MALAT 04G192 NAT Datasheet

Thermoplastic Polyester

Glass Fiber

Supplied by AD majoris

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Product Description
MALAT 04G192 NAT is a glass fibre reinforced modified thermoplastic polyester, intended for injection moulding. The product is available in different colours.

It combines high mechanical, thermal properties with excellent processability and dimensional stability.

APPLICATIONS
MALAT 04G192 NAT is intended for the injection moulding of electrical components, automotive applications and mechanical systems, such as:
  • Electrical appliance components
  • Dashboard components
  • Miscellaneous
General  
Material Status 
  • Commercial: Active
Availability 
  • Europe
Filler / Reinforcement 
  • Glass Fiber
Features 
  • Good Dimensional Stability
  • Good Processability
  • Recyclable Material
Uses 
  • Appliance Components
  • Automotive Applications
  • Electrical Parts
Appearance 
  • Colors Available
Forms 
  • Pellets
Processing Method 
  • Injection Molding
Physical
Nominal Value
Unit
Test Method
Density
g/cm³
ISO 1183
Molding Shrinkage
%
 
Mechanical
Nominal Value
Unit
Test Method
Tensile Modulus
psi
ISO 527-2/1
Tensile Stress (Break)
psi
ISO 527-2/50
Tensile Strain (Break)
%
ISO 527-2/50
Flexural Modulus 2
psi
ISO 178
Flexural Stress 3
psi
ISO 178
Impact
Nominal Value
Unit
Test Method
Charpy Notched Impact Strength (73°F)
ft·lb/in²
ISO 179/1eA
Charpy Unnotched Impact Strength (73°F)
ft·lb/in²
ISO 179/1eU
Features
Features may also be described by the following terms: Good Processability, Easy Processing, Good Dimensional Stability, Dimensionally Stable.
Uses
Uses may also be described by the following terms: Automotive Applications, Automotive Sector, Appliance Components, Appliance Parts.
Available Documents
Technical Datasheet (English)
Injection
Nominal Value
Unit
 
Drying Temperature
°F
 
Drying Time
hr
 
Processing (Melt) Temp
°F
 
Mold Temperature
°F
 
Injection Rate
 
 
Injection Notes
Back pressure: Moderate
Notes
1Typical properties: these are not to be construed as specifications.
20,079 in/min
32,0 in/min
 
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