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Tensile Modulusin MPa
Tensile Strengthin MPa
Charpy impact strengthin kJ/m²
558 Compounds found
Recommended  
Tensile Modulus
Tensile Strength
Charpy impact strength
Description

PRECITE®

Preliminary

E GF 20 black (7360)

PET GF 20

PRECITE® E GF 20 black (7360) - PET, 20 % glass fibre, good stiffness, good toughness, elevated temperature, good surface, dimensional stability, metal replacement, automotive, E&E, household.


Modulus

7.800MPa

Strength

NA

Impact

35kJ/m²

PRECITE® E GF 20 black (7360) - PET, 20 % glass fibre, good stiffness, good toughness, elevated temperature, good surface, dimensional stability, metal replacement, automotive, E&E, household.

PRECITE®

Preliminary

E GF 30 natural (7303)

PET GF 30

PRECITE® E GF 30 natural (7303) - PET, 30% glass fibre, high stiffness, high toughness, elevated temperature, good surface, dimensional stability, metal replacement, automotive, E&E, household.


Modulus

10.600MPa

Strength

175MPa

Impact

48kJ/m²

PRECITE® E GF 30 natural (7303) - PET, 30% glass fibre, high stiffness, high toughness, elevated temperature, good surface, dimensional stability, metal replacement, automotive, E&E, household.

PRECITE®

V GF 30 2 black (7724)

PBT+ASA GF30

PRECITE® V GF 30 2 black (7724) - PBT/ASA blend, low warpage, good surface, lower density.


Modulus

9.500MPa

Strength

130MPa

Impact

60kJ/m²

PRECITE® V GF 30 2 black (7724) - PBT/ASA blend, low warpage, good surface, lower density.

AKROMID®

B3 ICF 15 black (5026)

PA6 CF15

AKROMID® B3 ICF 15 black (5026) is a 15% carbon fibre reinforced polyamide 6 with high flexural strength and good sliding properties.


Modulus

11.000MPa

Strength

140MPa

Impact

55kJ/m²

AKROMID® B3 ICF 15 black (5026) is a 15% carbon fibre reinforced polyamide 6 with high flexural strength and good sliding properties.

AKROMID®

Preliminary

NEXT B3 GF 30 1 L CR natural (8312)

PA6 + PP GF30

AKROMID® NEXT B3 GF 30 1 L CR natural (8312) - PA6/PP-Blend, biomass-balanced, 30% glass fibre, lower density, good chemical resistance.


Modulus

8.800MPa

Strength

140MPa

Impact

70kJ/m²

AKROMID® NEXT B3 GF 30 1 L CR natural (8312) - PA6/PP-Blend, biomass-balanced, 30% glass fibre, lower density, good chemical resistance.

AKROMID®

B3 GF 50 1 black (2488)

PA6 GF50

AKROMID® B3 GF 50 1 black (2488) - 50% glass fiber reinforced PA 6, heat stabilised, technical parts in industrial engineering and automotive industry


Modulus

17.000MPa

Strength

230MPa

Impact

100kJ/m²

AKROMID® B3 GF 50 1 black (2488) - 50% glass fiber reinforced PA 6, heat stabilised, technical parts in industrial engineering and automotive industry

AKROMID®

A28 GF 50 1 GIT black (5029)

PA66 GF50

AKROMID® A28 GF 50 1 GIT black (5029) - 50% Glasfaser, heat stabilised, easy flowing polyamide 6.6, gas injection technology, excellent surface


Modulus

17.500MPa

Strength

270MPa

Impact

100kJ/m²

AKROMID® A28 GF 50 1 GIT black (5029) - 50% Glasfaser, heat stabilised, easy flowing polyamide 6.6, gas injection technology, excellent surface

122232480

AKROMID®

UL
Preliminary

B28 GF 25 9 FR orange (8644)PA6 GF25 FR(40)

AKROMID® B28 GF 25 9 FR orange (8644) is a flame retardant PA6 with 25% glass fibres, colored in orange, similar to RAL 2003. The flame retardant system is free of red phosphorus and halogens, leading to optimised electrical properties for e-mobility applications. This grade is UL listed with a V0 classification at 1.6mm. Due to its very good flowability, it is characterised by easy processability as well as good surface properties. The material has excellent long-term thermal stability and outstanding mechanical properties.

Features

heat stabilised 130
electrically neutral
flame retardant
easy flow
E&E
E-Mobility

Regulatory

ul

Properties

Modulus

9.000MPa

Strength

135MPa

Impact

81kJ/m²

Mechanical Properties


Tensile modulus

ISO 527-2

1 mm/min | d.a.m.
1 mm/min | conditioned
9000 MPa
6000 MPa

Tensile stress at break

ISO 527-2

5 mm/min | d.a.m.
5 mm/min | conditioned
135 MPa
95 MPa

Tensile strain at break

ISO 527-2

5 mm/min | d.a.m.
5 mm/min | conditioned
3,7 %
7,0 %

Charpy impact strength

ISO 179-1/1eU

23°C | d.a.m.
23°C | conditioned
81 kJ/m²
83 kJ/m²

Thermal Properties


Temperature of deflection under load HDT/A

ISO 75

UL
1,8 MPa
207 °C

Melting temperature

ISO 11357-3

DSC, 10K/min
220 °C

Temperature index for 50% loss of tensile strength

IEC 60216

5.000 h
20.000 h
165 °C
135 °C

Flammability


Burning rate

UL 94

UL
1,6 mm Wall thickness
UL
3,2 mm Wall thickness
V-0 Class
V-0 Class

GWFI

IEC 60695-2-12

1,6 mm Wall thickness
960 °C

HWI

UL 746A

UL
1,6 mm Wall thickness
UL
3,2 mm Wall thickness
0 PLC
0 PLC

HAI

UL 746A

UL
1,6 mm Wall thickness
UL
3,2 mm Wall thickness
0 PLC
0 PLC

Burning rate (<100 mm/min)

FMVSS 302

> 1 mm Thickness
+

General properties


Density

ISO 1183

23°C
1,38 g/cm³

Water absorption

ISO 62

23°C, saturated
2,1 - 2,3 %

Molding shrinkage

ISO 294-4

flow
transverse
0,1 - 0,3 %
0,6 - 0,8 %

Electrical Properties


Volume resistivity IEC

DIN EN IEC 62631-3-2

UL
d.a.m.
1010 Ω x cm

Surface resistivity

DIN EN 62631-3-2

UL
d.a.m.
1012

Comparative tracking index

IEC 60112

Test liquid A
> 600 V

Comparative tracking index

ASTM D3638

UL
0 PLC

Dielectric strength

IEC 60243

UL
3 mm
18 kV/mm

Inclined-Plane Tracking, IPT

ASTM D2303-13

UL
1,5 kV

High voltage arc tracking rate (HVTR)

UL 746A

UL
1 PLC

High Volt, Low Current Arc Resistance

ASTM D495

UL
4 PLC

Rheological Properties


Flowability

AKRO

1 mm Thickness
2 mm Thickness
130 mm
410 mm

Disclaimer

All specifications and information given on this website are based on our current knowledge and experience. A legally binding promise of certain characteristics or suitability for a concrete individual case cannot be derived from this information. The information supplied here is not intended to release processors and users from the responsibility of carrying out their own tests and inspections in each concrete individual case. AKRO®, AKROMID®, AKROLEN®, AKROLOY®, AKROTEK®, ICX® and PRECITE® are registered trademarks of the Feddersen Group.

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