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    • 75. 发明授权
    • Method for manufacturing electrode
    • 电极制造方法
    • US6033722A
    • 2000-03-07
    • US37890
    • 1998-03-10
    • Takeshi KoikeShigeo KimuraSetuo KawagishiTsunekazu TeruiYoshiaki Hisagen
    • Takeshi KoikeShigeo KimuraSetuo KawagishiTsunekazu TeruiYoshiaki Hisagen
    • H01M4/06H01M4/02H01M4/04H01M6/08H01M6/52H01M10/54B05D5/12H01M4/46
    • H01M4/13H01M10/54H01M4/04H01M4/0404H01M4/0416H01M4/0435H01M10/0525H01M6/52Y02W30/84
    • An electrode plate in which electrode active material powder and an electrode mixture layer mainly composed of a thermoplastic binder are held on a conductive substrate is crushed. Then, the crushed materials are mixed with organic solvent so that a coating material made of the crushed electrode is prepared. The coating material made of the crushed electrode is applied to the surface of the conductive substrate so that an electrode is manufactured. As an alternative to this, an electrode mixture coating material made of electrode active material powder, thermoplastic resin and organic solvent is dried so that a solid electrode is obtained. Crushed materials obtained by crushing the solid electrode are mixed with organic solvent so that a coating material made of the crushed electrode is prepared. The coating material made of the crushed electrode is applied to the conductive substrate so that an electrode is manufactured. The manufacturing methods enable an electrode having excellent characteristics to be manufactured with a low cost by reusing a waste coating material generated because of a process for manufacturing electrodes or scraps of electrodes or electrodes included in spent batteries.
    • 将电极活性物质粉末和主要由热塑性粘合剂构成的电极混合物层保持在导电性基材上的电极板粉碎。 然后将破碎的材料与有机溶剂混合,制成由破碎电极制成的涂层材料。 将由破碎电极制成的涂层材料施加到导电基板的表面,从而制造电极。 作为替代,将由电极活性物质粉末,热塑性树脂和有机溶剂制成的电极混合物涂层干燥,从而获得固体电极。 将通过粉碎固体电极获得的破碎材料与有机溶剂混合,从而制备由破碎电极制成的涂层材料。 将由破碎电极制成的涂层材料施加到导电基板上,从而制造电极。 制造方法能够通过重复利用废电池中包含的用于制造电极或电极废料的电极或废料的方法而产生的废涂层材料,从而以低成本制造具有优异特性的电极。
    • 76. 发明授权
    • Method and apparatus for controlling the potential applied to a contact
charger in an image forming apparatus
    • 用于控制施加到图像形成装置中的接触充电器的电位的方法和装置
    • US5600413A
    • 1997-02-04
    • US280986
    • 1994-07-27
    • Shigeo Kimura
    • Shigeo Kimura
    • G03G21/10G03G15/02G03G21/00
    • G03G15/0275G03G15/0216
    • An image forming apparatus includes an image bearing member for bearing an image; a charging member contactable to the image bearing member to electrically charge the image bearing member, wherein a toner image is formed on the image bearing member using electric charge provided by the charging member; a transfer device for transferring the toner image from the image bearing member onto a transfer material; a controller for switching a potential applied to the charging member to form a blank area at a predetermined position of the transfer material; wherein the following is satisfied for formation of the blank area;X.ltoreq.t x VPS.ltoreq.10where VPS (mm/sec) is a moving speed of the image bearing member, t (sec) is a switching period of the controller, and X (mm) is a distance from a charge starting position to a charge ending position in a direction of movement of the image bearing member.
    • 图像形成装置包括用于承载图像的图像承载部件; 所述充电部件可与所述图像承载部件接触以对所述图像承载部件进行充电,其中使用由所述充电部件提供的电荷在所述图像承载部件上形成调色剂图像; 用于将调色剂图像从图像承载部件转印到转印材料上的转印装置; 用于切换施加到充电构件的电位以在转印材料的预定位置处形成空白区域的控制器; 其中对于形成空白区域满足以下条件:X
    • 77. 发明授权
    • Capacitive pressure sensor isolating electrodes from external environment
    • 电容式压力传感器隔离电极与外部环境
    • US5479827A
    • 1996-01-02
    • US319532
    • 1994-10-07
    • Shigeo KimuraYoshiyuki IshikuraTakashi KiharaTakashi Masuda
    • Shigeo KimuraYoshiyuki IshikuraTakashi KiharaTakashi Masuda
    • G01L9/00G01L13/06
    • G01L9/0075
    • A capacitive pressure sensor is provided which is capable of highly accurately and reliably measuring pressure over a wide range from an extremely low level to a high level without being affected by environmental changes. The capacitive pressure sensor is constructed of a first diaphragm; a second diaphragm arranged in parallel with the first diagram; a diaphragm support arranged between the first and second diaphragms for supporting the first and second diaphragms along the periphery thereof to define a space isolated from the outside; a plurality of pillars having respective ends fixed on the opposing surfaces of the first and second diaphragms for securely supporting the first and second diaphragms; a movable electrode formed on one of the opposing surfaces of the first and second diaphragms; and a fixed electrode formed in the space without contacting with the plurality of pillars and securely supported by the diaphragm support. Pressure values measured by the capacitive pressure sensor are substantially free from errors due to fluctuations in atmospheric pressure and errors caused by aging changes of residual stress on the bonding interface.
    • 提供一种电容式压力传感器,其能够在不受环境变化影响的情况下,从极低水平到高水平的高范围高度准确可靠地测量压力。 电容式压力传感器由第一隔膜构成; 与第一图平行设置的第二隔膜; 隔膜支撑件,布置在第一和第二隔膜之间,用于沿其周边支撑第一和第二隔膜以限定与外部隔离的空间; 多个支柱,其各自的端部固定在第一和第二隔膜的相对表面上,用于牢固地支撑第一和第二隔膜; 形成在所述第一和第二隔膜的相对表面之一上的可动电极; 以及固定电极,其形成在所述空间中,而不与所述多个支柱接触并且被所述隔膜支撑件牢固地支撑。 由电容压力传感器测量的压力值基本上没有由于大气压力的波动和由接合界面上的残余应力的老化变化引起的误差的误差。
    • 78. 发明授权
    • Bone assessment apparatus and method
    • 骨骼评估装置及方法
    • US5433203A
    • 1995-07-18
    • US278092
    • 1994-07-21
    • Shigeo KimuraNaoki Ohtomo
    • Shigeo KimuraNaoki Ohtomo
    • A61B8/00A61B8/08A61B10/00G01N29/11G01N29/34G01N29/04
    • G01N29/348A61B8/0875G01N29/11G01N2291/02483G01N2291/102
    • A bone assessment apparatus provides a precise bone assessment based on the attenuation factor of an ultrasonic wave which has passed through a bone of a patient. A transmitting transducer and a receiving transducer are positioned at either side of the bone respectively, and an ultrasonic wave is irradiated to the bone, and passes therethrough. A transmitter/receiver provides an attenuation spectrum of the ultrasonic wave and determines a reference frequency f.sub.p peculiar to the patient at which the attenuation factor is minimum. A gradient .DELTA. of the attenuation spectrum is calculated based on the difference between the attenuation factor .alpha..sub.p at the reference frequency f.sub.p and the attenuation factor .alpha..sub.q at a frequency f.sub.q which is spaced apart by a predetermined value from the reference frequency f.sub.p. A density index .rho..sub.I is also calculated which is a gradient of the attenuation spectrum per unit thickness of the bone.
    • 骨骼评估装置基于穿过患者的骨骼的超声波的衰减因子提供精确的骨骼评估。 发射换能器和接收换能器分别位于骨的两侧,并且超声波被照射到骨骼上并通过。 发射机/接收机提供超声波的衰减谱,并确定衰减因子最小的患者所特有的参考频率fp。 基于参考频率fp处的衰减因子αp与频率fq的衰减因子αq之间的差计算衰减频谱的梯度DELTA,该频率fq与参考频率fp间隔预定值。 还计算密度指数rho I,其是骨骼每单位厚度的衰减谱的梯度。
    • 79. 发明授权
    • Doll with head turning mechanism
    • 带头转机构的娃娃
    • US5417606A
    • 1995-05-23
    • US288020
    • 1994-08-10
    • Shigeo Kimura
    • Shigeo Kimura
    • A63H3/12
    • A63H3/12
    • Doll with head turning mechanism including a pair of opposed doll heads mounted on an upper plate mounted rotatably in an upper or neck opening provided on the trunk portion of the doll. The trunk portion is provided with openable and closeable internal cavity providing apparatus. One doll head is normally exposed and the other doll head is normally received and concealed in the internal cavity. Upon the operator of the doll rotating the normally exposed head, the normally exposed head is rotated, received and concealed in the internal cavity and the normally concealed head is rotated into an exposed position. The upper plate and the cavity providing apparatus are provided with engageable members which engage upon the doll heads being reversed and prevent the upper plate from rotating and returning the doll heads to their original positions under the influence of a bias member which biases the upper plate to normally maintain the doll heads in their original positions.
    • 具有头部转动机构的娃娃包括安装在可旋转地安装在玩偶的躯干部分上的上部或颈部开口的上板上的一对相对的人体头部。 主干部分设置有可开启且可关闭的内腔提供装置。 一个娃娃头通常被暴露,另一个玩偶头部通常被接收并隐藏在内腔中。 在玩偶的操作者旋转正常暴露的头部时,常规暴露的头部旋转,接收并隐藏在内部空腔中,并且正常隐藏的头部旋转到暴露位置。 上板和空腔提供装置设置有可接合的部件,其接合在所述玩偶头上被反转,并且防止上板旋转,并且在偏置构件的影响下将玩偶头部返回到其原始位置,偏压构件偏压上板到 通常将娃娃头保持原来的位置。