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    • 5. 发明授权
    • Method for producing ceramic products
    • 陶瓷制品的制造方法
    • US5459114A
    • 1995-10-17
    • US256807
    • 1994-07-25
    • Hiroshi KayaKiyoshi SatoHiroki MorozumiAtushi TezukaTomoko AokiHirohiko NakaharaTadashi SuzukiTakeshi Isoda
    • Hiroshi KayaKiyoshi SatoHiroki MorozumiAtushi TezukaTomoko AokiHirohiko NakaharaTadashi SuzukiTakeshi Isoda
    • C04B35/589C04B35/80C04B41/45C04B41/50C04B41/52C04B41/81C04B41/87C04B41/89C04B35/58
    • C04B41/009C04B35/589C04B35/80C04B35/806C04B41/4554C04B41/5053C04B41/52C04B41/81C04B41/87C04B41/89
    • Repetition of a process of impregnating a metal fiber or ceramic fiber preform or porous ceramic with (3) a mixture of polysilazane-type polymers with a number average molecular weight of 200-3000 and a viscosity adjusted to 100 Pa.s or lower at the impregnation temperature, prepared by mixing (1) one or more types of polysilazane-type polymers with a number average molecular weight of 200-3000 and a viscosity of less than 1 Pa.s at the impregnation temperature with (2) one or more types of polysilazane-type polymers with a number average molecular weight of 200-100,000 and having a viscosity of 1 Pa.s or higher or solid at the impregnation temperature, which are selected from polysilazanes whose main repeating unit is --[(SiH.sub.2).sub.n (NH).sub.r ]-- (where n and r are 1, 2 or 3), and copolymers, modified polymers and crosslinked polymers based thereon, and performing crosslinking curing and then firing, is performed for its conversion into a ceramic. The above polysilazane may be, for example, an inorganic polysilazane, an inorganic polysiloxazane, a polyorgano(hydro)silazane, a modified polysilazane or a polymetallosilazane. By performing the CVD coating before or after said process of impregnation, curing and firing, delamination of the fibers may be minimized.
    • PCT No.PCT / JP93 / 01730 Sec。 371日期:1994年7月25日 102(e)日期1994年7月25日PCT提交1993年11月26日PCT公布。 公开号WO94 / 12448 日期:1994年6月9日。重复使用(3)数均分子量为200-3000的聚硅氮烷型聚合物和粘度调节至100的混合物浸渍金属纤维或陶瓷纤维预制体或多孔陶瓷的方法 通过在浸渍温度下混合(1)数均分子量为200-3000和粘度小于1Pa.s的一种或多种聚硅氮烷型聚合物制备的浸渍温度下的Pa.s或更低, (2)一种或多种数均分子量为200-100,000,粘度为1Pa·s或更高的聚硅氮烷型聚合物或浸渍温度下的固体,其选自聚硅氮烷,其主要重复单元为 - [(SiH2)n(NH)r] - (其中n和r为1,2或3),并且基于其进行交联固化,然后进行烧结的共聚物,改性聚合物和交联聚合物进行转化为 陶瓷。 上述聚硅氮烷可以是例如无机聚硅氮烷,无机聚硅氮烷,聚有机(氢)硅氮烷,改性聚硅氮烷或聚金属硅氮烷。 通过在所述浸渍,固化和焙烧过程之前或之后进行CVD涂层,可以使纤维的分层最小化。
    • 10. 发明申请
    • Optical Communication Structure
    • 光通信结构
    • US20110105203A1
    • 2011-05-05
    • US12933928
    • 2009-03-04
    • Hiroshi NakagawaTakeshi IsodaKosuke Sasada
    • Hiroshi NakagawaTakeshi IsodaKosuke Sasada
    • H04M1/00
    • H01L31/12G02B6/002G02B6/0048G02B6/3604G02B6/4298G02B6/43H04B10/1143H04M1/0235
    • An optical communication structure for performing optical communication using optical signals between a first housing (2) and a second housing (3) slidable to each other includes: a first optical communication element (12) which is provided in the first housing (2) and configured to transmit the optical signal; a second optical communication element (13) which is provided in the second housing (3) and configured to receive the optical signal transmitted from the first optical communication element (12); a sliding module configured to allow the sliding movement of the housings and stop the sliding movement at predetermined stop positions set in advance; and a light guide plate (4) which is provided in one of the first housing (2) and the second housing (3) and configured to reflect the optical signal, and has the same number of reflecting portions (5) as the number of the stop positions.
    • 一种用于在可相互滑动的第一壳体和第二壳体(3)之间使用光信号执行光通信的光通信结构包括:第一光通信元件(12),设置在第一壳体(2)和 被配置为发送所述光信号; 第二光通信元件(13),设置在所述第二壳体(3)中并且被配置为接收从所述第一光通信元件(12)发送的光信号; 滑动模块,其构造成允许所述壳体的滑动运动并且在预先设定的预定停止位置处停止所述滑动运动; 以及导光板(4),其设置在所述第一壳体(2)和所述第二壳体(3)中的一个上并且被配置为反射所述光学信号,并且具有与所述光学信号的数量相同数量的反射部(5) 停止位置。