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    • 4. 发明申请
    • ROTARY CUTTER
    • 旋转切割机
    • WO0198042A3
    • 2002-06-27
    • PCT/CZ0100035
    • 2001-06-19
    • NOVAK FRANTISEK
    • NOVAK FRANTISEK
    • B26D1/16
    • B26D1/16
    • The rotary cutter has a rotary cutting disc that moves along a circular course. Driving and cutting sides of the cutter, the main axis of which is almost horizontal, are directed by the main case (1). A hollow through pivot of the coupling plate (2), having at least one arm at the main case (1) cutting side, is accommodated in a revolving housing in the main case (1). A part of the planet arm end is a planet case accommodating a pivoted planet shaft (4) projecting outside of the planet case at the cutting side. At this outside planet shaft (4) section, a tightly fit planet pulley (16) is placed nearest to the planet case and, at the shaft end, the cutting disc (5), also tightly fit, is placed.
    • 旋转切割机具有沿着圆形路线移动的旋转切割盘。 其主轴几乎水平的切割器的驱动和切割面由主壳体(1)引导。 在主壳体(1)的切割侧具有至少一个臂的连接板(2)的中空的枢轴被容纳在主壳体(1)中的旋转壳体中。 行星臂端部的一部分是容纳在切割侧处突出到行星壳外侧的枢转行星轴(4)的行星壳体。 在这个外部的行星轴(4)部分处,紧配合的行星滑轮(16)被放置成最靠近行星壳体,并且在轴端处放置也紧密配合的切割盘(5)。
    • 10. 发明专利
    • Pneumatically sprung saddle
    • CZ286537B6
    • 2000-05-17
    • CZ53896
    • 1996-02-22
    • NOVAK FRANTISEK
    • NOVAK FRANTISEK
    • B62J1/00B62J1/02B62J1/08B62J1/26
    • The saddle with pneumatic suspension includes a flat bag (3) placed inside the lower space of the saddle skeleton (2) in such a way, that the elastic part of the bag (3) is in the middle part of the skeleton (2) and the compression space of the bag (3) with at least one valve (31) is predominantly in the rear part of the skeleton (2). At least one vertical pillar (22) is provided from the lower side the saddle skeleton (2), the pillars being arranged in such a way, that one vertical pillar is adapted in the front part of the skeleton (2) and two vertical pillars are in the rear part of the skeleton (2) placed along the sides of the lower inner space of the skeleton (2). In this way the hoop (1) is slidingly guided by the guides (15) on the vertical pillars (22), where the carrier surface (14) of the hoop (1) is placed among the guides (15) and leans against the lower wall of the elastic part of the bag (3) and, in the loaded state, the carrier surface (14) of the hoop (1) is pressed into the inner space of the elastic part of the bag (3) and the lower part of the hoop (1) formed by clamping rods (11) is adapted for clamping to the saddle tube.