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Titanvene™ LL0209AA

Titanvene™ LL0209AA is a linear low density polyethylene suitable for a wide variety of film applications with low gel content, good transparency, and excellent mechanical properties. Titanvene™ LL0209AA has no slip and antiblock additives (bare foot).

Applications
Titanvene™ LL0220AA is typically used for :
  • Sack film
  • Food packaging
  • Industrial packaging

Recommended Processing Conditions
Titanvene™ LL0209AA can be easily processed on normal polyethylene blow film machines at temperatures in the range of 170°C to 190°C.

Food Contact Compliance
Titanvene™ LL0209AA can be used in food contact applications. Please contact your nearest PT. TITAN Petrokimia Nusantara representative for more detail of food contact compliance statements for the specific grade.
General 
Material Status 
  • Commercial: Active
Availability 
  • Asia Pacific
Features 
  • Food Contact Acceptable
  • High Clarity
  • Low Gel
Uses 
  • Bags
  • Film
  • Food Packaging
  • Industrial Applications
  • Packaging
RoHS Compliance 
Processing Method 
  • Blown Film
Physical
Nominal Value
Unit
Test Method
Density
g/cm³
ISO 1183/D
Melt Mass-Flow Rate (MFR) (190°C/2.16 kg)
g/10 min
ISO 1133
Mechanical
Nominal Value
Unit
Test Method
Coefficient of Friction 2
 
BS 2782
Films
Nominal Value
Unit
Test Method
Tensile Stress 3
  ISO 1184
MD : Yield, 1,5 mil
psi
 
TD : Yield, 1,5 mil
psi
 
Tensile Elongation 3
  ISO 1184
MD : Break, 1,5 mil
%
 
TD : Break, 1,5 mil
%
 
Dart Drop Impact (1,5 mil)
g
ISO 7765-1/A
Thermal
Nominal Value
Unit
Test Method
Vicat Softening Temperature
°F
ISO 306
Melting Temperature (DSC) 4
°F
ISO 3146
Optical
Nominal Value
Unit
Test Method
Gloss (1,50 mil)
 
ASTM D2457
Clarity
 
ASTM D1746
Haze
%
ASTM D1003
Features
Features may also be described by the following terms: Low Gel, High Clarity.
Uses
Uses may also be described by the following terms: Food Packaging.
Available Documents
Technical Datasheet (English)
Notes
1Typical properties: these are not to be construed as specifications.
2Method 824A
3Speed 1
4Method C

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