Powering performance with precision chemical additives
RM 126 is a high-performance anti-repellent additive specially developed for rustic surface applications. It helps improve glaze compatibility and ensures uniform surface coverage during the production process.
Designed for consistent application and reliable performance, RM 126 enhances surface quality while reducing glaze rejection issues. Ideal for achieving stable, refined rustic tile finishes.
RM 243 is an advanced anti-repellent additive formulated for high-gloss surface applications. It improves glaze spreading and surface consistency, helping achieve a smooth and flawless glossy finish.
This additive supports reliable production performance and enhances overall glaze application quality for premium glossy vitrified tiles requiring superior clarity.
RM 157 is a sugar-based adhesive additive designed to improve adhesion between glaze layers and tile surfaces. It enhances bonding strength and supports better surface stability during manufacturing.
Developed for consistent performance, RM 157 helps improve glaze application efficiency and surface reliability. It is widely used in ceramic and vitrified tile production for enhanced adhesion quality.
STPP is a powerful deflocculant additive used to reduce viscosity and improve slurry fluidity during glaze preparation. It supports smooth material movement and enhances overall processing efficiency with controlled usage up to 0.2%.
This additive helps maintain stable slurry performance while improving mixing consistency and application quality. STPP is essential for achieving better glaze flow and optimized production operations.
CMC is an effective thickening additive that prevents particle settling and helps control glaze rheology. It ensures smooth and stable glaze surfaces by improving suspension properties during application.
Engineered for reliable consistency and performance, CMC enhances glaze workability and surface finish quality. It plays a key role in maintaining uniform glaze texture and overall production stability.