Technical data sheets

Product
Description
TDS
1C-ESI zinc primer 
High-quality zinc-rich 2C primer, heat-resistant up to 450 °C on ethyl silicate basis 
1C-silicone-acryl top coat 
1C-silicone top coat with aluminium for high-temperature applications 
1C-silicone top coat with mica for high-temperature applications 
1C-silicone-zinc rich primer for high-temperature applications 
High-quality 1C alkyd primer for steel parts 
Satin glossy 1C-high solid corrosion protection coating for steel surfaces 
Fast drying, mat 1C-high solid corrosion protection coating for steel surfaces 
1C-AK high solid primer for steel surfaces 
High grade, surface tolerant 2C-EP HS priming coat for corrosion protection of steel constructions and steel buildings, code no. 100.1.2 
High grade 2C-EP HS intermediate coat for the corrosion protection of steel constructions and steel buildings, code no. 100.2.1 
High grade, quick curing 2C-EP HS zinc primer for steel buildings and steel constructions, code no. 100.1.1 
2K-EP HS intermediate coating for freshly hot-dip galvanised surfaces, code no. 100.2.3 
High grade 2C-EP intermediate coat for the corrosion protection of steel constructions and steel buildings, code no. 100.2.4 / 100.2.5 
High-quality, multi-purpose 2C-EP primer 
High-quality, electrical conductive 2C-EP primer for systems with requirements on electrical surface resistances and ground conductivity e. g. ATEX 
Quick-curing 2C-EP primer with good adhesion on steel, strip galvanising and aluminium and excellent chemical resistance. Temperature resistance up to +150 °C 
Quick-curing 2C-EP primer with good adhesion to steel, strip galvanising and aluminium and excellent chemical resistance. Temperature resistance up to +150 °C 
2C-EP high solid intermediate coating for hot-dip galvanised steel and steel substrates, excellent mechanical resistance. (directly or after sweep-blasting) 
Quick curing 2C-EP high solid corrosion protection for steel surfaces, for coating thicknesses of 80 to 160 µm, VOC-content approx. 8 % 
2C-EP high solid primer for steel and hot-dip galvanised steel. High degree of compatibility with old coatings (directly or after sweep-blasting) 
High-quality high solid coating, for steel substrates in contact with water and earth, also for hot-dip galvanised steel 
2C-EP primer for steel and hot-dip galvanised steel, also suitable as edge protection 
Tried and tested 2C-EP intermediate coating with micaceous iron oxide 
High-quality zinc-rich 2C-EP primer 
Qick-curing 2C-EP high solid corrosion protection for steel surfaces, for coating thicknesses of 80 to 160 µm, VOC content approx. 8 % 
Quick-curing 2C-EP high solid primer for steel surfaces, for coating thicknesses of 80 to 160 μm, VOC content approx. 8 % 
Quick-curing 2C-EP high solid intermediate coating for coating thicknesses of 80 to 160 μm, VOC content approx. 8 % 
Quick-curing 2C-EP high solid primer with excellent chemical resistance. Temperature resistance up to +150 °C 
2C-EP high solid primer for automatically or manually derusted steel, hot-dip galvanised steel, for initial protection and rehabilitation 
2C-EP high solid intermediate coating with micaceous iron oxide, for initial protection and rehabilitation 
Quick-curing 2C-EP primer for subsequent 2C systems for steel and hot-dip galvanised steel, also suitable as edge protection 
Quick-curing 2C-EP intermediate coating with micaceous iron oxide 
Quick-curing zinc rich 2C-EP primer for subsequent 2C systems 
2C-EP waterborne primer on steel and hot-dip galvanised steel 
2C-EP waterborne intermediate coating for steel and hot-dip galvanised steel 
High-quality, waterborne 2C-EP primer for parts made of grey cast iron, steel and aluminium. Excellent resistance to chemicals, oils, petrol and aggressive atmosphere 
1C waterborne top coat for special requirements to be met for colour stability, for example as airplane warning coating, DFT 60-80 μm, brush application 
1C waterborne corrosion protection coating with micaceous iron oxide for hot-dip galvanised steel surfaces, DFT 80-120 μm 
1C waterborne corrosion protection coating with micaceous iron oxide for hot-dip galvanised steel surfaces, DFT 80-120 μm 
1C waterborne top coat for hot-dip galvanised or prime-coated steel surfaces, DFT 80-120 μm 
1C waterborne top coat for hot-dip galvanised or prime-coated steel surfaces, DFT 80-120 μm 
1C waterborne top coat for the rehabilitation of interior steel constructions and hot-dip galvanised surfaces 
1C waterborne top coat for hot-dip galvanised or prime-coated steel surfaces, DFT 80-120 μm 
1C waterborne primer for automatically or manually derusted steel substrates, as well as hot-dip galvanised steel 
1C waterborne primer for automatically or manually derusted steel substrates, as well as hot-dip galvanised steel 
1C AY Hydro adhesion primer for hot-dip galvanised steel constructions 
mat 1C waterborne top coat for hot-dip galvanised steel. Application also on fresh, not sweeped hot-dip galvanising 
Fast drying, mat 1C waterborne corrosion protection coating for steel surfaces 



Frequently Asked Questions About Our Products:

The VOC (Volatile Organic Compounds) content describes the proportion of volatile organic compounds in paints and coatings. A low VOC value is important for environmental and health protection and plays a central role in regulatory requirements, such as those under the EU VOC Directive. GEHOLIT+WIEMER relies on coating systems with practical, compliant VOC values—tailored to the application and substrate.

Iron mica (iron oxide with a platelet-like structure) is used as a pigment in high-quality anti-corrosion coatings. Its flake-like arrangement significantly enhances the barrier effect against moisture and corrosive substances. Iron mica coatings are particularly suitable for steel structures, bridges, industrial facilities, and demanding environments.

The European Union’s 1994 ATEX guidelines (Explosion Protection Directive) address equipment and protective systems in potentially explosive atmospheres.
To obtain CE marking approval for equipment and machinery intended for use in potentially explosive atmospheres, the following limit values for conductive and dissipative corrosion protection products must be met in accordance with DIN EN 60079-0 and the “Technical Rules for Operational Safety” (TRBS) 2153:

  • A substance or material is considered conductive if its surface resistance (RO) is < 104 Ω
  • A substance or material is considered dissipative if its surface resistance (RO) is < 109 Ω

GEHOLIT+WIEMER’s coating systems meet both the high requirements for dissipative properties and for corrosion protection.

For complex components, tight deadlines, or hard-to-reach geometries, the right coating strategy is crucial. Key factors include:

  • appropriate pretreatment (e.g., blasting, cleaning)
  • selection of the right coating system
  • consistent film thicknesses, even at edges and seams

GEHOLIT+WIEMER will be happy to advise you on selecting suitable coating materials.

DB 703 is a commonly used iron mica color with a metallic finish.  The name and formula originally come from Deutsche Bahn (DB), which developed this color for the preservation and design of steel structures (such as bridges, railings, or train platforms). There is no direct 1:1 equivalent in the RAL system, as DB colors are based on their own color standards. Depending on the application, however, similar RAL colors may be recommended, or project-specific color samples can be created.

Single-coat systems provide reliable corrosion protection in a single application. This reduces coating time, material consumption, and application costs. Modern single-coat systems offer fast drying times, high film thicknesses, and protection up to Corrosivity Category C3-High. In addition, many systems are low in VOCs and therefore more environmentally friendly.

Each corrosivity category describes the extent to which steel is at risk of corrosion due to environmental factors. According to DIN EN ISO 12944, it is classified into categories C1 through C5—ranging from very low to very high corrosion exposure. This classification helps in selecting the appropriate corrosion protection system for the specific environment. For example, heated indoor spaces are usually classified as C1 or C2, while industrial facilities or coastal areas are often assigned to categories C4 or C5.

GEHOLIT+WIEMER offers corrosion protection products for all corrosivity categories.

All-weather technology in corrosion protection enables the reliable application of coatings even under challenging weather conditions, such as low temperatures down to -5° Celsius, high humidity, or light rain. Unlike conventional corrosion protection products, all-weather coatings are specially formulated to adhere optimally and dry quickly even under less-than-ideal environmental conditions.

This technology is primarily used in steel and plant construction, for outdoor maintenance work, and in bridge and infrastructure construction, where work interruptions caused by changeable weather must be avoided. GEHOLIT+WIEMER’s all-weather products thus help to implement projects more efficiently, reduce downtime, and ensure long-lasting, effective corrosion protection.

GEHOLIT+WIEMER offers industrial floor coating systems for a variety of requirements, such as:

  • static-dissipative and conductive floors
  • coatings resistant to chemicals and mechanical stress
  • renovation of existing industrial floors

These companies use our products: