The role of the Tatanka System™ in modern architectural design according to Giuseppe Vitrani.
When the surface becomes architecture
In the language of contemporary architecture, the concept of “cladding” is progressively disappearing.
Not because finishing materials are no longer needed, but because their role has evolved: from an accessory aesthetic element to a structural component of spatial perception .
Microcement fits into this scenario, one of the most representative solutions of the culture of continuous surfaces.
It is not simply a decorative material, but a system that eliminates the visual fragmentation typical of tiles, grouting and joints, transforming space into a material continuum.
Tatanka System™ Classe 1935® is part of this evolution, an advanced reinterpretation of microcement designed for contemporary high-performance architecture.
What is microcement – Technical and conceptual definition
Microcement is a low-thickness mineral-polymer coating (generally 2-3 mm) composed of:
- selected cement binders
- high-performance polymer resins
- mineral fillers (quartz, marble dust, technical aggregates)
- functional additives for workability and strength
It is applied in multiple layers on existing surfaces, creating a continuous surface without joints.
Distinctive feature: material continuity
The true value of microcement is not its composition, but the perceptual result:
a continuous surface, free of visual interruptions, capable of modifying the perception of space.
The Origins of Microcement – Between Mineral Tradition and Contemporary Innovation
Modern microcement was not born as an isolated invention, but as the evolution of a long tradition of mineral-based materials.
Its roots can be traced back to three historical matrices:
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Traditional cement mortars
Used in modern construction for decades, but limited by thickness and aesthetic rigidity.
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Continuous handcrafted surfaces
Smooth concrete and hand-finished finishes used in industrial and rationalist architecture.
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The evolution of polymeric resins
Which introduced controlled elasticity, adhesion on complex substrates and chemical resistance.
Contemporary microcement is therefore born as a hybridisation between mineral material and polymeric technology .
Technical Analysis of Microcement – Structure and Behavior
From a technical point of view, microcement is a layered system.
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Mineral phase (cementitious)
Determines hardness, compatibility with supports and structural inertia.
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Polymeric phase
Regulates adhesion, flexibility and controlled elastic behavior.
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Granulometric phase
Quartz and aggregates define abrasion resistance and surface texture.
Rheological properties
The material exhibits the following behavior:
- thixotropic (vertically stable)
- pseudo-plastic (moldable during application)
This allows continuous work on horizontal and vertical surfaces without loss of cohesion.
Microcement Applications – Where It Finds Real Value
Microcement is now used in highly design-intensive architectural fields.
Main applications
- continuous internal and external floors
- bathrooms and humid environments
- kitchens and technical surfaces
- coatings on existing ceramics
- hospitality and retail
- contemporary residential architecture
The main advantage is the redevelopment without demolition , thanks to the low thickness.
Common mistakes in designing with microcement
Many application failures are not due to the material, but to the system design.
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Underestimating support
The stability of microcement depends on the substrate rather than the finish.
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Lack of correct stratigraphy
Single-coat applications compromise durability and performance.
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Incorrect humidity management
Unstabilized supports generate tensions and microcracks.
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Lack of final protection
Without a resin cycle, the system remains incomplete.
Contemporary Evolution – Microcement as an Architectural System
In contemporary design, microcement is no longer a product, but an integrated surface system .
This evolution introduces a key concept:
we no longer design the finish, but the behavior of the surface over time.
This is where the advanced approach of new-generation professional systems comes in.
Tatanka System™ Classe 1935® – The Evolution of Microcement
The Tatanka System™ Classe 1935® represents an advanced reinterpretation of contemporary microcement.
It is a high-performance continuous surface system designed to combine:
- selected mineral matter
- advanced polymer technology
- stratigraphic control of the application cycle
- continuous architectural aesthetics
Technical composition
Tatanka is a single-component microcement composed of:
- selected high stability cement
- high-performance resins
- marble dust
- micronized quartz
- high-strength technical aggregates
It mixes with water and is solvent-free.
Application behavior
Its pseudo-plastic and thixotropic nature allows:
- modelling during installation
- stability on vertical surfaces
- high wear resistance at full maturation
Thickness and architectural advantage
With only 3 mm thickness , Tatanka allows:
- surface renovation without demolition
- continuity between floor and wall
- reduction of visual fragmentation
Aesthetics and color design
Tatanka allows for advanced color design:
- 15 basic natural shades
- 85 RAL variations on request
- over 500 NCS colors
Color thus becomes part of the architectural project, not just a simple decorative finish.
Experiential system – beyond the material
In the contemporary surfaces sector, value is no longer just technical.
Continuous surfaces generate:
- perceptual continuity
- visual noise reduction
- increased spatial depth
- feeling of architectural monolithic
An end customer no longer perceives just a covering, but a coherent environment.
Real-world usage testimony
Application experiences confirm a paradigm shift:
“Tatanka has radically changed the way we experience spaces. It’s not just a floor, it’s an immersive experience.”
This perception highlights a central aspect of contemporary design: the surface as an experience.
Professional Training – Master’s Degree in Continuous Surfaces
The evolution of microcement requires advanced technical skills.
This is why the Master Superfici Continue Classe1935® was created, a technical-practical training course dedicated to professionals in the sector.
Master’s objectives
- mastery of continuous surface systems
- understanding of application stratigraphies
- management of complete cycles
- development of advanced decorative skills
Advanced application techniques
During the course, techniques such as:
- professional trowelled microcement
- material and decorative effects
- Oxidized finishes Ox & Iron Rust
- stencil art on continuous surfaces
- contemporary granite effects
Microcement as a language of contemporary architecture
Microcement is no longer a simple finishing material.
It has become a design language that directly influences the perception of architectural space.
In this evolution, the Tatanka System™ Class 1935® represents an integrated approach that combines:
- materials technology
- application control
- aesthetic continuity
- contemporary architectural vision
The surface is no longer what closes the space.
This is what defines him. Giuseppe Vitrani, Business Owner CLASSE1935®