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Sheets are transported on a servo-driven conveyor into a fully automatic infeeder. Here, the speed of the sheets is synchronised to match two grippers that transfer them using a double gripper system, maintaining a cycle time of less than two seconds per sheet. While the first gripper moves forward, the second gripper is already returning, ready for the next sheet as part of a continuous flow. The system is installed on an existing production line to double the infeeder speed.
Cartons from a printing machine are transported for stacking prior to further handling and packaging. On a conveyor, the cartons are fed in two parallel rows to the carton stacker. The stacker uses an elevator system that lowers the stacked cartons once a stack height of 500mm is reached and then transfers them onto a three section conveyor. The three-section conveyor ensures that the stack from the elevator can always be placed on the belt and then moved to a buffer zone before being transferred to the final section of the conveyor, where the stacks can be retrieved for manual handling. When the elevator reaches its lowest position, a buffer collects the continuously supplied cartons to maintain a steady flow and ensure optimal utilisation of the stacker.
This tube stacker is a gantry crane that handles ventilation tubes from a laser welder to a servo press that flanges the tube ends. The XYZ gantry then transfers the tubes to a delivery position, where they are stacked in large wheeled cages.
This machine separates individual licorice pieces using a rotary feeder. The products are accelerated in a rotating unit, which aligns them in a single row. A vision system then captures an image to determine the orientation of each piece. Only correctly oriented pieces are allowed to pass onto the conveyor, where they are fed to a flow-wrapper at a rate of 100 pieces per minute.
Profiles coming from a roll-forming machine are side-aligned and transported in measured steps via an infeed conveyor to the riveting machine. A lifting yoke raises the profile and positions it in the press above a rivet, which has been fed to the riveting station from a circular feeder. The press then inserts the rivet into the profile. The lifting yoke indexes the profile forward to the clipping station. Here, a clip is fed to the station from a circular feeder after correct orientation has been verified. The clip is pressed into place, and the lifting yoke places the profile onto the outfeed conveyor. The finished parts can then be removed by the operator.
The system consists of a series of roller conveyors that transport 200 litre drums into a filling unit located in a cleanroom. The empty drums are manually placed on the conveyors outside the cleanroom and transported in through airlocks. Inside the cleanroom, the drums are filled with material, and the correct quantity is ensured by a weighing module under the filling position. Once filled, the drums are transported out through an airlock to an operator for further handling.
These are two part feeding systems that, inside a cleanroom, supply components to a circular feeding system, which then separates and delivers the parts for assembly.
These part feeders supply components to a robot, which installs them in an injection molding machine. They are built as stand alone units, which allows them to be moved between 15 different machines.
Developing robotic solutions is often a complex process involving multiple components. We guide you from start to finish.
We design automated assembly machines for customers in both domestic and international markets. We use a range of methods when developing solutions for product processing.
We manufacture machines that use technologies such as spot welding, ultrasonic processing or waterjet cutting to perform tasks according to customer specifications.
As designers and manufacturers of special machinery, we have many years of experience and have developed core systems that are used across our machines.
We offer a wide range of aluminium profiles and fittings. The full selection is available through the link below.
Passion driven engineering
Tel: 41 82 58 15
Email: msh@1.nutestervibareligeokay.dk
Tel: +45 21 13 91 90
Email: ltm@1.nutestervibareligeokay.dk
Tel: +45 21 13 87 85
Email: hla@1.nutestervibareligeokay.dk