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    • 2. 发明授权
    • Hydrodynamic bearing device and spindle motor that makes use of same
    • 使用流体动力轴承装置和主轴电机
    • US07625123B2
    • 2009-12-01
    • US11443014
    • 2006-05-31
    • Katsuo IshikawaTsutomu Hamada
    • Katsuo IshikawaTsutomu Hamada
    • F16C32/06F16C17/10
    • F16C33/103F16C17/026F16C17/107F16C33/107F16C2370/12H02K7/085H02K7/086
    • A hydrodynamic bearing device including a sleeve (1), a shaft (2), and oil (100). With respect to the sleeve (1), a stepped portion (1b) provided at one end and an inner peripheral face (1e) extending linearly in the axial direction and continuously with the stepped portion (1b) are formed by a working method that involves the use of a metal mold. The shaft (2) is inserted so as to be capable of relative rotation with respect to the inner peripheral face (1e) of the sleeve (1). The oil fills the space formed between the inner peripheral face of the sleeve and the outer peripheral face of the shaft. Dynamic pressure generation grooves (9a and 9b), which open in the axial direction at at least one end in the axial direction of the inner peripheral face (1e) and are continuous in the axial direction from one end, are formed in the inner peripheral face.
    • 一种流体动力轴承装置,包括套筒(1),轴(2)和油(100)。 相对于套筒(1),设置在一端的台阶部分(1b)和沿轴向线性延伸并与台阶部分(1b)连续延伸的内周面(1e)通过一种工作方法形成,该方法涉及 使用金属模具。 轴(2)被插入以能够相对于套筒(1)的内周面(1e)相对旋转。 油填充在套筒的内周面和轴的外周面之间形成的空间。 在内周面(1e)的轴向的至少一端沿轴向开口并从一端沿轴向连续的动压发生槽(9a,9b)形成在内周 面对。
    • 7. 发明授权
    • Hydrodynamic bearing device
    • 流体动力轴承装置
    • US07186028B2
    • 2007-03-06
    • US11071212
    • 2005-03-04
    • Takafumi AsadaTsutomu HamadaHideaki OhnoYasunori Tokunou
    • Takafumi AsadaTsutomu HamadaHideaki OhnoYasunori Tokunou
    • F16C17/02
    • F16C17/107F16C33/1025F16C2370/12Y10S384/902
    • A hydrodynamic bearing device capable of inhibiting leakage of a working fluid to an outside of a bearing and preventing reduction in radial bearing rigidity, and capable of keeping a gap between a thrust bearing and a radial bearing favorable and rotating stably. The hydrodynamic bearing device includes a shaft relatively rotatably inserted into a bearing hole of a sleeve, a radial bearing surface having dynamic pressure generating grooves formed on at least one of an outer peripheral surface of the shaft and an inner peripheral surface of the sleeve, and a gap filled with a working fluid between the shaft and the sleeve. The shaft is made of high manganese chrome steel or stainless steel, and the sleeve is entirely made of sintered metal of metal particles including at least 60% by weight of iron or copper. Resin, metal or water glass is impregnated in pores on a surface of the sintered metal and cured. Thereby, leakage of the working fluid to the outside of the bearing from the sleeve can be inhibited, and reduction in the pressure inside the bearing can be prevented.
    • 一种流体动力轴承装置,其能够抑制工作流体泄漏到轴承的外部,并且防止径向轴承刚性的降低,并且能够使推力轴承和径向轴承之间的间隙保持良好并且稳定地旋转。 流体动力轴承装置包括相对可旋转地插入到套筒的轴承孔中的轴,具有形成在轴的外周表面和套筒的内周表面中的至少一个上的动压产生槽的径向支承表面,以及 在轴和套筒之间填充有工作流体的间隙。 该轴由高锰铬钢或不锈钢制成,并且套筒全部由包含至少60重量%的铁或铜的金属颗粒的烧结金属制成。 将树脂,金属或水玻璃浸渍在烧结金属表面上的孔中并固化。 由此,可以抑制工作流体从套筒向轴承外侧的泄漏,能够防止轴承内的压力的降低。