ENGAGE™ 8100

About
ENGAGE™ 8100 Polyolefin Elastomer is an ethylene-octene copolymer that has excellent flow characteristics and performs well in a wide range of general purpose thermoplastic elastomer applications. ENGAGE 8100 provides superb impact properties in blends with polypropylene (PP) and polyethylene (PE). ENGAGE 8100 provides high filler loading capability and outstanding peroxide cure capability. When cross-linked by peroxide, silane, or irradiation, it gives exceptional heat aging, compression set, and weather resistance properties, and may be used to produce high performance electrical insulation. Main Characteristics: Pellet form Excellent flow characteristics Improved impact in polypropylene and polyethylene High filler loading Peroxide, silane, and radiation curable Exceptional heat aging, compression set, and weather resistance when cured Applications: General purpose thermoplastic elastomers Wire and cable Impact modification&&

Product Description
SupplierDOW
GenericPolyolefin Elastomer
Material StatusCommercial: Active
AvailabilitysNorth America,Latin America,Asia Pacific,Europe

Technical Data
PHYSICALNominal valueUnitTest method
Density0.870g/cm³ASTM D792
Melt Flow Rate
190℃,2.16kg1.0g/10minASTM D1238
Mooney viscosity
ML 1+4,121℃24MUASTM D1646

elastic bodyNominal valueUnitTest method
tear strength40.0kN/mASTM D624

THERMALNominal valueUnitTest method
Glass transition temperature-52.0Internal Method
Vicat Softening Temp45.0ASTM D1525
Melting temperature
DSC60.0Internal Method
Crystallization peak temperature
DSC45.0Internal Method

MECHANICALNominal valueUnitTest method
Shore hardness ASTM D2240
Shore A, 1 second, molded73 ASTM D2240
Shore D, 1 second, molded22 ASTM D2240
Tensile modulus
100% cut, molded2.90MPaASTM D638
tensile strength
Fracture, molded9.76MPaASTM D638
Tensile strain
Fracture, molded810%ASTM D638
Bending modulus ASTM D790
1% cut, molded14.3MPaASTM D790
2% cut, molded13.1MPaASTM D790

Notes
1. Typical properties: these are not to be construed as specifications.
2. 20 in/min
3. Die C
4. 10°C/min
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