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Resodyn Acoustic Mixers, Inc. supplies its advanced mixing technology to the Energy Storage Industry enabling manufacturers to quickly and efficiently process diverse battery materials for high performance applications.

The ResonantAcoustic® Mixer (RAM) products are bladeless and support a range of mixing needs. Materials of different bulk densities, sizes and morphologies are easily mixed. Pastes, gels and powders are accurately batched and evenly dispersed.

RAM systems are fast and effective. Mixing times have been illustrated to be reduced from hours to minutes. Production scale-up is seamless with technical consistency via varying product capacities.

Best in class repeatability delivers precision application for:

  • Aluminum Oxide-filled Silicone Gels
  • Battery Pastes and Slurries
  • Conductive Inks
  • Copper Pastes
  • Encapsulation Materials
  • Epoxy Insulators
  • Ferrite Compounds
  • Ferrite in Propylene
  • Fuel Cell Powders
  • Solder Pastes
  • Thick Film Inks
  • Tungsten Carbine Powders
Mixing Batteries for Energy Storage

we have made our first steps with the new LabRam II from Resodyn Acoustic Mixers. With this second resonant acoustic mixer, we wereable to add another batch size to our large portfolio of different mixing technologies…

- European battery materials research organization

We work with multiple battery material mixes, including powder-powder, slurries and pastes. [RAM] gives us a quick, easy and convenient method of mixing, milling and sieving those materials in a single unit.

- Global energy storage products company

“... the cathode exhibited a higher specific capacity and improved rate performance because of the minimal side reactions at the cathode−solid electrolyte interface. These results demonstrate the success of the Resonant Acoustic® coating of NiCo2S4 NPs on NCM 622.

- NiCo2S4 Bi-metal Sulfide Coating on LiNi0.6Co0.2Mn0.2O2

Cathode for High-Performance All-Solid-State Lithium Batteries Young-Jin Kim, Rajesh Rajagopal, Sung Kang, and Kwang-Sun Ryu

ACS Omega 2021 6 (10), 6824-6835 DOI: 10.1021/acsomega.0c05942

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