Xytron™ G4010E

Alternative and trade names
PPS-I-GF40
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Description

Xytron™ is a high performance plastic compound of DSM Engineering Plastics, which is based on PPS (polyphenylene sulphide).
Xytron™ offers extremely good chemical resistance, dimensional stability, intrinsic flame retardancy and high stiffness.
Because of its outstanding properties, Xytron™ contributes to an excellent performance in many different applications.

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Xytron™ G4010E

This material data has been provided by DSM.

"Typical" values were obtained via a literature search. "Predicted" values were imputed via artificial intelligence technology. While we have placed significant efforts in ensuring data accuracy, "typical" and "predicted" data should be considered indicative and verified by appropriate material testing. Please do contact us if additional information on the the predicted data method is required.
All metrics apply to room temperature unless otherwise stated. SI units used unless otherwise stated.
Equivalent standards are similar to one or more standards provided by the supplier. Some equivalent standards may be stricter whereas others may be outside the bounds of the original standard.

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Properties

General

PropertyValueConditionTesting StandardComment

Density

1.53 g/cm³

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dry

ISO 1183

Moisture absorption

0.04 %

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dry

Sim. to ISO 62

Water absorption

0.04 %

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dry

ISO 62

at 23°C after 24h

Mechanical

PropertyTemperatureValueConditionTesting Standard

Elastic modulus

-40 °C

13.5 GPa

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dry

ISO 527-1/-2

12 GPa

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dry

ISO 527-1/-2

120 °C

6.1 GPa

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dry

ISO 527-1/-2

160 °C

3.9 GPa

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dry

ISO 527-1/-2

200 °C

3 GPa

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dry

ISO 527-1/-2

Elongation

-40 °C

2.4 %

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dry

ISO 527-1/-2

2.4 %

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dry

ISO 527-1/-2

120 °C

3.9 %

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dry

ISO 527-1/-2

160 °C

4.4 %

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dry

ISO 527-1/-2

200 °C

4.5 %

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dry

ISO 527-1/-2

Flexural modulus

10 GPa

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dry

ISO 178

120 °C

8.5 GPa

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dry

ISO 178

160 °C

4.6 GPa

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dry

ISO 178

200 °C

3.1 GPa

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dry

ISO 178

Flexural yield strength

230 MPa

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dry

ISO 178

120 °C

120 MPa

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dry

ISO 178

160 °C

70 MPa

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dry

ISO 178

200 °C

50 MPa

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dry

ISO 178

Impact strength, Charpy notched

-30 °C

12 kJ/m²

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dry

ISO 179/1eA

23 °C

16 kJ/m²

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dry

ISO 179/1eA

Impact strength, Charpy unnotched

-30 °C

65 kJ/m²

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dry

ISO 179/1eU

23 °C

55.0 kJ/m²

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dry

ISO 179/1eU

23 °C

60 kJ/m²

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dry

ISO 180/1U

Tensile strength

-40 °C

205 MPa

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dry

ISO 527-1/-2

160 MPa

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dry

ISO 527-1/-2

120 °C

65 MPa

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dry

ISO 527-1/-2

160 °C

50 MPa

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dry

ISO 527-1/-2

200 °C

40 MPa

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dry

ISO 527-1/-2

Thermal

PropertyValueConditionTesting StandardPressureComment

Coefficient of thermal expansion

1.1e-07 1/K

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dry

ISO 11359-1/-2

parallel, above Tg

1.5e-07 1/K

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dry

ISO 11359-1/-2

Parallel

5.5e-07 1/K

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dry

ISO 11359-1/-2

Normal

1.1e-06 1/K

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dry

ISO 11359-1/-2

normal, above Tg

Glass transition temperature

90 °C

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dry

ISO 11357-1/-2

10°C/min

Heat deflection temperature

153 °C

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dry

ISO 75-1/-2

8 MPa

258 °C

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dry

ISO 75-1/-2

2 MPa

279 °C

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dry

ISO 75-1/-2

0.45 MPa

Melting point

280 °C

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dry

ISO 11357-1/-3

10°C/min

Electrical

PropertyValueConditionTesting StandardComment

Comparative tracking index

175 V

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dry

IEC 60112

Dielectric constant

3.8 [-]

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dry

IEC 60250

1GHz

3.8 [-]

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dry

IEC 60250

5GHz

Dielectric strength

33 kV/mm

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dry

IEC 60243-1

Dissipation factor

35 [-]

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dry

IEC 60250

1GHz

55 [-]

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dry

IEC 60250

5GHz

Surface resistivity

1e+15 Ω/sq

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dry

IEC 62631-3-2

Volume resistivity

1e+13 Ω·cm

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dry

IEC 62631-3-1

Rheological Properties

PropertyValueConditionTesting StandardComment

Shrinkage

0.2 %

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dry

ISO 294-4

Parallel

0.5 %

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dry

ISO 294-4

Normal

Spiral flow length

105

dry

-

1.0 mm 1000 bar

Technological properties

Property
Application areas

Automotive e-motor Bobbins

Fillers

40% Glass Fiber