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    • 5. 发明授权
    • Magnetic chuck for chucking or lifting workpieces
    • 用于夹紧或提升工件的磁性卡盘
    • US4934670A
    • 1990-06-19
    • US393224
    • 1989-08-14
    • Horst Witte
    • Horst Witte
    • B23Q7/04B25B11/00B25J15/06B65G47/91B65G47/92
    • B65G47/91B25B11/002B25B11/005
    • The magnetic chuck for chucking or raising workpieces has differently poled (S and N) magnetic pole pieces (1), between which is located a pole pitch (2) of non-ferromagnetic material. In order to make the magnetic chuck more universally usable for workpieces made from non-magnetizable or weakly magnetizable material, it is additionally constructed as a vacuum chuck. This is brought about by correspondingly differently designed bores or slots, which are preferably filled with sintered metal and by means of which the vacuum is applied through corresponding vacuum lines. Due to the fact that the magnetic force and/or the force applied by the vacuum is available as a retaining or holding force, a universal use of the same tool is possible and simultaneously a considerable holding force can be applied.
    • 用于夹紧或提升工件的磁性卡盘具有不同的极化(S和N)磁极片(1),它们位于非铁磁材料的极间距(2)之间。 为了使磁性卡盘更普遍地可用于由不可磁化或弱磁化材料制成的工件,其另外构造为真空卡盘。 这是由相应不同设计的孔或槽引起的,其优选地用烧结金属填充,借助于这些孔通过相应的真空管线施加真空。 由于磁力和/或由真空施加的力作为保持力或保持力可获得,同样的工具的普遍使用是可能的,同时可以施加相当大的保持力。
    • 6. 发明授权
    • Developing apparatus for developing diazotype material according to the
semi-dry process
    • 根据半干法开发二氮嗪类材料的开发设备
    • US4155637A
    • 1979-05-22
    • US920991
    • 1978-06-30
    • Horst WitteArtur Broze
    • Horst WitteArtur Broze
    • G03G15/10G03D5/06
    • G03D5/067
    • An apparatus for developing diazo material according to a semi-dry process comprising an applicator roll with a liquid absorbing cover, a press roll having a grooved hard surface, a backing roll biased against the press roll, and a blade for reducing the amount of developer liquid on the applicator roll and the press roll. The press roll is displaceable toward the applicator roll. The plane of transport of the diazo material to be developed passes between the applicator roll and the press roll. The axial moment of inertia of the press roll relative to the axial moment of inertia of the applicator means is determined in accordance by an equation containing weight components of the press roll, weight components of the applicator roll, the contact pressure component of the backing roll, and the sum of the components of the tangential force and normal force of the contact pressure of the blade and the frictional force along the line of contact of the blade on the applicator roll.
    • 一种用于根据半干法处理重氮材料的装置,包括具有液体吸收盖的涂布辊,具有槽形硬表面的压辊,偏压在压辊上的背衬辊和用于减少显影剂量的刮板 液体在涂布辊和压辊上。 压辊可朝向涂布辊移动。 要显影的重氮材料的输送平面通过涂布辊和压辊之间。 压辊相对于施加器装置的轴向转动惯量的轴向惯性矩根据包含压辊重量分量,涂布辊的重量分量,支承辊的接触压力分量的方程来确定 ,以及刀片的接触压力的切向力和法向力的分量以及沿着刀片在涂布辊上的接触线的摩擦力的总和。
    • 8. 发明授权
    • Apparatus for clamping workpieces
    • 用于夹紧工件的装置
    • US4722564A
    • 1988-02-02
    • US889868
    • 1986-07-28
    • Horst Witte
    • Horst Witte
    • B23Q3/08B25B11/00B65H3/20
    • B23Q3/086
    • An apparatus for clamping workpieces made from varied materials and complicated shapes comprises a body and clamping member, which are formed by adhesive films which can be used a number of times. These adhesive films can be moved from a position above the clamping surface of the body into a position below the clamping surface. In the first position, the workpiece is e.g. reliably fixed by pressing down. The adhesive film is then lowered into the plane of the clamping surface, so that the workpiece rests thereon and is reliably and firmly supported there for machining purposes. The adhesive film simultaneously secures the workpiece in the machining position. When machining is ended, the adhesive film is lowered beneath the plane of the clamping surface, so that the adhesive connection can be broken and the workpiece removed. The adhesive film can be moved mechanically, e.g. by an eccentric drive, or alternatively by a hydraulic or pneumatic mechanism.
    • 用于夹持由不同材料和复杂形状制成的工件的装置包括主体和夹紧构件,其由可以多次使用的粘合剂膜形成。 这些粘合剂膜可以从主体的夹紧表面上方的位置移动到夹紧表面下方的位置。 在第一位置,工件是例如。 通过按压可靠地固定。 然后将粘合剂膜降低到夹紧表面的平面中,使得工件搁置在其上并且可靠且牢固地支撑在那里用于加工目的。 粘合膜同时将工件固定在加工位置。 当加工结束时,粘合剂膜在夹紧表面的平面下方降低,使得粘合剂连接可能被破坏并且工件被去除。 粘合膜可以机械地移动,例如, 通过偏心驱动,或者通过液压或气动机构。