Abstract:
The invention relates to a transport system for piece goods (6), having a conveyor system (2) with at least one piece goods carrier (4) moved by the conveyor system (2) and an unloading device (9) for removing the piece goods (6) from the at least one piece goods carrier (4) at an unloading point (7), characterized in that the unloading device (9) is constituted by a freely programmable manipulator (9a) positioned at the unloading point (7). In addition, the invention relates to a method for unloading piece goods (6) from a piece goods carrier (4) of a conveyor system (2) at an unloading point (7), in particular using a transport system according to the invention, and use thereof in luggage conveyor systems.
Abstract:
A transport system, in particular an airport luggage transport system, is disclosed that moves containers with individual items along a transport path. The system includes at least one support element that supports a bottom side of the containers along the transport path, guiding means, and loading and unloading means as well as a motion link located next to the passing containers. A pinwheel rotatably supported on the container has pins adapted to engage with the motion link. An endless conveyor belt revolves transversely to the transport direction and is driven by the pinwheel, whereby an upper belt section of the endless conveyor belt forms a support surface for the containers. The bottom side of the containers includes at least one groove-shaped recess oriented in the transport direction that engages with the guiding means at least at the loading and unloading location.
Abstract:
A conveyor system for transported goods which are transported with a preset transport speed and method for operating the conveyor system are described. The individual conveyers of the system are driven by asynchronous motors. Sensors associated with the conveyors measure the actual transport speed of the transported goods on conveyors to determine the dependence of the actual transport speed on the load, such as the weight of the transported goods. A controller adjusts the speed of the conveyors based on the signals received from the sensors.
Abstract:
A transport system for piece goods includes a conveyor for moving the piece goods along a conveying path, an unloading device including a multi-axis manipulator for unloading piece goods from the conveyor, and a clearing tool. The clearing tool is moved relative to the conveyor by the multi-axis manipulator to discharge a piece good from the conveyor, and the movement of the clearing tool includes a directional component transverse to the direction of movement of the conveying path and a directional component in the direction of movement of the conveying path.
Abstract:
A container transport system for transport of an article, in particular a baggage item, includes a container for receiving an article, with the container made of flame-resistant, wear-resistant and translucent plastic material which is stable in shape. The container has an underside which is formed with touch surfaces extending in a transport direction by which the container is advanced by a conveyor between a receiving end and a discharge end. The conveyor is provided with a guiding and/or driving engagement assembly for cooperation with the touch surfaces of the container.
Abstract:
A transport system, in particular an airport luggage transport system, is disclosed that moves containers with individual items along a transport path. The system includes at least one support element that supports a bottom side of the containers along the transport path, guiding means, and loading and unloading means as well as a motion link located next to the passing containers. A pinwheel rotatably supported on the container has pins adapted to engage with the motion link. An endless conveyor belt revolves transversely to the transport direction and is driven by the pinwheel, whereby an upper belt section of the endless conveyor belt forms a support surface for the containers. The bottom side of the containers includes at least one groove-shaped recess oriented in the transport direction that engages with the guiding means at least at the loading and unloading location.
Abstract:
A conveyor system for transport of containers, in particular an airport baggage handling system, includes a conveyor having a curved transport path with one end defining an entry zone and another end defining an exit zone. The containers are moved by a container propulsion mechanism along the curved transport path between the entry and exit zones, wherein the curved transport path is constructed for movement of the containers in an inwardly inclined disposition for reducing centrifugal forces.
Abstract:
A transport system, in particular an airport luggage transport system and a controller for the transport system are described. The transport system transports items to a predetermined destination on predefined transport routes via several branching locations. A master controller sets for each transported item a destination and a transport route, which are processed by one or more slave controllers. Each transported item is given an identification number that is identified by the slave controller. The master controller provides to the slave controller the destination associated with each identification number and associates with each destination at the branching locations a forwarding direction. Forwarding is processed by the slave controller without an interrogation of the master controller, based on the preset association at the branching locations.
Abstract:
A transport system, in particular an airport luggage transport system, and guide means for a transport system of this type, for transporting individual items, are disclosed. The items are transported along a transport path with at least one straight section, with support elements for supporting a bottom side of the containers. The bottom side of the containers includes at least one straight guiding element in the form of a groove-shaped recess extending in a transport direction and having two opposing side faces. To accurately and securely guide the containers, guiding means with lateral guiding rollers engage with the side faces of the groove-shaped recesses.
Abstract:
A screwing device (1) and a screwing method use a multi-member (12, 13, 14, 15) robot (6) having a driven rotational axis. The robot (6), on its last member (12), carries a rotational device (7) with a rotational tool (8). The rotational device is driven independently and is provided and designed for rapidly screwing a rotating part (3) on or off. The screwing tightening or untightening of the rotating part (3) is performed by the robot (6) and in particular by the robot end member (12).