3M™ 051115-25014 Flammable High Strength Spray Adhesive, 7.6 lb Mini Cylinder, Clear, 210 deg F

7100139133 MFG #: 051115-25014
$441.70 / EA
Estimated Delivery 7 to 10 Business Days
  • Manufacturer: 3M
  • Type: Flammable High Strength
  • Container Type: Mini Cylinder
  • Net Weight: 7.6 lb
  • Base Type: Synthetic Elastomer
  • Composition: Methyl Acetate, Rosin, Polymer with Isophthalic Acid and Pentaerythritol, Non-Hazardous Components Dimethylether, Isobutane, Propane
  • Form: Gas
  • Coverage: 51 sq-ft
  • Drying Time: 1 min
  • Setting Time: 1 to 15 min
  • Curing Time: 15 min
  • Color: Clear
  • Odor/Scent: Solvent
  • Temperature Rating: 210 deg F
  • Specific Gravity: 0.93 to 0.95
  • Flash Point: 8 deg F
  • VOC Content: 79 g/L
  • Flammability Rating: 3.1% Lower, 16% Upper
  • Applicable Materials: EPDM Rubber, Fabric, Felt, Cork and Fibrous Glass, Latex, Urethane, Glass and Ceramic, Leather, Metal, Paper and Cardboard, ABS, PVC, Acrylic, Flexible Vinyl, High Performance Nylon, Polyolefin and Thermoplastic Elastomer, Wood and Hardboard
  • Shear Strength: 500 psi
  • Brand: 3M™
3M™ Spray Adhesive, Flammable High Strength, Mini Cylinder Container, 7.6 lb Container, 7.6 lb Net Weight, 51 sq-ft Coverage, 1 min Drying, 1 to 15 min Setting, 15 min Curing, Clear, 210 deg F, 0.93 to 0.95 Specific Gravity, 79 g/L VOC, Flammability: 3.1%, 16%, EPDM Rubber, Fabric, Felt, Cork and Fibrous Glass, Latex, Urethane, Glass and Ceramic, Leather, Metal, Paper and Cardboard, ABS, PVC, Acrylic, Flexible Vinyl, High Performance Nylon, Polyolefin and Thermoplastic Elastomer, Wood and Hardboard Adheres to
  • 3.1% Lower, 16% Upper
  • Provides a longer open time and more aggressive tack than comparable adhesives
  • Permits immediate repositioning while providing long lasting strength
  • Ideal for applications involving large surfaces
3.1% Lower, 16% Upper
Provides a longer open time and more aggressive tack than comparable adhesives
Permits immediate repositioning while providing long lasting strength
Ideal for applications involving large surfaces