SYLVARES™ 1095

1 of 24 products in this brand
SYLVARES 1095 tackifier is a thermoplastic terpene phenolic resin designed for tackifying hot melt adhesives to provide superior adhesion and thermal-stability properties. This low softening point terpene phenol resin exhibits excellent compatibility and tackifying properties for use in styrenic-block-co-polymers and for solvent acrylic based pressure sensitive adhesives. This resin can also be used to tackify metallocene polymers.

Functions: Tackifier

Chemical Family: Phenols & Phenolics

End Uses: Pressure Sensitive Adhesive

Compatible Polymers & Resins: Acrylics, Polyolefins, Polyvinyl Acetate (PVA)

Labeling Claims: Bio-based

Features: Good Compatibility

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Identification & Functionality

Chemical Family
CASE Ingredients Functions
Technologies

Features & Benefits

Labeling Claims
CASE Ingredients Features
Product Highlights
  • Low softening point
  • Broad compatibility
  • Thermally stable
  • 75% biobased content

Applications & Uses

Adhesive & Sealant Type
Applications
  • PSA Tapes 
  • PSA Labels
  • Packaging

Properties

Insoluble in
Ethanol
Sales Specifications
ValueUnitsTest Method / Conditions
Softening Point92-98°CAQCM 003
Color (neat)max. 8GardnerAQCM 002

Technical Details & Test Data

Compatibility

SYLVARES 1095 tackifier is compatible with:

  • many polyolefins 
  • styrenic block copolymers
  • EVA
  • some acrylics
Solubility

SYLVARES 1095 tackifier is soluble in:

  • aromatic / aliphatic solvents like hexane & toluene
  • esters and ketones like ethylacetate and acetone 
  • longer chain alcohols like propanol, pentanol, butanol

SYLVARES 1095 tackifier is insoluble in:

  •  smaller alcohols like ethanol

Packaging & Availability

Packaging

SYLVARES 1095 tackifier is delivered as flakes in 50lb. paper bags.

Storage & Handling

Storage Recommendation

It is recommended to store and transit dry and below 30°C / 86°F. To prevent remassing, keep away from direct sun light or other sources of heat. Product stored or transported at higher temperatures should be evaluated for impact on performance before use.