Projects
R3-MYDAS


The objective of the R3-MYDAS Project is to accelerate the transition of manufacturing industries towards more sustainable and circular models. The project presents three demonstration cases focused on the remanufacturing, reuse and recycling of oil and gas components, electric vehicle batteries and wind turbine gearboxes.
Ziknes develops digital solutions to automate and optimize oil and gas crankshaft repair processes to set new environmentally and economically sustainable standards in the industry.
REDES4VALUE


The objective of the REDES4VALUE project focuses on the recycling of fishing nets extracted from coastal areas to obtain high value-added products through the use of technologies such as mechanical recycling, reactive extrusion and chemical recycling.
These products include high quality PA6 and co-polyamides that meet technical specifications, PA6-derived formulations adapted to process film by blown film extrusion, injected parts for automotive or consumer goods, as well as items manufactured by large-format 3D printing.
Valencia Innovation Capital



Ziknes has developed a robotic system for 3D printing sustainable street furniture using recycled materials. The aim has been to use this technology for the possible development of furniture for buildings and public spaces in Valencia using new recycled-based materials from rubbish or waste.
To this purpose, a special extruder has been developed for the processing of recycled material, coupled to a robotic arm, which allows the creation of large pieces. All this with a sustainable technology such as 3D printing, using only the strictly necessary material, without waste.
The materials used for the project have been recycled from fishing nets, reinforced with fibreglass to withstand the climatic conditions of the cities and to be durable over time.
PIDI-CV: Business R&D&I Plan

This project has been co-financed by IVACE.

The technological objective of Ziknes has been to develop a software (Laminar) that includes the movement system (industrial robot) to generate trajectories and the ideal program parameters according to the type of material and geometry; the print head; and the communication system in a homogeneous process (plug-and-play).
Such software will be loaded into the robot through our multi-protocol gateway, and, in addition to giving motion instructions and sending translatable signals to any 3D printing and robot system or technology, it will incorporate the new developments in computation, trajectory calculation algorithm and deep learning systems.



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Where we are
Lanzadera Building, Valencia
Numancia de la Sagra, Toledo