Delivering advanced High-Performance Ceramic solutions for a wide range of industrial applications.

PCR solutions for ceramic industries are specifically designed and developed to facilitate consistent and long-term performance at high temperatures (up to 1,800°C) and under severe operating conditions.

Tailored solutions to address abrasion, erosion, and corrosion challenges. Our expertise has supported customers across diverse market segments, including chemical processing, mining, recycling, construction, metallurgy, and renewable energy sectors.

High-value silicon carbide solutions, including pioneering recrystallized silicon carbide (R-SiC) products known for exceptional hardness, and Hexoloy® SiC ceramic tubes designed for shell and tube heat exchangers, offering superior corrosion resistance and thermal conductivity. Advanced silicon carbide solutions for rotating equipment boost reliability and performance, enabling global OEMs and machine shops to enhance operational efficiency and prolong the lifespan of essential components.

Refractory solutions for the waste-to-energy market, featuring SiC refractory blocks that ensure high performance and long service life. Our bricks and tiles provide robust protection in the high-temperature environments of modern energy-from-waste applications.

High-performance solutions tailored to improve key performance indicators throughout the entire value chain of primary metal industries, including ironmaking, steelmaking, and non-ferrous sectors.

Tailored products and services for ferrous and non-ferrous foundries, specializing in refractory design, installation, supervision, and process auditing to optimize operational performance.

Solutions for Non Ferrous melting operations delivering superior corrosion, oxidation, and chemical resistance and maximum service life. With expertise in primary and secondary metallurgy, PCR provides engineered refractory solutions for Cleanest possible metal production and consistent durability, customizing each solution to unique melting challenges.