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TECHNYL C


TECHNYL® C 216 V10 NC

10% Glass Fiber Reinforced PA6 · High Rigidity · Good Impact Resistance · Natural Color

10% Glass Fiber
Tensile Modulus 4100 MPa
CTI 600V · PLC 0
UL94 HB

10%
Glass Fiber
4100
Tensile Modulus (MPa)
600
CTI (V) · PLC 0
145
Viscosity Number (cm³/g)

TECHNYL® C 216 V10 NC (previously DOMAMID 6G10) is a 10% glass fiber reinforced polyamide 6 (PA6) grade, specifically developed for injection molding. This grade offers improved rigidity and strength while maintaining good toughness, making it an ideal material choice for industrial components, consumer goods, and electrical applications.

📋 Product Overview

  • Polymer Type: PA6 (Polyamide 6)
  • Reinforcement: 10% Glass Fiber
  • Viscosity Number: 145 cm³/g
  • Flammability Rating: UL94 HB (0.75mm)
  • Processing: Injection Molding
  • Color: Natural
  • Certifications: RoHS
  • Typical Applications: Industrial Components, Consumer Goods, Electrical Applications

📊 Technical Data Sheet

Physical Properties

Property Standard Value Unit
Density ISO 1183 1.19 g/cm³</td
Molding Shrinkage (parallel) ISO 294-4 0.4 – 0.6 %</td
Molding Shrinkage (normal) ISO 294-4 0.8 – 1.0 %</td
Viscosity Number ISO 307 145 cm³/g</td

Mechanical Properties (DAM / Conditioned)

Property Standard Value (DAM / Cond.) Unit
Tensile Modulus ISO 527-1/-2 4100 / 2300 MPa</td
Stress at Break ISO 527-1/-2 90 / 50 MPa</td
Strain at Break ISO 527-1/-2 3 / 10 %</td
Flexural Modulus ISO 178 3500 / 2000 MPa</td
Flexural Strength ISO 178 120 / 65 MPa</td
Charpy Impact Strength (+23°C) ISO 179/1eU 35 / 65 kJ/m²</td
Charpy Notched Impact (+23°C) ISO 179/1eA 6 / 14 kJ/m²</td

Thermal Properties

Property Standard Value Unit
Melting Temperature ISO 11357-1 221 °C</td

Electrical Properties

Property Standard Value Unit/Rating
Volume Resistivity IEC 62631-3-1 1E+16 ohm.m</td
Surface Resistivity IEC 62631-3-1 1E+14 ohm</td
Comparative Tracking Index (CTI) IEC 60112 600 V</td
CTI Performance Level IEC 60112 PLC 0 —</td

Flammability

Property Thickness Standard Rating/Value
UL 94 Flammability 0.75 mm UL 94 HB</td
GWFI (1-3 mm) IEC 60695-2-12 650 °C</td
FMVSS Burning Rate 1 mm FMVSS 302 <100 mm/min</td

🌟 Key Advantages

  • ✅ 10% Glass Fiber Reinforcement: Significantly improved rigidity and strength vs. unreinforced PA6
  • ✅ Good Mechanical Properties: Tensile modulus 4100 MPa, flexural modulus 3500 MPa
  • ✅ Good Toughness: Maintains good impact resistance after conditioning
  • ✅ High CTI (600V): Excellent tracking resistance, PLC 0 highest rating
  • ✅ Good Processability: Standard viscosity, easy molding for complex designs
  • ✅ Excellent Electrical Insulation: Volume resistivity 1E+16 ohm.m
  • ✅ RoHS Compliant: Meets environmental regulations

⚙️ Processing Conditions

🌡️ Drying Conditions
75-85°C / 2-4 hours
Dew point ≤ -30°C
🔥 Recommended Melt Temperature
240 – 260°C
🏭 Mold Temperature
80 – 90°C

The material is supplied in airtight bags, ready for use. If the virgin material has absorbed moisture, it must be dried with dehumidified air drying equipment (dew point minimum -20°C). Recommended drying time: 2-4 hours.

🎯 Target Applications

🏭 Industrial Components
Gears, bearings, fan blades
🏠 Consumer Goods
Sports equipment, tool handles, furniture components
⚡ Electrical Applications
Insulation components, connector housings

📎 Download & Support

※ Click download links to access the complete technical datasheet. For any questions, please contact us.

Disclaimer: The information provided in this documentation corresponds to our technical knowledge at the date of its publication and does not constitute a specification. DOMO cannot anticipate all conditions under which this information and our products may be used. Users are advised to make their own tests to determine the safety and suitability for their own purposes. Unless otherwise agreed in writing, DOMO sells the product without warranties. Unless specifically indicated, this grade is not suitable for pharmaceutical/medical applications.

Source: DOMO Chemicals Official Technical Data Sheet (Document 000333)

Last Updated: June 2026

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