PA-BASF Ultramid A3EG6

Undergoing continuous thermal degradation and high cyclic loading inside modern engine compartments requires extreme heat-aging resistance, which BASF’s Ultramid A3EG6 delivers through its 30% glass fiber reinforced, heat-stabilized polyamide 66 matrix. Boasting a dry-as-molded (DAM) tensile strength of 175 MPa and a heat deflection temperature (HDT) of 250°C, this high-performance nylon grade is engineered for heavy-duty structural components subject to thermal cycling. At Jucheng Precision, an IATF 16949 and ISO 9001 certified manufacturer, we specialized in high-stress molding of Ultramid A3EG6. Utilizing our in-house five-axis CNC-machined H13 tooling, we mitigate fiber orientation stresses and optimize crystallization, delivering structurally sound parts verified by Zeiss CMM inspection.

High-precision-injection-molded-black-PA66-GF30-engine-coolant-manifolds-and-bobbins-made-of-BASF-Ultramid-A3EG6

Ultramid A3EG6 Mechanical Toughness & Heat Aging Retention

BASF Ultramid® A3EG6 is an easy-flowing, heat-stabilized PA66-GF30 resin. This grade is optimized to retain robust mechanical properties under prolonged exposure to hot-air and fluid-cycling environments:

Performance Metrics Dry-As-Molded (DAM) Testing Conditioned (50% RH) Testing
Elastic Tensile Modulus 10,000 MPa 7,000 MPa
Resistência à Tração na Ruptura 175 MPa 120 MPa
Deflection Temperature (HDT) 250 °C (@ 1,80 MPa) 250 °C (Uncompromised thermal threshold)

Structural Component Process Configurations for Ultramid A3EG6

With its high crystallinity rate and thermal stabilizer package, Ultramid A3EG6 performs reliably under intense molding conditions:

Target Assembly Class Critérios de Execução do Processo
Automotive Thermal-Cycling Components Engineered for high-temperature coolant manifolds, radiator end tanks, thermostat covers, and powertrain fluid connectors subject to continuous oil aging.
High-Load Industrial Bobbins & Brackets Ideal for heavy-duty electric bobbins, automated switchgear components, multi-pin electrical housings, and structural brackets requiring high creep modulus.

Ultramid A3EG6 Scientific Molding Checklist

To secure optimal fiber distribution, eliminate surface splay, and protect tool integrity, we adhere to a strict processing matrix for BASF Ultramid A3EG6:

1. Abrasive Gate Eradication (HRC 52–54 Tooling)

Because 30% glass fibers erode gates under high injection velocities, Jucheng uses hardened H13 tool steel hardened to 52–54 HRC. We polish flow gates with PVD wear-resistant ceramic coatings to prevent rapid cavity wear and preserve parting line clearances.

2. Conformal Cooling Matrix (Warpage Control)

A3EG6 exhibits anisotropic shrinkage (0.50% parallel / 1.00% normal to flow). To avoid part twisting or warping, we use our in-house 5-axis CNC machines to mill uniform, balanced cooling circuits directly inside the mold inserts to stabilize shrinkage variables.

3. Particulate & Degassing Ventilation

Heat-stabilized PA66 produces volatile gases during high-melt runs. We cut precise venting slots (0.015mm depth) along the parting line to prevent gas trapping, ensuring zero burn defects on cosmetic rib tips.

4. Melt Shear & Drying Protocol

Raw polymer is dried in desiccant hopper dryers at 80°C–100°C (176°F to 212°F) for 4–6 hours to ensure moisture levels remain strictly below 0.10%. Barrel temperatures are profiled between 270°C and 290°C (518°F to 554°F).

Key Application Fields for PA-BASF Ultramid A3EG6

  • Automotive Thermal Systems (IATF 16949): High-pressure cooling water pipes, radiator end chambers, oil separator covers, thermostat housings, and air intake grills.
  • Industrial Power & Electronics: Heavy-duty electric motor bobbins, smart-grid circuit breakers, multi-pin electrical connectors, and din-rail switch boxes.
  • Estruturas de Eletrodomésticos Pesados: Dishwasher structural brackets, washing machine vibration dampers, water pump impellers, and high-stiffness powertool casings.

Propriedades

Densidade 1.36 - 1.37 g/cm³
Temperatura de Fusão 260 °C
Módulo de Tração (DAM) 10.000 MPa
Módulo de Tração (Condicionado) 7,000 MPa
Tensão de Tração na Ruptura (DAM) 175 MPa
Tensão de Tração na Ruptura (Condicionado) 120 MPa
Resistência à Flexão (DAM) 260 MPa
Módulo de Flexão (DAM) 8,700 MPa
Resistência ao Impacto Charpy com Entalhe (23°C) 9 kJ/m²
Absorção de Água (Equilíbrio, 50% UR) 1.9 %
Temperatura de Deflexão Térmica (HDT @ 1,80 MPa, DAM) 250 °C
Contração Linear no Molde (Direção do Fluxo) 0.5 %
Contração Linear no Molde (Direção Transversal) 1 %
Tamanho Máximo da Peça 1000 x 800 mm
Tamanho Mínimo da Peça 1 x 1 mm