Mechanical Properties | Metric | English | Comments |
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Film Tensile Strength at Break, TD | 15.9 MPa | 2300 psi | ASTM D882 |
NOVA Chemicals Novapol® LA-0219-A LDPE Foam Resin Features: Good heat sealing latitudeModerate toughnessEasy processability Applications: Industrial packagingLinersBlends with LLDPEFoam ArticlesInformation provided by Nova Chemicals |
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Film Tensile Strength at Break, TD | 15.9 MPa | 2300 psi | ASTM D882 |
LyondellBasell Petrothene® NA952000 Low Density Polyethylene ApplicationsPETROTHENE NA 952 is a series of homopolymer resins especially designed for industrial and consumer packaging, and liner and bag applications. NA 952 has an excellent balance of process.. |
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Film Tensile Strength at Break, TD | 15.9 MPa | 2300 psi | ASTM D882 |
LyondellBasell Petrothene® NA952094 Low Density Polyethylene ApplicationsPETROTHENE NA 952 is a series of homopolymer resins especially designed for industrial and consumer packaging, and liner and bag applications. NA 952 has an excellent balance of process.. |
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Film Tensile Strength at Break, TD | 15.9 MPa | 2300 psi | ASTM D882 |
Westlake EF608 Low Density Polyethylene Westlake EF608 is a high melt index LDPE resin suggested for thin gauge garment films and other films requiring excellent drawdown. The high melt index makes this material a good choice in compound.. |
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Film Tensile Strength at Break, TD | 15.9 MPa | 2300 psi | ASTM D882 |
ExxonMobil Optema® TC-114 Cast Ethylene Methyl Acrylate Product Description: Optema TC 114 is an ethylene methyl acrylate copolymer specifically formulated to offer extrusion and property performance for blown and cast film applications. It produces a so.. |
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Film Tensile Strength at Break, TD | 15.9 - 36.5 MPa | 2300 - 5290 psi | Average value: 27.2 MPa Grade Count:7 |
Overview of materials for Ethylene-Methyl Acrylate Copolymer, Film Grade This property data is a summary of similar materials in the MatWeb database for the category "Ethylene-Methyl Acrylate Copolymer, Film Grade". Each property range of values reported is minimum and m.. |