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Select your fitting and find the right compound for your intend

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

P3 GF 25 9 FR natural (8212)

PBT GF25 FR(40)

PRECITE® P3 GF 25 9 FR natural (8212) - PBT, 25% glass fiber, flame retardant, high stiffness and strength, good long-term heat-aging, E-Mobility, E&E industry.


Modulus

8.500MPa

Strength

123MPa

Impact

53kJ/m²

PRECITE® P3 GF 25 9 FR natural (8212) - PBT, 25% glass fiber, flame retardant, high stiffness and strength, good long-term heat-aging, E-Mobility, E&E industry.

AKROMID®

A3 CF 20 black (3132)

PA66 CF20

AKROMID® A3 CF 20 black (3132) is a 20% carbon fibre reinforced polyamide 6.6 with high flexural strength and good sliding properties


Modulus

15.000MPa

Strength

200MPa

Impact

40kJ/m²

AKROMID® A3 CF 20 black (3132) is a 20% carbon fibre reinforced polyamide 6.6 with high flexural strength and good sliding properties

AKROMID®

A3 1 L natural (4800)

PA66 + PP

AKROMID® A3 1 L natural (4800) - unreinforced PA6.6/PP-Blend lightweight, cost reduced


Modulus

2.300MPa

Strength

55MPa

Impact

180kJ/m²

AKROMID® A3 1 L natural (4800) - unreinforced PA6.6/PP-Blend lightweight, cost reduced

AKROLOY®

Preliminary

PA GF 30 black (6415)

PA66+PA6I/6T GF30

AKROLOY® PA GF 30 black (6415) is a 30% glass fibre reinforced, semi-aromatic polyamide blend with high stiffness and strength, even in conditioned state.


Modulus

9.800MPa

Strength

200MPa

Impact

65kJ/m²

AKROLOY® PA GF 30 black (6415) is a 30% glass fibre reinforced, semi-aromatic polyamide blend with high stiffness and strength, even in conditioned state.

AKROMID®

UL

B3 1 black (6528)

PA6

AKROMID® B3 1 black (6528) is an unreinforced, heat stabilised polyamide 6


Modulus

3.600MPa

Strength

85MPa

Impact

180kJ/m²

AKROMID® B3 1 black (6528) is an unreinforced, heat stabilised polyamide 6

PRECITE®

Preliminary

P3 GF 40 natural (6943)

PBT GF 40

PRECITE® P3 GF 40 natural (6943) is a 40% glass fibre reinforced, medium viscous poly(butylene terephthalate) (PBT) with very high stiffness and toughness as well as high dimensional and chemical resistance.


Modulus

13.500MPa

Strength

175MPa

Impact

70kJ/m²

PRECITE® P3 GF 40 natural (6943) is a 40% glass fibre reinforced, medium viscous poly(butylene terephthalate) (PBT) with very high stiffness and toughness as well as high dimensional and chemical resistance.

AKROLOY®

PA GF 50 white (5137)

PA66+PA6I/6T GF50

AKROLOY® PA GF 50 white (5137) is a 50% glass fibre reinforced, semi-aromatic polyamide blend with very high stiffness and strength, even in conditioned state.


Modulus

20.000MPa

Strength

250MPa

Impact

105kJ/m²

AKROLOY® PA GF 50 white (5137) is a 50% glass fibre reinforced, semi-aromatic polyamide blend with very high stiffness and strength, even in conditioned state.

172737480

AKROLOY®

UL

PARA GF 50 HU natural (8595)PARA GF50

AKROLOY® PARA GF 50 HU natural (8595) is a 50% glass fibre reinforced polyarylamid with very high stiffness and strength, even in conditioned state owing to its lower moisture uptake. Furthermore, the material shows very good flowability and surface properties. It is perfectly suitable for parts where dimensional stabilitiy is required. Besides, it can be used as an alternative for aluminium and zinc diecast alloys. The material is listed at UL in all colors.

Features

reduced moisture
easy flow
metal substitution

Regulatory

ul

Properties

Modulus

19.000MPa

Strength

310MPa

Impact

80kJ/m²

Mechanical Properties


Tensile modulus

ISO 527-2

1 mm/min | d.a.m.
1 mm/min | conditioned
19000 MPa
19000 MPa

Tensile stress at break

ISO 527-2

5 mm/min | d.a.m.
5 mm/min | conditioned
310 MPa
280 MPa

Tensile strain at break

ISO 527-2

5 mm/min | d.a.m.
5 mm/min | conditioned
2,3 %
2,3 %

Flexural modulus

ISO 178

2 mm/min | d.a.m.
2 mm/min | conditioned
20000 MPa
20000 MPa

Flexural strength

ISO 178

2 mm/min | d.a.m.
2 mm/min | conditioned
445 MPa
410 MPa

Charpy impact strength

ISO 179-1/1eU

23°C | d.a.m.
23°C | conditioned
80 kJ/m²
100 kJ/m²

Charpy notched impact strength

ISO 179-1/1eA

23°C | d.a.m.
23°C | conditioned
19 kJ/m²
18 kJ/m²

Thermal Properties


RTI electrical

UL 746B

0,8mm Wall thickness
1,6mm Wall thickness
3,2mm Wall thickness
65 °C
65 °C
65 °C

RTI impact

UL 746B

0,8mm Wall thickness
1,6mm Wall thickness
3,2mm Wall thickness
65 °C
65 °C
65 °C

RTI strength

UL 746B

0,8mm Wall thickness
1,6mm Wall thickness
3,2mm Wall thickness
65 °C
65 °C
65 °C

Temperature of deflection under load HDT/A

ISO 75

1,8 MPa
230 °C

Temperature of deflection under load HDT/C

ISO 75

8 MPa
200 °C

Melting temperature

ISO 11357-3

DSC, 10K/min
238 °C

Flammability


Burning rate

UL 94

0,8 mm Wall thickness
1,6 mm Wall thickness
3,2 mm Wall thickness
HB Class
HB Class
HB Class

HWI

UL 746A

0,8 mm Wall thickness
1,6 mm Wall thickness
3,2 mm Wall thickness
4 PLC
2 PLC
2 PLC

HAI

UL 746A

0,8 mm Wall thickness
1,6 mm Wall thickness
3,2 mm Wall thickness
0 PLC
0 PLC
0 PLC

Burning rate (<100 mm/min)

FMVSS 302

> 1 mm Thickness
+

General properties


Density

ISO 1183

23°C
1,65 g/cm³

Humidity absorption

ISO 1110

70°C, 62% r.H.
0,8 %

Water absorption

ISO 62

23°C, saturated
3,5 %

Molding shrinkage

ISO 294-4

flow
transverse
0,1 - 0,2 %
0,2 - 0,4 %

Electrical Properties


Comparative tracking index

IEC 60112

Test liquid A
> 600 V

Dielectric strength

IEC 60243

3 mm
31 kV/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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