How Carbon Fibers Can Help Manufacture Li-ion Batteries
The chemical cost savings would exceed the price of the fiber, which constitutes only one percent of the weight.
Oak Ridge National Laboratory (ORNL) researchers have overcome a barrier to using a more affordable, dry process for manufacturing the Li-ion batteries used in vehicles and electronic devices. The resulting batteries provide greater electricity flow and reduced risk of overheating.
Dry processing is a method for making electrode films that eliminates the need for wet organic solvents that require increased factory floor space, time, energy, waste disposal and startup expenses. However, dry-processed films tear easily. To address this issue, ORNL researchers incorporated long carbon fibers, then tested coin cell batteries made from the material. They found the films were stronger and more flexible. The long fibers improved the mechanical strength of the material while transferring electrons further for faster charging and discharging rates.
While others have experimented with nanoscale carbon fibers, ORNL is the first to use long carbon fibers, said scientist Jaswinder Sharma. The chemical cost savings would exceed the price of the fiber, which constitutes only one percent of the weight.
“We think this is the next step in bringing dry-processed electrodes near to widespread use,” he said. “By eliminating expensive solvents and simplifying manufacturing, this method could help U.S. battery producers compete more effectively in the global market.”
The ORNL project is funded by the Department of Energy’s Advanced Materials and Manufacturing Technologies Office.
For more information, contact Sharma at
Top Stories
INSIDERRF & Microwave Electronics
FAA to Replace Aging Network of Ground-Based Radars
PodcastsDefense
A New Additive Manufacturing Accelerator for the U.S. Navy in Guam
NewsSoftware
Rewriting the Engineer’s Playbook: What OEMs Must Do to Spin the AI Flywheel
Road ReadyPower
2026 Toyota RAV4 Review: All Hybrid, All the Time
INSIDERDefense
F-22 Pilot Controls Drone With Tablet
INSIDERRF & Microwave Electronics
L3Harris Starts Low Rate Production Of New F-16 Viper Shield
Webcasts
Automotive
Hydrogen Engines Are Heating Up for Heavy Duty
Power
SAE Automotive Podcast: Solid-State Batteries
Energy
SAE Automotive Engineering Podcast: Additive Manufacturing
Manufacturing & Prototyping
A New Approach to Manufacturing Machine Connectivity for the Air Force
Software
Optimizing Production Processes with the Virtual Twin
Energy
Similar Stories
NewsMaterials
Plasma Process Could Cut Carbon Fiber Costs
NewsMaterials
Launching Aerospace Battery Tech for EVs
BriefsEnergy
Sustainable Aluminum-Anode Batteries
BriefsEnergy
New Approach Makes Lighter, Safer Lithium-Ion Batteries



