MASTIKPLEXX 4000

MASTIKPLEXX 4000 is a structural, solvent-free 2-component adhesive specially developed for low surface energy plastics bonding (e.g. PE, PP, POM) with fast curing and a high resistance to moisture and ageing.

 

  • Designed for structural bonding of low surface energy plastics.
  • Suitable for bonding PP, PE, PS, PA, POMTPO, PA6.6, PTFE (teflon) and/or in combination PC, PMMA, unplasticized PVC, ABS.
  • Excellent adhesion also on metal, rubber, stone, ceramic, fiber-reinforced plastics.
  • No shrinkage.
  • Fast cure.
  • Excellent adhesion on different substrates, without the use of specific surface primers.

Attachment

MASTIKPLEXX_4000_ENG

Description

PROPERTIES PART A PART B
CHEMICAL NATURE Methacrylate Amine
COLOUR White Transparent
VISCOSITY @ 20 °C Thixotropic 25.000 mPa.s
MIX RATIO BY VOLUME 1 1
TYPICAL CHARACTERISTICS OF THE MIXED PRODUCT
OPEN TIME @ 23°C 4 minutes
FIXTURE TIME @ 23°C ~40 minutes
FULL CURE TIME 24/36 hours
DENSITY ~1,0 g/ml
MINIMUM GAP FILL 0,5 mm
MAXIMUM FUNCTIONAL GAP FILL 5 mm
APPLICATION TEMPERATURE +15 / +25 °C
TEMPERATURE RESISTANCE – 40 / + 110 °C

Additional information

Specific work-setting (component)

DYNAMIC bonding-line > 100 cm (IMPACTS + VIBRATIONS + TORSIONS), Operating Temperature > 90 ° C, Operating Temperature <0 ° C, STATIC bonding-line <100 cm (LIGHT HANDLING)

Type of joint (application mode)

BEAD – OVERLAP, SMALL POINT – DROP

Adhesive Working Time

< 10 MINUTES

Adhesive Fixture Time

30 ÷ 90 MINUTES

Substrates (suitable adherings match))

LOW ENERGY SURFACE THERMO-PLASTIC POLYMERS # ARAMIDE FIBER-REINFORCED COMPOSITES, LOW ENERGY SURFACE THERMO-PLASTIC POLYMERS # LOW ENERGY SURFACE THERMO-PLASTIC POLYMERS, LOW ENERGY SURFACE THERMO-PLASTIC POLYMERS # METALS and / or ALLOYS (Al – Ti – Ni – Cr – Fe), METALS and / or ALLOYS (Cu / Zn – Fe – Pb) # METALS and / or ALLOYS (Cu / Zn – Fe – Pb)

component sector/process

AUTOMOTIVE – TRUCK – BUS – AGRICULTURAL, FORESTRY MACHINES, INDUSTRIAL COMPONENTS, MILITARY DEFENCE, SPORT

Type of failure mode (after joint stress)

COHESIVE (bonding failure inside the adhesive: residue presence on substrates), SUBSTRATE ((adhering structure failure: adhesive causes a fracture on substrate)

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