Products for research and development |
Many high temperature coating materials from our program are manufactured on the basis by pure or highly pure ceramic starting materials. Therefore they can be used very well in research and development, where controlled conditions in laboratory tests must be achieved. Pure basic materials of our coatings permit it for example to avoid contamination of melts or reduce these to an absolute minimum. Interesting ceramic coatings for the laboratory area are coatings based on boron nitride, titanium nitride, alumina, zirconium oxide and yttrium oxide. If you should look up for coatings on the basis of other materials, please address us on that. |
Boron Nitride
Coatings
good refractoriness very good non-wetting by many metallic melts good lubricating properties good thermal conductivity high electrical resistance |
ALU-STOP
BN-A Boron Nitride Aerosol
ALU-STOP LC25 Boron-Nitride-Coating ALU-STOP LC15 Boron-Nitride-Coating Boron-Nitride-Coating Grade E Boron-Nitride-Coating Grade HP |
Graphite
Coatings
chemically very stable good refractoriness under inert gas good lubricating properties good electrical conductivity good thermal conductivity |
Graphite Aerosol GS |
Alumina
Coatings
very good refractoriness high hardness |
Aluminium-Oxide-Coating
AA
Aluminium-Oxide-Coating AW |
Zirconium
Oxide Coatings
very good refractoriness very stable against metal melts low thermal conductivity stabilized and unstabilized available |
Zirconia-Coating
ZR-A
Zirconia-Coating ZR-M Zirconia-Coating ZR-O Ceramic Coating LE |
Yttrium Oxide
Coatings
extremly good refractoriness low electrical conductivity low thermal conductivity thermodynamically very stable extremly stable against metallic melts very small reduction inclination |
Yttrium-Oxide-Coating YO-G |
Titanium
Nitride Coatings
good refractoriness good electrical conductivity stable against metal melts |
Titanium-Nitride-Coating Grade E |