NEXT Surfaces: technology for matt textured ceramic surfaces
NEXT Surfaces is a technology developed by Sicer based on calibrated microgrits, designed for the production of textured, matt and anti-reflective ceramic surfaces for porcelain stoneware floor and wall tiles.
NEXT Surfaces technical features
NEXT Surfaces technology uses a special blend of calibrated ceramic microgrits, characterized by an extremely fine and controlled particle size. This composition makes it possible to develop textured ceramic surfaces with high aesthetic uniformity and excellent stability in ceramic production processes.
The resulting surfaces feature:
- fully matt finish
- anti-slip properties
- anti-reflective surface
- natural textured effect
- high aesthetic uniformity
- pleasant tactile feel
- high surface cleanability
- chemical resistance
- excellent wear resistance
Types of surfaces achievable with NEXT Surfaces
Thanks to these characteristics, it is possible to develop different types of ceramic surfaces, including:
- natural textured surfaces
- matt anti-reflective ceramic surfaces
- soft and uniform surfaces
- anti-slip surfaces for porcelain stoneware flooring
The achievable anti-slip rating ranges from R9 to R12, making these surfaces suitable for both residential environments and commercial and architectural applications.
Realize your projects with our materials.
Frequently asked questions
What kind of surface can be achieved with NEXT Surfaces?
With NEXT Surfaces, it is possible to achieve a textured, totally anti-reflective surface that is very natural and pleasant to the touch and has anti-slip properties with a coefficient of R9-R12
Is NEXT Surfaces resistant to chemicals?
Yes. Surfaces created with NEXT Surfaces have excellent resistance to chemicals, making them ideal for environments requiring high durability
Is NEXT Surfaces anti-slip?
Yes. It offers a anti-slip surface with a friction coefficient of R9 to R12
Is NEXT Surfaces suitable for high-traffic environments?
Yes. Due to its durability and easy cleanability, NEXT Surfaces is particularly suitable for environments subject to frequent stress



