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    • 41. 发明授权
    • Evaporated fuel handling apparatus
    • 蒸发燃料处理设备
    • US08887696B2
    • 2014-11-18
    • US13439255
    • 2012-04-04
    • Takeshi ShimuraIkuo HaraTadaaki NagataShinji KobayashiTakahiro Imamura
    • Takeshi ShimuraIkuo HaraTadaaki NagataShinji KobayashiTakahiro Imamura
    • F02M33/02F02M25/08
    • F02M25/0836F02M25/0872
    • A fuel cap includes a communication chamber configured to make a charge path and the inside of the fuel tank communicate with each other while in a closed state. The communication chamber includes: a positive pressure control valve configured to open, and send evaporated fuel, which occurs inside the fuel tank, to an evaporated fuel reservoir via the communication chamber and the charge path when the internal pressure of the fuel tank becomes equal to or greater than a predetermined pressure; and a negative pressure control valve configured to open, and send air from the evaporated fuel reservoir to the fuel tank via the communication chamber and the charge path when the internal pressure of the fuel tank becomes equal to or less than the predetermined pressure. In addition, a key cylinder sets the negative pressure control valve open upon inserting a key into the key cylinder.
    • 燃料盖包括连通室,该连通室构造为在关闭状态下使充电路径和燃料箱的内部彼此连通。 通信室包括:正压控制阀,其构造成当燃料箱的内部压力等于或等于压力时,通过连通腔和充电路径将发生在燃料箱内的蒸发燃料打开并发送到蒸发燃料储存器 或大于预定压力; 以及负压控制阀,其构造成当所述燃料箱的内部压力等于或小于所述预定压力时,经由所述连通室和所述充电路径将所述蒸发的燃料储存器中的空气向所述燃料箱供给。 另外,在将钥匙插入钥匙筒时,钥匙筒将负压控制阀设定为打开。
    • 47. 发明申请
    • MAGNETIC HEAD SLIDER AND MAGNETIC DISK DRIVE
    • 磁头滑块和磁盘驱动器
    • US20090244781A1
    • 2009-10-01
    • US12409011
    • 2009-03-23
    • Takahiro ImamuraHiroyuki Kubotera
    • Takahiro ImamuraHiroyuki Kubotera
    • G11B5/60B44C1/22
    • G11B5/6005
    • A magnetic head slider includes a magnetic head element for reading or writing data from or into a magnetic recording medium. The magnetic head slider flies over the magnetic recording medium by an air flow generated by rotation of the magnetic recording medium. The magnetic head slider includes a slider substrate including a center pad for supporting the magnetic head element, the center pad having a sliding surface opposing the magnetic recording medium and a side surface at a downstream side of the air flow, the slider substrate including a concave portion having a bottom surface recessed from the sliding surface; and an insulating layer covering the side surface of the slider substrate, the insulating layer having an edge surface adjacent to the bottom surface of the concave portion, the edge surface having substantially the same plane with the bottom surface of the concave portion.
    • 磁头滑动器包括用于从或从磁记录介质读取或写入数据的磁头元件。 磁头滑块通过由磁记录介质的旋转产生的气流而飞越磁记录介质。 磁头滑动器包括滑块基板,其包括用于支撑磁头元件的中心焊盘,中心焊盘具有与磁记录介质相对的滑动表面和空气流的下游侧的侧表面,滑动器基板包括凹部 部分具有从滑动表面凹陷的底面; 以及覆盖所述滑块基板的侧面的绝缘层,所述绝缘层具有与所述凹部的底面相邻的边缘面,所述边缘表面与所述凹部的底面具有大致相同的平面。
    • 48. 发明授权
    • Method of making magnetic recording medium and die therefor
    • 制造磁记录介质及其模具的方法
    • US07459096B2
    • 2008-12-02
    • US11141624
    • 2005-05-31
    • Takahiro ImamuraYutaka Nakamura
    • Takahiro ImamuraYutaka Nakamura
    • B44C1/22
    • B82Y10/00G11B5/59688G11B5/743G11B5/84G11B5/855G11B5/865Y10T428/32
    • A resist film is formed on the surface of a magnetic layer on a substrate. A die is overlaid on the surface of the magnetic layer. The die includes magnetic and non-magnetic regions alternately arranged on a flat surface around a groove. The resist film is embossed so that the flat surface drives the resist film into the groove of the die. The resist film within the groove gets solidified while the die is kept in contact with the magnetic layer. A magnetic field is applied to the die in contact with the magnetic layer. A magnetic field leaked out of the magnetic regions acts on the magnetic layer. Magnetic information is thus written into the magnetic layer based on the leaked magnetic field. A recording track can be established in the magnetic layer based on the solidified resist film.
    • 在基板上的磁性层的表面上形成抗蚀剂膜。 模具覆盖在磁性层的表面上。 模具包括交替地布置在围绕凹槽的平坦表面上的磁性和非磁性区域。 抗蚀剂膜被压花,使得平坦表面将抗蚀剂膜驱动到模具的凹槽中。 凹槽内的抗蚀膜被固化,同时模具与磁性层保持接触。 将磁场施加到与磁性层接触的模具。 从磁性区域漏出的磁场作用在磁性层上。 因此,磁信息基于泄漏的磁场被写入磁层。 可以在基于固化的抗蚀剂膜的磁性层中建立记录轨迹。