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    • 1. 发明授权
    • Polishing device with rotary joint
    • 带旋转接头的抛光装置
    • US08574035B2
    • 2013-11-05
    • US12653032
    • 2009-12-07
    • Gunter SchneiderHelwig BuchenauerKlaus KrämerUlf Börner
    • Gunter SchneiderHelwig BuchenauerKlaus KrämerUlf Börner
    • B24B41/053
    • B24B13/02B24B55/02B24B57/02
    • A polishing device for polishing optical lenses having a tiltable base part for directly or indirectly receiving a polishing plate, which base part is connected to a polishing spindle having an axis of rotation D in order to be rotationally driven, wherein a rotary joint for supplying a polishing agent is provided, which rotary joint is at least partly arranged opposite said polishing spindle, relative to the base part, and a coupling element is provided by means of which the rotary joint can be detachably push-fitted or clipped onto a polishing spindle. A method for polishing selected zones of aspherical lenses which are not rotationally symmetric using a polishing plate which is guided by a polishing spindle so as to be tiltable, wherein during polishing, a polishing agent is introduced between said polishing plate and the lens via a rotary joint arranged between said polishing spindle and said polishing plate.
    • 一种用于抛光光学透镜的抛光装置,具有用于直接或间接接收抛光板的可倾斜基座部分,该基座部分连接到具有旋转轴线D以便被旋转地驱动的抛光心轴,其中, 提供了抛光剂,该旋转接头相对于基部至少部分地布置在抛光心轴上,并且提供了一个联接元件,通过该连接元件可以将旋转接头可拆卸地推入或夹紧到抛光轴上。 一种用于抛光非抛光区域的方法,所述非球面透镜不是使用由抛光心轴引导以便可倾斜的抛光板旋转对称的,其中在抛光期间,通过旋转的方式将抛光剂引入所述​​抛光板和透镜之间 所述抛光轴与所述抛光板之间布置。
    • 3. 发明申请
    • Polishing device with potary joint
    • 抛光装置,配有接头
    • US20100159809A1
    • 2010-06-24
    • US12653032
    • 2009-12-07
    • Gunter SchneiderHelwig BuchenauerKlaus KrämerUlf Börner
    • Gunter SchneiderHelwig BuchenauerKlaus KrämerUlf Börner
    • B24B13/01B24B57/00F16B21/06
    • B24B13/02B24B55/02B24B57/02
    • A polishing device for polishing optical lenses having a tiltable base part for directly or indirectly receiving a polishing plate, which base part is connected to a polishing spindle having an axis of rotation D in order to be rotationally driven, wherein a rotary joint for supplying a polishing agent is provided, which rotary joint is at least partly arranged opposite said polishing spindle, relative to the base part, and a coupling element is provided by means of which the rotary joint can be detachably push-fitted or clipped onto a polishing spindle. A method for polishing selected zones of aspherical lenses which are not rotationally symmetric using a polishing plate which is guided by a polishing spindle so as to be tiltable, wherein during polishing, a polishing agent is introduced between said polishing plate and the lens via a rotary joint arranged between said polishing spindle and said polishing plate.
    • 一种用于抛光光学透镜的抛光装置,具有用于直接或间接接收抛光板的可倾斜基座部分,该基座部分连接到具有旋转轴线D以便被旋转地驱动的抛光心轴,其中, 提供了抛光剂,该旋转接头相对于基部至少部分地布置在抛光心轴上,并且提供了一个联接元件,通过该连接元件可以将旋转接头可拆卸地推入或夹紧到抛光轴上。 一种用于抛光非抛光区域的方法,所述非球面透镜不是使用由抛光心轴引导以便可倾斜的抛光板旋转对称的,其中在抛光期间,通过旋转的方式将抛光剂引入所述​​抛光板和透镜之间 所述抛光轴与所述抛光板之间布置。
    • 6. 发明申请
    • DEVICE FOR BLOCKING EYEGLASS LENSES
    • 阻塞眼镜镜片的装置
    • US20130270759A1
    • 2013-10-17
    • US13994963
    • 2011-12-20
    • Gunter SchneiderHelwig BuchenauerUlf BörnerKlaus Krämer
    • Gunter SchneiderHelwig BuchenauerUlf BörnerKlaus Krämer
    • B25H1/00
    • B25H1/0021B24B13/0031B24B13/005B24B41/005
    • A device for blocking eyeglass lenses onto blocks using a bonding mass, by which the eyeglass lens is connected to the block in a form-fit and/or force-closed manner, having several stations, between which the eyeglass lens and/or the block is transported, at least one blocking station, in which the block is connected to the eyeglass lens using the bonding mass, a transport arm having a retaining head arranged thereon for positioning the eyeglass lens in the blocking station, wherein the transport arm is designed as a pivot arm and has at least one pivot axis (S1), by means of which the transport arm and the retaining head can be moved between at least two stations, and at least one conveying arm having a retainer for the block or an eyeglass lens, wherein the conveying arm has a pivot axis (S2), which is arranged parallel or coaxial to the pivot axis (S1) and by which the retainer can be moved between at least two stations.
    • 一种用于使用粘合块将眼镜镜片阻挡在块上的装置,眼镜镜片以形状配合和/或强制关闭的方式连接到块上,具有若干台,眼镜镜片和/或块之间 被运送至少一个阻塞站,其中块使用粘合块连接到眼镜镜片;传送臂,其上设置有保持头,用于将眼镜镜片定位在阻挡站中,其中传送臂被设计为 枢转臂并且具有至少一个枢转轴线(S1),借助于该枢转轴线,传送臂和保持头可以在至少两个站之间移动,并且至少一个传送臂具有用于块的保持器或眼镜镜片 ,其中所述输送臂具有与所述枢转轴线(S1)平行或同轴的枢转轴线(S2),并且所述保持器可以在至少两个工位之间移动。
    • 7. 发明授权
    • Polishing tool with several pressure zones
    • 抛光工具有几个压力区
    • US07217176B2
    • 2007-05-15
    • US11255798
    • 2005-10-20
    • Gunter SchneiderHelwig BuchenauerUlf BörnerKlaus Krämer
    • Gunter SchneiderHelwig BuchenauerUlf BörnerKlaus Krämer
    • B24B5/00
    • B24B13/012B24B13/02Y10S451/921
    • The invention refers to a polishing tool for optical lenses with at least one polishing pad adaptable at least partially to the shape of a lens surface of said lenses and drivable by means of a drive shaft, said polishing pad having a membrane, wherein said polishing pad can transmit a bearing force of said membrane at least in an orthogonal direction relative to a lens surface. Moreover, the polishing tool comprises a reinforcing member connectable to said membrane, said reinforcing member being dimensionally stable in a parallel direction relative to a surface of said membrane and being flexible and/or pliable in an orthogonal direction relative to the surface of said membrane, wherein at least one pressure pad with a pressure membrane is arranged within said polishing pad, wherein said pressure membrane can be made to bear and/or can be prestressed against said membrane or said reinforcing member in an indirect or in a direct manner.
    • 本发明涉及一种用于光学透镜的抛光工具,其中至少一个抛光垫至少部分地适应于所述透镜的透镜表面的形状并且可通过驱动轴驱动,所述抛光垫具有膜,其中所述抛光垫 可以至少在相对于透镜表面的正交方向上传递所述膜的支承力。 此外,抛光工具包括可连接到所述膜的加强构件,所述加强构件在相对于所述膜的表面的平行方向上尺寸稳定,并且在相对于所述膜的表面的正交方向上柔性和/或柔性, 其中至少一个具有压力膜的压力垫被布置在所述抛光垫内,其中所述压力膜可以被制成承受和/或可以以间接或直接的方式对所述膜或所述加强构件预应力。
    • 9. 发明授权
    • Lathe for manufacturing ophthalmic lenses made of plastic
    • 用于制造由塑料制成的眼镜片的车床
    • US08683897B2
    • 2014-04-01
    • US12660805
    • 2010-03-04
    • Gunter SchneiderHelwig BuchenauerUlf BörnerKlaus Krämer
    • Gunter SchneiderHelwig BuchenauerUlf BörnerKlaus Krämer
    • B23B17/00B23Q1/00
    • B23Q1/015B23Q11/0035B23Q2230/004Y10T82/2566Y10T82/2585Y10T82/2595
    • A turning machine for producing non rotationally symmetric surfaces of synthetic spectacle lenses, having a support plane E, a machine bed made of cast iron with a width b1 and a mass m1, a linear motor with an actuator comprising a turning tool holder and an oscillation axis Z, a workpiece spindle with a rotational axis C and a movement axis X, wherein the machine bed has at least two bearing surfaces arranged at a distance for the linear motor and for the workpiece spindle, and between the two bearing surfaces, a chip space is provided which is limited at least partially by the machine bed, wherein the linear motor is supported on the first bearing surface and the workpiece spindle is supported on the second bearing surface in relation to the chip space opposite the linear motor, wherein the mass of the machine bed has the maximum value m1, and the value m1 lies between 100 kg and 500 kg, between 150 kg and 300 kg, between 170 kg and 200 kg or 180 kg. A turning machine, in which the ratio of the mass m1 of the machine bed to a moved mass m2 of the linear motor 3 is greater than a quotient Q, wherein the quotient Q is between 1:500 and 1:20, between 1:60 and 1:30 or between 1:140 and 1:100, or 1:40 or 1:120.
    • 一种用于生产合成眼镜镜片的非旋转对称表面的车削机床,具有支撑平面E,具有宽度为b1和质量m1的铸铁制成的机床,具有致动器的线性电动机,该致动器包括车刀工具架和摆动 轴Z,具有旋转轴线C的工件主轴和移动轴线X,其中机床具有至少两个轴向表面,该轴承表面布置成一定距离用于线性电动机和用于工件主轴,并且在两个支承表面之间, 提供了至少部分地由机床限制的空间,其中线性电动机被支撑在第一支承表面上,并且工件主轴相对于与线性电动机相对的芯片空间被支撑在第二支承表面上,其中质量 机床的最大值为m1,值m1为100kg与500kg之间,150kg与300kg之间,170kg与200kg或180kg之间。 一种车床,其中机床的质量m1与线性电动机3的移动质量m2的比值大于商Q,其中商Q在1:500和1:20之间,1: 60和1:30或在1:140和1:100之间,或1:40或1:120。