Wider use of electromobility is a critical issue for the future. New drive and storage systems are the focal points of development for all leading automobile manufacturers and electronics suppliers. The development of more effective drive motors (electric motors) with high efficiency as well as lighter and more efficient forms of energy storage (batteries, fuel cells) are critical for success.
Innovative material composites must be produced to manufacture high-performance systems of this type. In addition, the surfaces of the materials used must be functionalized selectively. Openair-Plasma® activation, combined with a PlasmaPlus® functional coating, offers industry a unique process, with outstanding results. Openair-Plasma® technology is perfect for this, both because of its simplicity of application and because of the characteristics created by its functional coatings.
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Determining surface tension with dyne inks now
Kunststoffe International - Issue 2/2021
MDO September 2020
Put Openair-Plasma® to the test with our rental and test systems.
Produce Future Batteries
Virtual Exhibition and Conference, Germany
Plasmatreat goes virtual and is present at the 2nd Virtual Battery Exhibition from VDMA battery manufacturing, which will take place online from April 27 to May 3. On its virtual booth the company will present highlights about its own developed and patented Openair-Plasma technology for surface treatment especially for battery manufacturing.
Plasmatreat supports digitized manufacturing with its Plasma Control Unit (PCU) and makes numerous controls, regulation, and monitoring functions available to ensure consistently high surface-treatment quality and reproducibility.
VOCs occur when solvents and solvent-containing products are used, and they are harmful to the environment. Nevertheless, manufacturing in many industries still involves pre-treating surfaces with primers, bonding agents or other chemicals that release VOCs. With its Openair-Plasma process, Plasmatreat offers an environmentally friendly alternative.
Following the trends of modern mobility, the requirements for EV batteries are increasing both in the area of assembly and in terms of durability, weather resistance and temperature management. Here, adhesive bonding technology plays an important role, be it prismatic cells, pouch cells or cylindrical cells.