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    • 4. 发明授权
    • Roller bearing
    • 滚子轴承
    • US06997617B2
    • 2006-02-14
    • US10854262
    • 2004-05-27
    • Yoshiro IdeMasatake IchimaruYukio OouraYuko Kamamura
    • Yoshiro IdeMasatake IchimaruYukio OouraYuko Kamamura
    • F16C33/34
    • F16C19/26F16C19/225F16C33/34F16C33/585F16C2240/34F16C2240/40F16C2240/50
    • A roller bearing includes an inner ring, an outer ring, a plurality of cylindrical rollers each provided between rolling contact surfaces of the inner ring and the outer ring. Each of the cylindrical rollers includes an end face having a peripheral part that is crowned. A flange portion is formed at an outer circumferential face end part of the inner ring and/or an inner circumferential face end part of the outer ring. The peripheral part is crowned in a curving shape represented by an exponential function of y=a·exp(−b·x); where a and b are constants, x is a distance from the rolling contact surface in a radial direction of the cylindrical roller, and y is a crowning fall-off amount from a central part of the end face of the cylindrical roller in an axial direction of the cylindrical roller.
    • 滚子轴承包括内环,外圈,多个圆筒滚子,每个圆筒滚子均设置在内圈和外圈的滚动接触表面之间。 每个圆柱滚子包括具有凸起的周边部分的端面。 凸缘部形成在内圈的外周面端部和/或外圈的内周面端部。 周边部分以由y = a.exp(-b.x)的指数函数表示的弯曲形状加冠; 其中a和b是常数,x是从圆筒滚子的径向方向的滚动接触面的距离,y是从圆筒滚子的端面的轴向方向的中心部分的隆起脱落量 的圆柱滚子。
    • 6. 发明授权
    • Internal grinding method and internal grinding machine
    • 内部研磨方法和内部研磨机
    • US06616508B1
    • 2003-09-09
    • US09517451
    • 2000-03-02
    • Yuko KamamuraMasanori TakahashiHiroki Mizuno
    • Yuko KamamuraMasanori TakahashiHiroki Mizuno
    • B24B510
    • B24B49/04B24B5/10B24B53/04
    • An internal grinding method for grinding an inner surface of a work having a straight line generatrix shape while performing an in-process inner-diameter size measurement intermittently through oscillation synchronized between a grindstone and a measurer; wherein a circumferential surface of the grindstone is trued into a shape inclined with respect to a moving direction of a X-axis slide table moving forward/backward relative to the work so that normal grinding force when the X-axis slide table moves backward is reduced, while the work is supported with inclination with respect to the moving direction of the X-axis slide table so that the X-axis slide table is oscillated in the moving direction.
    • 一种用于研磨具有直线母线形状的工件的内表面的内部磨削方法,同时通过磨石与测量器之间的振动同步地间歇地进行过程中的内径尺寸测量; 其特征在于,所述磨石的圆周面相对于相对于所述工件前后移动的X轴滑动台的移动方向被调整为使得所述X轴滑台向后移动时的正常磨削力减小 同时相对于X轴滑动台的移动方向倾斜地支撑工件,使得X轴滑动台在移动方向上振动。
    • 9. 发明授权
    • Centerless grinding apparatus and centerless grinding method
    • 无心研磨设备和无心磨削方法
    • US06986702B2
    • 2006-01-17
    • US10405503
    • 2003-04-03
    • Yuko KamamuraHiroyuki Iwanami
    • Yuko KamamuraHiroyuki Iwanami
    • B24B49/00
    • B24B7/16B24B5/01B24B5/22B24B5/24B24B27/0076
    • A centerless grinding apparatus (10) includes an outer diameter surface grinding wheel (11) for grinding the outer diameter surface of a work (1) of a substantially cylindrical shape, a regulating wheel (12) for supporting the outer diameter surface of the work (1) in conjunction with the outer diameter surface grinding wheel (11) and an end surface grinding wheel (21) for grinding the end surface of the work (1). The end surface grinding wheel (21) grinds the end surface of the work (1) while the outer diameter surface grinding wheel (11) grinds the outer diameter surface of the work (1) in a state that the work (1) is disposed between the outer diameter surface grinding wheel (11) and the regulating wheel (12).
    • 无心研磨装置(10)包括用于研磨大致圆筒形的工件(1)的外径表面的外径表面砂轮(11),用于支撑工件的外径表面的调节轮(12) (1)与外径表面砂轮(11)和用于研磨工件(1)的端面的端面砂轮(21)相结合。 端面砂轮(21)在工件(1)的设置状态下磨削工件(1)的端面,同时外径表面砂轮(11)磨削工件(1)的外径表面 在外径表面砂轮(11)和调节轮(12)之间。
    • 10. 发明授权
    • Cam disc of loading cam mechanism in toroidal type continuously variable transmission and manufacturing method therefor
    • 用于环形无级变速传动及其制造方法的凸轮机构的凸轮盘
    • US06450916B2
    • 2002-09-17
    • US09865172
    • 2001-05-24
    • Yuko Kamamura
    • Yuko Kamamura
    • F16H1538
    • F16H15/38Y10T29/49996
    • A loading cam mechanism of a toroidal type continuously variable transmission is provided with a cam disc that rotates together with an input shaft. A cam surface is formed on the cam disc. The cam disc includes a disc portion having the cam surface formed thereon and a cylindrical portion protruding from the central portion of the cam surface. The cam disc further includes a lathe-turned portion formed by lathe turning, a milled surface formed by means of an end mill, and a ground surface formed by means of a grindstone. Formed on a corner portion between the cylindrical portion and the disc portion are a first corner curved surface worked by means of an arcuate portion on the distal end portion of the end mill and a second corner curved surface worked by means of an arcuate portion on the distal end portion of the grindstone.
    • 环形无级变速器的装载凸轮机构设置有与输入轴一起旋转的凸轮盘。 在凸轮盘上形成凸轮表面。 凸轮盘包括其上形成有凸轮表面的圆盘部分和从凸轮表面的中心部分突出的圆柱形部分。 凸轮盘还包括由车削车削形成的车削部分,通过端铣刀形成的铣削表面,以及通过磨石形成的地面。 在圆筒部和圆盘部之间的角部形成有通过端铣刀的远端部分上的弓形部分加工的第一角部弯曲表面,并且在第二角部弯曲表面上通过弓形部分 砂轮的远端部分。