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    • 72. 发明授权
    • Vacuum control system
    • 真空控制系统
    • US07686590B2
    • 2010-03-30
    • US10813558
    • 2004-03-29
    • Yoshio IshiiKoji TanemuraToshihiko MatsumotoKozo Shirato
    • Yoshio IshiiKoji TanemuraToshihiko MatsumotoKozo Shirato
    • F04B49/06G05D7/01B01D59/12
    • G05D16/2066B01D19/0031B01D19/0063F04B37/14F04B2205/01
    • A vacuum control system allows the degree of vacuum in a vacuum vessel to be kept constant while removing vaporized components degassed into the vacuum vessel through a gas permeation diaphragm by stably introducing a very small amount of air into a vacuum exhaust path of the vacuum vessel. The vacuum control system controls the rotary power of a DC brushless motor, continuously controls displacement of a vacuum pump, and thus keeps the degree of vacuum in a vacuum vessel constant, by decompressing the inside of the vacuum vessel using an exhaust vacuum pump which operates with the DC brushless motor, monitoring the inside pressure of the vacuum vessel using a pressure sensor, and controlling a voltage applied to the DC brushless motor on the basis of an output signal resulting from measurement of the inside pressure of the vacuum vessel by the pressure sensor.
    • 真空控制系统允许真空容器中的真空度保持恒定,同时通过将非常少量的空气稳定地引入真空容器的真空排气通道中,通过气体渗透隔膜去除脱气到真空容器中的蒸发组分。 真空控制系统控制直流无刷电动机的旋转动力,连续地控制真空泵的排量,从而通过使用操作的排气真空泵对真空容器的内部进行减压来保持真空容器内的真空度恒定 使用直流无刷电动机,使用压力传感器监测真空容器的内部压力,并且基于通过压力测量真空容器的内部压力而产生的输出信号来控制施加到DC无刷电动机的电压 传感器。
    • 74. 发明申请
    • Image-forming method using heat-sensitive transfer system
    • 使用热敏转印系统的成像方法
    • US20070212635A1
    • 2007-09-13
    • US11711768
    • 2007-02-28
    • Kazuaki OgumaYoshio IshiiKazuma TakenoHisashi MikoshibaYoshihisa Tsukada
    • Kazuaki OgumaYoshio IshiiKazuma TakenoHisashi MikoshibaYoshihisa Tsukada
    • G03C8/00
    • B41M5/52B41M5/423B41M5/44B41M5/5227
    • An image-forming method, containing the steps of: superposing a heat-sensitive transfer sheet on a heat-sensitive transfer image-receiving sheet so that the following at least one receptor layer of the heat-sensitive transfer image-receiving sheet can be contacted with the following thermal transfer layer of the heat-sensitive transfer sheet; and providing thermal energy given by a thermal head in accordance with image signals, thereby to form an image; wherein the heat-sensitive transfer image-receiving sheet is transported at a speed of 125 mm/s or more during the image formation, and wherein the heat-sensitive transfer image-receiving sheet contains, on a support, at least one receptor layer containing a polymer latex, and at least one heat insulation layer containing hollow polymer particles but free of any resins having poor resistance to an organic solvent except for the hollow polymer particles, and the heat-sensitive transfer sheet contains, on a support, a thermal transfer layer.
    • 一种图像形成方法,包括以下步骤:将热敏转印片材叠加在热敏转印图像接收片材上,使得可以接触热敏转印图像接收片材的以下至少一个受体层 具有热敏转印片的以下热转印层; 并根据图像信号提供由热头给出的热能,从而形成图像; 其特征在于,所述热敏转印图像接收纸在图像形成期间以125mm / s以上的速度被输送,并且其中所述热敏转印图像接收纸在载体上含有至少一个含有 聚合物胶乳和至少一个含有中空聚合物颗粒但不含中空聚合物颗粒以外的有机溶剂耐性差的树脂的绝热层,并且热敏转印片在载体上含有热转印 层。
    • 75. 发明申请
    • Automobile door hinge device
    • 汽车门铰链装置
    • US20070136993A1
    • 2007-06-21
    • US11602468
    • 2006-11-21
    • Yoshio IshiiManabu Ochiai
    • Yoshio IshiiManabu Ochiai
    • E05D11/10
    • E05D11/084E05Y2900/531Y10T16/54028
    • An automobile door hinge device includes: an inner cylindrical body integrally connected to a first bracket and rotatably fitted over an outer periphery of a hinge pin; an outer cylindrical body integrally connected to a second bracket to surround the inner cylindrical body; a check spring disposed between the inner cylindrical body and the outer cylindrical body to come into contact with an outer peripheral surface of the inner cylindrical body with a resilient force of the check spring; and first and second control portions that are provided in the inner cylindrical body to face first and second engaging portions, respectively, at opposite ends of the check spring, and displace the first and second engaging portions in directions releasing the contact of the check spring during relative rotation of the inner cylindrical body and the outer cylindrical body. Thus, the door hinge can exert a stepless door check function of holding a door at any opening degree.
    • 汽车门铰链装置包括:内圆柱体,其与第一支架一体地连接并可旋转地装配在铰链销的外周上; 一体地连接到第二支架以围绕内圆筒体的外筒体; 设置在所述内筒体与所述外筒体之间的止回弹簧,其与所述内筒体的外周面以所述止回弹簧的弹力相接触; 以及第一和第二控制部分,其设置在所述内圆柱体中,分别面对所述止回弹簧的相对端处的第一和第二接合部分,并且在所述第一和第二接合部分沿着释放所述止回弹簧的接触的方向移位所述第一和第二接合部分 内筒体和外筒体的相对旋转。 因此,门铰链可以以任何开度执行将门保持的无级门检查功能。
    • 78. 发明授权
    • Image recording apparatus
    • 图像记录装置
    • US06733197B2
    • 2004-05-11
    • US10139233
    • 2002-05-07
    • Mitsuru KoikeYoshio IshiiMakoto YamadaEiichi Kito
    • Mitsuru KoikeYoshio IshiiMakoto YamadaEiichi Kito
    • B41J1168
    • B41J11/663B41J11/68B41J11/70
    • An image recording apparatus records an image by adhering ink droplets ejected from a recording head to a long recording material. A solvent in the ink droplets is removed by a heating and drying section, and a transparent sheet material is laminated onto an image recording surface of the recording material by a laminating section. Subsequently, the recording material is cut into pieces by a first cutter along boundaries of recorded images, which boundaries extend in a transverse direction of the recording material. A piece having images recorded thereon is transferred to a conveyance belt, conveyed, cut for each of the images by a second cutter, and accumulated in a print accumulating section via a conveyance belt. A piece having a single image recorded thereon is conveyed on another conveyance belt and accumulated in the print accumulating section. Thus, processing time per image can be reduced.
    • 图像记录装置通过将从记录头喷出的墨滴粘附到长记录材料来记录图像。 通过加热和干燥部分去除墨滴中的溶剂,通过层压部分将透明片材层压到记录材料的图像记录表面上。 随后,通过第一切割器沿着记录图像的边界将记录材料切成块,该边界在记录材料的横向上延伸。 具有记录在其上的图像的片段被传送到传送带,通过第二切割器输送,切割每个图像,并经由传送带累积在打印存储部中。 在其上记录有单个图像的片材在另一传送带上传送并累积在打印累积部分中。 因此,可以减少每个图像的处理时间。
    • 79. 发明授权
    • Composition amount determining method and device for functional mixture
    • 功能混合物的组成量测定方法和装置
    • US06681187B2
    • 2004-01-20
    • US10118900
    • 2002-04-10
    • Yoshio IshiiJun OkamotoAkira IkedaYasuaki Deguchi
    • Yoshio IshiiJun OkamotoAkira IkedaYasuaki Deguchi
    • G06F1900
    • G03C1/005
    • A device and a method for determining amounts of each of composition constituents necessary for giving a functional mixture functionality, without actual creation of the functional mixture, by varying the amounts in accordance with correlation coefficients between each of the composition constituents of previously obtained functional mixtures. The Mahalanobis distance for the amounts of N composition constituents, the Mahalanobis distance for the amounts of N-1 composition constituents from which one of the constituents is excluded, and the difference therebetween are calculated. The amount of composition constituent whose exclusion corresponds to the largest such difference is varied and the Mahalanobis distance is calculated again. Amounts of composition constituents for which the Mahalanobis distance is a minimum are selected as the amounts of the composition constituents for the functional mixture.
    • 用于通过根据先前获得的功能性混合物的每种组成成分之间的相关系数改变量来确定产生功能性混合物官能度而不实际产生功能性混合物所需的每种组成成分的量的装置和方法。 计算N组成成分的量的马哈拉诺比斯距离,排除一种成分的N-1组成成分的量的马氏距离和它们之间的差。 其排除对应于最大的这种差异的组成成分的量变化,并再次计算马哈拉诺比斯距离。 选择马哈拉诺比斯距离最小的组成成分的量作为功能混合物的组成成分的量。