Industries worldwide are facing increasing pressure to deliver materials with enhanced performance, greater reliability, and reduced environmental impact. From electric vehicles demanding robust battery components to sustainable building materials requiring long-lasting pigments, the need for advanced inorganic materials is paramount. This technology's ability to provide high-quality, stable iron oxide powder aligns perfectly with these trends, enabling manufacturers to meet stringent performance specifications and regulatory demands while optimizing production efficiency and reducing waste.
Achieves high chroma and uniformity, improving visual quality and stability.
Provides exceptional heat resistance, extending product lifespan and maintaining performance in high-temperature environments.
Demonstrates high technical uniqueness with minimal prior art, enabling early market differentiation.
This patent protects a unique iron oxide powder composition featuring Al solid solution, alumina particles, and a silica coating on a porous aggregate, along with its specific manufacturing method. With 18 robust claims and minimal prior art, it offers strong protection against invalidation and competitive differentiation.
This patent focuses on the composition and manufacturing of iron oxide powder. Licensees could explore adjacent IP in advanced coating application methods or integration into novel composite materials not explicitly covered.
High chroma and uniform powder could reduce defect rates from 5% to 1%, yielding an estimated ~$280K/year (AI est.) in quality improvement. Enhanced heat resistance, extending product lifespan, could reduce customer complaint handling costs by an estimated ~$70K/year (AI est.).
X: Cost Efficiency
Y: Material Performance Stability