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    • 3. 发明申请
    • OPTICAL FIBER, OPTICAL FIBER CORD, AND OPTICAL FIBER CABLE
    • 光纤,光纤线和光纤电缆
    • US20130094825A1
    • 2013-04-18
    • US13805465
    • 2012-03-19
    • Tatsuya KonishiTetsuya NakanishiTetsuya Hayashi
    • Tatsuya KonishiTetsuya NakanishiTetsuya Hayashi
    • G02B6/036
    • G02B6/03638G02B6/0365
    • A trench optical fiber that stably realizes a small transmission loss includes (1) a core extending in an axial direction while containing an axial center of the fiber, the core having a diameter d1 of 7.0 μm to 7.4 μm; (2) a first optical cladding layer surrounding the core and having an outside diameter d2 of 1.67 dl to 2.5 dl; (3) a second optical cladding layer surrounding the first optical cladding layer; and (4) a jacket layer surrounding the second optical cladding layer and containing fluorine having a concentration of 0.06 wt % or higher. A relative refractive index difference Δ1 of the core with respect to the jacket layer is 0.31% to 0.37%. A relative refractive index difference Δ2 of the first optical cladding layer with respect to the jacket layer is +0.02% or larger and smaller than Δ1. A relative refractive index difference Δ3 of the second optical cladding layer with respect to the jacket layer is −0.2% or smaller.
    • 稳定地实现小的传输损耗的沟槽光纤包括:(1)沿轴向延伸的芯,同时包含纤维的轴向中心,芯的直径d1为7.0μm至7.4μm; (2)包围芯的第一光学包层,外径d2为1.67dl至2.5dl; (3)围绕所述第一光学包层的第二光学包层; 和(4)围绕第二光学包层并且含有浓度为0.06重量%以上的氟的护套层。 芯相对于护套层的相对折射率差Δ1为0.31%至0.37%。 第一光学包层相对于护套层的相对折射率差Δ2为+ 0.02%以上且小于Delta1。 第二光学包覆层相对于护套层的相对折射率差Δ3为-0.2%以下。
    • 5. 发明授权
    • Optical fiber, optical fiber cord, and optical fiber cable
    • 光纤,光纤线和光缆
    • US08724954B2
    • 2014-05-13
    • US13805465
    • 2012-03-19
    • Tatsuya KonishiTetsuya NakanishiTetsuya Hayashi
    • Tatsuya KonishiTetsuya NakanishiTetsuya Hayashi
    • G02B6/02
    • G02B6/03638G02B6/0365
    • A trench optical fiber that stably realizes a small transmission loss includes (1) a core extending in an axial direction while containing an axial center of the fiber, the core having a diameter d1 of 7.0 μm to 7.4 μm; (2) a first optical cladding layer surrounding the core and having an outside diameter d2 of 1.67d1 to 2.5d1; (3) a second optical cladding layer surrounding the first optical cladding layer; and (4) a jacket layer surrounding the second optical cladding layer and containing fluorine having a concentration of 0.06 wt % or higher. A relative refractive index difference Δ1 of the core with respect to the jacket layer is 0.31% to 0.37%. A relative refractive index difference Δ2 of the first optical cladding layer with respect to the jacket layer is +0.02% or larger and smaller than Δ1. A relative refractive index difference Δ3 of the second optical cladding layer with respect to the jacket layer is −0.2% or smaller.
    • 稳定地实现小的传输损耗的沟槽光纤包括:(1)沿轴向延伸的芯,同时包含纤维的轴向中心,芯的直径d1为7.0μm至7.4μm; (2)包围芯的第一光学包层,外径d2为1.67d1〜2.5d1; (3)围绕所述第一光学包层的第二光学包层; 和(4)围绕第二光学包层并且含有浓度为0.06重量%以上的氟的护套层。 核心相对于护套层的相对折射率差Dgr1为0.31%至0.37%。 第一光学包覆层相对于护套层的相对折射率差Dgr2为+ 0.02%以上且小于&Dgr; 1。 第二光学包覆层相对于护套层的相对折射率差Dgr3为-0.2%以下。
    • 6. 发明授权
    • Chain guide mechanism
    • 导链机构
    • US08465385B2
    • 2013-06-18
    • US12980661
    • 2010-12-29
    • Masahiko KonnoKaori MoriTatsuya Konishi
    • Masahiko KonnoKaori MoriTatsuya Konishi
    • F16H7/08F16H7/18F01L1/02F01L1/46
    • F16H7/08F16H7/18F16H2007/0806F16H2007/0812F16H2007/0893
    • In a chain guide mechanism in which a pair of chain guides, at least one of which is a pivoted guide, are connected by mounting bosses a bridge so that the chain guides and bridge can be preassembled along with a chain and driving sprocket to form an integrated unit for installation in an engine, the chain guides include a chain-engaging guiding surface extending in a first direction from a location adjacent the mounting bosses, and a chain pressing portion extending in a second direction, opposite the first direction, substantially from the same location adjacent the mounting bosses. The pressing surfaces clamp the chain against the sprocket when a pivotable chain guide is rotated so that its chain engaging surface is moved away from the chain.
    • 在链条引导机构中,其中至少一个是枢转引导件的一对链条引导件通过安装凸台连接到桥上,使得链条引导件和桥梁可以与链条和驱动链轮一起预组装以形成 集成单元,用于安装在发动机中,链条引导件包括从邻近安装凸台的位置沿第一方向延伸的链条接合引导表面,以及链条按压部分,其沿与第一方向相反的第二方向延伸, 相邻位置与安装凸台相邻。 当可枢转的链条引导件旋转时,按压表面将链条克服链轮夹紧​​,使得其链条接合表面远离链条移动。
    • 7. 发明授权
    • Porous resin particle having hydroxy group or primary amino group and production method thereof
    • 具有羟基或伯氨基的多孔树脂颗粒及其制备方法
    • US08076383B2
    • 2011-12-13
    • US12265270
    • 2008-11-05
    • Tatsuya KonishiKenjiro Mori
    • Tatsuya KonishiKenjiro Mori
    • C08J9/28
    • C08F2/38C07K1/042C08K5/3725Y10T428/2987C08F212/08C08F212/36C08F214/14
    • The present invention relates to a method for producing a porous resin particle having a functional group X, the method including: dissolving a radical polymerizable aromatic monovinyl monomer and a radical polymerizable aromatic divinyl monomer together with a polymerization initiator in an organic solvent to prepare a monomer solution, dispersing the monomer solution in water in the presence of a dispersion stabilizer to obtain a suspension polymerization reaction mixture, and performing a suspension copolymerization while adding, when 0 to 80% of the entire polymerization time of the suspension copolymerization is passed, a mercapto compound represented by the formula (I): HS—R—X  (I) in which R represents an alkylene group having a carbon number of 2 to 12, and the functional group X represents a functional group selected from a hydroxy group and a primary amino group, to the suspension polymerization reaction mixture; and the porous resin particle obtained by the method.
    • 本发明涉及一种具有官能团X的多孔树脂颗粒的制造方法,该方法包括:将可自由基聚合的芳族单乙烯基单体和可自由基聚合的芳族二乙烯基单体与聚合引发剂一起溶解在有机溶剂中以制备单体 溶液,在分散稳定剂的存在下将单体溶液分散在水中,得到悬浮聚合反应混合物,进行悬浮共聚,同时加入悬浮聚合的全部聚合时间的0〜80%时,将巯基 由式(I)表示的化合物:其中R表示碳数为2〜12的亚烷基的HS-R-X(I),官能团X表示选自羟基和伯 氨基,悬浮聚合反应混合物; 和通过该方法获得的多孔树脂颗粒。
    • 8. 发明授权
    • Transmission chain for use in engine
    • 用于发动机的传动链
    • US07963872B2
    • 2011-06-21
    • US12125451
    • 2008-05-22
    • Takashi ToharaTatsuya Konishi
    • Takashi ToharaTatsuya Konishi
    • F16G13/04
    • F16G13/06F02B2275/08F16G13/04F16G13/08
    • The plates of transmission chain for an engine are formed with a guide-contacting configuration composed of spaced flat surfaces that come into sliding contact with a flat chain guide, and convex surfaces, continuous with and between the flat surfaces, for sliding contact with a convex chain guide. The convex surfaces are connected by a concave surface that, with the guide surface, forms an oil-retaining clearance. The radius of curvature of the convex curved surfaces of the plate preferably increases gradually from the location where they meet the flat surfaces toward the location where they meet the concave surface. The plates can have the same configuration on the side facing the inside of chain loop as on the side facing the outside of the chain loop.
    • 用于发动机的传动链板由具有与平的链条导向件滑动接触的间隔开的平坦表面构成的导向接触构造形成,以及与平坦表面连续并且在平坦表面之间的凸起表面,用于与凸起 链指南。 凸面通过与导向面形成保油间隙的凹面连接。 板的凸曲面的曲率半径优选从它们与平坦表面相遇的位置朝着与凹面相遇的位置逐渐增加。 这些板可以在面向链环内侧的一侧上具有与在链环外侧相一致的构型。