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    • 7. 发明授权
    • Flexible polyurethane foam and process for preparing same
    • 柔性聚氨酯泡沫及其制备方法
    • US5478866A
    • 1995-12-26
    • US426009
    • 1995-04-20
    • Masashi ObataSeijiro SakaiKaoru Ueno
    • Masashi ObataSeijiro SakaiKaoru Ueno
    • C08G18/76C08G18/02C08G18/06
    • C08G18/7607C08G2101/0008C08G2101/0083C08G2350/00
    • A flexible polyurethane foam which has a low density, enhanced impact resilience, improved compression set and excellent effect on the reduction of 6 Hz vibration transmissibility and is obtained by a reaction of an organic polyisocyanate composition, that is, a mixture of (a) polymethylenepolyphenyl isocyanate containing from more than 60 to 90% by weight of a two benzene ring compound and having a weight ratio [three benzene ring compound]/[four or more benzene ring compounds + less active ingredient] of 1.1-20.0, and (b) tolylene diisocyanate in a ratio (a)/(b) of 97.apprxeq.80/3.apprxeq.20 by weight, or by reaction of a prepolymer derived from said organic polyisocyanate composition and a specific polyol, with a resin premix comprising a water blowing agent and an active hydrogen containing compound; and a process for preparing the flexible polyurethane foam.
    • 一种柔性聚氨酯泡沫,其具有低密度,增强的冲击弹性,改进的压缩永久变形和对降低6Hz振动传递率的优异影响,并且通过有机多异氰酸酯组合物,即(a)聚亚甲基聚苯基 异氰酸酯含有60〜90重量%的2苯环化合物,重量比[3苯环化合物] / [4种以上苯环化合物+少活性成分]为1.1-20.0,(b) 甲苯二异氰酸酯的重量比(a)/(b)为97 APPROX 80/3 APPRO 20,或通过来自所述有机多异氰酸酯组合物和特定多元醇的预聚物与包含水发泡剂和 含氢活性化合物; 以及制备柔性聚氨酯泡沫的方法。
    • 9. 发明申请
    • SYSTEM ENVIRONMENT RECOVERY METHOD
    • 系统环境恢复方法
    • US20080071845A1
    • 2008-03-20
    • US11672727
    • 2007-02-08
    • Yuzuru UedaKaoru UenoMasao Yajima
    • Yuzuru UedaKaoru UenoMasao Yajima
    • G06F17/30
    • G06F11/1415G06F11/1456G06F11/1464G06F11/1469
    • In order to provide a system environment recovery method that enables easy system environment recovery of a plurality of information processor apparatuses without a special environment, the plurality of information processor apparatuses comprise an image file obtaining unit 101 for obtaining an image file 107, an image file writing unit 102 for writing the image file 107 to a storage device 109, an apparatus-specific-information obtaining unit 103 for obtaining apparatus-specific information of the apparatus to which it is connected, an individual-setting-information obtaining unit 104 for obtaining individual-setting information from an individual-setting information list 108 and an individual-setting-information setting unit 105 for applying the individual-setting information to the recovered system environment.
    • 为了提供能够在没有特殊环境的情况下容易地进行多个信息处理装置的系统环境恢复的系统环境恢复方法,所述多个信息处理装置包括图像文件获取部101,其用于获取图像文件107,图像文件 用于将图像文件107写入存储装置109的写入单元102,用于获得与其连接的装置的装置专用信息的装置专用信息获取单元103,用于获得与其相关的个体设置信息获取单元104 来自个人设定信息列表108的个人设定信息和个人设定信息设定单元105,用于将个人设定信息应用于恢复的系统环境。
    • 10. 发明授权
    • Synthetic resin retainer and angular ball bearing
    • 合成树脂保持架和角接触球轴承
    • US07059776B2
    • 2006-06-13
    • US10822777
    • 2004-04-13
    • Umemitsu KobayashiKaoru Ueno
    • Umemitsu KobayashiKaoru Ueno
    • F16C33/38
    • F16C33/3887F16C19/163F16C33/3856F16C2240/40F16C2240/44F16C2322/39
    • An angular ball bearing is provided which can suppress runout of a retainer during high-speed rotation. A retainer of a synthetic resin is mounted between an outer ring and an inner ring, and balls are housed in pockets formed in the retainer. The pockets are cylindrical. Conical guide surfaces are formed on the cylindrical inner surface of each pocket at its inner-diameter end in the circumferential direction of the retainer. The radius of curvature of the conical guide surfaces at the large diameter ends thereof is greater than the radius of curvature of the cylindrical inner surfaces, thereby preventing the contact points between the balls and the conical guide surfaces from becoming markedly displaced in the diametric direction during high-speed rotation, and thus suppressing runout of the retainer.
    • 提供一种角度球轴承,其可以在高速旋转期间抑制保持器的跳动。 合成树脂的保持器安装在外环和内圈之间,并且将球容纳在形成在保持器中的凹穴中。 口袋是圆柱形的。 圆锥形导向表面形成在每个凹槽的圆柱形内表面上的保持器周向上的内径端处。 圆锥形引导表面在其大直径端部处的曲率半径大于圆柱形内表面的曲率半径,从而防止球和锥形引导表面之间的接触点在直径方向上变得显着位移 高速旋转,从而抑制保持器的跳动。