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    • 2. 发明授权
    • Roller bearing and bearing structure
    • 滚子轴承和轴承结构
    • US08636420B2
    • 2014-01-28
    • US11918469
    • 2006-04-05
    • Shiro IshikawaRyutaro OkaMasanori UenoYoshimitsu Hirasawa
    • Shiro IshikawaRyutaro OkaMasanori UenoYoshimitsu Hirasawa
    • F16C33/58
    • F16C19/386B61F15/20F16C33/583F16C33/60F16C35/063F16C2240/40F16C2240/70F16C2326/10
    • A flange part of an inner ring member (11) used in a roller bearing has a thin-wall part (13) having a relatively small diameter direction thickness on its end face side, and a thick-wall part (14) having a relatively large diameter direction thickness on its center side, and an inner diameter surface has a contact part (15) fitted to a shaft at its center part, a non-contact part (16) apart from the shaft in a diameter direction at its outer edge, and a ridge line part (17) positioned on the boundary between the contact part (15) and the non-contact part (16). The axial direction width L1 of the thin-wall part (13) from an end face (12) of the inner ring member (11) and the axial direction distance L2 between the end face (12) and a ridge line part (17) of the inner ring member (11) have a relation of L1>L2.
    • 在滚子轴承中使用的内圈部件(11)的凸缘部具有在其端面侧具有相对小的直径方向厚度的薄壁部(13),并且具有相对的壁厚部 在其中心侧具有大直径方向厚度,内径表面具有在其中心部分安装到轴的接触部分(15),在其外边缘处沿着直径方向与轴隔开的非接触部分(16) ,以及位于接触部分(15)和非接触部分(16)之间的边界上的脊线部分(17)。 从内环构件(11)的端面(12)的薄壁部(13)的轴向宽度L1和端面(12)与棱线部(17)的轴向距离L2, 的内圈构件(11)的关系为L1> L2。
    • 4. 发明申请
    • HYBRID ENGINE-DRIVEN POWER GENERATOR
    • 混合发动机驱动发电机
    • US20110304139A1
    • 2011-12-15
    • US13096693
    • 2011-04-28
    • Takashi HASHIZUMEMasanori UenoMakoto Ogawa
    • Takashi HASHIZUMEMasanori UenoMakoto Ogawa
    • H02P9/04
    • B60L11/12B60L2210/10H02P9/04Y02T10/642Y02T10/7005Y02T10/7077Y02T10/7216Y10T307/615
    • A power generator starts an engine by overcoming an inrush current occurs. A calculator (21) retrieves an outputtable current of a generator according to an engine speed. A calculator (23) calculates the lacking amount of the outputtable current relative to a load current. When the remaining battery level is sufficient, a DC/DC converter controller (24) supplies a current corresponding to the lacking amount from the battery (4) to a DC part (52). If the battery (4) starts supplying a power, FETs (Qa to Qf) of a rectifying part (51) are powered off and an output of the power generator (3) is stopped. When an engine frequency stability deciding part (27) decides the engine frequency is stable the rectifying part (51) restarts the output of the generator (3) and the current supply from the battery (4) to the DC part (52) is stopped.
    • 发电机通过克服浪涌电流启动发动机。 计算器(21)根据发动机转速检索发电机的可输出电流。 计算器(23)计算相对于负载电流的可输出电流的缺少量。 当剩余电池电量足够时,DC / DC转换器控制器(24)将与电池(4)的缺少量相对应的电流提供给DC部分(52)。 如果电池(4)开始供电,整流部(51)的FET(Qa〜Qf)断电,发电机(3)的输出停止。 当发动机频率稳定性确定部分(27)确定发动机频率稳定时,整流部分(51)重新启动发电机(3)的输出,并且停止从电池(4)到DC部分(52)的电流供应被停止 。
    • 5. 发明申请
    • Friction member manufacturing apparatus
    • 摩擦件制造装置
    • US20050048160A1
    • 2005-03-03
    • US10865070
    • 2004-06-10
    • Yoshinori SakamotoMasanori Ueno
    • Yoshinori SakamotoMasanori Ueno
    • B29C43/00B29C43/36B29C65/00B29L31/16B30B11/04C08J5/14F16D69/04B29C45/00
    • B29C43/36F16D69/04F16D69/0408F16D2069/0483F16D2069/0491
    • The present invention provides an improved multi-mold apparatus for manufacturing friction members, with each mold composed of a set comprising a first (top) mold, a second (bottom) mold, and a frame mold. The apparatus is capable of correcting any misalignment in the mountings of the plurality of molds and accurately aligning the molds by movably supporting at least one of the first mold, the second mold and the third mold by first, second and frame bases, respectively, so that the base and molds are movable laterally, in a direction perpendicular to the direction of advance. Projections are formed on one of the first mold and either the frame mold or the back plate and bonding through-holes are formed on the remaining mold or the back plate, so that the projections engage the holes so as to align the first mold and the frame mold accurately.
    • 本发明提供了一种用于制造摩擦构件的改进的多模式装置,每个模具由包括第一(顶部)模具,第二(底部)模具和框架模具的组合构成。 该装置能够校正多个模具的安装中的任何未对准并且通过分别通过第一,第二和框架基座可移动地支撑第一模具,第二模具和第三模具中的至少一个来精确对准模具,因此 基座和模具可以在垂直于前进方向的方向上横向移动。 在第一模具和框架模具或背板中的一个上形成突起,并且在剩余的模具或背板上形成结合通孔,使得突出部与孔对接,以使第一模具和 框架模具准确。
    • 9. 发明授权
    • Friction member manufacturing apparatus
    • 摩擦件制造装置
    • US07172400B2
    • 2007-02-06
    • US10865070
    • 2004-06-10
    • Yoshinori SakamotoMasanori Ueno
    • Yoshinori SakamotoMasanori Ueno
    • B29C43/04B29C43/36
    • B29C43/36F16D69/04F16D69/0408F16D2069/0483F16D2069/0491
    • The present invention provides an improved multi-mold apparatus for manufacturing friction members, with each mold composed of a set comprising a first (top) mold, a second (bottom) mold, and a frame mold. The apparatus is capable of correcting any misalignment in the mountings of the plurality of molds and accurately aligning the molds by movably supporting at least one of the first mold, the second mold and the third mold by first, second and frame bases, respectively, so that the base and molds are movable laterally, in a direction perpendicular to the direction of advance. Projections are formed on one of the first mold and either the frame mold or the back plate and bonding through-holes are formed on the remaining mold or the back plate, so that the projections engage the holes so as to align the first mold and the frame mold accurately.
    • 本发明提供了一种用于制造摩擦构件的改进的多模式装置,每个模具由包括第一(顶部)模具,第二(底部)模具和框架模具的组合构成。 该装置能够校正多个模具的安装中的任何未对准并且通过分别通过第一,第二和框架基座可移动地支撑第一模具,第二模具和第三模具中的至少一个来精确对准模具,因此 基座和模具可以在垂直于前进方向的方向上横向移动。 在第一模具和框架模具或背板中的一个上形成突起,并且在剩余的模具或背板上形成结合通孔,使得突出部与孔对接,以使第一模具和 框架模具准确。