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    • 35. 发明专利
    • DE602004007562D1
    • 2007-08-30
    • DE602004007562
    • 2004-03-11
    • FANUC LTD
    • NISHIMURA KOICHINAITO YASUO
    • B29C45/66B29C45/17B29C45/64
    • The present invention provides a clamping mechanism (10) of a molding machine, the clamping mechanism comprising: a bed (12); a stationary platen (14) mounted on the bed (12), and carrying a stationary mold (16); a guide bar (18) arranged fixedly relative to the stationary platen (14), and defining a longitudinal guiding axis (18a); a first movable platen (20) arranged movably relative to the stationary platen (14) along the guiding axis (18a), and carrying a movable mold (22); a support structure (24) interposed between the guide bar (18) and the first movable platen (20), and movably supporting the first movable platen (20) on the guide bar (18) along the guiding axis (18a); a second movable platen (26) separate from the first movable platen (20), and arranged movably relative to the stationary platen (14) along the guiding axis (18a); a connecting member (28) connecting the first movable platen (20) and the second movable platen (26) to each other in such a manner that they are shiftable along the guiding axis (18a) relative to each other; and a drive section (30) for applying a drive force to the second movable platen (26), to move the first movable platen (20) and the second movable platen (26) along the guiding axis (18a). The clamping mechanism has a biasing member (92,102) interposed between the first and second movable platens (20,26), the biasing member (92,102) elastically biasing the first and second movable platens (20,26) toward each other along the guiding axis (18a).
    • 39. 发明专利
    • DE69018063T2
    • 1995-07-27
    • DE69018063
    • 1990-11-01
    • FANUC LTD
    • INABA YOSHIHARUNISHIMURA KOICHI
    • B29C45/46B29C45/50
    • A low-cost crank type injection device capable of driving an injection screw by a driving force without using a high output type electric motor. This device has a crank mechanism (20) for converting a forward or reverse rotary motion of a driving shaft (21) connected to the output shaft (41) of a servo-motor (40) controlled by a numerically controlled machine (60) through a speed reducer (50) into a reciprocating motion of the injection screw installed on a pusher plate (10), and forwardly drives the injection screw with a high driving force by the servo-motor through the speed reducer and the crank mechanism during the injection process. The servo-motor is driven such that the driving shaft is driven in the forward direction within a range of a given rotary angle corresp. to an operating region excluding the top and bottom dead centres of the crank mechanism.