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    • 18. 发明授权
    • Method of forming a pseudo-diamond film on a base body
    • 在基体上形成假金刚石膜的方法
    • US5064682A
    • 1991-11-12
    • US601627
    • 1990-10-23
    • Seiichi KiyamaHitoshi Hirano
    • Seiichi KiyamaHitoshi Hirano
    • C23C14/06C23C14/22
    • C23C14/22C23C14/0605C23C14/221
    • A method of forming a pseudo-diamond film on a base body, the method comprising a first step of irradiating carbon ions onto a surface of a base body from an assisting ion gun to form a mixture layer comprising base body material atoms and carbon atoms; a second step of simultaneously vapor-depositing the carbon atoms from a vapor deposition source and irradiating hydrogen ions from the assisting ion gun onto the mixture layer to form pseudo-diamond cores on the mixtures layer; and a third step of vapor-depositing carbon atoms from the vapor deposition source and irradiating hydrogen ions from the assisting ion gun onto the pseudo-diamond cores to form a pseudo-diamond film on the pseudo-diamond cores.
    • 一种在基体上形成假金刚石膜的方法,所述方法包括:从辅助离子枪将碳离子照射到基体表面上以形成包含基体材料原子和碳原子的混合层的第一步骤; 同时从气相沉积源气相沉积碳原子并将辅助离子枪的氢离子照射到混合物层上以在混合物层上形成伪金刚石核心的第二步骤; 以及从气相沉积源气相沉积碳原子并将辅助离子枪的氢离子照射到伪金刚石核心上以在伪菱形核上形成伪金刚石膜的第三步骤。
    • 20. 发明申请
    • Laminated optical element
    • 层压光学元件
    • US20090046379A1
    • 2009-02-19
    • US11665182
    • 2006-05-11
    • Keiichi KuramotoNobuhiko HayashiHitoshi HiranoMitsuaki MatsumotoMasaya Nakai
    • Keiichi KuramotoNobuhiko HayashiHitoshi HiranoMitsuaki MatsumotoMasaya Nakai
    • G02B3/02G02B1/04B32B27/08B32B5/16G02B1/11
    • B32B5/16G02B3/00G02B3/02G02B5/188G02B5/1895Y10T428/24413Y10T428/25Y10T428/265Y10T428/31598Y10T428/31609
    • Disclosed herein is a reliable laminated optical element that is a hybrid optical element obtained by laminating an optical resin layer on an optical substrate such as a glass substrate, the optical resin layer being less likely to be separated from the optical substrate even under high temperature and high humidity conditions.The laminated optical element comprises an optical substrate 1 made of an optical material, an intermediate layer 2 provided on the optical substrate 1, and an optical resin layer 3 provided on the intermediate layer 2. The optical resin layer 3 is made of a resin composed of an organometallic polymer having an -M-O-M- bond (M is a metal atom), a metal alkoxide and/or a hydrolysate thereof having only one hydrolyzable group, and an organic polymer having a urethane bond and a methacryloxy group or an acryloxy group. The intermediate layer 2 is obtained by dispersing metal oxide microparticles in a matrix resin composed of a metal alkoxide having a radical polymerizable group and a hydrolyzable group and/or a hydrolysate thereof.
    • 本发明公开了一种可靠的层压光学元件,其是通过将光学树脂层层叠在诸如玻璃基板的光学基板上而获得的混合光学元件,即使在高温下也不太可能与光学基板分离光学树脂层, 高湿度条件。 层叠光学元件包括由光学材料制成的光学基板1,设置在光学基板1上的中间层2和设置在中间层2上的光学树脂层3.光学树脂层3由树脂构成 具有-MOM-键(M为金属原子)的有机金属聚合物,仅具有一个可水解基团的金属醇盐和/或其水解产物,以及具有氨基甲酸酯键和甲基丙烯酰氧基或丙烯酰氧基的有机聚合物。 中间层2通过将金属氧化物微粒分散在由具有自由基聚合性基团的金属醇盐和可水解基团和/或其水解产物构成的基质树脂中而获得。