MatWeb - Material Property Data Advertise with MatWeb!     Register Now
Data sheets for over 180,000 metals, plastics, ceramics, and composites.
MatWeb - Material Property Data HOME  •   SEARCH  •   TOOLS  •   SUPPLIERS  •   FOLDERS  •   ABOUT US  •   FAQ  •   LOG IN    
Recently Viewed Materials (most recent at top)  

Login to see your most recently viewed materials here.

Or if you don't have an account with us yet, then click here to register.

  Searches:   Advanced  | Category  | Property  | Metals  | Trade Name  | Manufacturer  | Recently Viewed Materials
  

Elmet Technologies

Formosa Plastics Formolene® E927 Film HDPE
Categories: Polymer; Film; Thermoplastic; Polyethylene (PE); High Density (HDPE); High Density Polyethylene (HDPE), Film Grade

Material Notes: High Density Polyethylene High Molecular Weight Bi-Modal Resin For Thin Film Applications

Formolene® E927 is a high molecular weight grade of HDPE designed for high drawdown to produce thin films with good processing and physical properties. Formolene® E927 is well balanced in overall physical properties and provides good stiffness for thin gauge film applications.

Formolene® E927 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: Multi-Wall Bag Liners, T-Shirt Bags, Merchandise Bags, Trash Can Liner and Heavy Duty Bags

Information provided by Formosa Plastics Corporation, USA

Vendors: No vendors are listed for this material. Please click here if you are a supplier and would like information on how to add your listing to this material.
 
Physical PropertiesMetricEnglishComments
Density 0.949 g/cc0.0343 lb/in³ASTM D1505
Thickness 15.2 microns0.600 mil
Melt Flow 0.070 g/10 min
@Load 2.16 kg,
Temperature 190 °C
0.070 g/10 min
@Load 4.76 lb,
Temperature 374 °F
Condition E; ASTM D1238
High Load Melt Index 12 g/10 min
@Load 21.6 kg,
Temperature 190 °C
12 g/10 min
@Load 47.6 lb,
Temperature 374 °F
Condition F; ASTM D1238
 
Mechanical PropertiesMetricEnglishComments
Film Elongation at Break, MD 280 %280 %ASTM D882
Film Elongation at Break, TD 410 %410 %ASTM D882
Elmendorf Tear Strength MD 11 g11 gASTM D1922
Elmendorf Tear Strength TD 60 g60 gASTM D1922
Dart Drop Test 380 g0.838 lbASTM D1709
Film Tensile Strength at Break, MD 57.2 MPa8300 psiASTM D882
Film Tensile Strength at Break, TD 49.6 MPa7200 psiASTM D882
1% Secant Modulus, MD 814 MPa118000 psiASTM D882
1% Secant Modulus, TD 1010 MPa146000 psiASTM D882
 
Thermal PropertiesMetricEnglishComments
Melting Point 131 °C268 °FDSC
 
Processing PropertiesMetricEnglishComments
Blow-up Ratio (BUR) 4.04.0
 
Compliance PropertiesMetricEnglishComments
FDA YesYesSee notes for details.

Some of the values displayed above may have been converted from their original units and/or rounded in order to display the information in a consistent format. Users requiring more precise data for scientific or engineering calculations can click on the property value to see the original value as well as raw conversions to equivalent units. We advise that you only use the original value or one of its raw conversions in your calculations to minimize rounding error. We also ask that you refer to MatWeb's terms of use regarding this information. Click here to view all the property values for this datasheet as they were originally entered into MatWeb.

Users viewing this material also viewed the following:
Borealis FS1560 High Density Polyethylene
Bayport Polymers Baystar™ 2285 HDPE Bimodal Film Resin
Formosa Plastics Formolene® E924 Film HDPE

PFPCPQ050 / 150282

Ensinger PEI

Please read our License Agreement regarding materials data and our Privacy Policy. Questions or comments about MatWeb? Please contact us at webmaster@matweb.com. We appreciate your input.

The contents of this web site, the MatWeb logo, and "MatWeb" are Copyright 1996-2024 by MatWeb, LLC. MatWeb is intended for personal, non-commercial use. The contents, results, and technical data from this site may not be reproduced either electronically, photographically or substantively without permission from MatWeb, LLC.