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Formosa Plastics Formolene® E924F Film HDPE

Category Polymer , Film , Thermoplastic , Polyethylene (PE) , HDPE , High Density Polyethylene (HDPE), Film Grade
Manufacturer Formosa Plastics Corporation, USA
Trade Name Formolene®
Port Shanghai port,China
Trade Terms FOB, CFR, CIF
Payment Terms L/C, T/T, Western Union
Download PDF Formosa Plastics Formolene® E924F Film HDPE.pdf
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Material Notes:
High Density Polyethylene High Molecular Weight Bi-Modal Resin for Film Applications Formolene® E924F is a “low gel” high molecular weight grade of HDPE designed for high dart impact strength and good processing characteristics. Formolene® E924F is well balanced in overall physical properties and provides good stiffness for thin gauge film applications requiring high quality printing. Formolene® E924F meets all requirements of the U.S. Food and Drug Administration as specified in 21 CFR 177.1520, covering safe use of polyolefin articles intended for direct food contact.Applications: Merchandise Bags, Lamination Films, T-Shirt Bags,Trash Can Liner and Heavy Duty BagsInformation provided by Formosa Plastics Corporation, USA
Physical Properties Metric English Comments
Density 0.949 g/cc
0.0343 lb/in³
ASTM D1505
Thickness 12.7 microns
0.500 mil
Melt Flow 0.040 g/10 min

@Load 2.16 kg,
Temperature 190 °C
0.040 g/10 min

@Load 4.76 lb,
Temperature 374 °F
Condition E; ASTM D1238
High Load Melt Index 8.5 g/10 min

@Load 21.6 kg,
Temperature 190 °C
8.5 g/10 min

@Load 47.6 lb,
Temperature 374 °F
Condition F; ASTM D1238
Mechanical Properties Metric English Comments
Film Elongation at Break, MD 300 %
300 %
ASTM D882
Film Elongation at Break, TD 410 %
410 %
ASTM D882
Elmendorf Tear Strength MD 14 g
14 g
ASTM D1922
Elmendorf Tear Strength TD 25 g
25 g
ASTM D1922
Dart Drop Test 210 g
0.463 lb
ASTM D1709
Film Tensile Strength at Break, MD 62.1 MPa
9000 psi
ASTM D882
Film Tensile Strength at Break, TD 28.3 MPa
4100 psi
ASTM D882
Thermal Properties Metric English Comments
Melting Point 131 °C
268 °F
DSC
Processing Properties Metric English Comments
Blow-up Ratio (BUR) 4.0
4.0
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