KIMYA - PC-FR Filament

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Kimya PC-FR 3D Filament - 750 grams

The Kimya PC-FR is an amorphous thermoplastic that combines the advantages of a polycarbonate with flame retardant properties linked to the formulation. This low moisture sensitive filament has good dimensional stability, a wide operating temperature range (-80 to 105°C) with its high Tg and good impact resistance . All these properties make it suitable for a variety of demanding applications such as the production of parts in the railway and automotive sectors as well as in the electrical and electronic fields. The Kimya PC-FR 3D filament has the following properties:

  • Good dimensional stability
  • Wide usage temperature range (-80°C à +105°C)
  • Flame retardant – EN45545 class R22/R23/R24/R26 HL3, class R1/R6 HL1, HL2, HL3
  • Complies with the REACH and RoHS directive
  • Product Dimensions: 20.7 × 20.5 × 6 cm; 1.1 kg

FILAMENT PROPERTIES

PROPERTIES TEST METHODS VALUES
Diameter INS-6712 1.75 ± 0.1 mm
Density ISO 1183-1 1.294 g/cm3
Moisture rate INS-6711 < 0.5 %
Melt flow index (MFI) ISO 1133-1 (@260°C – 2.16 kg) 5.1 g/10min
Glass transition temperature (Tg) ISO 11357-1 DSC (10°C/min - 20-300°C) 117 °C

PRINT PARAMETERS AND SPECIMENS DIMENSIONS

PRINTING DIRECTION XY
Printing Speed 20-40 mm/s
Infill 100% - rectilinear
Infill Angle 45°/-45°
Nozzle Temperature 270-320°C
Bed T° 80-115°C

PRINTED SPECIMENS PROPERTIES

PROPERTIES TEST METHODS VALUES
THERMAL PROPERTIES Maximum use T° - 105 °C
MECHANICAL PROPERTIES Tensile modulus ISO 527-2/5A/50 2,680 MPa
Tensile Strength ISO 527-2/5A/50 66.2 MPa
Tensile strain at strength ISO 527-2/5A/50 3.1 %
Tensile Stress at Break ISO 527-2/5A/50 66.4 MPa
Tensile strain at break ISO 527-2/5A/50 3.1 %
Flexural modulus ISO 178 2,230 MPa
Deformation at Flexural Strain ISO 178 >5 %
Flexural stress at conventional deflection (3,5% strain)* ISO 178 83.2 MPa
Shore Hardness ISO 868 80,7D
Note 1 *According to ISO 178, end of the test at 5% deformation even if there is no specimen break.
Note 2 The data should be considered as indicative values - Properties can be influenced by production conditions.
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