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Thermal Performance Mechanical Properties Strength Anti-aging Glass Fiber Reinforced PA
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Thermal Performance Mechanical Properties Strength Anti-aging Glass Fiber Reinforced PA

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Product Description

This product is a glass fiber reinforced PA (Polyamide) material that offers exceptional thermal performance, excellent mechanical properties, high strength, and anti-aging properties. The addition of glass fibers enhances the material's strength, rigidity, and resistance to deformation. It exhibits excellent thermal conductivity, making it ideal for applications that require efficient heat dissipation. The material also boasts excellent mechanical properties, including high tensile strength, impact resistance, and durability. Additionally, it is highly resistant to aging, ensuring long-lasting performance even in harsh environments. Overall, this glass fiber reinforced PA material is well-suited for a wide range of applications that require superior thermal performance, mechanical strength, and resistance to aging.

General

Form                                        Resin Pellets

Filler                                        30 % Glass Fiber

Feature                                    Rohs                                  Ec 1907/2006 (Reach)

 Handles

Uses

White Goods & Small  Appliances

 Automotive

 Connector

Physical                                                                                Nominal Value                                       Test Method

Density / Specific Gravity                                                     1.36 g/cm³                                             ISO 1183

Water Absorption(24 hr;23 °C)                                            0.8 %                                                     ISO 62

Water Absorption at Saturation(24 hr;23 °C)                      5.3 %                                                     ISO 62

Molding shrinkage, parallel(50% RH;23 °C;72 hr)               0.4 %

ISO 2577;ISO 294- 4

Molding shrinkage, normal(50% RH;23 °C;72 hr)               1.1 %

ISO 2577;ISO 294- 4

Mechanical

Nominal Value

Test Method

Dry: Tensile Modulus(1 mm/min)

10000 MPa

ISO 527-1/-2

Condition: Tensile Modulus(1 mm/min)

7500 MPa

ISO 527-1/-2

Dry: Stress at break

190 MPa

ISO 527-1/-2

Condition: Stress at break

135 MPa

ISO 527-1/-2

Dry: Strain at break

3 %

ISO 527-1/-2

Condition: Strain at break

7 %

ISO 527-1/-2

Dry: Flexural Modulus

2 mm/min

2 mm/min

9000 MPa

9400 MPa

ISO 178

ASTM D790

Conditioned: Flexural Modulus(2 mm/min)

6350 MPa

ISO 178

Dry: Flexural Strength

2 mm/min

2 mm/min

275 MPa

260 MPa

ISO 178

ASTM D790

Condition: Flexural Strength(2 mm/min)

205 MPa

ISO 178

Dry: Charpy Impact Strength(23 °C)

75 kJ/m²

ISO 179/1eU

Condition: Charpy Impact Strength(23 °C)

90 kJ/m²

ISO 179/1eU

Dry: Charpy Notched Impact Strength(23 °C)

11 kJ/m²

ISO 179/1eA

Condition: Charpy Notched Impact Strength(23 °C)

16 kJ/m²

ISO 179/1eA

Dry: Izod Notched Impact Strength(23 °C)

11 kJ/m²

ISO 180/1A

Izod Notched Impact Strength: condition(23 °C)

16 kJ/m²

ISO 180/1A

Thermal

Nominal Value

Test Method

Melting Temperature(10 °C/min)

262 °C

ISO 11357-1

Temp. of deflection under load

0.45 MPa

1.8 MPa

260 °C

255 °C

ISO 75

Flammability(1.5 mm)

HB

UL 94

Glow Wire Flammability Index

1.5 mm

3 mm

650 °C

750 °C

IEC 60695-2-12

Glow Wire Ignition Temperature [GWIT](1.5 mm)

650 °C

IEC 60695-2-13

Oxygen Index

23 %


Electrical

Nominal Value

Test Method

Volume Resistivity

1e+11 ohms ·cm

IEC 62631-3-1

Surface Resistivity

6E+015 Ohms

IEC 62631-3-1

Dielectric Strength(1 mm)

40 kV/mm

IEC 60243-1

Processing


Nominal Value

Drying Temperature


80 °C

Dry Time(with a dehumidified air drying point mini -20°C)

equipment, dew

2 - 4 h

Suggested Max Moisture


0.002

Rear Temperature


270 - 280 °C

Middle Temperature


275 - 285 °C

Front Temperature


280 - 290 °C

Mold Temperature


70 - 100 °C


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