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    • 6. 发明申请
    • DEVICE FOR INSPECTING WORKPIECE SURFACES AND STRIP MATERIALS
    • 检查工作表面和条纹材料的装置
    • US20160260424A1
    • 2016-09-08
    • US14906793
    • 2014-07-22
    • ZS-HANDLING GMBH
    • MICHAEL SCHILPJOSEF ZIMMERMANNADOLF ZITZMANN
    • G10K15/00F16C32/06G01N21/84G01N27/72G01B7/06G01B11/06
    • G10K15/00F16C32/0603G01B7/10G01B11/06G01N21/84G01N21/8901G01N27/72
    • A device for inspecting a workpiece surface includes a sensor, a sonotrode having a sound-emitting surface and rigidly connected to the sensor to form a sensor unit, and a movable positioning device coupled with the sensor unit to position the sensor unit in a position opposite to the workpiece surface. The positioning device includes a force-applying member to urge the sensor unit in a direction of the workpiece or strip material surface by applying a predefined urging force or using gravity as the urging force. The sound-emitting surface of the sonotrode generates ultrasonic oscillations to produce an ultrasonic levitation force field in the presence of a gaseous medium between the workpiece surface and the sound-emitting surface to thereby generate a counterforce in opposition to the urging force so that the sensor unit is held hovering at a distance to the workpiece or strip surface.
    • 用于检查工件表面的装置包括传感器,具有声发射表面并刚性地连接到传感器以形成传感器单元的超声波发生器,以及与传感器单元耦合的可移动定位装置,以将传感器单元定位在相对的位置 到工件表面。 定位装置包括施力部件,其通过施加预定的推动力或使用重力作为推动力来推动传感器单元在工件或带材表面的方向上。 超声波发生表面在工件表面和声发射表面之间的气体介质存在下产生超声振荡以产生超声波悬浮力场,从而产生与施力相反的反作用力,使得传感器 单元被放置在与工件或条带表面一段距离的位置。
    • 7. 发明授权
    • Rotation transmitter
    • 旋转变送器
    • US09291208B2
    • 2016-03-22
    • US14275931
    • 2014-05-13
    • MITUTOYO CORPORATION
    • Hisayoshi Sakai
    • F16D3/04F16D3/82F16D3/02F16D3/80F16C32/06
    • F16D3/82F16C32/0603F16D3/02F16D3/80
    • A rotation transmitter includes: a first member, an intermediate member and a second member that are arranged coaxially with a rotation axis. The first member is formed with a first bearing surface along the rotation axis and a first direction. The second member is formed with a second bearing surface along the rotation axis and a second direction. The intermediate member is formed with a first middle bearing surface facing the first bearing surface and formed with a second middle bearing surface facing the second bearing surface. A static-pressure air bearing is formed between the bearing surface and the middle bearing surface. The rotation transmitter further includes: a preload device that biases the bearing surface and the middle bearing surface in a direction approaching each other.
    • 旋转变送器包括:与旋转轴同轴布置的第一构件,中间构件和第二构件。 第一构件沿着旋转轴线和第一方向形成有第一支承面。 第二构件沿旋转轴线和第二方向形成有第二支承面。 中间构件形成有面向第一支承面的第一中间承载面,并形成有面向第二支承面的第二中间承载面。 在轴承表面和中间承载面之间形成静压空气轴承。 旋转变送器还包括:预紧装置,其使轴承表面和中间承载面朝向彼此接近的方向偏压。
    • 10. 发明授权
    • Gas-ejecting bearings for transport of glass sheets
    • 用于运输玻璃板的喷气轴承
    • US08511461B2
    • 2013-08-20
    • US12465859
    • 2009-05-14
    • Gautam Narendra KudvaWeiwei Luo
    • Gautam Narendra KudvaWeiwei Luo
    • B65G45/22C03B35/24
    • C03B35/24B65G49/061B65G49/062B65G49/063F16C32/0603H01L21/67712H01L21/67721
    • Non-contact, gas-ejecting bearings (3) are provided for conveying flexible glass sheets (13), such as LCD substrates, at high conveyance speeds, e.g., speeds of 40 meters/minute and above, e.g., 60 meters/minute. Gas is provided to the bearing's orifices (22) from a plenum which operates at a pressure Pplenum and the bearings have a calculated static pressure Pmidpoint at the midpoints (27) between the bearing's centermost orifice (26) and each of its nearest neighbors (28) in a horizontal direction which satisfies the relationship Pmidpoint/Pplenum≧0.05. The bearings (3) can reduce the time-averaged, peak-to-peak variation in the spacing between a LCD substrate (13) traveling at, for example, 60 meters/minute and the face (20) of the bearing (3) to less than 500 microns, thus reducing the chances that the substrate (13) will hit and be damaged by the bearing (3).
    • 提供非接触式气体喷射轴承(3),以高输送速度(例如40米/分钟以上,例如60米/分钟)的速度传送诸如LCD基板的柔性玻璃板(13)。 气体从在压力Pplenum上工作的增压室提供给轴承的孔口(22),并且轴承在轴承的最中心孔口(26)和其最近的邻近件(28)之间的中点(27)处具有计算的静态压力Pmidpoint )满足关系Pmidpoint / Pplenum> = 0.05的水平方向。 轴承(3)可以减少以例如60米/分钟行进的LCD基板(13)与轴承(3)的表面(20)之间的间隔的时间平均,峰 - 峰变化, 到小于500微米,从而减少了衬底(13)将被轴承(3)撞击并损坏的机会。