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    • 2. 发明申请
    • FLUID DYNAMIC-PRESSURE BEARING DEVICE AND SPINDLE MOTOR
    • 流体动力压力轴承装置和主轴电机
    • US20080056104A1
    • 2008-03-06
    • US11926345
    • 2007-10-29
    • Hideki NishimuraYoshito Oku
    • Hideki NishimuraYoshito Oku
    • F16C32/06G11B19/20
    • F16C33/107F16C17/045F16C17/107F16C33/745F16C41/008F16C2370/12H02K7/085
    • A fluid dynamic-pressure bearing includes a rotatable shaft, a hub, a fixed portion, and a lubricating liquid. The hub includes a hub thrust bearing surface extending from the shaft outwardly in a radial direction and an annular surface. The fixed portion includes a fixed-portion upper thrust bearing surface facing the hub thrust surface and a flange surface facing the annular surface. The hub thrust bearing surface, the fixed-portion upper thrust bearing surface, and the lubricating liquid arranged therebetween form together an upper thrust dynamic-pressure bearing. The annular surface and the flange surface define an annular gap therebetween. An axial dimension of the annular gap is larger than a total of an axial dimension of an upper thrust gap between the hub thrust bearing surface and the fixed-portion upper thrust bearing surface and an average depth of upper thrust dynamic-pressure generating grooves of the upper thrust dynamic-pressure bearing.
    • 流体动压轴承包括可旋转轴,轮毂,固定部分和润滑液体。 轮毂包括从轴向径向延伸的轮毂止推轴承表面和环形表面。 固定部分包括面向轮毂止推表面的固定部分上止推轴承表面和面向环形表面的凸缘表面。 轮毂止推轴承表面,固定部分上推力轴承表面和布置在其间的润滑液形成上推力动压轴承。 环形表面和凸缘表面之间形成环形间隙。 环形间隙的轴向尺寸大于轮毂止推轴承表面和固定部分上推力轴承表面之间的上推力间隙的轴向尺寸的总和和上推力动压产生槽的平均深度 上推力动压轴承。
    • 3. 发明授权
    • Spindle motor and disk drive utilizing the spindle motor
    • 使用主轴电机的主轴电机和磁盘驱动器
    • US06888278B2
    • 2005-05-03
    • US10604975
    • 2003-08-29
    • Hideki NishimuraYoshito OkuShinya Yano
    • Hideki NishimuraYoshito OkuShinya Yano
    • G11B17/028G11B17/038G11B25/04F16C32/06H02K7/08
    • G11B25/043F16C17/107F16C33/107F16C2370/12G11B17/028G11B19/2009H02K5/1675
    • Low-profile spindle motor whose entire shaft length is utilized to configure, along an encompassing sleeve, a radial dynamic-pressure bearing section. One end of the shaft is unitary with the rotor, and a cover member closes the other end. Between the sleeve upper-end face and the rotor undersurface a thrust bearing section is configured. Micro-gaps are formed continuing between the sleeve upper-end face and the rotor undersurface; the sleeve inner-circumferential surface and the shaft outer-circumferential surface; and the cover member inner face and the shaft end face, where an axial support section is established. Oil continuously fills the micro-gaps, configuring a full-fill hydrodynamic bearing structure. Hydrodynamic pressure-generating grooves in the radial bearing section are configured either so that no axial flow, or so that a unidirectional flow that recirculates from one to the other axial end of the radial bearing section through a communicating pathway is induced in the oil.
    • 低轴主轴电机,其整个轴长度用于沿径向动压轴承部分沿着包围的套筒配置。 轴的一端与转子一体,并且盖构件封闭另一端。 在套筒上端面和转子下表面之间配置有推力轴承部。 在套筒上端面和转子下表面之间形成微缝隙; 套筒内周面和轴外周面; 以及盖构件内表面和轴端面,其中建立了轴向支撑部分。 油连续填充微间隙,构成全填充流体动力轴承结构。 径向轴承部分中的流体动力学压力产生槽被构造成使得不会在油中引起轴向流动,或者使得通过连通通道从径向支承部分的一个轴向端部向另一个轴向端部再循环的单向流动。
    • 4. 发明授权
    • Spindle motor and disk drive furnished therewith
    • 主轴电机和磁盘驱动器配备
    • US06914358B2
    • 2005-07-05
    • US10250083
    • 2003-06-03
    • Shinya TokunagaKaoru UenosonoHideki NishimuraYoshito Oku
    • Shinya TokunagaKaoru UenosonoHideki NishimuraYoshito Oku
    • F16C17/10F16C17/02F16C17/04F16C33/10G11B19/20H02K5/16H02K7/08H02K21/22G11B17/02H02K5/00
    • F16C17/107F16C33/107F16C33/1085F16C2370/12H02K5/1675
    • In a spindle motor utilizing dynamic-pressure bearings having a full-fill structure, a bearing configuration that balances and sustains at or above atmospheric pressure the internal pressure of the bearing oil. Thrust and radial bearing sections are configured within oil-filled bearing clearances in between the rotor, the shaft, and a shaft-encompassing hollow bearing member. A communicating passage one end of which opens on, radially inwardly along, the thrust bearing section is formed in the bearing member. Either axial ends of the bearing clearance in between the bearing member and shaft communicate through the passage. The communicating passage enables the oil to redistribute itself within the bearing clearances. Pressure difference between the axial upper and lower ends of the oil retained in between the bearing member and the shaft is compensated through the communicating passage, preventing incidents of negative pressure within the oil and of over-lift on the rotor.
    • 在使用具有全填充结构的动压轴承的主轴电机中,轴承构造在大气压力或大于等于或高于轴承油的内部压力的情况下平衡和维持。 推力轴承和径向轴承部分配置在转子,轴和包含轴的中空轴承部件之间的充油轴承间隙内。 在轴承部件上形成有连通通道,其一端在推力轴承部分沿径向向内开口。 轴承构件和轴之间的轴承间隙的轴向端部通过通道连通。 连通通道使得油在轴承间隙内重新分布。 通过连通通道补偿保持在轴承构件和轴之间的油的轴向上端和下端之间的压力差,防止油内的负压和转子上的过度提升。
    • 5. 发明申请
    • DISK DRIVE SPINDLE MOTOR WITH RADIAL INWARD THRUST AREA ANNULAR PRUTRUDING PORTION AND BEARING MEMBER COMMUNICATING PASSAGE
    • 磁盘驱动主轴电机,带有径向入口扭矩区域环形压缩部件和轴承构件通讯
    • US20050099722A1
    • 2005-05-12
    • US10605941
    • 2003-11-07
    • Hideki NishimuraYoshito OkuYasuhiro Mori
    • Hideki NishimuraYoshito OkuYasuhiro Mori
    • G11B17/02G11B17/022G11B25/04G11B33/12H02K7/08
    • G11B33/121F16C17/045F16C17/107F16C33/107F16C33/1085F16C2370/12G11B17/022G11B25/043
    • In a spindle motor utilizing dynamic-pressure bearings having a full-fill structure, a bearing configuration that balances and sustains at or above atmospheric pressure the internal pressure of the bearing oil. Thrust and radial bearing sections are configured within oil-filled bearing clearances in between the rotor, the shaft, and a shaft-encompassing hollow bearing member. A communicating passage one end of which opens on, radially inwardly along, the thrust bearing section is formed in the bearing member. Either axial ends of the bearing clearance in between the bearing member and shaft communicate through the passage. The communicating passage enables the oil to redistribute itself within the bearing clearances. Pressure difference between the axial upper and lower ends of the oil retained in between the bearing member and the shaft is compensated through the communicating passage, preventing incidents of negative pressure within the oil and of over-lift on the rotor. And an annular protruding portion is formed on at least one of the end face of the bearing member and the flat face of the rotor at radially inward portion of the thrust bearing section.
    • 在使用具有全填充结构的动压轴承的主轴电机中,轴承构造在大气压力或大于等于或高于轴承油的内部压力的情况下平衡和维持。 推力轴承和径向轴承部分配置在转子,轴和包含轴的中空轴承部件之间的充油轴承间隙内。 在轴承部件上形成有连通通道,其一端在推力轴承部分沿径向向内开口。 轴承构件和轴之间的轴承间隙的轴向端部通过通道连通。 连通通道使得油在轴承间隙内重新分布。 通过连通通道补偿保持在轴承构件和轴之间的油的轴向上端和下端之间的压力差,防止油内的负压和转子上的过度提升。 并且在所述推力轴承部的径向内侧部分的轴承部件的端面和转子的平面中的至少一个上形成有环状的突出部。
    • 6. 发明授权
    • Fluid dynamic-pressure bearing device and spindle motor
    • 流体动压轴承装置和主轴电机
    • US07290934B2
    • 2007-11-06
    • US11162367
    • 2005-09-08
    • Hideki NishimuraYoshito Oku
    • Hideki NishimuraYoshito Oku
    • F16C32/06
    • F16C33/107F16C17/045F16C17/107F16C33/745F16C41/008F16C2370/12H02K7/085
    • Small-size, small-height fluid dynamic-pressure bearing device that causes a low shaft loss and is less prone to troubles such as shortage and leakage of lubricating liquid. A thrust dynamic-pressure bearing is formed at an inner position and a region having a slightly-widened gap is provided outside of the thrust dynamic-pressure bearing to retain the lubricating liquid therein. Further, an oil circulating path is communicated with the region having a slightly widened gap. The gap of this region is set to be greater than the gap at the thrust dynamic-pressure bearing portion by the value of the depth of dynamic-pressure generating grooves. The region having a widened gap may be provided with rows of grooves for stirring-up lubricating oil towards the center.
    • 小尺寸,小高度的流体动压轴承装置,其导致低的轴损失,并且不容易出现诸如润滑液体的不足和泄漏的麻烦。 推力动压轴承形成在内部位置,并且具有稍微加宽的间隙的区域设置在推力动压轴承的外侧,以将润滑液保持在其中。 此外,油循环路径与具有略宽的间隙的区域连通。 通过动压产生槽的深度的值将该区域的间隙设定为大于推力动压轴承部的间隙。 具有加宽间隙的区域可以设置有用于向中心搅动润滑油的一排槽。
    • 7. 发明授权
    • Spindle motor and disk drive utilizing the spindle motor
    • 使用主轴电机的主轴电机和磁盘驱动器
    • US06836388B2
    • 2004-12-28
    • US10063929
    • 2002-05-27
    • Hideki NishimuraYoshito OkuShinya Yano
    • Hideki NishimuraYoshito OkuShinya Yano
    • G11B1702
    • G11B17/022F16C17/107F16C2370/12G11B17/028G11B17/038G11B25/043
    • Low-profile spindle motor whose entire shaft length is utilized to configure, along an encompassing sleeve, a radial dynamic-pressure bearing section. One end of the shaft is unitary with the rotor, and a cover member closes the other end. Between the sleeve upper-end face and the rotor undersurface a thrust bearing section is configured. Micro-gaps are formed continuing between the sleeve upper-end face and the rotor undersurface; the sleeve inner-circumferential surface and the shaft outer-circumferential surface; and the cover member inner face and the shaft end face, where an axial support section is established. Oil continuously fills the micro-gaps without interruption, configuring a fully filled hydrodynamic bearing structure. Hydrodynamic pressure-generating grooves in the radial bearing section are configured so that no axial flow is induced in the oil, and in the thrust bearing so that lift pressure, balanced by hydrostatic pressure in the axial support section, is imparted in the oil.
    • 低轴主轴电机,其整个轴长度用于沿径向动压轴承部分沿着包围的套筒配置。 轴的一端与转子一体,并且盖构件封闭另一端。 在套筒上端面和转子下表面之间配置有推力轴承部。 在套筒上端面和转子下表面之间形成微缝隙; 套筒内周面和轴外周面; 以及盖构件内表面和轴端面,其中建立了轴向支撑部分。 油不间断地连续填充微间隙,配置完全填充的流体动力轴承结构。 在径向轴承部分中的流体动力学压力产生槽被构造成使得在油中以及在推力轴承中不产生轴向流动,使得在轴向支撑部分中由静水压力平衡的提升压力施加在油中。
    • 8. 发明授权
    • Fluid dynamic-pressure bearing device and spindle motor
    • 流体动压轴承装置和主轴电机
    • US07578621B2
    • 2009-08-25
    • US11926345
    • 2007-10-29
    • Hideki NishimuraYoshito Oku
    • Hideki NishimuraYoshito Oku
    • F16C32/06
    • F16C33/107F16C17/045F16C17/107F16C33/745F16C41/008F16C2370/12H02K7/085
    • A fluid dynamic-pressure bearing includes a rotatable shaft, a hub, a fixed portion, and a lubricating liquid. The hub includes a hub thrust bearing surface extending from the shaft outwardly in a radial direction and an annular surface. The fixed portion includes a fixed-portion upper thrust bearing surface facing the hub thrust surface and a flange surface facing the annular surface. The hub thrust bearing surface, the fixed-portion upper thrust bearing surface, and the lubricating liquid arranged therebetween form together an upper thrust dynamic-pressure bearing. The annular surface and the flange surface define an annular gap therebetween. An axial dimension of the annular gap is larger than a total of an axial dimension of an upper thrust gap between the hub thrust bearing surface and the fixed-portion upper thrust bearing surface and an average depth of upper thrust dynamic-pressure generating grooves of the upper thrust dynamic-pressure bearing.
    • 流体动压轴承包括可旋转轴,轮毂,固定部分和润滑液体。 轮毂包括从轴向径向延伸的轮毂止推轴承表面和环形表面。 固定部分包括面向轮毂止推表面的固定部分上止推轴承表面和面向环形表面的凸缘表面。 轮毂止推轴承表面,固定部分上推力轴承表面和布置在其间的润滑液形成上推力动压轴承。 环形表面和凸缘表面之间形成环形间隙。 环形间隙的轴向尺寸大于轮毂止推轴承表面和固定部分上推力轴承表面之间的上推力间隙的轴向尺寸的总和和上推力动压产生槽的平均深度 上推力动压轴承。
    • 9. 发明申请
    • Fluid Dynamic-Pressure Bearing Device and Spindle Motor
    • 流体动压轴承装置和主轴电动机
    • US20060051001A1
    • 2006-03-09
    • US11162367
    • 2005-09-08
    • Hideki NishimuraYoshito Oku
    • Hideki NishimuraYoshito Oku
    • F16C32/06
    • F16C33/107F16C17/045F16C17/107F16C33/745F16C41/008F16C2370/12H02K7/085
    • Small-size, small-height fluid dynamic-pressure bearing device that causes a low shaft loss and is less prone to troubles such as shortage and leakage of lubricating liquid. A thrust dynamic-pressure bearing is formed at an inner position and a region having a slightly-widened gap is provided outside of the thrust dynamic-pressure bearing to retain the lubricating liquid therein. Further, an oil circulating path is communicated with the region having a slightly widened gap. The gap of this region is set to be greater than the gap at the thrust dynamic-pressure bearing portion by the value of the depth of dynamic-pressure generating grooves. The region having a widened gap may be provided with rows of grooves for stirring-up lubricating oil towards the center.
    • 小尺寸,小高度的流体动压轴承装置,其导致低的轴损失,并且不容易出现诸如润滑液体的不足和泄漏的麻烦。 推力动压轴承形成在内部位置,并且具有稍微加宽的间隙的区域设置在推力动压轴承的外侧,以将润滑液保持在其中。 此外,油循环路径与具有略宽的间隙的区域连通。 通过动压产生槽的深度的值将该区域的间隙设定为大于推力动压轴承部的间隙。 具有加宽间隙的区域可以设置有用于向中心搅动润滑油的一排槽。