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    • 1. 发明申请
    • EXTRACTOR AND IMAGING FORMING APPARATUS EMPLOYING THIS EXTRACTOR
    • 萃取器和成像装置使用该提取器
    • US20110103840A1
    • 2011-05-05
    • US12908941
    • 2010-10-21
    • Tomoyuki OdaTomohisa SodaHiroyuki Ueda
    • Tomoyuki OdaTomohisa SodaHiroyuki Ueda
    • G03G15/10B01D57/02
    • G03G15/104
    • An extractor separates a dispersoid (toner) and a dispersion medium (carrier liquid) from a liquid sample (liquid developer) containing the dispersoid and the dispersion medium and extracts these. The extractor has a first roller that carries a thin layer of the liquid sample containing the dispersoid and the dispersion medium on a circumferential surface thereof and rotates about a shaft. A separating member is in contact with the first roller and separates the dispersion medium from the thin layer carried on the first roller. A charger charges the dispersoid in the thin layer carried on the first roller at a position upstream of a contact position of the separating member with the first roller with respect to a rotating direction of the first roller. An electric field generator generates an electric field for causing the charged dispersoid to be attracted to the circumferential surface of the first roller.
    • 提取器从含有分散质和分散介质的液体样品(液体显影剂)中分离分散质(调色剂)和分散介质(载体液),并将其萃取。 提取器具有第一辊,其在其圆周表面上承载含有分散质和分散介质的液体样品的薄层,并围绕轴旋转。 分离构件与第一辊接触,并将分散介质与承载在第一辊上的薄层分离。 充电器在分离构件与第一辊的接触位置上游相对于第一辊的旋转方向对携带在第一辊上的薄层中的分散质进行充电。 电场发生器产生用于使带电分散质吸引到第一辊的圆周表面的电场。
    • 2. 发明授权
    • Density detection device and image forming apparatus
    • 密度检测装置和图像形成装置
    • US07869728B2
    • 2011-01-11
    • US12469445
    • 2009-05-20
    • Nobuhiro HoriuchiTomoyuki Oda
    • Nobuhiro HoriuchiTomoyuki Oda
    • G03G15/10
    • G03G15/105G01N9/00
    • In a density detection device, a casing includes an internal space. An inflow path is communicated with the internal space through an inlet facing the internal space. An outflow path is communicated with the internal space through an outlet facing the internal space. A base is provided in the internal space to block the liquid flowing from the inlet. The base has a top side positioned above the inlet. A movable member has a bottom side opposed to the top side of the base. The movable member is configured to move to cause the bottom side to be close to and away from the top side of the base. A density detection section is configured to detect density of a liquid layer formed between the bottom side and the top side while the bottom side is positioned close to the top side at predetermined distance.
    • 在密度检测装置中,壳体包括内部空间。 流入路径通过面向内部空间的入口与内部空间连通。 流出路径通过面向内部空间的出口与内部空间连通。 底座设置在内部空间中以阻挡从入口流出的液体。 底座的上侧位于入口的上方。 可移动部件具有与基部的顶侧相对的底侧。 可动构件被构造成移动以使底侧靠近和远离底座的顶侧。 密度检测部被配置为检测形成在底侧和顶侧之间的液体层的密度,同时底侧以预定距离位于靠近顶侧的位置。
    • 3. 发明授权
    • Developing unit and image forming device
    • 显影单元和成像装置
    • US07676181B2
    • 2010-03-09
    • US11536629
    • 2006-09-28
    • Hiroyuki UedaHidenori TakenakaTomoyuki OdaJumpei HoboNobuhiro HoriuchiKoji Murase
    • Hiroyuki UedaHidenori TakenakaTomoyuki OdaJumpei HoboNobuhiro HoriuchiKoji Murase
    • G03G15/10
    • G03G15/11G03G21/0088
    • The present invention discloses a developing unit that can block unnecessary supply of liquid developer to an image support member and can prevent waste of liquid developer, and an image forming device comprising the same. The developing unit includes a developing member that is in contact with an image support member and supplies the image support member with liquid developer, a developer supply member that supplies the developing member with liquid developer, and an unattached region forming member that forms at least an unattached region that is free of liquid developer on the developing member, the unattached region extending from the contact point between the developing member and the image support member and the contact point between the developing member and the developer supply member.
    • 本发明公开了一种显影单元,其可以阻止不必要的液体显影剂供应到图像支持构件,并且可以防止液体显影剂的浪费,以及包括该图像形成装置的图像形成装置。 显影单元包括与图像支撑构件接触并向图像支撑构件供应液体显影剂的显影构件,向显影构件供应液体显影剂的显影剂供应构件和形成至少一个 在显影构件上没有液体显影剂的未附着区域,从显影构件和图像支撑构件之间的接触点延伸的未附着区域以及显影构件和显影剂供应构件之间的接触点。
    • 4. 发明授权
    • Motorcycle engine and assembling method thereof
    • 摩托车发动机及其组装方法
    • US07578213B2
    • 2009-08-25
    • US11524185
    • 2006-09-21
    • Hidetoshi ArakawaKohei KatoTomoyuki Oda
    • Hidetoshi ArakawaKohei KatoTomoyuki Oda
    • F16H3/08
    • F16H3/089F16H2200/0052Y10T74/19223Y10T74/19279Y10T74/2186
    • An engine includes an engine case split into an upper case and a lower case. A crankshaft and a transmission input shaft are rotatably supported at a mating surface between the upper and lower cases, and a transmission output shaft rotated by the transmission input shaft is supported in the lower case. One side face of the lower case has a circular opening through which the transmission output shaft can be inserted from the outside. An eccentric bearing holder holding a bearing that rotatably supports one end of the transmission output shaft is mounted in the opening in a detachable manner from the outside. The axis of the transmission output shaft deviates from the center of the eccentric bearing holder toward the transmission input shaft. The inner diameter of the opening is larger than the outer diameter of the largest one of transmission driven gears of the transmission output shaft.
    • 发动机包括分为上壳体和下壳体的发动机壳体。 曲轴和变速器输入轴可旋转地支撑在上壳体和下壳体之间的配合表面处,并且由变速器输入轴旋转的变速器输出轴被支撑在下壳体中。 下壳体的一个侧面具有圆形开口,透射输出轴可以通过该开口从外部插入。 保持可旋转地支撑变速器输出轴的一端的轴承的偏心轴承座以可拆卸的方式从外部安装在开口中。 变速器输出轴的轴线偏离偏心轴承座的中心向传动输入轴。 开口的内径大于变速器输出轴的最大传动从动齿轮的外径。
    • 7. 发明授权
    • Multi-cylinder engine having communicating passages between cylinder bores
    • 多气缸发动机在气缸孔之间具有连通通道
    • US08667946B2
    • 2014-03-11
    • US13182606
    • 2011-07-14
    • Masaki MoriTomoyuki Oda
    • Masaki MoriTomoyuki Oda
    • F02B75/22
    • F02F1/00F02F7/0007
    • A multi-cylinder engine with a crankcase integrated cylinder block including a cylinder block having a plurality of cylinder bores, a plurality of crank chambers formed by an upper crankcase and a lower crankcase, a bulkhead that partitions between the cylinder bores and the crank chambers, and a honing release portion having a cylindrical honing release surface formed continuously with the cylinder bore in the upper crankcase and the bulkhead. The honing release surface forms an arcuate recessed portion in the bulkhead, the bulkhead is formed with a communication hole that includes a first opening edge on a side of the cylinder bore, a second opening edge on a side of the crank chamber having an opening width decreasing with a distance from the cylinder bore, and a third opening edge that extends substantially in parallel with the cylinder axis.
    • 一种具有曲轴箱一体式气缸体的多缸发动机,其包括具有多个气缸孔的气缸体,由上曲轴箱和下曲轴箱形成的多个曲柄室,在气缸孔与曲轴室之间分隔的隔板, 以及具有与上部曲轴箱和隔板中的气缸孔连续形成的圆柱形珩磨释放表面的珩磨释放部分。 珩磨释放表面在隔板中形成弓形凹部,隔板形成有连通孔,该连通孔包括在缸孔侧面上的第一开口边缘,曲柄室侧面上的第二开口边缘具有开口宽度 与气缸孔的距离减小,并且基本上平行于气缸轴线延伸的第三开口边缘。
    • 8. 发明申请
    • IMAGE FORMING APPARATUS
    • 图像形成装置
    • US20110206417A1
    • 2011-08-25
    • US13023760
    • 2011-02-09
    • Tomoyuki Oda
    • Tomoyuki Oda
    • G03G15/10
    • G03G15/104
    • An image forming apparatus includes a developing device, a liquid developer supplying device including a liquid developer flow path and supplying a liquid developer containing a solid content to the developing device through a discharge port of the liquid developer flow path, a storage container storing the liquid developer, a conveying mechanism capable of feeding the liquid developer from the storage container to the liquid developer flow path and feeding the liquid developer in the liquid developer flow path back to the storage container and a controller controlling the conveying mechanism. At the time of non-developing operation in which a toner image forming operation is not performed by the developing device, the controller controls the conveying mechanism to feed at least a part of the liquid developer present in the liquid developer flow path back to the storage container.
    • 图像形成装置包括显影装置,包括液体显影剂流动路径的液体显影剂供给装置,并且通过液体显影剂流路的排出口向显影装置供给含有固体成分的液体显影剂;储存容器, 显影剂,能够将液体显影剂从储存容器输送到液体显影剂流动路径并将液体显影剂流路中的液体显影剂供给到储存容器的输送机构和控制输送机构的控制器。 在不由显影装置进行调色剂成像操作的非显影操作时,控制器控制输送机构将存在于液体显影剂流路中的液体显影剂的至少一部分供给到储存器 容器。