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    • 51. 发明授权
    • Image forming apparatus for transferring transfer residual toner onto image bearing member
    • 将转印残留调色剂转印到图像承载部件上的图像形成装置
    • US07978998B2
    • 2011-07-12
    • US12024274
    • 2008-02-01
    • Ken NakagawaKenji KanariMasaru ShimuraTakashi ShimadaTomoo AkizukiMasahiro Suzuki
    • Ken NakagawaKenji KanariMasaru ShimuraTakashi ShimadaTomoo AkizukiMasahiro Suzuki
    • G03G15/16
    • G03G21/0047G03G21/10G03G2221/1627
    • There is a charge member which charges secondary transfer remaining toner on an intermediate transfer member to a polarity opposite to a normal charge polarity. The transfer remaining toner charged by the charge member is moved in the direction opposite to that of normal toner by a transfer bias and moved from the intermediate transfer member onto an image bearing member. A BK station is arranged on the downstream of other stations. In a continuous BK monochromatic mode, by applying a reverse bias to transfer portions of the other stations and applying the transfer bias only to the BK station, waste toner can be collected into the BK station (simultaneously with the transfer). In a full-color mode, since each transfer bias is applied to all stations, the waste toner is collected into the station on the uppermost stream. Thus, the image bearing member for collecting the transfer remaining toner on the intermediate transfer member is made different according to the mode, thereby suppressing that the collection of the waste toner is concentrated on one image bearing member.
    • 存在对中间转印部件上的二次转印剩余调色剂充电至与正常电荷极性相反的极性的充电部件。 由充电元件充电的转印剩余调色剂通过转印偏压沿与正常调色剂相反的方向移动,并从中间转印部件移动到图像承载部件上。 其他车站下游设有BK车站。 在连续的BK单色模式中,通过施加反向偏压来转移其他工位的部分,并将转印偏压仅施加到BK工位,废粉可以被收集到BK工位(与转印同时)。 在全色模式中,由于每个转印偏压都施加到所有工位,废碳粉被收集到最上层的工位中。 因此,用于收集中间转印部件上的转印剩余调色剂的图像承载部件根据模式而不同,从而抑制废调色剂的收集集中在一个图像承载部件上。
    • 54. 发明申请
    • IMAGE FORMING APPARATUS FOR TRANSFERRING TRANSFER RESIDUAL TONER ONTO IMAGE BEARING MEMBER
    • 用于将传输残留色调剂转印到图像轴承部件上的图像形成装置
    • US20080187369A1
    • 2008-08-07
    • US12024274
    • 2008-02-01
    • Ken NakagawaKenji KanariMasaru ShimuraTakashi ShimadaTomoo AkizukiMasahiro Suzuki
    • Ken NakagawaKenji KanariMasaru ShimuraTakashi ShimadaTomoo AkizukiMasahiro Suzuki
    • G03G15/20
    • G03G21/0047G03G21/10G03G2221/1627
    • There is a charge member which charges secondary transfer remaining toner on an intermediate transfer member to a polarity opposite to a normal charge polarity. The transfer remaining toner charged by the charge member is moved in the direction opposite to that of normal toner by a transfer bias and moved from the intermediate transfer member onto an image bearing member. A BK station is arranged on the downstream of other stations. In a continuous BK monochromatic mode, by applying a reverse bias to transfer portions of the other stations and applying the transfer bias only to the BK station, waste toner can be collected into the BK station (simultaneously with the transfer). In a full-color mode, since each transfer bias is applied to all stations, the waste toner is collected into the station on the uppermost stream. Thus, the image bearing member for collecting the transfer remaining toner on the intermediate transfer member is made different according to the mode, thereby suppressing that the collection of the waste toner is concentrated on one image bearing member.
    • 存在对中间转印部件上的二次转印剩余调色剂充电至与正常电荷极性相反的极性的充电部件。 由充电元件充电的转印剩余调色剂通过转印偏压沿与正常调色剂相反的方向移动,并从中间转印部件移动到图像承载部件上。 其他车站下游设有BK车站。 在连续的BK单色模式中,通过施加反向偏压来转移其他工位的部分,并将转印偏压仅施加到BK工位,废粉可以被收集到BK工位(与转印同时)。 在全色模式中,由于每个转印偏压都施加到所有工位,废碳粉被收集到最上层的工位中。 因此,用于收集中间转印部件上的转印剩余调色剂的图像承载部件根据模式而不同,从而抑制废调色剂的收集集中在一个图像承载部件上。
    • 55. 发明授权
    • Method of recovering a cleaning agent
    • 回收清洗剂的方法
    • US07297315B2
    • 2007-11-20
    • US10768671
    • 2004-02-02
    • Kenji OtsukaTakashi ShimadaMinoru OsugiKei Kawaguchi
    • Kenji OtsukaTakashi ShimadaMinoru OsugiKei Kawaguchi
    • C01G3/00
    • C22B3/44B01J23/92B01J23/94B01J38/60B01J38/68C22B7/009C22B15/00Y02P10/214Y02P10/234
    • The invention provides a method of recovering a copper component or a manganese component from a cleaning agent containing copper oxide, a cleaning agent containing basic copper carbonate, a cleaning agent containing copper hydroxide, or a cleaning agent containing copper oxide and manganese oxide, the cleaning agents having been used for removing, through contact with a harmful gas, a phosphine contained as a harmful component in the harmful gas. Also, the invention provides a method of recovering a copper component or a manganese component from a cleaning agent containing basic copper carbonate, a cleaning agent containing copper hydroxide, or a cleaning agent containing copper oxide and manganese oxide, the cleaning agents having been used for removing, through contact with a harmful gas, a phosphine contained as a harmful component in the harmful gas. According to the present invention, the copper component and/or the manganese component can be effectively recovered from the cleaning agents in a recyclable form.
    • 本发明提供一种从含有氧化铜的清洗剂,含碱性碳酸铜的清洗剂,含有氢氧化铜的清洗剂或含有氧化铜和氧化锰的清洗剂中回收铜成分或锰成分的方法, 已经用于通过与有害气体接触除去在有害气体中作为有害成分含有的磷化氢的试剂。 另外,本发明提供了从含有碱性碳酸铜的清洗剂,含有氢氧化铜的清洗剂或含有氧化铜和氧化锰的清洗剂中回收铜成分或锰成分的方法,所述清洗剂已被用于 通过与有害气体的接触除去在有害气体中作为有害成分含有的磷化氢。 根据本发明,可以以可回收的形式从清洗剂中有效地回收铜成分和/或锰成分。
    • 58. 发明授权
    • Energy absorbing type steering device, and method and device for assembling the steering device
    • 能量吸收型转向装置,以及组装转向装置的方法和装置
    • US06840128B1
    • 2005-01-11
    • US10069398
    • 2000-07-28
    • Shigemi ShioyaSadato KitaTakashi ShimadaSeiji Sano
    • Shigemi ShioyaSadato KitaTakashi ShimadaSeiji Sano
    • B62D1/19F16F7/12B62D1/16
    • F16F7/125B62D1/192
    • Energy absorbing steering devices may include an outer cylindrical member (OU) that is press-fited around an inner shaft member (IN). The outer shape of the inner shaft member and the inner shape of the outer cylindrical member have a circular cross-section and the diameter of the inner shape of the outer cylinder member is larger than the diameter of the outer shape of the inner shaft member. A plurality of fine members (W) is disposed along the axial direction between the circular cross-sectional outer shape and the circular cross-sectional inner shape in order to provide a clearance (G) between the inner shaft member and the outer cylindrical member. The arrangement of the fine members may be modified in order to adjust the rigidity of relative movement along the axial direction of the outer cylindrical member and the inner shaft member.
    • 能量吸收转向装置可以包括围绕内轴构件(IN)冲压的外圆柱形构件(OU)。 内轴构件的外形和外筒构件的内部形状具有圆形横截面,外筒构件的内部形状的直径大于内轴构件外形的直径。 为了提供内轴构件和外筒状构件之间的间隙(G),在圆形截面外形和圆形横截面内部形状之间沿着轴向设置有多个精细构件(W)。 为了调整沿着外筒部件和内轴部件的轴向的相对移动的刚性,可以对精细部件的配置进行修改。
    • 59. 发明授权
    • Method of mounting elastic wave generator
    • 安装弹性波发生器的方法
    • US06804875B2
    • 2004-10-19
    • US10411278
    • 2003-04-11
    • Ryosuke TaniguchiShinichi HattoriTakahiro SakamotoTakashi ShimadaKanji Matsuhashi
    • Ryosuke TaniguchiShinichi HattoriTakahiro SakamotoTakashi ShimadaKanji Matsuhashi
    • H02K1500
    • G01V1/04B06B1/08G10K11/004Y10T29/49009Y10T29/4902Y10T29/49078Y10T29/4908
    • An elastic wave generator includes an excitation coil, a magnetostriction oscillator around which the excitation coil is wound and an oscillator support. The excitation coil is wound around the oscillator, which is made of laminated magnetostriction sheets having a positive strain characteristic, in which length varies directionally upon magnetic excitation. The oscillator support has a first support surface bearing against a first end surface of the magnetostriction oscillator, intersecting the direction along which the length of the magnetostriction oscillator changes and a second support surface shrink-fit against a second end surface of the magnetostriction oscillator, intersecting the direction along which the length of the magnetostriction oscillator changes. Thus, the changes in the length of the magnetostriction oscillator due to the magnetic excitation of the excitation coil appearing at the first and second end surfaces is directly supported by the first and second support surfaces. The magnetostriction oscillator is shrink-fit by cooling so it may be placed between the support surfaces while cooled.
    • 弹性波发生器包括励磁线圈,缠绕有励磁线圈的磁致伸缩振荡器和振荡器支撑。 励磁线圈缠绕在振荡器周围,振荡器由具有正应变特性的层叠磁致伸缩片制成,其中长度在磁激发时定向变化。 振荡器支撑件具有抵靠磁致伸缩振荡器的第一端面的第一支撑表面,与磁致伸缩振荡器的长度变化的方向相交,第二支撑表面与磁致伸缩振荡器的第二端面收缩配合, 磁致伸缩振荡器的长度沿着其方向改变。 因此,出现在第一和第二端面处的励磁线圈的磁激励引起的磁致伸缩振荡器长度的变化由第一和第二支撑表面直接支撑。 磁致伸缩振荡器通过冷却进行收缩配合,从而可以将其放置在支撑表面之间同时冷却。