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Stanyl® TE250F8

Technical Datasheet | Supplied by Envalior
Stanyl® TE250F8 by Envalior is a high-performance, flame-retardant, heat-stabilized polyamide (PA 4-6) grade reinforced with 40% glass fiber. It provides high mechanical properties, heat- & chemical resistance, design stiffness, wear & friction and process flow qualities. It is suitable for processing by injection molding. It allows for reliable solutions due to good creep resistance and good electrical properties. It offers cost-efficient solutions due to high toughness levels resulting in low reject levels in winding process and due to excellent flowability enabling thin wall designs. Stanyl® TE250F8 is used in automotive, gears, electrical & electronics, outdoor power equipment, bobbins, terminal blocks, DDR DIMM-, reflow- and battery connectors.
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Stanyl® TE250F8
Technical Datasheet | Supplied by Envalior
REQUEST A SAMPLE ORIGINAL DATASHEET CONTACT SUPPLIER
Product Type
PA (Polyamide, Nylon) > PA 4-6 (Nylon 4-6)
Physical Form
Pellets
Product Status
COMMERCIAL
Geographical Availability
Central and Eastern Europe, North America, South and Central America, Western Europe, Asia / Pacific, Africa, Middle East and Central Asia
Applications/ Recommended for
  • Electronics / Computers
  • Electrical markets > Bobbins
  • Gears
  • Automotive
  • Electrical markets > Connectors
  • Injection molding - thermoplastics
Labels/Agency Rating
ISO 1043 PA46
Key Features
  • Chemical resistance, High
  • Cost Effective
  • Creep Resistance, Good
  • Filled, Glass Fiber
  • Flame retarded
  • Flow, High
  • Heat Resistance, High
  • Heat stabilized
  • Stiffness, High

Stanyl® TE250F8 Properties

Physical Properties

Value & Unit
Test Condition
Test Method
Linear Mold Shrinkage
0.9 %
ISO 62
Linear Mold Shrinkage, Flow
0.3 %
ISO 62
Viscosity Number
150 cm3/g
ISO 307, ISO 1157, ISO 1628

Stanyl® TE250F8 Processing Guidelines

Injection Properties

Value & Unit
Test Condition
Test Method
Maximum Shot Volume
> 50 %
Melt Residence Time (MRT)
4 - 6
Front Temperature
300 - 320 °C

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