PA6 Glass Fiber Reinforced

EAG120U

EAG120U is a 20% glass-fiber-reinforced PA6 grade with 140 MPa tensile stress, 205 MPa flexural strength, 8.5 kJ/m2 notched impact and 210 °C HDT at 1.8 MPa. Confirm final suitability against the molded part and processing conditions.

Document Support
TDSSDSCOAREACHRoHS

REACH / RoHS support available upon request.

Grade Snapshot

Review the reference values before confirming this material for a molded part or document request.

Specific gravity
1.28
ISO 1183
Tensile stress
140 MPa
ISO 527
HDT 1.8 MPa
210 °C
ISO 75
Flammability
HB Class
UL 94, 0.8 mm

Core Selection Data

Reference Values for Early Screening

PropertyValueUnitTest Method
Specific gravity1.28ISO 1183
Tensile stress140MPaISO 527
Tensile modulus6900MPaISO 527
Flexural modulus6400MPaISO 178
Charpy impact strength(Notched) @ 23 °C8.5kJ/m2ISO 179/1eA
Heat deflection temperature (1.8 MPa)210°CISO 75

Core comparison values are shown here. Full property, processing, impact, electrical, and project-specific data are provided through TDS or project review.

Request Full TDS

Grade Characteristics

  • Compared with EAG120 at the same listed glass-fiber content, EAG120U publishes higher tensile stress, flexural strength, notched impact and HDT, with a slightly lower flexural modulus of 6400 MPa versus 6500 MPa.
  • 20% filler or reinforcement reference
  • HB flammability reference

Typical Applications

  • Structural housings
  • brackets and precision molded components screened for a 20% glass-fiber PA6 profile with stronger published tensile
  • flexural-strength
  • impact and HDT values than EAG120.

Material Evaluation Notes

Use the published advantage as a shortlist signal rather than an automatic suitability claim. Confirm conditioning, process window, fiber orientation, dimensional behavior and part testing before approval.

Inquiry Preparation

Prepare a Grade Evaluation

Send the application, key performance requirements, mold stage, cavity count, dimensional concern, current material or reference grade, document needs, and estimated volume. These inputs identify the next grade, document, and sample steps for the project.