Technical datasheet

GUR® UHMW-PE (30 µm)

Supplied byCelanese- Last Updated on Jun 1, 2025

GUR® UHMW-PE (30 µm) by Celanese is a micro-powder that acts as a matting- and texturing agent. Maintains particle shape and unique morphology.
  • Exhibits a rubber-elastic behavior in a molten state because of very high viscosity.
  • Allows excellent dispersion and helps phase binding with other materials.
  • Possesses very good resistance to aggressive media except for strong oxidizing acids.
  • Offers improved finishing texture, wear resistance, gloss reduction, scratch resistance, chemical resistance, surface effects, impact strength, and abrasion resistance.
  • GUR® UHMW-PE (30 µm) also offers energy absorption at high-speed impact, and mechanical and dimensional thermostability.
  • Shows reduced water and moisture absorption.
  • The dosage varies from 3% to 10% (-265 °C to 90 °C) by weight.
CAS NumberVisible After Login
Chemical Composition:Visible After Login
Bio Based contentVisible After Login
AppearanceVisible After Login

Benefits

No data available

Compliance

No data available

Applications

Recommended markets

No data available

For which system

Availability

Product Status:Visible After Login
Regional Availability:Visible After Login| Visible After Login| Visible After Login

GUR® UHMW-PE (30 µm) properties

Other properties

PropertiesValue & unitTest conditionTest method
Density0.0 Visible After LoginVisible After LoginVisible After Login
Density, Bulk0.0 Visible After LoginVisible After LoginVisible After Login
Impact Strength, Notched Charpy0.0 Visible After LoginVisible After LoginVisible After Login
Melting Point0.0 Visible After LoginVisible After LoginVisible After Login
Molecular Weight, Mw0.0 Visible After LoginVisible After LoginVisible After Login
Particle Size Distribution0.0 Visible After LoginVisible After LoginVisible After Login
Particle Size Distribution0.0 Visible After LoginVisible After LoginVisible After Login
Particle Size Distribution0.0 Visible After LoginVisible After LoginVisible After Login
Viscosity, Intrinsic0.0 Visible After LoginVisible After LoginVisible After Login

Related products