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    • 2. 发明授权
    • Rotary brake part
    • 旋转制动器部件
    • US06290031B1
    • 2001-09-18
    • US09500812
    • 2000-02-10
    • Koji NakamuraKatsuhiro ShibataKatsuhiro Kitamura
    • Koji NakamuraKatsuhiro ShibataKatsuhiro Kitamura
    • F16D6902
    • F16D65/10F16D69/02F16D2069/002F16D2200/003F16D2200/006
    • To inhibit the excessive wearing of a friction contact surface forming portion of a brake drum and a friction member by the abrading action of a worn powder and the like, and to reinforce the friction contact surface forming portion, in a drum body of a brake drum, an annular friction contact surface forming section includes a plurality of composite portions disposed in a circumferential direction thereof, each comprising a metal matrix and a large number of dispersions, and a plurality of metal portions formed only of a metal. Thus, it is possible to force a worn powder and the like into each of the metal portions of the friction contact surface forming section by the urging force of the friction member during a braking operation to retain the worn powder and the like.
    • 为了通过磨损的粉末等的磨损作用来抑制制动鼓和摩擦构件的摩擦接触面形成部分的过度磨损,并且在制动鼓的鼓体中加强摩擦接触表面形成部分 环状的摩擦接触面形成部包括沿圆周方向设置的多个复合部,每个复合部包括金属基体和大量分散体,以及仅由金属形成的多个金属部分。 因此,可以在制动操作期间通过摩擦构件的推动力将磨损的粉末等强制到摩擦接触表面形成部分的每个金属部分中,以保持磨损的粉末等。
    • 6. 发明授权
    • Monolith supporting structure for use in catalytic converter
    • 用于催化转化器的单片支撑结构
    • US06685888B1
    • 2004-02-03
    • US09527466
    • 2000-03-17
    • Katsuhiro ShibataKen OouchiHidetoshi ItouKimiyoshi Nishizawa
    • Katsuhiro ShibataKen OouchiHidetoshi ItouKimiyoshi Nishizawa
    • B01D5334
    • F01N3/2853F01N3/2867
    • For resiliently and safely supporting a monolith in a housing, a supporting structure is proposed. An annular seat structure is defined in the housing. An annular resilient washer is made of wire mesh and is put on the annular seat structure for supporting thereon a circular peripheral edge of the monolith. A biasing structure biases the monolith toward the annular resilient washer to compress the washer. The washer has a generally rectangular cross section and has a chamfered surface around a circular outer surface thereof. The chamfered surface is positioned radially outside the circular peripheral edge of the monolith. With this, even when compressed by the monolith, the washer is prevented from producing a biasing force for pulling the circular peripheral edge of the monolith radially outward, and thus, damage of the edge is suppressed.
    • 为了弹性地和安全地将整体支撑在壳体中,提出了一种支撑结构。 在壳体中限定了环形座椅结构。 环形弹性垫圈由金属丝网制成,并放置在环形座椅结构上,用于在其上支撑整料的圆形周边边缘。 偏压结构将整料朝向环形弹性垫圈偏压以压紧垫圈。 垫圈具有大致矩形的横截面并且在其圆形外表面周围具有倒角表面。 倒角表面位于整料的圆形周边的径向外侧。 由此,即使在被整体压缩的情况下,也能够防止垫圈产生用于将整体的圆形周缘径向向外拉的偏压力,因此能够抑制边缘的损伤。
    • 8. 发明授权
    • Exhaust gas purification device
    • 废气净化装置
    • US07356986B2
    • 2008-04-15
    • US11314079
    • 2005-12-22
    • Makoto AidaKatsuhiro Shibata
    • Makoto AidaKatsuhiro Shibata
    • F01N3/00
    • F01N3/2867F01N13/008F01N13/0097
    • An exhaust gas purification device (6) comprises: first and second catalyst carriers (21, 22) interposed in an exhaust passage (8) of an engine (1), which purify an exhaust gas; a case (20) provided in the exhaust passage, which houses the first and second catalyst carriers (21, 22) in series in an exhaust gas flow direction; an annular carrier holder (24) interposed between the first and second catalyst carriers (21, 22), which holds the first and second catalyst carriers (21, 22) via a buffering member (23) and has an opening (34) which connects an inner peripheral side and an outer peripheral side; a sensor (10) which detects the state of the exhaust gas flowing through the interior of the case (20); and a sensor attachment portion (26) provided in the case (20), which connects the interior and exterior of the case (20) in an orientation that is substantially orthogonal to the exhaust gas flow direction. The sensor attachment portion (26) is provided in a position corresponding to the opening (34) when the carrier holder (24) is housed in the case.
    • 排气净化装置(6)包括:插入发动机(1)的排气通道(8)中的第一和第二催化剂载体(21,22),其净化废气; 设置在所述排气通路中的在排气流动方向上串联容纳所述第一催化剂载体和所述第二催化剂载体的壳体, 插入在第一和第二催化剂载体(21,22)之间的环形载体保持器(24),其经由缓冲构件(23)保持第一和第二催化剂载体(21,22),并且具有连接的开口(34) 内周侧和外周侧; 传感器(10),其检测流过所述壳体(20)的内部的废气的状态; 以及设置在壳体(20)中的传感器附接部分(26),其以基本上垂直于废气流动方向的方向连接壳体(20)的内部和外部。 传感器安装部分(26)设置在与承载架(24)容纳在壳体中时与开口(34)相对应的位置。
    • 10. 发明授权
    • Manufacture of solid state imager having plurality of photosensors per each pixel
    • 每个像素具有多个光电传感器的固态成像器的制造
    • US06929972B2
    • 2005-08-16
    • US10858281
    • 2004-06-02
    • Yutaka TakeuchiKatsuhiro Shibata
    • Yutaka TakeuchiKatsuhiro Shibata
    • H01L27/148H01L31/10H04N5/335H04N5/369H04N5/372H01L21/00
    • H01L27/14812
    • A second conductivity type well is formed in a first conductivity type semiconductor substrate. Vertical CCD channels of the first conductivity type are formed in the second conductivity type well. Vertical transfer electrodes are formed above the vertical CCD channels to form vertical CCDs along with the vertical CCD channels. A first impurity diffusion layer is formed in the well by implanting first conductivity type impurities along a first direction crossing the normal direction of the semiconductor substrate. A second impurity diffusion layer is formed in the well by implanting first conductivity type impurities along a second direction crossing the normal direction of the semiconductor substrate. A third impurity diffusion layer of the second conductivity type is formed between the first and second impurity diffusion layer. A fourth impurity diffusion layer of the second conductivity type is formed in the well above the first to third impurity diffusion layers.
    • 在第一导电型半导体衬底中形成第二导电类型阱。 在第二导电类型井中形成第一导电类型的垂直CCD通道。 在垂直CCD通道上形成垂直传输电极,以形成垂直的CCD通道。 通过沿着与半导体衬底的法线方向交叉的第一方向注入第一导电型杂质,在阱中形成第一杂质扩散层。 通过沿着与半导体衬底的法线方向交叉的第二方向注入第一导电型杂质,在阱中形成第二杂质扩散层。 在第一和第二杂质扩散层之间形成第二导电类型的第三杂质扩散层。 在第一至第三杂质扩散层上方的阱中形成第二导电类型的第四杂质扩散层。