INTAMSYS PPS Filament
$203.00
INTAMSYS PPS Filament is a high-performance 3D printing material designed to meet the demands of industrial applications. Made from Polyphenylene Sulfide (PPS), this filament offers exceptional thermal and chemical resistance, making it ideal for creating parts that need to withstand extreme environments. Whether you're working in aerospace, automotive, or manufacturing industries, INTAMSYS PPS Filament provides superior performance and durability.
With INTAMSYS PPS Filament, you can achieve precise and accurate prints with ease. Its excellent dimensional stability ensures that your prints maintain their shape and integrity, even when exposed to high temperatures or harsh chemicals. This filament boasts a high glass transition temperature (Tg) of up to 86°C, enabling it to retain its mechanical properties in hot environments. Furthermore, INTAMSYS PPS Filament exhibits low moisture absorption, ensuring consistent print quality and reducing the risk of warping or delamination.

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Features
Superior Thermal Resistance
INTAMSYS PPS Filament can withstand high temperatures, with a high glass transition temperature (Tg) of up to 86°C, ensuring dimensional stability and mechanical strength in extreme heat environments.
Excellent Chemical Resistance
This filament exhibits exceptional resistance to a wide range of chemicals, making it suitable for applications where exposure to harsh chemicals is a concern.
High Dimensional Stability
INTAMSYS PPS Filament maintains its shape and integrity during the printing process and subsequent use, reducing the risk of warping or delamination and ensuring precise and accurate prints.
Strong and Durable Prints
With excellent layer adhesion and minimal shrinkage, INTAMSYS PPS Filament produces robust and high-quality prints with intricate details, making it ideal for functional prototypes, jigs and fixtures, and end-use parts.
Specifications
Filament diameter
1.75 mm
Available colors
Natural
Density
1.38 g/cm³
Elongation at break
5.6%
Flexural modulus
2700 MPa
Flexural strength
116.3 MPa
Glass transition temperature
86 °C
Heat deflection temperature (1.8 Mpa)
180 °C
Impact strength
5.2 kJ/m²
Tensile strength
64.8 MPa
Young’s modulus
2680 MPa