Advanced microfluidic technology enables nano-scale dispersion and emulsification with precise particle control, batch consistency, and high activity retention.
Unlike traditional mixing and shearing, the high pressure microfluidic homogenizer uses pressures up to 420 MPa to drive materials through precision diamond-interlocking microchannels. Supersonic jets generate shear, impact, and cavitation forces that efficiently refine materials to the nanoscale with exceptional uniformity, far exceeding conventional methods.
Warm Isostatic Pressing (WIP)’s combination of isotropic high pressure and moderate temperature enables atomic-level contact, fundamentally reducing interfacial resistance and enhancing ionic conductivity, thereby addressing the core challenges of solid-state batteries—high internal resistance and poor rate capability.
Using water or oil as the pressure-transmitting medium, powdered material is loaded into a flexible sleeve, which is then vacuum-sealed. Afterward, temperatures of 80–150°C and high pressures of 300–600 MPa are applied within the sealed chamber to achieve uniform and dense compaction of the powder, thereby resolving the issue of uneven density associated with traditional processes.
1. Ultimate density for enhanced energy density
2. Dendrite prevention at the source for improved safety
3. Medium-temperature synergy for strong process adaptability
4. Compatible with GWh-class production lines, supporting large-scale mass production
Powder Metallurgy
Ceramic Sintering
Composite Molding
Solid-State Battery Densification
Customized homogenization, dispersion, and stabilization for graphene, nano-ceramics, and metal slurries.
From process adaptation and parameter optimization to production line design, we provide one-stop customization services.