Description

The epoxy resin system WEICON Ceramic W provides high wear protection and high abrasion resistance. It is chemical-resistant and has a high temperature resistance up to +200°C (+392°F); for a short period of time even up to +260°C (500°F).

Ceramic W is non-sagging, can be spread with a spatula. It can be applied on vertical surfaces and even overhead. It is suitable for the bonding or lining of aluminium oxide stones in mill construction, for the lining of heavily stressed pump housings, as wear protection for slide bearings, slides and pipes and wherever darker-coloured products are not suitable for optical reasons.

The product can be used in machine and system construction, mill construction, apparatus engineering, and in many other industrial areas

Need advice? We are happy to help!

Monday - Friday: 08h30 - 17h00
Contact us  

WEICON Ceramic W Epoxy Resin

pasty mineral-filled, temperature-resistant epoxy resin system

Description

The epoxy resin system WEICON Ceramic W provides high wear protection and high abrasion resistance. It is chemical-resistant and has a high temperature resistance up to +200°C (+392°F); for a short period of time even up to +260°C (500°F).

Ceramic W is non-sagging, can be spread with a spatula. It can be applied on vertical surfaces and even overhead. It is suitable for the bonding or lining of aluminium oxide stones in mill construction, for the lining of heavily stressed pump housings, as wear protection for slide bearings, slides and pipes and wherever darker-coloured products are not suitable for optical reasons.

The product can be used in machine and system construction, mill construction, apparatus engineering, and in many other industrial areas

Available packaging

  •   200 GR
  •   500 GR
  •   2 KG
Request quote Contact us  

Specifications

Biodegradable
No
Food grade
No

Downloads

Other products you may also be interested in

Need advice? We are happy to help!

Monday - Friday: 08h30 - 17h00
Contact us  
Your browser is out-of-date!

Update your browser to view this website correctly. Update my browser now

×