Industrial solutions

Service life optimization of rollers in battery manufacturing

The economic viability of modern battery cell production is significantly determined by the uninterrupted availability of highly automated production lines. In addition to increasing production speed and process quality, the mechanical service life of individual system components plays a key role in operational efficiency. Throughout the entire value chain of battery and battery foil manufacturing, roller systems are exposed to extreme mechanical, thermal, and chemical stress.
brasive wear, unplanned equipment downtime, and microscopic quality deviations in the substrate run have an immediate negative impact on Overall Equipment Effectiveness (OEE). Consequently, consistent service life optimization not only reduces direct maintenance costs but also ensures stable processes, reproducible product quality, and consistently high equipment availability throughout production.

INOMETA combines roller mechanics, functional coatings, sensor technology, and digital solutions to specifically design roller systems for the various stresses within battery production. This allows for extended service life, optimized maintenance intervals, and a reduction in unplanned production interruptions.

Contact the INOMETA sales team today for comprehensive advice on rollers, coating solutions, and other innovative products from our manufacturing facility in Germany.

Tolerance stability with advancing production scaling

As global production capacities scale, the technological requirements for rotating components are continuously increasing. Higher web speeds, narrow tolerance windows in the micrometer range, and demanding environmental conditions mean that even minor surface changes or geometric deviations in roller systems can affect the stability of coating or converting processes.
n highly automated production lines, unplanned stops cause significant consequential costs. Such production interruptions reduce total throughput, increase scrap rates of high-value raw materials such as copper and aluminum collector foils, and impair the profitability of entire facilities. The wear resistance of roller systems thus becomes a key factor in economic efficiency.
oday, process managers no longer focus exclusively on the investment costs of individual components but rather evaluate their ability to maintain stable friction and traction properties as well as consistent surface quality over long production periods.

Influencing factors on the service life of roller systems

The service life of a roller system is determined by the interplay of material, design, functional surface, and the respective process conditions. Depending on the process step, different stresses act on the components:

  • Chemical-abrasive stress in the coating process: When applying high-viscosity cathode and anode slurries, abrasive electrode materials and process-related media place high demands on the functional surfaces used. With PROTEK® coating solutions, INOMETA offers wear-optimized surfaces that can be specifically designed for high mechanical and chemical stresses.
  • High line loads in the calendering process: Compacting coated electrode foils requires roller bodies with high rigidity and fatigue strength to support uniform loading across the entire working width. Through application-specific roller bodies made of aluminium, CFRP, or steel, the respective process requirements can be specifically addressed.
  • Dynamic loads in winding and slitting processes: High web speeds and frequent acceleration changes increase the demands on the mass and moment of inertia of the components used. INOMETA’s CFRP roller concepts enable lightweight constructions and help reduce dynamic loads within the system.

In addition to PROTEK® functional surfaces, material selection, roller geometry, and design characteristics significantly influence the long-term behavior of a system. Through the targeted use of aluminum, steel, or carbon-fiber-reinforced plastic, weight, rigidity, and load-bearing capacity can be adapted to the respective requirements. This helps to reduce wear mechanisms and specifically support the service life of the roller systems.

Condition monitoring to increase roller service life

In many cases, premature wear and accelerated material degradation are not caused by the rollers themselves, but by process-related instabilities within the web guidance process. Non-uniform web tension distributions, machine vibrations, local temperature differences, or fluctuating web tension values can affect the service life of mechanical components.
A holistic system approach makes it possible to identify such critical influences at an early stage and reduce them in a targeted manner. In addition to wear-optimized functional surfaces, digital solutions and integrated sensor technology make an important contribution to stabilizing process conditions.
By using sensor rollers, digital solutions such as INOlogic®, and systems for continuous web tension measurement, critical process states and non-uniform load distributions within the line can be made transparent. This allows changes to be detected early and the impacts on roller systems and web processes to be evaluated more effectively.

Lifecycle-oriented concepts for increasing roller service life

Long-term service life optimization does not end with the commissioning of a production line. Beyond original equipment, the economic management of existing roller systems throughout their entire lifecycle plays a key role. In addition to new manufacturing, refurbishment, modification, and mechanical reconditioning can contribute to the long-term continued use of existing components in the production process.
INOMETA supports roller systems throughout their entire lifecycle—from material and design configuration and functional coating solutions to services in the areas of refurbishment and roller repair. Within the scope of industrial contract coating, worn functional surfaces are removed, rebuilt with suitable coating systems, and subsequently adapted to the respective requirements through grinding and finishing processes.
This allows existing systems to be adjusted to changed process parameters or new slurry formulations. At the same time, material resources can be conserved, capital expenditure reduced, and the service life of existing roller systems specifically extended

Application-specific design of durable roller systems

The requirements for roller systems vary depending on the process step, material properties, and production conditions. Therefore, INOMETA views each application holistically and supports customers in the design of suitable roller concepts for battery and battery foil manufacturing.
In addition to the selection of suitable materials and functional surfaces, design characteristics, load scenarios, and the respective process parameters play an important role. With the help of application-specific design concepts and simulation-based methods, roller systems can be precisely tailored to different requirements.
The combination of roller mechanics, coating technology, sensor technology, and service offerings results in solutions that support high equipment availability, stable processes, and long service lives.
This allows roller systems to be specifically adapted to changing production conditions and supports overall equipment effectiveness (OEE) in the long term.

Contact our team of experts: Together, we will analyze your requirements and develop an application-oriented roller solution – tailored to your material, your process, and your plant concept. Contact us now.

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