Abstract:
A cable-processing system comprising a cable-processing machine for processing ends of cables. The cable-processing machine has: an input side for receiving the cables; a plurality of cable-processing stations; a cable transport device for transporting at least one cable with a movable gripper; and an output side for discharging a processed cable. The cable transport device has a cable conveying device designed as a multiple-store device having a plurality of cable holders. The multiple-store device is designed as an autonomous or guided transporter. At least one of the grippers is designed as a transfer gripper to remove the cables from the cable holder and to feed them to at least one of the cable-processing stations and/or to at least one further gripper acting as a transfer gripper which can be moved using a frame-supported transfer mechanism to transfer the cable to one of the cable-processing stations.
Abstract:
A device for transferring rod articles of the tobacco industry from a longitudinal conveyor, the rod articles having an axis, the longitudinal conveyor having a first transport direction, which transports rod articles in the transport direction, along the axis of rod articles, to a transverse conveyor, the transverse conveyor having a second transport direction, which transports rod articles in the second transport direction transverse to the axis of rod articles, or inversely, containing a rotary transport device with a horizontal rotation axis, equipped with rotary arms on which brackets maintaining a horizontal position during rotation of the transport device, with grippers for gripping rod articles attached to the brackets, characterized in that the gripper is rotationally mounted on the bracket, so that the gripper's axis of rotation is directed vertically during the entire duration of the bracket's movement.
Abstract:
An intelligent device for conveying, grading and aligning of tube products includes: a conveying and grading mechanism, which includes: a timing belt, a timing belt power unit, a swing rod, a track, and a swing rod cylinder; wherein multiple baffles are evenly arranged on a surface of the timing belt; multiple track openings are evenly arranged on a surface of the track; the swing rod cylinder is fixed on a side wall of the track; the swing rod is fixed with an output end of the swing rod cylinder; and multiple single-bundle aligning assemblies, each includes: a cross beam, a vertical beam, a stacking unit, a bracket cylinder, a bracket, an aligning cylinder, and a swing bracket; wherein the bracket is fixed with a telescopic end of the bracket cylinder; the stacking unit is fixed on a surface of the vertical beam along a height direction thereof.
Abstract:
A lumber transfer system for transferring pieces of lumber comprising a feeding conveyor having a conveying surface for receiving the pieces of lumber; a plurality of grasping assemblies spaced apart transversely along the conveying surface, each one of the grasping assemblies comprising a grasping finger able to be positioned independently for either grasping a piece of lumber located upstream from the grasping assembly and moving it, or preventing it from grasping a piece of lumber; a detection system for detecting a presence of a piece of lumber and producing signals; and a controller controlling the grasping assemblies for the grasping fingers to be positioned independently. The lumber transfer system is therefore able to have only grasping fingers responsible to grasp the piece of lumber to be in a grasping position.
Abstract:
A method for storing cardboard tubes (2) in a storing unit according to the present invention comprising the following steps: providing a storage unit with an input section for the tubes (2), a storage section (AC) comprising a plurality of storing planes (13), an output section for the tubes (2), transfer means (3) for transferring the tubes (2) from the input section to the storage section, and discharge means for conveying the tubes (2) from the storing section to the output section; providing a plurality of cardboard tubes (2) in the input section (E) of said storage unit; transferring the tubes (2) from the input section of the storage unit to the storage section; storing a plurality of tubes (2) in said storage section (AC); transferring the tubes (2) from said storage section (AC) to said output section. The step of transferring the tubes (2) from said input section to said storage section involves more tubes (2) simultaneously, whereby a plurality of tubes (2) are transferred from said input section simultaneously on a plurality of storing planes (13) of the storage section (AC).
Abstract:
A method of forming bundles of glass articles is provided. The method includes transporting individual glass articles to an insert building station using a conveying system. The glass articles are individually located within article receiving slots of a layer separation insert using the conveying system. Each slot of the layer separation insert receives a single glass article forming a glass article layer of side-by-side glass articles. Multiple glass article layers including layer separation inserts are stacked using the conveying system forming a bundle. The layer separation inserts provide a barrier between adjacent glass articles of each of the glass article layers to inhibit glass-to-glass contact.
Abstract:
A material processing system includes: an offsetter configured to receive a stack of material and including a lifting bar configured to lift a portion of the stack of material; and a processing station operably connected to the offsetter. A method of processing a material includes: loading a stack of material on an offsetter, the stack of material including a first portion and a second portion, the first portion positioned above the second portion and separated from the second portion by at least one cross tie, the stack of material including a first end and a second end distal from the first end; lifting the second portion away from the first portion by a lifting bar of the offsetter pushing upward on the second end; and removing the cross tie.
Abstract:
A drum (10,12) for receiving, transporting and discharging long metal products (P), such as bar or the like, preferably coming from a hot rolling mill: the drum includes at least one pair of channels (C1-C2) extending longitudinally axially and the channels being around the circumference of the drum, the channels simultaneously receive two long products (P1,P2), respectively one long product in each one of the channels that is part of the pair. Also a method and a system for handling long rolled products coming from different strands of a rolling mill are disclosed.
Abstract:
A lengthy article transferring apparatus transfers lengthy articles between the apparatus and target locations for the transfer. A lifting driving device lifts and drives a platform and a transferring device mounted thereon by winding a cord-like member. A controller controls actuation of the lifting driving device and the transferring device. A lifted position detector monitors the position of the platform. The controller performs the transferring operation to actuate the transferring device when end portions of the platform are received and supported by receivers provided at the target locations for the transfer, and performs a lifted position adjustment procedure controlling actuation of the lifting driving device based upon information detected by the lifted position detector during the transferring procedure to absorb variation in the position of the platform caused by a shift in the load acting on the platform as the article is transported in the article transferring direction.
Abstract:
Method and device for handling, particularly stacking, profile parts. Device for handling profile parts extending in a longitudinal direction and defining an axis parallel to said longitudinal direction, said device comprising means for linearly and/or axially positioning said parts perpendicularly to said longitudinal direction and for conveying said parts and/or for stacking said parts, said device comprising at least one supporting member arranged parallel to said longitudinal direction and provided for supporting means for picking up said parts, characterised in that said means for picking up and said means for linearly and/or axially positioning being formed by at least four arms each having a first end and a second end located at a distance from each other, which arms are each pivotably mounted with their first end to said supporting member, each of said arms comprising at their second end means for grabbing said parts and rotating said parts about said axis, each of said arms further comprising means for varying said distance, said at least four arms being provided to operate in at least two sets of arms, wherein each of said set of arms comprises at least two of said at least four arms.