What is PPS GF40 natural?
PPS GF40 natural is a polyphenylene sulphide reinforced with 40 % glass fibres. The high reinforcement raises stiffness and heat deflection temperature to a level otherwise reached only by high-performance materials – with the chemical resistance, inherent flame retardancy and almost negligible moisture absorption typical of PPS.
Technical data
| Property | Value | Test method |
|---|---|---|
| General Properties | ||
| Density | 1.65 g/cm³ | DIN EN ISO 1183-1 |
| Water absorption | 0.015 % | DIN EN ISO 62 |
| Flammability (Thickness 3 mm / 6 mm) | V0/V0 | UL 94 |
| Mechanical Properties | ||
| Yield stress | 90 MPa | DIN EN ISO 527 |
| Elongation at break | 2 % | DIN EN ISO 527 |
| Tensile modulus of elasticity | 6,500 MPa | DIN EN ISO 527 |
| Ball indentation hardness | 250 MPa | DIN EN ISO 2039-1 |
| Shore hardness | 92 scale D | DIN EN ISO 868 |
| Thermal Properties | ||
| Melting temperature | 285 °C | ISO 11357-3 |
| Coefficient of linear thermal expansion | 30 ·10⁻⁶/K | DIN 53752 |
| Service temperature, long term | 0 to 220 °C | Average |
| Service temperature, short term (max.) | 250 °C | Average |
| Heat deflection temperature | 260 °C | DIN EN ISO 75, method A, HDT |
PPS GF40 natural vs. PPS natural compared directly
| Property | PPS GF40 natural | PPS natural |
|---|---|---|
| Density | 1.65 g/cm³ | 1.35 g/cm³ |
| Yield stress | 90 MPa | 90 MPa |
| Elongation at break | 2 % | 3 % |
| Tensile modulus of elasticity | 6,500 MPa | 4,150 MPa |
| Shore hardness | 92 scale D | 88 scale D |
| Melting temperature | 285 °C | 285 °C |
| Service temperature, long term | 0 to 220 °C | -20 to 220 °C |
| Heat deflection temperature | 260 °C | 110 °C |
PPS GF40 natural in detail
1What is PPS GF40 natural?+
PPS GF40 natural is a polyphenylene sulphide reinforced with 40 % glass fibres. The high reinforcement raises stiffness and heat deflection temperature to a level otherwise reached only by high-performance materials – with the chemical resistance, inherent flame retardancy and almost negligible moisture absorption typical of PPS. The coefficient of linear thermal expansion of 30 · 10⁻⁶/K is in the range of aluminium, enabling high-precision, temperature-stable parts. Creep is very low, and the material is self-extinguishing (UL 94 V0).
2How does Liedtke machine PPS GF40 natural?+
PPS GF40 natural can be machined using all conventional cutting methods; carbide or diamond tools are required because of the highly abrasive glass fibres; sharp cutting edges and good cooling via chip removal avoid heat build-up and residual stresses in the part. For tight tolerances and thick-walled parts, we recommend intermediate annealing to relieve machining stresses; thanks to the low moisture absorption, no conditioning is required.
3When should I choose PPS GF40 natural?+
PPS GF40 natural is used wherever stiff, dimensionally stable components are required at high temperatures and in aggressive media – for example in the oil and gas industry, in the electrical and electronics industry and in vehicle construction:
- Pump housings, impellers and valve parts for hot media
- Insulating carriers, coil formers and connectors
- Precision parts with low thermal expansion
4What determines the price of a PPS GF40 natural part?+
PPS GF40 natural is calculated individually based on drawing or sample. The part price is determined mainly by the semi-finished form and dimensions, material utilisation and offcuts, machining effort and batch size. We are happy to provide binding prices on request.
5When is PPS GF40 natural not the right choice?+
The limits of the material are equally important:
- Brittle behaviour, very low elongation at break
- Highly abrasive, carbide tools required
- Direction-dependent properties
6Advantages and disadvantages of PPS GF40 natural+
An honest assessment:
- Advantage: Very high stiffness and heat deflection temperature (HDT 260 °C)
- Advantage: Continuous service temperature 220 °C
- Advantage: Very low thermal expansion and creep
- Advantage: Inherently flame retardant, chemically resistant, very low moisture absorption
- Disadvantage: Brittle behaviour, very low elongation at break
- Disadvantage: Highly abrasive, carbide tools required
- Disadvantage: Direction-dependent properties
Typical properties
- Very high stiffness due to glass fibre reinforcement
- Very high continuous service temperature
- Inherently flame retardant
Typical industries
- Oil and Gas Industry
- Electrical Industry
- Automotive Industry
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