (21) of the container to be lubricated, comprising a mixture of cross-linked and non-cross-linked poly-(dimethylsiloxane), —an intermediate layer (51) consisting essentially of oxidized poly-(dimethylsiloxane) and having a thickness comprised between 10 and 30 nm and, —a top layer (52) consisting essentially of non-cross-linked poly-(dimethylsiloxane) and having a thickness of at most 2 nm. The invention also relates to a medical injection device comprising such a lubricant coating, and a manufacturing process for said coating.
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37.
公开(公告)号:US20180372397A1
公开(公告)日:2018-12-27
申请号:US16065610
申请日:2016-12-23
Applicant: LG Electronics Inc. , IUCF-HYU (Industry-University Cooperation Foudation Hanyang University)
Inventor: Sunam CHAE , KYUNGSEOK KIM , Dongrip KIM , Hanmin JANG , Heungsoo LEE
CPC classification number: F25D23/087 , B05D1/06 , B05D1/18 , B05D3/007 , B05D3/0209 , B05D3/0254 , B05D3/148 , B05D5/00 , B05D5/083 , B05D5/086 , B05D5/10 , B05D7/24 , B05D2504/00 , B05D2506/15 , C09D5/03 , C09D5/031 , C09D5/1681 , C09D167/00 , F25C5/22 , F25D11/006 , F25D17/08 , F25D21/04 , F25D21/08 , F25D23/04
Abstract: A method of manufacturing a dew formation preventing member having a super water repellent surface of the present invention comprises the steps of: mixing a particular paint and polytetrafluorethylene at a predetermined ratio; particulate painting the mixed paint on a substrate surface; and heat treating the particulate painted substrate. A method of manufacturing a dew formation preventing member having a super water repellent surface according to another aspect of the present invention comprises the steps of: immersing a substrate in an electro deposition paint, and applying a direct current to conduct electro deposition painting; heat treating the substrate that has undergone the electro deposition painting; and plasma treating the surface of the substrate that has undergone the electro deposition painting.
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公开(公告)号:US09630423B2
公开(公告)日:2017-04-25
申请号:US14028330
申请日:2013-09-16
Applicant: XEROX CORPORATION
Inventor: Sarah J. Vella , Carolyn Moorlag
IPC: B41J2/435 , B05D3/14 , G03G13/28 , B41C1/10 , B41M1/06 , B41N1/00 , G03G7/00 , B41M5/00 , B41N3/08
CPC classification number: B41J2/435 , B05D3/148 , B05D2506/10 , B41C1/1066 , B41M1/06 , B41M5/0047 , B41N1/003 , B41N3/08 , G03G7/0046 , G03G13/283
Abstract: An ink-based digital printing system suitable for use with hydrophilic and/or aqueous dampening fluids includes an imaging member having an imaging member material that is hydrophilic at the imaging surface.
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公开(公告)号:US20170107344A1
公开(公告)日:2017-04-20
申请号:US15128028
申请日:2015-03-27
Applicant: LINTEC CORPORATION
Inventor: Wataru IWAYA , Koichi NAGAMOTO , Satoshi NAGANAWA , Yuuta SUZUKI , Takeshi KONDO
CPC classification number: C08J7/042 , B05D1/42 , B05D3/12 , B05D3/148 , B05D5/00 , B05D7/04 , B05D7/24 , B05D7/588 , B32B7/02 , B32B27/283 , B32B2307/7242 , C08J7/045 , C08J7/047 , C08J2367/02 , C08J2433/14 , C08J2435/02 , C08J2475/04 , C08J2483/04 , C08J2483/16 , H01B1/04 , H01J37/32412 , H01L51/0024 , H01L51/5253
Abstract: The present invention is a long gas barrier laminate including a base, a functional layer, a smoothing layer, and a gas barrier layer, the functional layer being stacked on one side of the base, the smoothing layer and the gas barrier layer being sequentially stacked on the other side of the base, and a coefficient of static friction between a surface of the functional layer that is situated opposite to the base and a surface of the gas barrier layer that is situated opposite to the base being 0.35 to 0.80; and a method for producing the long gas barrier laminate.
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40.
公开(公告)号:US09415419B2
公开(公告)日:2016-08-16
申请号:US14526619
申请日:2014-10-29
Applicant: Eastman Kodak Company
Inventor: Ronald Steven Cok
CPC classification number: B05D7/542 , A01N25/34 , B05D1/28 , B05D3/107 , B05D3/12 , B05D3/148 , B05D5/00 , B05D5/02 , B29C35/0805 , B29C59/026 , B29C59/14 , B29C2059/023 , B29C2059/027 , B29C2059/028 , B29K2105/0011 , B29K2995/0003 , B29K2995/0005 , B29K2995/0007
Abstract: A method of making a multi-layer biocidal structure includes providing a support and locating a first curable layer on the support. A second curable layer is located on the first curable layer, the second curable layer having multiple biocidal particles dispersed within the second curable layer. The first curable layer and the second curable layer are imprinted in a single step with an imprinting stamp having a structure with a depth greater than the thickness of the second curable layer. The first curable layer and the second curable layer are cured in a single step to form a first cured layer and a second cured layer. The imprinting stamp is removed.
Abstract translation: 制造多层杀生物结构的方法包括提供载体并将第一可固化层定位在载体上。 第二可固化层位于第一可固化层上,第二可固化层具有分散在第二可固化层内的多个杀生物颗粒。 第一可固化层和第二可固化层用一个具有深度大于第二可固化层的厚度的结构的压印印模在一个步骤中印刷。 第一可固化层和第二可固化层在一个步骤中固化以形成第一固化层和第二固化层。 印记邮票被删除。
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