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    • 9. 发明申请
    • PATTERN PROCESSES AND DEVICES THEREOF
    • 图案处理及其设备
    • US20110097543A1
    • 2011-04-28
    • US12762990
    • 2010-04-19
    • Jennifer Hoyt LalliWilliam HarrisonAdam Bingaman
    • Jennifer Hoyt LalliWilliam HarrisonAdam Bingaman
    • B32B3/30B32B5/16B05D3/14B82Y30/00
    • B82Y30/00Y10T428/24355Y10T428/24612
    • An apparatus may include a nano-particle layer and/or a linking agent layer. An apparatus may include a nano-particle layer bonded to a linking agent layer. An apparatus may include a substantially smooth surface. An apparatus may include a nano-particle layer and/or a linking agent layer which may be electrostatically etched to form a precise etched portion. An apparatus may have a precise etched portion including a pattern, for example a coil print pattern having a bend. An apparatus may include a nano-particle layer and/or a linking agent layer bonded to a shape memory layer. An apparatus may include a relatively even distribution of heat and/or current, and/or a predetermined heat and/or current path. A method may include forming a nano-particle layer and/or a linking agent layer. A method may include electrostatically etching a nano-particle layer and/or a linking agent layer.
    • 装置可以包括纳米颗粒层和/或连接剂层。 装置可以包括结合到连接剂层的纳米颗粒层。 装置可以包括基本平滑的表面。 装置可以包括纳米颗粒层和/或连接剂层,其可被静电蚀刻以形成精确的蚀刻部分。 装置可以具有包括图案的精确蚀刻部分,例如具有弯曲部的线圈印刷图案。 装置可以包括结合到形状记忆层的纳米颗粒层和/或连接剂层。 一种装置可以包括相对均匀的热量和/或电流分布,和/或预定的热和/或电流路径。 一种方法可以包括形成纳米颗粒层和/或连接剂层。 一种方法可以包括静电蚀刻纳米颗粒层和/或连接剂层。
    • 10. 发明申请
    • ABRASION RESISTANT COATINGS
    • 耐磨涂层
    • US20090104438A1
    • 2009-04-23
    • US12253306
    • 2008-10-17
    • Jennifer Hoyt LalliRichard O. Claus
    • Jennifer Hoyt LalliRichard O. Claus
    • B32B5/16B05D3/10
    • B05D5/00B05D5/02G02B1/105G02B1/14Y10T428/25Y10T428/257
    • A device includes a nanocomposite film, itself, having at least one nano-particle layer and at least one crosslinker layer. The device also includes an abrasion resistant coating over the nanocomposite film. A method for producing a device with an abrasion resistant nanocomposite coating on a substrate having a nano-particle-coated surface involves contacting nano-particle-coated surface with a crosslinker such that a chemical bond forms with nano-particles within the nano-particle-coated surface and this chemically bonded crosslinker is then contacted with at least one compound such that the at least one compound chemically binds to the crosslinker thereby forming an abrasion resistant coating on the substrate having the nano-particle-coated surface.
    • 一种器件包括本身具有至少一个纳米颗粒层和至少一个交联剂层的纳米复合膜。 该装置还包括纳米复合膜上的耐磨涂层。 在具有纳米颗粒涂覆表面的基材上制备具有耐磨纳米复合涂层的装置的方法包括使纳米颗粒涂覆的表面与交联剂接触,使得与纳米颗粒涂覆表面内的纳米颗粒形成化学键, 然后将该化学键合的交联剂与至少一种化合物接触,使得至少一种化合物与交联剂化学结合,从而在具有纳米颗粒涂覆表面的基材上形成耐磨涂层。