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    • 4. 发明授权
    • Reducing toner adhesion to a development device of an image forming apparatus
    • 降低调色剂对图像形成装置的显影装置的附着力
    • US09116460B2
    • 2015-08-25
    • US14092879
    • 2013-11-27
    • Yasuhide MatsunoNaoki NakatakeYuji NagatomoTakahiro Sanada
    • Yasuhide MatsunoNaoki NakatakeYuji NagatomoTakahiro Sanada
    • G03G15/08G03G15/043
    • G03G15/0812G03G15/043
    • An image forming apparatus includes a latent image forming device that forms a latent image, a latent image carrier that carries the latent image, a development device that develops the latent image, and a controller. The development device includes a developer carrier that faces the latent image carrier and carries toner on a rotary surface thereof that rotates in a rotation direction perpendicular to a width direction of the developer carrier, and a regulation member that regulates the thickness of a layer of the toner on the surface of the developer carrier. The controller moves the toner on lateral end regions in the width direction of the surface of the developer carrier toward the latent image carrier. The end regions are located outside a maximum image forming region within a regulation member facing region of the surface of the developer carrier facing the regulation member.
    • 图像形成装置包括形成潜像的潜像形成装置,承载潜像的潜像载体,显影潜像的显影装置和控制器。 显影装置包括:显影剂载体,其面向潜像载体,并在与旋转方向垂直于显影剂载体的宽度方向旋转的旋转表面上承载调色剂;以及调节部件,其调节 显影剂载体表面上的调色剂。 控制器将显影剂载体的表面的宽度方向上的侧端区域上的调色剂移动到潜像载体。 端部区域位于显影剂载体的面向调节构件的表面的调节构件面向区域内的最大图像形成区域的外侧。
    • 5. 发明授权
    • Torque and index detection apparatus
    • 扭矩和指标检测装置
    • US08528422B2
    • 2013-09-10
    • US13231127
    • 2011-09-13
    • Takahiro SanadaKen OkuyamaYukio IkedaYukitoshi Terasaka
    • Takahiro SanadaKen OkuyamaYukio IkedaYukitoshi Terasaka
    • G01L3/02
    • G01L5/221B62D6/10B62D15/0215B62D15/0245G01L3/104
    • A torque and index detection apparatus includes a torque sensing section that senses torque exerted on a connecting shaft connecting a first and second shafts by a pair of magnetic sensing elements whose magnetic sensing directions are opposite, and a reference rotational position sensing section that senses a reference rotational position of the second shaft by the magnetic sensing elements. The reference rotational position sensing section includes a pair of magnets provided in the circumferential direction of the second shaft with like magnetic poles facing each other, a first magnetic part that is located between the magnets and the magnetic sensing elements, rotates integrally with the second shaft, and forms a magnetic path for magnetic flux of the magnets in the reference rotational position, and a second magnetic part that is provided between the magnetic sensing elements, and passes the magnetic flux from the first magnetic part uniformly to the magnetic sensing elements.
    • 转矩和转向检测装置包括转矩感测部,其感测通过一对磁感应方向相反的磁感应元件连接第一和第二轴的连接轴施加的扭矩,以及感测参考的基准旋转位置感测部 第二轴由磁感测元件的旋转位置。 参考旋转位置检测部分包括在第二轴的周向设置的一对磁体,其具有彼此面对的相同的磁极,位于磁体和磁感测元件之间的第一磁性部件与第二轴线一体地旋转 并且形成用于参考旋转位置中的磁体的磁通的磁路,以及设置在磁感测元件之间的第二磁性部分,并且将来自第一磁性部分的磁通量均匀地传递到磁感测元件。
    • 9. 发明授权
    • Torque sensor
    • 扭矩传感器
    • US07086296B2
    • 2006-08-08
    • US11219583
    • 2005-09-01
    • Takahiro SanadaMasayuki Yamamoto
    • Takahiro SanadaMasayuki Yamamoto
    • G01L3/02G01L3/10G01L3/12G01L3/14
    • B62D6/10G01L3/105
    • In a torque sensor, a first detection tube (13) made from magnetic material covers a cylindrical magnetic leak prevention member (12) that is made from nonmagnetic material and covers a first shaft (3) made from magnetic material. Magnetic resistance to magnetic flux, which passes through one end of the first detection tube (13) and one end of a second detection tube (14) that is made from magnetic material and rotates together with a second shaft (4), changes according to elastic relative rotation of the two shafts (3, 4) corresponding to transmitted torque, by providing a plurality of teeth (13a, 14a) along the circumferential direction at the one end of each detection tube (13, 14). The first shaft (3) and the first detection tube (13) are integrated with the magnetic leak prevention member (12) so that they can rotate together, by being inserted in a mold for forming the magnetic leak prevention member (12) before the synthetic resin material is poured into the mold. The circumferential width of each resin holding space (13A) between the teeth (13a) arranged along the circumferential direction at one end of the first detection tube (13) decreases gradually toward the other end of the first detection tube (13). The synthetic resin material solidified in the resin holding spaces (13A) is pressed against the teeth (13a) due to shrinkage thereof.
    • 在扭矩传感器中,由磁性材料制成的第一检测管(13)覆盖由非磁性材料制成并覆盖由磁性材料制成的第一轴(3)的圆筒形防漏件(12)。 通过第一检测管(13)的一端和由磁性材料制成并与第二轴(4)一起旋转的第二检测管(14)的一端的磁通阻力根据 通过在每个检测管(13,14)的一端沿圆周方向设置多个齿(13a,14a),两个轴(3,4)的弹性相对转动对应于传递转矩。 第一轴(3)和第一检测管(13)与防漏磁部件(12)一体化,使得它们可以一起旋转,通过插入到用于形成防漏磁部件(12)的模具中 将合成树脂材料倒入模具中。 在第一检测管(13)的一端沿着圆周方向布置的齿(13a)之间的每个树脂保持空间(13A)的周向宽度朝向第一检测管(13)的另一端逐渐减小。 在树脂保持空间(13A)中固化的合成树脂材料由于其收缩而压在齿(13a)上。