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    • 34. 发明授权
    • Magnetic head with air bearing surface protection film
    • 磁头带空气轴承表面保护膜
    • US07286326B2
    • 2007-10-23
    • US11140557
    • 2005-05-27
    • Nobuto YasuiHiroshi InabaShinji SasakiHiroshi Ishizaki
    • Nobuto YasuiHiroshi InabaShinji SasakiHiroshi Ishizaki
    • G11B5/60
    • G11B5/6005G11B5/40G11B5/56G11B5/6082
    • Embodiments of the invention provide an air bearing surface protection film having good corrosive resistance, electrical insulative property and mechanical wear resistance in the state of an extremely thin film. In one embodiment, an air bearing surface protection film having good corrosive resistance, electrical insulative property and mechanical wear resistance in a state of an extremely thin film is obtained by disposing a thin silicon nitride film having high density, high electric resistance, chemical stability and high adhesion with a substrate as a lowermost air bearing surface protection film and disposing a film comprising tetrahedral amorphous carbon and nitrogen as an uppermost air bearing surface protection film.
    • 本发明的实施例提供一种在极薄膜状态下具有良好的耐腐蚀性,电绝缘性和机械耐磨性的空气轴承表面保护膜。 在一个实施方案中,通过设置具有高密度,高电阻,化学稳定性的薄氮化硅膜和具有高密度,高电阻,化学稳定性的薄氮化硅膜,获得在极薄膜状态下具有良好的耐腐蚀性,电绝缘性和机械耐磨性的空气轴承表面保护膜 作为最低空气轴承表面保护膜与基板的高粘合性,并且将包含四面体非晶碳和氮的膜设置为最上面的空气轴承表面保护膜。
    • 38. 发明授权
    • Composite building material and method for manufacturing the same
    • 复合建筑材料及其制造方法
    • US06305135B1
    • 2001-10-23
    • US09311233
    • 1999-05-13
    • Hiroshi Inaba
    • Hiroshi Inaba
    • E04B141
    • B32B5/18B32B3/30E04C2/288
    • Provided is a composite building material which is more improved in the bonding capability of a cement mortar material itself with a foamed synthetic resin plate layer, furthermore prevents the occurrences of exfoliations and cracks and has higher strength compared with conventional composite materials. Plural concave grooves are formed in parallel on at least one of the surface and backface of a foamed synthetic resin plate layer and a net-like groove lathing material corresponding to the size of each groove is arranged within each groove. A cement mortar material is filled in the groove so as to bury the groove lathing material, a net-like surface lathing material is then stretched over all of one surface and a cement mortar material is further laminated to form a composite building material in which the foamed synthetic resin plate layer and the cement mortar layer are integrated with each other. The groove is made concavely in almost a dovetail groove form and the composite building material is structured so as to dispose the groove lathing material in the back section of the groove.
    • 提供了一种复合建筑材料,其在水泥砂浆材料本身与发泡合成树脂板层的粘合能力方面得到更好的改善,此外防止了剥离和裂纹的发生,并且与常规的复合材料相比具有更高的强度。 多个凹槽在发泡合成树脂板层的表面和背面中的至少一个上平行地形成,并且每个凹槽中布置与每个凹槽的尺寸对应的网状沟槽板条材料。 在槽中填充水泥砂浆材料,以便将沟槽板条材料进行掩埋,然后在所有的一个表面上拉伸网状表面板条材料,并进一步层压水泥砂浆材料以形成复合建筑材料,其中 发泡合成树脂板层和水泥砂浆层相互结合。 凹槽几乎形成为燕尾槽形状,并且复合建筑材料构造成将沟槽板条材料设置在凹槽的后部中。
    • 39. 发明授权
    • Water-repellent metal oxide film coated on glass substrate and method of
forming same
    • 涂覆在玻璃基板上的防水金属氧化物膜及其形成方法
    • US5268198A
    • 1993-12-07
    • US865449
    • 1992-04-09
    • Seiji YamasakiKensuke MakitaHiroshi Inaba
    • Seiji YamasakiKensuke MakitaHiroshi Inaba
    • C03C17/42C03C17/00C03C17/25B05D3/02
    • C03C17/25C03C17/009C03C2217/29C03C2218/113
    • The disclosure relates to a metal oxide film formed on a glass substrate by the sol-gel process using an alcohol solution of at least one metal alkoxide or acetylacetonato. To afford water repellency to the oxide film, carbon fluoride is dispersed in the metal oxide matrix by thermal decomposition of a fluoroalkylsilane compound, e.g. CF.sub.3 (CF.sub.2).sub.3 CH.sub.2 CH.sub.2 Si(OCH.sub.3).sub.3. An organic polymer, e.g. polyethylene glycol, is dissolved in the metal alkoxide or acetylacetonato solution, and the solution is applied to the glass substrate to form a sol film. By heating at a temperature not higher than 200.degree. C. the sol film turns into a porous gel film. Next, the porous gel film is impregnated with an alcohol solution of the fluoroalkylsilane compound and then heated at a temperature not lower than 500.degree. C. The obtained oxide film is good in durability and abrasion resistance, and on this film the contact angle of water drop becomes greater than 90 degrees.
    • 本发明涉及通过使用至少一种金属醇盐或乙酰丙酮的醇溶液的溶胶 - 凝胶法在玻璃基板上形成的金属氧化物膜。 为了提供对氧化膜的拒水性,碳氟化物通过氟烷基硅烷化合物的热分解分散在金属氧化物基质中。 CF 3(CF 2)3 CH 2 CH 2 Si(OCH 3)3。 有机聚合物,例如 聚乙二醇溶解在金属醇盐或乙酰丙酮溶液中,并将溶液施加到玻璃基板上以形成溶胶膜。 通过在不高于200℃的温度下加热,溶胶膜变成多孔凝胶膜。 接着,用氟烷基硅烷化合物的醇溶液浸渍多孔凝胶膜,然后在不低于500℃的温度下加热。所得到的氧化膜具有良好的耐久性和耐磨性,在该膜上,水的接触角 下降变得大于90度。
    • 40. 发明授权
    • Electrochromic device with an electrolyte comprising a lithium salt and
a sodium salt
    • 具有包含盐酸盐和钠盐的电解质的电致发光器件
    • US5099356A
    • 1992-03-24
    • US501922
    • 1990-03-28
    • Yasuhiko OhsawaKatsunori AokiTakeshi MiyamotoMasazumi IshikawaHiroshi InabaKiyoshi Nakase
    • Yasuhiko OhsawaKatsunori AokiTakeshi MiyamotoMasazumi IshikawaHiroshi InabaKiyoshi Nakase
    • G02F1/15
    • G02F1/1525G02F2001/1517
    • The invention relates to an electrochromic (EC) device having oppositely arranged two EC electrode layers. The first EC electrode layer uses Prussian blue, osmium purple or ruthenium purple and accordingly takes on a characteristic color by electrochemical oxidation, and the second EC electrode layer uses a transition metal oxide which takes on a characteristic color by electrochemical reduction, such as WO.sub.3. The space between the two EC electrode layers is filled with an electrolyte solution. When an EC device of this type is left in the bleached state for some period of time and then driven for coloration, the density of coloration is insufficient because of a decrease in the quantity of electricity in the oxidizing and coloring reaction of the first EC electrode layer. The invention solves this problem by using, as the electrolyte solution, a solution of a lithium salt and a sodium salt in an organic solvent prepared such that Na.sup.+ ion amounts to 3-30 mol % of the total of Li.sup.+ ion and Na.sup.+ ion.
    • 本发明涉及具有相对布置的两个EC电极层的电致变色(EC)装置。 第一EC电极层使用普鲁士蓝,锇紫或钌紫,因此通过电化学氧化而呈现特征色,第二EC电极层使用通过电化学还原形成特征色的过渡金属氧化物,如WO3。 两个EC电极层之间的空间填充有电解质溶液。 当这种类型的EC装置处于漂白状态一段时间,然后驱动着色时,由于第一EC电极的氧化和着色反应中的电量减少,着色密度不足 层。 本发明通过将锂盐和钠盐的溶液用于制备成使Na +离子占Li +离子和Na +离子总数的3-30mol%而制备的有机溶剂中来解决这个问题。