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Tensile Modulusin MPa
Tensile Strengthin MPa
Charpy impact strengthin kJ/mĀ²
558 Compounds found
Recommended Ā 
Tensile Modulus
Tensile Strength
Charpy impact strength
Description

AKROLOYĀ®

Preliminary

PARA GF 35 FR grey (8200)

PARA GF35 FR(40)

AKROLOYĀ® PARA GF 35 FR grey (8200) - PARA, 35% GF, highest modulus and strength, flame retardant, very good flowability, good surface, low creep, RAL 7035.


Modulus

14.500MPa

Strength

190MPa

Impact

50kJ/mĀ²

AKROLOYĀ® PARA GF 35 FR grey (8200) - PARA, 35% GF, highest modulus and strength, flame retardant, very good flowability, good surface, low creep, RAL 7035.

AKROMIDĀ®

B3 GF 30 6 black (20009)

PA6 GF30

AKROMIDĀ® B3 GF 30 6 black (20009) - 30% glass fiber reinforced PA 6, inorganically high heat stabilised, technical parts in industrial engineering and automotive industry


Modulus

10.000MPa

Strength

180MPa

Impact

80kJ/mĀ²

AKROMIDĀ® B3 GF 30 6 black (20009) - 30% glass fiber reinforced PA 6, inorganically high heat stabilised, technical parts in industrial engineering and automotive industry

PRECITEĀ®

P3 GFM 20/10 natural (7627)

PBT (GF20+MD10)

PRECITEĀ® P3 GFM 20/10 natural (7627) - PBT, glass fibre and mineral reinforced, very good dimensional stability, good surface.


Modulus

9.300MPa

Strength

115MPa

Impact

50kJ/mĀ²

PRECITEĀ® P3 GFM 20/10 natural (7627) - PBT, glass fibre and mineral reinforced, very good dimensional stability, good surface.

AKROMIDĀ®

Preliminary

T9 GF 50 black (7601)

PPA GF50

AKROMIDĀ® T9 GF 50 black (7601) is a 50% glass fibre reinforced partially aromatic polyphthalamide with very high stiffness and strength, as well as high temperature and chemical resistance. The compound is based on PA9T and has lower moisture uptake than conventional PA6T variants. This leads to a significantly higher consistency of the glass transition temperature and higher strength at elevated temperatures especially in conditioned state.


Modulus

17.000MPa

Strength

250MPa

Impact

95kJ/mĀ²

AKROMIDĀ® T9 GF 50 black (7601) is a 50% glass fibre reinforced partially aromatic polyphthalamide with very high stiffness and strength, as well as high temperature and chemical resistance. The compound is based on PA9T and has lower moisture uptake than conventional PA6T variants. This leads to a significantly higher consistency of the glass transition temperature and higher strength at elevated temperatures especially in conditioned state.

AKROLOYĀ®

Preliminary

PARA GF 35 FR orange (8039)

PARA GF35 FR(40)

AKROLOYĀ® PARA GF 35 FR orange (8039) - PARA, 35% GF, highest modulus and strength, flame retardant, very good flowability, good surface, low creep, RAL 2003.


Modulus

14.500MPa

Strength

190MPa

Impact

50kJ/mĀ²

AKROLOYĀ® PARA GF 35 FR orange (8039) - PARA, 35% GF, highest modulus and strength, flame retardant, very good flowability, good surface, low creep, RAL 2003.

AKROTEKĀ®

PK-VM natural (4774)

PK

AKROTEKĀ® PK-VM natural (4774) - Polyketon, Tribology, friction and wear, chemical resistance


Modulus

1.500MPa

Strength

60MPa

Impact

180kJ/mĀ²

AKROTEKĀ® PK-VM natural (4774) - Polyketon, Tribology, friction and wear, chemical resistance

AKROLOYĀ®

PA GF 50 natural (6414)

PA66+PA6I/6T GF50

AKROLOYĀ® PA GF 50 natural (6414) is a 50% glass fibre reinforced, semi-aromatic polyamide blend with very high stiffness and strength, even in conditioned state.


Modulus

17.000MPa

Strength

275MPa

Impact

110kJ/mĀ²

AKROLOYĀ® PA GF 50 natural (6414) is a 50% glass fibre reinforced, semi-aromatic polyamide blend with very high stiffness and strength, even in conditioned state.

1891080

AKROMIDĀ®

UL

C3 GF 25 1 FR natural (7208)PA66+PA6 GF25 FR(40)

AKROMIDĀ® C3 GF 25 1 FR natural (7208) is a 25 % glass fiber reinforced, flame retardant and heat stabilised PA6/6.6 blend. Listed to UL 94 in all-colours, the material is based on a flame retardant system that is free of red phosphorus and halogens. Due to its good flowability, an improved surface quality is achieved. This grade is also suitable for applications with high strength requirements in the automotive and E&E markets.

Features

heat stabilised 130
flame retardant
easy flow
E&E

Regulatory

ul

Properties

Modulus

9.200MPa

Strength

140MPa

Impact

73kJ/mĀ²

Mechanical Properties


Tensile modulus

ISO 527-2

1 mm/min | d.a.m.
1 mm/min | conditioned
9200 MPa
6300 MPa

Tensile stress at break

ISO 527-2

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

Tensile strain at break

ISO 527-2

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

Flexural modulus

ISO 178

2 mm/min | d.a.m.
2 mm/min | conditioned
8600 MPa
5900 MPa

Flexural strength

ISO 178

2 mm/min | d.a.m.
2 mm/min | conditioned
225 MPa
160 MPa

Flexural strain at break

ISO 178

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

Charpy impact strength

ISO 179-1/1eU

23Ā°C | d.a.m.
23Ā°C | conditioned
30Ā°C | d.a.m.
-
73 kJ/mĀ²
75 kJ/mĀ²
74 kJ/mĀ²

Charpy notched impact strength

ISO 179-1/1eA

23Ā°C | d.a.m.
23Ā°C | conditioned
11 kJ/mĀ²
15 kJ/mĀ²

Thermal Properties


RTI electrical

UL 746B

UL
0,8mm Wall thickness
UL
1,6mm Wall thickness
UL
3,2mm Wall thickness
150 Ā°C
150 Ā°C
150 Ā°C

RTI impact

UL 746B

UL
0,8mm Wall thickness
UL
1,6mm Wall thickness
UL
3,2mm Wall thickness
125 Ā°C
125 Ā°C
125 Ā°C

RTI strength

UL 746B

UL
0,8mm Wall thickness
UL
1,6mm Wall thickness
UL
3,2mm Wall thickness
140 Ā°C
140 Ā°C
140 Ā°C

Temperature of deflection under load HDT/A

ISO 75

1,8 MPa
225 Ā°C

Temperature of deflection under load HDT/B

ISO 75

0,45 MPa
251 Ā°C

Temperature of deflection under load HDT/C

ISO 75

8 MPa
168 Ā°C

Melting temperature

ISO 11357-3

DSC, 10K/min
262 Ā°C

Coefficient of linear thermal expansion

ISO 11359-1/2

23Ā°C to 80Ā°C | parallel
23Ā°C to 80Ā°C | transverse
0,19 10ā»ā“/K
1,02 10ā»ā“/K

Temperature index for 50% loss of tensile strength

IEC 60216

5.000 h
20.000 h
155 Ā°C
130 Ā°C

Flammability


Burning rate

UL 94

UL
0,8 mm Wall thickness
UL
1,6 mm Wall thickness
UL
3,2 mm Wall thickness
V-0 Class
V-0 Class
V-0 Class

Burning rate 5V

UL 94

1,6 mm Wall thickness
3,2 mm Wall thickness
5VA Class
5VA Class

GWFI

IEC 60695-2-12

UL
0,8 mm Wall thickness
UL
1,6 mm Wall thickness
UL
3,2 mm Wall thickness
960 Ā°C
960 Ā°C
960 Ā°C

GWIT

IEC 60695-2-13

UL
0,8 mm Wall thickness
UL
1,6 mm Wall thickness
UL
3,2 mm Wall thickness
750 Ā°C
750 Ā°C
750 Ā°C

HWI

UL 746A

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

HAI

UL 746A

UL
0,8 mm Wall thickness
UL
1,6 mm Wall thickness
UL
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

23Ā°C
1,37 g/cmĀ³

Humidity absorption

ISO 1110

70Ā°C, 62% r.H.
1,8 - 2,0 %

Molding shrinkage

ISO 294-4

flow
transverse
0,1 - 0,3 %
0,5 - 0,7 %

Electrical Properties


Volume resistivity IEC

DIN EN IEC 62631-3-2

UL
d.a.m.
1012 ā„¦ x cm

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
12 kV/mm

Inclined-Plane Tracking, IPT

ASTM D2303-13

1 kV

High voltage arc tracking rate (HVTR)

UL 746A

UL
1 PLC

High Volt, Low Current Arc Resistance

ASTM D495

UL
6 PLC

Rheological Properties


Flowability

AKRO

1 mm Thickness
2 mm Thickness
220 mm
480 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. AKROĀ®, AKROMIDĀ®, AKROLENĀ®, AKROLOYĀ®, AKROTEKĀ®, ICXĀ® and PRECITEĀ® are registered trademarks of the Feddersen Group.

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