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    • 11. 发明授权
    • Image forming method
    • 图像形成方法
    • US5532101A
    • 1996-07-02
    • US526564
    • 1995-09-11
    • Keita NozawaSatoshi YoshidaTsutomu Kukimoto
    • Keita NozawaSatoshi YoshidaTsutomu Kukimoto
    • G03G9/083G03G9/097G03G13/16G03G15/16G03G21/10
    • G03G9/09716G03G13/16G03G15/167G03G9/0834
    • An image forming method, including steps of: charging a photosensitive member; exposing the photosensitive member so that an electrostatically charged image is formed; developing the electrostatically charged image so that a toner image is formed; transferring the toner image to a transfer member by transfer means; and cleaning residual toner particles on the photosensitive member by cleaning means after the toner image has been transferred, wherein the photosensitive member rotates at peripheral speed V (mm/sec); the transfer means is disposed so that the distance from a developing position on the photosensitive member to a transfer position in a direction of rotation of the photosensitive member is d.sub.1 (mm); d.sub.1 /v is 0.17 sec. or less; and developing the electrostatically charged image with toner having a triboelectric charge of .vertline.5.vertline. to .vertline.50.vertline. .mu.c/g and containing 30% by number or less of toner particles having sizes below 4 .mu.m.
    • 一种图像形成方法,包括以下步骤:对感光构件充电; 曝光感光构件,使得形成静电荷图像; 显影静电电荷的图像,从而形成调色剂图像; 通过转印装置将调色剂图像转印到转印部件上; 并且在调色剂图像转印之后通过清洁装置清洁感光构件上的残留调色剂颗粒,其中感光构件以圆周速度V(mm / sec)旋转; 传送装置设置成使得从感光构件上的显影位置到感光构件的旋转方向上的转印位置的距离为d1(mm); d1 / v为0.17秒。 或更少; 并用具有| 5 |的摩擦电荷的调色剂显影静电电荷的图像 到| 50 | mu c / g,含有30%以下的尺寸在4μm以下的调色剂颗粒。
    • 20. 发明授权
    • Method for manufacturing sealed battery and sealed battery manufactured thereby
    • 由此制造密封电池和密封电池的方法
    • US08017267B2
    • 2011-09-13
    • US11607891
    • 2006-12-04
    • Satoshi Yoshida
    • Satoshi Yoshida
    • H01M2/08
    • H01M2/08H01M2/0426H01M10/0431Y10T29/4911Y10T29/49114
    • A method for manufacturing a sealed battery according to one embodiment of this invention includes a first step of using an outer can 15 having an opening, and a sealing plate 16 having a flange provided with a groove 22 around or on a part of a fitting face of the sealing plate 16 with the outer can 15, and inserting the sealing plate 16 into the opening of the outer can 15 so that a top face of the outer can 15 is approximately flush with a top face of the flange of the sealing plate 16, and a second step of welding together the outer can 15 and the sealing plate 16 by radiating a high energy ray to the fitting portion therebetween. The invention thus makes it possible to provide a method for manufacturing a sealed battery in which a weld formed by welding a sealing plate fitted into an opening of an outer can of a battery with a laser or other high energy rays has a large breaking strength, and a sealed battery manufactured thereby.
    • 根据本发明的一个实施例的用于制造密封电池的方法包括使用具有开口的外罐15的第一步骤和密封板16,该密封板16具有围绕配合面的一部分周围设置有槽22的凸缘 密封板16与外罐15接合,并将密封板16插入外罐15的开口中,使得外罐15的顶面与密封板16的凸缘的顶面大致齐平 以及通过向其间的配合部射出高能量射线而将外罐15和密封板16焊接在一起的第二工序。 因此,本发明使得可以提供一种用于制造密封电池的方法,其中通过用激光或其它高能射线焊接装配到电池的外罐的开口中的密封板形成的焊接具有大的断裂强度, 以及由此制造的密封电池。