Controlled-atmosphere casting with a carbon-fabric distributor filters molten Al-Cu-Li alloy to preserve thickness while improving fatigue life.
Manganese and nitrogen replace costly nickel to stabilize austenite, improving exhaust-part heat resistance, thermal conductivity, and dimensional stability.
A 15–70% porous refractory member balances scum adsorption, thermal shock resistance, and erosion control in twin-roll casting.
Vacuum lifting overcomes gravity-driven priming bottlenecks in fine-pore filters, reducing operational costs.
Electromagnetic purification device drives molten metal through a non-conductive filter using Lorentz force generated by intersecting magnetic fields and electrical current.
Eliminating rolling steps via extraction prevents surface oxide film formation while maintaining longitudinal flatness.
Silicate particle insulation prevents thermal loss while dam and spread units ensure even mold distribution.
A plate-shaped vortex breaker disrupts whirlpool formation at the bottom outlet to prevent slag entrainment during molten steel discharge.