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    • 3. 发明申请
    • Self-cleaning superhydrophobic surface
    • 自洁超疏水表面
    • US20060147634A1
    • 2006-07-06
    • US11030501
    • 2005-01-06
    • Dennis Strauss
    • Dennis Strauss
    • B05D3/00H05H1/24
    • B82Y10/00B05D5/086B05D7/14B64C21/10B82Y30/00Y02T50/166Y10T428/24355Y10T428/24364Y10T428/24413Y10T428/265Y10T428/269Y10T428/2913Y10T428/2933Y10T428/2935Y10T428/2938Y10T428/2975Y10T428/3154Y10T428/31544Y10T428/31678
    • A method for providing a superhydrophobic surface on a structure, for example aircraft wings, propellers and/or rotors, is set forth. The method includes applying a coating of hydrofluoric acid over a titanium substrate. A voltage is then applied across the titanium substrate so that current flows through the titanium substrate. The current flowing through the titanium substrate causes the hydrofluoric acid to react with the titanium substrate to anodize the titanium substrate. The anodization causes a nanoporous titanium oxide layer to grow across the titanium substrate. The titanium oxide layer includes a plurality of nano-tube structures that, once the remaining hydrofluoric acid is washed away, provide a microscopically rough surface on the titanium substrate. A conformal coating of a hydrophobic compound is then desposited on the microscopically rough surface to create a superhydrophobic surface. Thus, a substantially self-cleaning superhydrophobic surface is created on the titanium substrate, whereby, when exposed to ultraviolet light, the titanium oxide layer has a photocatalytic reaction with oxygen to oxidize any organic contaminants that may gather on the superhydrophobic surface.
    • 提出了在结构上提供超疏水表面的方法,例如飞机机翼,螺旋桨和/或转子。 该方法包括在钛基底上涂覆氢氟酸涂层。 然后在钛基板上施加电压,使得电流流过钛基板。 流过钛基板的电流使氢氟酸与钛基板反应,以使钛基板阳极氧化。 阳极氧化使纳米孔氧化钛层在钛基底上生长。 氧化钛层包括多个纳米管结构,其中一旦剩余的氢氟酸被洗去,就在钛基底上提供显微镜表面。 然后将疏水性化合物的保形涂层在显微镜粗糙表面上解吸以产生超疏水表面。 因此,在钛基板上形成基本上自清洁的超疏水表面,由此当暴露于紫外线时,氧化钛层与氧气发生光催化反应,以氧化可能聚集在超疏水表面上的任何有机污染物。
    • 5. 发明申请
    • TWO-DIMENSIONAL SIZE-REDUCTION OF SURFACE FEATURES BY REPLICA-CASTING
    • 表面特征的二维尺寸减小
    • US20070264475A1
    • 2007-11-15
    • US11382385
    • 2006-05-09
    • Dennis Strauss
    • Dennis Strauss
    • B44C1/17
    • B44C1/24B44C3/025Y10T428/24802
    • Size reduction of surface features is accomplished by stretching an elastomeric sheet isotropically, coating it with a curable elastomer precursor, impressing a surface pattern into the precursor coating with a mold, curing the precursor coating to form a patterned elastomeric coating on the substrate elastomeric sheet, removing the pattern mold, and then allowing the substrate elastomeric sheet to relax to its original size. The cured patterned coating is forced to contract isotropically by the relaxing elastomeric sheet, creating a new surface pattern whose features will be reduced in size, while retaining the relief of the features.
    • 表面特征的尺寸减小是通过各向同性地拉伸弹性体片材,用可固化的弹性体前体涂布,用模具将表面图案压印到前体涂层中,固化前体涂层以在基底弹性体片材上形成图案化的弹性体涂层来实现的, 去除图案模具,然后允许基底弹性体片材松弛至其原始尺寸。 固化的图案涂层被松弛的弹性片各向同性地收缩,从而产生一个新的表面图案,其特征将会减小,同时保持特征的浮雕。
    • 6. 发明申请
    • RENEWABLE SUPERHYDROPHOBIC COATING
    • 可再生超级涂层
    • US20070003705A1
    • 2007-01-04
    • US11160600
    • 2005-06-30
    • Dennis Strauss
    • Dennis Strauss
    • B05D1/18B05D1/12
    • B05D5/08B05D3/107B05D3/12B05D5/083B05D2601/20B08B17/06B08B17/065C08K3/16C08K3/22C08K3/26C09D5/00C09D7/61
    • A method of forming a superhydrophobic material (66) includes mixing a hydrophobic material (24) with soluble particles (26) to form a mixture (32). The mixture (32) is cured. A portion of the soluble particles (26) is etched away from the mixture (32) to form the superhydrophobic material (66). A superhydrophobic material forming system (10) includes a mixer (30) that mixes a hydrophobic binder (24) with soluble particles (26) to form the mixture (32). A curing station (16) cures the mixture (32). An applicator (69) applies a solvent (68) to the mixture (32) to etch away a portion of the soluble particles (26) from the mixture (32) to form the superhydrophobic material (66).
    • 形成超疏水材料(66)的方法包括将疏水材料(24)与可溶性颗粒(26)混合以形成混合物(32)。 混合物(32)固化。 将一部分可溶性颗粒(26)从混合物(32)中蚀刻掉以形成超疏水材料(66)。 超疏水材料形成系统(10)包括将疏水性粘合剂(24)与可溶性颗粒(26)混合以形成混合物(32)的混合器(30)。 固化站(16)固化混合物(32)。 施加器(69)将溶剂(68)施加到混合物(32)以从混合物(32)中蚀刻一部分可溶性颗粒(26)以形成超疏水材料(66)。