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    • 1. 发明申请
    • METHOD FOR CARBURIZING TANTALUM MEMBER, AND TANTALUM MEMBER
    • 用于加工TANTALUM会员和TANTALUM会员的方法
    • US20120067462A1
    • 2012-03-22
    • US13322936
    • 2010-05-25
    • Yoshihisa AbeMasanari WatanabeOsamu Tamura
    • Yoshihisa AbeMasanari WatanabeOsamu Tamura
    • C23C8/64
    • C23C8/64
    • Provided is a method for carburizing a tantalum member whereby the tantalum member is less deformed by carburization and can be carburized with good flatness of the planar part thereof and in a uniform manner. The method is a method for subjecting a tantalum member 1 made of tantalum or a tantalum alloy and having a planar part 1a to a carburization process for allowing carbon to penetrate the member 1 from the surface toward the inner portion thereof and includes the steps of: setting the tantalum member 1 in a chamber 3 containing a carbon source by supporting the planar part 1a on a plurality of support rods 6 tapered at distal ends 6a thereof; and subjecting the tantalum member 1 to a carburization process by reducing in pressure and heating the interior of the chamber 3 to allow carbon derived from the carbon source to penetrate the tantalum member 1 from the surface thereof.
    • 提供了一种钽构件的渗碳方法,由此钽构件通过渗碳而变形较小,并且可以以均匀的方式使其平面部分具有良好的平坦度渗碳。 该方法是使由钽或钽合金制成的具有平面部分1a的钽元件1经受渗碳处理以使碳从表面向内部渗入元件1的方法,包括以下步骤: 将钽构件1设置在容纳碳源的室3中,通过将平面部1a支撑在多个在其远端6a处成锥形的支撑杆6上; 并且通过降低压力并对室3的内部进行加热,使钽构件1进行渗碳处理,以使来自碳源的碳从其表面渗入钽构件1。
    • 2. 发明授权
    • Method for carburizing tantalum member, and tantalum member
    • 钽构件渗碳方法和钽构件
    • US08986466B2
    • 2015-03-24
    • US13322936
    • 2010-05-25
    • Yoshihisa AbeMasanari WatanabeOsamu Tamura
    • Yoshihisa AbeMasanari WatanabeOsamu Tamura
    • C23C8/22C21D9/00C23C8/64
    • C23C8/64
    • Provided is a method for carburizing a tantalum member whereby the tantalum member is less deformed by carburization and can be carburized with good flatness of the planar part thereof and in a uniform manner. The method is a method for subjecting a tantalum member 1 made of tantalum or a tantalum alloy and having a planar part 1a to a carburization process for allowing carbon to penetrate the member 1 from the surface toward the inner portion thereof and includes the steps of: setting the tantalum member 1 in a chamber 3 containing a carbon source by supporting the planar part 1a on a plurality of support rods 6 tapered at distal ends 6a thereof; and subjecting the tantalum member 1 to a carburization process by reducing in pressure and heating the interior of the chamber 3 to allow carbon derived from the carbon source to penetrate the tantalum member 1 from the surface thereof.
    • 提供了一种钽构件的渗碳方法,由此钽构件通过渗碳而变形较小,并且可以以均匀的方式使其平面部分具有良好的平坦度渗碳。 该方法是使由钽或钽合金制成的具有平面部分1a的钽构件1经受渗碳处理以使碳从表面向内部渗入构件1的方法包括以下步骤: 将钽构件1设置在容纳碳源的室3中,通过将平面部1a支撑在多个在其远端6a处成锥形的支撑杆6上; 并且通过降低压力并对室3的内部进行加热,使钽构件1进行渗碳处理,以使来自碳源的碳从其表面渗入钽构件1。
    • 3. 发明授权
    • Area determination method, image compression method, image compression apparatus, and recording medium
    • 区域确定方法,图像压缩方法,图像压缩装置和记录介质
    • US08311333B2
    • 2012-11-13
    • US12361641
    • 2009-01-29
    • Toshihiro MoriOsamu Tamura
    • Toshihiro MoriOsamu Tamura
    • G06K9/36G06K9/42
    • H04N1/40062G06K9/00456H04N1/642
    • First, a binary image is generated by binarizing an image. Next, a binary pixel ratio, that is a ratio of a binary pixel quantity that is a quantity of dotted pixels included in a specific area of the binary image to a total quantity of pixels included in the specific area of the binary image, is found. Then, a thin-line image is generated by performing a line-thinning process on the specific area. After that, a thin-line pixel ratio that is a ratio of the quantity of dotted pixels included in the generated thin-line image to the binary pixel quantity is found, and the specific area is determined to be a map area or a photograph area based on the calculated binary pixel ratio and the calculated thin-line pixel ratio.
    • 首先,通过二值化图像生成二进制图像。 接下来,找到作为二进制图像的特定区域中包含的虚线像素量的二进制像素量与包含在二值图像的特定区域中的像素总量的比率的二进制像素比 。 然后,通过对特定区域进行线间隔处理来生成细线图像。 之后,找到作为生成的细线图像中包含的点状像素的量与二进制像素量的比例的细线像素比,并且确定特定区域为地图区域或照片区域 基于计算的二进制像素比和计算的细线像素比。
    • 4. 发明授权
    • Organic electroluminescent element sealing composition and organic light-emitting device
    • 有机电致发光元件密封组合物和有机发光装置
    • US08304991B2
    • 2012-11-06
    • US12971404
    • 2010-12-17
    • Koji OkawaOsamu Tamura
    • Koji OkawaOsamu Tamura
    • H01J1/63C08L83/07
    • H05B33/04C08G77/12C08G77/20C08L83/04H01L51/5246H01L51/5253
    • This organic electroluminescent element sealing composition contains an addition reaction curing type silicone composition which is liquid at normal temperature and has a curing temperature of 100 degrees C. or below and a moisture content of 400 ppm or less. The addition reaction curing type silicone composition contains (A) polyorganosiloxane having an average of 0.2 to 5 alkenyl groups bonded to silicon atoms in one molecule, (B) polyorganohydrogensiloxane having at least two or more hydrogen atoms bonded to silicon atoms in one molecule, and (C) a platinum-based catalyst. The organic electroluminescent element sealing composition can prevent deterioration of the organic electroluminescent element and can provide the organic light-emitting device having a good light-emitting property for a long period.
    • 该有机电致发光元件密封组合物含有在常温下为液态,固化温度为100℃以下,水分为400ppm以下的加成反应固化型硅酮组合物。 加成反应固化型硅氧烷组合物含有(A)在1分子中平均具有与硅原子键合的2〜5个烯基的聚有机硅氧烷,(B)在1分子中具有与硅原子键合的氢原子中的至少2个以上的聚有机氢硅氧烷,以及 (C)铂系催化剂。 有机电致发光元件密封组合物可以防止有机电致发光元件的劣化,并且可以长时间地提供具有良好的发光特性的有机发光器件。
    • 5. 发明申请
    • Light oil composition
    • 轻油组成
    • US20120011920A1
    • 2012-01-19
    • US13200350
    • 2011-09-23
    • Yasutoshi IguchiHideaki SuganoOsamu Tamura
    • Yasutoshi IguchiHideaki SuganoOsamu Tamura
    • G01N30/72
    • C10L1/08
    • The invention provides a gas oil composition wherein the molar ratio of isoparaffins with carbon number of m and two or more branches to isoparaffins with carbon number of m and one branch within the range of C10-21 is 0.05-3.5, wherein m is an integer of 10-21, and the molar ratio of isoparaffins with carbon number of n and two or more branches to isoparaffins with carbon number of n and one branch within the range of C22-25 is 0.1-10.0, wherein n is an integer of 22-25. The invention also provides a gas oil composition wherein the molar ratio of isoparaffins with carbon number of m and two or more branches to isoparaffins with carbon number of m and one branch within the range of C10-23 is 0.05-4.0, wherein m is an integer of 10-23, and the distillate volume at a distillation temperature of 250° C. (E250) is 15-65%.
    • 本发明提供一种瓦斯油组合物,其中碳原子数为m和两个或多个分支的异链烷烃与碳数为m的异链烷烃与一个分支在C10-21的范围内的摩尔比为0.05-3.5,其中m为整数 为10-21,碳原子数n和两个或多个分支的异链烷烃与碳数为n的异链烷烃和C22-25的一个分支的摩尔比为0.1-10.0,其中n为22的整数 -25。 本发明还提供了一种瓦斯油组合物,其中碳数为m和两个或更多个分支的异链烷烃与碳数为m和一个分支在C10-23范围内的异链烷烃的摩尔比为0.05-4.0,其中m为 蒸馏温度为250℃的馏出物体积(E250)为15-65%。
    • 10. 发明申请
    • IMAGE FORMING APPARATUS
    • 图像形成装置
    • US20100226678A1
    • 2010-09-09
    • US12697311
    • 2010-02-01
    • Ryuichi SATOOsamu TamuraNoriyoshi TsuchiyaYoshiyuki Takaishi
    • Ryuichi SATOOsamu TamuraNoriyoshi TsuchiyaYoshiyuki Takaishi
    • G03G15/00B65H5/00B65H7/02
    • B65H5/26B65H3/44B65H29/60B65H2301/51256B65H2402/10B65H2601/324B65H2801/06G03G15/234G03G15/6529
    • An image forming apparatus includes: an image forming unit that forms an image on a first sheet; a fixing unit that fixes the image on the first sheet; a discharging unit that discharges the first sheet and a second sheet; a first transporting path that transports the first sheet on which the image is fixed to the discharging unit; a branch path that is branched from the first transporting path downstream of the fixing unit in a sheet transporting direction, the first sheet being transported to the branch path from the first transported path; a second transporting path that transports the second sheet in a direction opposite to the sheet transporting direction to the discharging unit; a plurality of sheet stock units in which sheets are stocked; a first sheet feed unit that feeds the first sheet from at least one of the plurality of sheet stock units to the first transporting path; and a second sheet feed unit that feeds the second sheet from at least one of the plurality of sheet stock units to the second transporting path.
    • 图像形成装置包括:图像形成单元,其在第一片材上形成图像; 固定单元,其将图像固定在第一片材上; 排出单元,其排出第一片和第二片; 第一输送路径,其将图像固定在其上的第一片材​​输送到排出单元; 从所述定影单元的下游侧的第一输送路径沿纸张输送方向分支的分支路径,所述第一纸张从所述第一输送路径被输送到所述分支路径; 第二输送路径,将第二纸张沿与纸张输送方向相反的方向输送到排出单元; 存放有片材的多个片材单元; 第一片材进给单元,将第一片材从多个片材原料单元中的至少一个供给到第一输送路径; 以及第二片材进给单元,其将所述第二片材从所述多个片材原料单元中的至少一个进给到所述第二输送路径。