Abstract:
A pair of conveyors having a pair of launch conveyors and at least one pair of drive conveyors is disclosed using modular flat belts. The pair of launch conveyors has zero motion, when a vehicle is driven onto the pair of launch conveyors where the vehicle is placed in park. The pair of launch conveyors is activated to a speed in synchronous with the pair of drive conveyers. The vehicle is moved from the pair of launch conveyors to the pair of drive conveyors and proceeds along the flat modular belts.
Abstract:
A transportation support assembly and a transport device are provided in embodiments of the disclosure, the transportation support assembly comprising: a supporting plate; a first baffle plate; a second baffle plate; and at least one bundling strap. Each of the first baffle plate and the second baffle plate is hinged with the supporting plate and is provided thereon respectively with at least one through-hole through which the at least one bundling strap passes such that the first baffle plate, the second baffle plate and the bundling strap cooperate with one another to clamp an object to be supported. Thereby, human labor as required for handling and carrying an apparatus is saved, and any risk in handling and carrying of the apparatus is also reduced, by the transportation support assembly.
Abstract:
A system and method for servicing a rotor of a generator are presented. The system includes a carriage for carrying the rotor. At least one carriage steering device are arranged on the carriage for steering the carriage when traversing along a removal skid during servicing the rotor. The carriage steering device is attached to the carriage in a way that it is accessible from above the carriage. The carriage steering device is adjustable such that a center of the carriage aligns to a center rail of the removal skid when traversing along the removal skid during servicing the rotor.
Abstract:
A pair of conveyors having a pair of launch conveyors and at least one pair of drive conveyors is disclosed using modular flat belts. The pair of launch conveyors has zero motion, when a vehicle is driven onto the pair of launch conveyors where the vehicle is placed in park. The pair of launch conveyors is activated to a speed in synchronous with the pair of drive conveyers. The vehicle is moved from the pair of launch conveyors to the pair of drive conveyors and proceeds along the flat modular belts.
Abstract:
In previous netting systems using disposable netting frames, the wooden frame may become jammed in the diverter frame. The present invention provides a rigid frame for installing and holding the wooden netting frame in the diverter frame and which releases the wooden frame for disposal.
Abstract:
A conveying system for a dip-coating system has at least one conveying unit that can be moved parallel to a conveying direction, in which workpieces to be treated can be conveyed through the dip-coating system, along a dip-coating tank of the dip-coating system, with which unit at least one workpiece to be treated can be moved in the conveying direction and at the same time can be dipped in a dipping bath contained in the dip-coating tank. The conveying system has at least one runway that can be disposed laterally beside the dip-coating tank, wherein the conveying unit has a powered vehicle of at least double-tracked and steerable construction, which is disposed with the ability to travel on the runway for conveying of the workpiece.
Abstract:
A combined rope-rod-driven parallel palletizing robot, comprises a chassis, wherein, a base driving mechanism is arranged on the chassis, a torque transfer mechanism is mounted on the base driving mechanism, a top gearbox is mounted on the top of the torque transfer mechanism, a gib arm is movably connected to the top gearbox, and a mechanical arm end tool is arranged on the movable end of the gib arm to operate a work object; the robot further comprises three steel wire rope drivers and three corresponding steel wire ropes, the three steel wire rope drivers are located on the chassis and evenly distributed around the base driving mechanism. In the present invention, the top gearbox and the torque transfer mechanism are driven by a rope to execute two-freedom spatial movement, so as to do palletizing work in a bigger work space.
Abstract:
An apparatus provided for orienting concrete blocks into a desired position comprises a pair of upper and lower turntables including respectively upper and lower block supporting surfaces. The lower supporting surface extends outwardly of, and below, the upper supporting surface. A stationary peripheral wall extends outwardly of the lower turntable and defines with the upper turntable and the lower supporting surface a gutter. The gutter is dimensioned to receive blocks therein in a substantially longitudinal orientation thereof. An outlet is provided at a downstream end of the gutter for allowing the substantially oriented blocks to be discharged from the apparatus. Therefore, concrete blocks, or the like, fed to the apparatus are received by the upper turntable, are then positioned in the gutter under the rotation of the upper and lower turntables, which typically rotate at different speeds, and are then discharged from the apparatus via the outlet.
Abstract:
An apparatus provided for orienting concrete blocks into a desired position comprises a pair of upper and lower turntables including respectively upper and lower block supporting surfaces. The lower supporting surface extends outwardly of, and below, the upper supporting surface. A stationary peripheral wall extends outwardly of the lower turntable and defines with the upper turntable and the lower supporting surface a gutter. The gutter is dimensioned to receive blocks therein in a substantial longitudinal orientation thereof. An outlet is provided at a downstream end of the gutter for allowing the substantially oriented blocks to be discharged from the apparatus. Therefore, concrete blocks, or the like, fed to the apparatus are received by the upper turntable, are then positioned in the gutter under the rotation of the upper and lower turntables, which typically rotate at different speeds, and are then discharged from the apparatus via the outlet.
Abstract:
A chemical supply system, includes: a chemical container receiving station configured to receive a chemical container, inspect chemical information of the chemical container and confirm the chemical information; a temporary storage configured to store the chemical container; a chemical supply device configured to supply a chemical in the chemical container to a place of use of the chemical; a first robot configured to transport the chemical container for which the chemical information is confirmed from the chemical container receiving station; and a second robot configured to carry the chemical container transported by the first robot into the chemical supply device..