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Borstar® MB6561 Data Sheet

High Density Polyethylene

Supplied by Borealis AG

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Product Description
Borstar MB6561 is a bimodal, high-density polyethylene produced by Borstar PE technology and intended for injection and compression moulding. This grade combines excellent organoleptic properties, environmental stress crack resistance and superior flow properties with good impact strength even at low temperatures.
General  
Material Status 
  • Commercial: Active
Availability 
  • Africa & Middle East
  • Asia Pacific
  • Europe
Features 
  • Good Impact Resistance
  • Good Organoleptic Properties
  • High ESCR (Stress Crack Resist.)
  • High Flow
  • Low Temperature Impact Resistance
Uses 
  • Caps
  • Closures
  • Consumer Applications
  • Industrial Applications
  • Packaging
Forms 
  • Pellets
Processing Method 
  • Compression Molding
  • Injection Molding
 
Physical
Nominal Value
Unit
Test Method
Density
g/cm³
ISO 1183
Melt Mass-Flow Rate (MFR) (190°C/2.16 kg)
g/10 min
ISO 1133
Molding Shrinkage
%
 
Environmental Stress-Cracking Resistance (10% Igepal, F50)
hr
ASTM D1693A
Full Notch Creep Test 2 (122°F)
hr
Multiple Standards
Mechanical
Nominal Value
Unit
Test Method
Tensile Modulus
psi
ISO 527-2/1
Tensile Stress (Yield)
psi
ISO 527-2/50
Tensile Strain (Yield)
%
ISO 527-2/50
Features
Features may also be described by the following terms: Good Organoleptic Properties, High Environmental Stress Cracking Resistance, High ESCR, Stress Cracking Resistant, High Flow, High Melt, High MFI, Good Impact Resistance, Low Temperatuer Impact Resistance, Low Temp Impact Resistance.
Uses
Uses may also be described by the following terms: Closure Caps, Caps, Cap.
Available Documents
Technical Datasheet (English)
Injection
Nominal Value
Unit
 
Processing (Melt) Temp
°F
 
Mold Temperature
°F
 
Injection Rate
 
 
Injection Notes
Holding pressure: As low as possible
Notes
1Typical properties: these are not to be construed as specifications.
29 MPa, 2% Igepal, ISO/DIS 16700-2000
 
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The information presented on this datasheet was acquired by UL Prospector from the producer of the material. UL Prospector makes substantial efforts to assure the accuracy of this data. However, UL Prospector assumes no responsibility for the data values and strongly encourages that upon final material selection, data points are validated with the material supplier.