PRECITE®

P3 GF 20 natural (7610)PBT GF20

PRECITE® P3 GF 20 natural (7610) is a 20% glass fibre reinforced, lubricated poly butylene terephthalate (PBT) with high stiffness and toughness as well as high dimensional stability and chemical resistance.

Properties

Modulus

7.200MPa

Strength

130MPa

Impact

65kJ/m²

Mechanical Properties

Tensile modulus

ISO 527-2

1 mm/min | d.a.m.
7200 MPa

Tensile stress at break

ISO 527-2

5 mm/min | d.a.m.
130 MPa

Tensile strain at break

ISO 527-2

5 mm/min | d.a.m.
3,9 %

Charpy impact strength

ISO 179-1/1eU

23°C | d.a.m.
65 kJ/m²

Charpy notched impact strength

ISO 179-1/1eA

23°C | d.a.m.
8 kJ/m²

Thermal Properties

Temperature of deflection under load HDT/A

ISO 75

1,8 MPa
205 °C

Melting temperature

ISO 11357-3

DSC, 10K/min
225 °C

Flammability

Flammability

UL 94

1,6 mm Wall thickness
HB Class

General Properties

Density

ISO 1183

23°C
1,45 g/cm³

Molding shrinkage

ISO 294-4

flow
transverse
0,4 - 0,6 %
0,9 - 1,1 %

Electrical Properties

Comparative tracking index

IEC 60112

Test liquid A
350 V

Rheological Properties

MVR

ISO 1133

250°C/2,16kg
11 cm³/10 min

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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Preliminary

P3 GF 15 4 natural (8429)

PBT-I GF15

PRECITE®P3 GF 15 4 natur (8429) is a 15% glass fibre reinforced and hydrolysis stabilised polybutylene terephthalate (PBT). It is characterised by a good stiffness and toughness as well as good chemical resistance. This formulation is GMA free (glyci

Modulus

5.000MPa

Strength

85MPa

Impact

55kJ/m²