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    • 1. 发明授权
    • Method of manufacturing organic electroluminescent display
    • 制造有机电致发光显示器的方法
    • US07186439B2
    • 2007-03-06
    • US10378929
    • 2003-03-05
    • Shingo NakanoHiroshi KannoMasaya Nakai
    • Shingo NakanoHiroshi KannoMasaya Nakai
    • B05D5/06
    • H01L51/56C23C14/12C23C14/24H01L51/001
    • A method of manufacturing an organic EL display in which organic EL devices are prevented from being promoted in degradation by interfaces that occur between the hole transporting layer and the luminescent layer and between the luminescent layer and the electron transporting layer during the formation of the organic EL devices. The material of the luminescent layer is evaporated from a first evaporation source. At that time, the first evaporation source is moved from one end of a glass substrate to the other. Consequently, the luminescent layer is formed evenly on the glass substrate. After the formation of the luminescent layer is completed, the material of the electron transporting layer is evaporated from a second evaporation source. The second evaporation source is moved as if the first evaporation source is, whereby the electron transporting layer is formed evenly.
    • 一种制造有机EL显示器的方法,其中有机EL器件在形成有机EL期间被防止在空穴传输层和发光层之间以及发光层和电子传输层之间发生的界面的劣化 设备。 发光层的材料从第一蒸发源蒸发。 此时,第一蒸发源从玻璃基板的一端移动到另一端。 因此,发光层均匀地形成在玻璃基板上。 在完成发光层的形成之后,电子传输层的材料从第二蒸发源蒸发。 第二蒸发源像第一蒸发源一样移动,由此电子传输层均匀地形成。
    • 5. 发明申请
    • Resistance welding-use electrode
    • 电阻焊用电极
    • US20070062914A1
    • 2007-03-22
    • US11524233
    • 2006-09-19
    • Motoki SajiMitsutoshi KamakuraMasaya Nakai
    • Motoki SajiMitsutoshi KamakuraMasaya Nakai
    • B23K11/30
    • B23K11/3081
    • In a conventional resistance welding-use electrode, a foot portion at the end is divided into three segments. An object such as a cap is inserted into a hole at the end. The foot portion is bent inward to hold the object by a force, and the object (cap) is pressed to a stem. Under this condition, a current is fed to perform resistance welding. A gap remains between the individual segments of the foot portion. Therefore, the current density is uneven, producing unevenness in the welding. A soft object may deform. The electrode wears and deforms due to repeated use, reducing its useful life. Because of the existence of the gap, pressing marks are sometimes formed in the welded portion. In the present invention, a permanent magnet is embedded at the end portion of the electrode to hold the object by magnetic force of the permanent magnet. Even when the foot portion at the end portion is closed, the inner diameter of the hole produced by the surrounding foot portion is designed to be larger than the outer diameter of the object, so that the pressing force is not applied to the object.
    • 在传统的电阻焊接用电极中,端部的脚部分为三段。 将诸如盖子的物体插入到端部的孔中。 脚部向内弯曲以通过力保持物体,并且将物体(帽)按压到杆上。 在这种情况下,馈送电流进行电阻焊接。 足部分的各段之间留有间隙。 因此,电流密度不均匀,产生焊接不均匀。 软物体可能变形。 电极由于重复使用而磨损和变形,从而减少其使用寿命。 由于存在间隙,有时在焊接部分形成压痕。 在本发明中,永磁体嵌入在电极的端部,以通过永久磁铁的磁力来保持物体。 即使当端部的脚部被封闭时,由周围的脚部产生的孔的内径被设计为大于物体的外径,使得不对物体施加按压力。
    • 6. 发明申请
    • ELECTROMAGNETIC PUMP
    • 电磁泵
    • US20140099220A1
    • 2014-04-10
    • US14124618
    • 2012-07-23
    • Masaya NakaiKota FukaoNoriomi Fujii
    • Masaya NakaiKota FukaoNoriomi Fujii
    • F04B53/20
    • F04B53/20B01D35/02B01D35/306F04B17/042
    • An electromagnetic pump configured with an electromagnetic portion that generates an electromagnetic force for pressing the piston, and an urging member that urges the piston in a direction opposite to the electromagnetic force. A strainer member including a disk-shaped portion which has a disk shape and in which a strainer surface is formed, and a side portion that extends from an outer peripheral edge of the disk-shaped portion. A suction check valve being capable of sucking the working fluid via the strainer surface. The piston, the urging member, the suction check valve, and the strainer member are sequentially inserted into the cylinder from a side opposite to the electromagnetic portion, and the cover member is attached so as to press the strainer surface.
    • 一种电磁泵,其构造有产生用于按压活塞的电磁力的电磁部分,以及沿与电磁力相反的方向推动活塞的推动构件。 一种过滤器构件,包括具有圆盘形状并且形成有过滤器表面的盘形部分,以及从所述盘形部分的外周边缘延伸的侧部。 吸入止回阀能够通过过滤器表面吸入工作流体。 活塞,推动构件,吸入止回阀和过滤器构件从与电磁部分相反的一侧依次插入到气缸中,并且安装盖构件以按压过滤器表面。
    • 9. 发明申请
    • Linear solenoid device and electromagnetic valve
    • 线性电磁阀和电磁阀
    • US20090140189A1
    • 2009-06-04
    • US12292249
    • 2008-11-14
    • Takahiro KokubuMasaya Nakai
    • Takahiro KokubuMasaya Nakai
    • F16K31/06H01F7/08
    • F16K31/0613H01F7/081H01F7/1607H01F2007/085H01F2007/163
    • A linear solenoid device comprising an energizable coil; a movable core; a first fixed core as a magnetic member having a recess capable of accommodating one end of the movable core; a second fixed core as a magnetic member having an inner peripheral surface slidably supporting the movable core; and an annular non-magnetic member coaxially connecting the first fixed core and the second fixed core to each other, wherein the linear solenoid device is capable of being driven by an attraction force applied to the movable core towards the first fixed core upon energization of the coil, and the non-magnetic member is formed so that an inner peripheral surface of the non-magnetic member functions together with the inner peripheral surface of the second fixed core as a sliding surface along which the movable core is slidable.
    • 一种包括可激励线圈的线性螺线管装置; 可动核心; 作为磁性构件的第一固定芯,具有能够容纳可动芯的一端的凹部; 作为磁性构件的第二固定芯,具有可滑动地支撑所述可动芯的内周面; 以及将所述第一固定铁心和所述第二固定铁心彼此同轴连接的环形非磁性部件,其中,所述线性电磁铁装置能够在所述线性螺线管装置通电时被施加到所述可动铁芯的吸引力驱动朝向所述第一固定铁芯 线圈,并且非磁性构件形成为使得非磁性构件的内周表面与第二固定芯的内周表面一起作为可移动芯可滑动的滑动表面。