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    • 33. 发明授权
    • Electrically actuatable disc brake
    • 电动盘式制动器
    • US06880680B2
    • 2005-04-19
    • US10372952
    • 2003-02-26
    • Jun WatanabeYukio Ohtani
    • Jun WatanabeYukio Ohtani
    • B60T13/74F16D65/14F16D65/18F16D65/56F16D55/08
    • F16D65/567B60T13/741F16D65/18F16D2121/24F16D2125/36F16D2125/50
    • In an electrically actuatable disc brake, rotation of a rotor of an electric motor is reduced by means of a differential reduction mechanism. A ball ramp mechanism is operated to press brake pads against a disc rotor to generate a braking force. In the differential reduction mechanism, when an eccentric shaft of the rotor is subjected to eccentric rotation, an external gear member having external input teeth meshing with a fixed ring gear performs an orbital motion while rotating on a center axis of the gear member, whereby a set of external output teeth of the gear member performs an orbital motion while rotating on the center axis to operate a ring gear integrally formed with a rotary disc of the ball ramp mechanism. A high reduction ratio can be easily obtained. The differential reduction mechanism can be easily formed and imparted with sufficient strength.
    • 在电致动盘式制动器中,通过差动减速机构来减小电动机转子的旋转。 操作滚珠坡道机构以将制动垫压靠在盘形转子上以产生制动力。 在差速减速机构中,当转子的偏心轴受到偏心旋转时,具有与固定齿圈啮合的外部输入齿的外部齿轮构件在齿轮构件的中心轴线上旋转的同时进行轨道运动,由此 齿轮构件的一组外部输出齿在中心轴线上旋转的同时执行轨道运动,以操作与滚珠坡道机构的旋转盘一体形成的齿圈。 可以容易地获得高的还原率。 差速减速机构可以容易地形成并赋予足够的强度。
    • 35. 发明授权
    • Method and apparatus for manufacturing plastic optical element and plastic optical element
    • 塑料光学元件和塑料光学元件的制造方法和装置
    • US06875380B2
    • 2005-04-05
    • US10175363
    • 2002-06-20
    • Hidenobu KishiYasuo YamanakaJun WatanabeKiyotaka SawadaToshiharu Hatakeyama
    • Hidenobu KishiYasuo YamanakaJun WatanabeKiyotaka SawadaToshiharu Hatakeyama
    • B29C33/02B29C45/72B29C71/02B29D11/00G02B1/04
    • B29C71/02B29C33/02B29C45/7207B29C2071/022B29D11/00009B29K2995/0031B29L2011/00B29L2011/0016
    • A method for manufacturing an optical element, such as a plastic lens or similar, by molding. The manufacturing method includes the steps of molding the plastic lens under a prescribed molding temperature higher than a glass transition level of the plastic material used to from the optical element. The manufacturing method also includes the step of gradually cooling the optical element by at least 5° C. with a speed which decreases by approximately 3° C. per minute. The optical element formed from a plastic material includes a substantially rectangular shape having a width, a height, and a thickness, wherein the width is greater than the height and the thickness is measured in an optical axis direction. The optical element also includes a refractive index distribution of approximately 2×10−5 at a central half section of the height. The optical element may be defined by the manufacturing method having the molding step and the gradual cooling step. The apparatus used to manufacture the optical element includes a molding device for molding the optical element under a prescribed molding temperature higher than a glass transition level of the plastic material forming the optical element and a device for gradually cooling the optical element.
    • 通过模制制造诸如塑料透镜等的光学元件的方法。 该制造方法包括以下步骤:在高于从光学元件使用的塑料材料的玻璃化转变水平的规定成型温度下成型塑料透镜。 该制造方法还包括以每分钟降低大约3℃的速度将光学元件逐渐冷却至少5℃的步骤。 由塑料材料形成的光学元件包括具有宽度,高度和厚度的大致矩形形状,其中宽度大于高度,并且在光轴方向上测量厚度。 光学元件还包括在高度的中央半部处的约2×10 -5的折射率分布。 光学元件可以通过具有成型步骤和逐渐冷却步骤的制造方法来限定。 用于制造光学元件的装置包括用于在高于形成光学元件的塑料材料的玻璃化转变水平的规定成型温度下成型光学元件的模制装置和用于逐渐冷却光学元件的装置。