ELECTROSTATIC DEPOSITION
    5.
    发明申请

    公开(公告)号:US20170095834A1

    公开(公告)日:2017-04-06

    申请号:US15284282

    申请日:2016-10-03

    Abstract: The present design describes systems, apparatuses and methods for improving the efficiency, amount and quality of deposition of material on an object or predetermined portions of an object. The object's surface is coated with a charge by depositing a charged pretreatment material (or first material) on the surface of the object. In another embodiment, predetermined portions of the object's surface are coated with a charge by depositing a charged pretreatment material on the predetermined surfaces of the object. Then, the treatment material (or second material) is charged with an opposite-polarity charge and emitted towards the object where the treatment material exhibits a strong, opposite-polarity charged electrostatic attraction force to the first material, the object or the predetermined portions of the object. The result is an increased, consistent, improved and targeted deposition of the treatment material on the object or the predetermined portions of the object.

    Methods of coating substrates with electrically charged conductive materials, electrically conductive coated substrates, and associated apparatuses
    6.
    发明授权
    Methods of coating substrates with electrically charged conductive materials, electrically conductive coated substrates, and associated apparatuses 有权
    用带电导电材料涂覆基材的方法,导电涂覆的基材和相关的装置

    公开(公告)号:US09431142B2

    公开(公告)日:2016-08-30

    申请号:US14108126

    申请日:2013-12-16

    Abstract: Methods include applying an electric charge to a coating material that includes carbon nanotubes and a carrier, such as paint, and depositing the electrically charged coating material to a substrate. In some methods, the applying includes utilizing an electrostatic sprayer. In some methods, the substrate is isolated from ground during the depositing. In some methods, the substrate is an insulator. Some methods result in regions of carbon nanotubes that are substantially longitudinally aligned after the depositing. Coated substrates may include a coating with carbon nanotubes that are substantially longitudinally aligned and in some examples that are arranged in a zig-zag pattern. Aircraft, spacecraft, land vehicles, marine vehicles, wind turbines, and apparatuses that may be susceptible to lightning strikes or other types of electromagnetic effects and that include a coated substrate also are disclosed.

    Abstract translation: 方法包括将电荷施加到包括碳纳米管的涂层材料和诸如涂料的载体上,并将带电涂层材料沉积到基底上。 在一些方法中,应用包括利用静电喷雾器。 在一些方法中,在沉积期间将衬底与地离开。 在一些方法中,衬底是绝缘体。 一些方法导致在沉积之后基本纵向排列的碳纳米管区域。 涂覆的基底可以包括具有基本纵向对准的碳纳米管的涂层,并且在一些示例中以Z字形图案排列。 还公开了可能易受雷击或其他类型的电磁效应的飞机,航天器,陆地车辆,船用车辆,风力涡轮机以及包括涂覆基板的设备。

    ELECTROSTATIC COATING METHOD AND GUN FOR ELECTROSTATIC COATING
    10.
    发明申请
    ELECTROSTATIC COATING METHOD AND GUN FOR ELECTROSTATIC COATING 审中-公开
    静电涂料的静电涂层方法和喷枪

    公开(公告)号:US20150165474A1

    公开(公告)日:2015-06-18

    申请号:US14362524

    申请日:2012-09-18

    Inventor: Yoshinobu Tamura

    CPC classification number: B05D1/04 B05B5/025 B05B5/03 B05D1/045 B05D7/52

    Abstract: Provided is an electrostatic coating method using a conductor such as a metal or a conductive resin as a coating target surface 21, the method including coating the coating target surface 21 with a charged paint by ejecting the charged paint from a spray gun 1 in a state where generation of an electrostatic field between a spray gun 1 and the coating target surface 21 is prevented and generation of free ions is prevented.

    Abstract translation: 提供了使用诸如金属或导电树脂的导体作为涂覆目标表面21的静电涂覆方法,该方法包括通过从处于状态的喷枪1喷射带电涂料而用带电涂料涂覆涂覆目标表面21 其中防止了喷枪1和涂覆目标表面21之间的静电场的产生,并且防止了游离离子的产生。

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