摘要:
The invention relates to a running carriage (1) having a brake module (3) for a suspended gravity conveyor. The brake module (3) has a housing (17), a first shaft (27) and a second shaft (33), wherein a hydraulic pump is arranged in the housing (17) of the brake module (3) and parts of said hydraulic pump are connected to the first shaft (27). The arrangement of a hydraulic pump in the brake module of the running carriage advantageously produces a running carriage which regulates its speed automatically by the use of a dynamic pressure.
摘要:
The invention relates to a brake module for a gravity conveyor, which brake module has a first shaft and a hydraulic pump, and parts of the hydraulic pump suitable for conveying liquids are connected to the first shaft. In order to provide a wear-free, energy-efficient brake system for a gravity conveyor, which gravity conveyor itself controls the required braking torque thereof in accordance with the load to be conveyed and the velocity in at least two directions of motion, the brake module has at least one fluid channel (41), on which a throttling element (57, 59) suitable for throttling the flow velocity of a liquid (F) located in the fluid channel (41) and for closing the fluid channel (41) is arranged, wherein the throttling element (57, 59) is suitable for making the fluid channel (41) narrower at least at two points. The throttling element (57, 59) is actuated by the liquid velocity and springs (49).
摘要:
The invention relates to a conveyor device (1) comprising a pivoting arm (2) for transferring a carriage (3) from a connection rail element (4) of an upper plane (5) to a connection rail element (6) in a plane (7) located below the upper plane. For said purpose, the pivoting arm (2) carries a compatible rail section (9) corresponding to the connection rail elements (4, 6), in order to thus be able to optionally establish a connection with the first or the second connection rail element (4, 6). The pivoting arm is designed such as to be lowerable against a restoring force (F R ) of a spring element (10) from the upper position thereof into the lower position by means of the load of the carriage (3) alone, possibly in connection with a carrying load not represented. The reset force (F R ) thus obtained is sufficient for automatically pivoting the pivoting arm (2) against gravity back into the upper position. The pivoting arm (2) is temporarily secured by means of a respective securing element (14, 15) when the upper plane and the lower plane (5, 7) are reached. The release of the securing element (14) is triggered by the kinetic energy of the impacting carrier (3). Conversely, the reset movement is only initiated when the carriage (3) reaches a second release lever (17) on the second connection rail element (6) and has actuated said release lever (17) by means of a tappet (18) protruding downward.