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Henkel Adhesive Technologies

Henkel Adhesive Technologies

Loctite Technology Cluster Brand for Product Detail Pages

Retaining compounds

LOCTITE® 620

High strength, high-temperature resistant bonding of cylindrical parts

This anaerobic-curing retaining compound is designed for bonding cylindrical fitting parts, particularly where high strength with high temperature resistance is required.

All marks used are trademarks and/or registered trademarks of Henkel and its affiliates in the US, Germany, and elsewhere.

Part no. (SKU/IDH) 135514
LOCTITE® 620, 50 ml Bottle

Size Please make your selection 50 ml

Documents

Information

When it comes to bonding locating pins in radiator assemblies, sleeves in pump housings and bearings in auto transmissions – especially when you need high temperature resistance up to 232°C (450°F) – LOCTITE® 620 is a good choice. This high strength, anaerobic-curing retaining compound is designed for bonding cylindrical fitting parts to prevent loosening and leakage due to shock and vibration. It cures when confined in the absence of air between close-fitting metal surfaces, and can fill gaps from 0.15 mm - 0.25 mm (0.006" - 0.01").  

  • Product category:
  • Retaining compounds
  • Agency approvals / certificates / specifications:
  • DVGW (EN 751-1): NG-5146AR0622

 

  • Application method:
  • Dispense system,Manual

 

  • Applications:
  • For high temperature applications,For slip fitted parts,Retaining

 

  • Color:
  • Green

 

  • Cure type:
  • Anaerobic cure

 

  • Fixture time:
  • 60.0 min.

 

  • Gap fill:
  • 0.15 mm - 0.25 mm

 

  • Key characteristics:
  • Cure speed: slow cure,Gap filling,Strength: medium to high strength,Temperature: high temperature,Viscosity: high viscosity

 

  • Number of components:
  • 1 part

 

  • Operating temperature:
  • -55.0 °C - 230.0 °C (-65.0 °F - 450.0 °F)

 

  • Physical form:
  • Liquid

 

  • Recommended for use with:
  • Metal: steel

 

  • Shear strength, Steel:
  • 26.0 N/mm² (3800.0 psi)

 

  • Viscosity:
  • 8000.0 mPa·s (cP)

 

     

       

         

           

             

               

                 

                   

                     

                       

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