Kimya TPC-ESD | 750g

84.00 €
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Lead Time: 10 business days

The Kimya TPC-ESD 3D filament belongs to the thermoplastic copolyester family: is an elastomer. TPC is obtained by copolymerization of two types of monomers: an ester (a rigid segment) and an ether (a flexible segment). Its “-ESD” formulation also provides protection against electrostatic discharge. It offers resistance to chemicals and to impacts and has a Shore hardness of 91 A. It can be used to print flexible, elastic parts. The Kimya TPC-ESD 3D filament is used in industry to produce connectors, sensors, measuring devices, etc. It has the following properties:

  • Excellent flexibility
  • Electro Static Discharge: protects against electrical discharge
  • Easy to print
  • Complies with the REACH regulation and the RoHS directive

Store away from light, humidity and heat to maintain the properties of the product

PE1018TQ

FILAMENT PROPERTIES

 

PROPERTIESTEST METHODSVALUES
Diameter INS-6712 1.75 ± 0.1 mm
Density ISO 1183-1 1.2 g/cm3
Moisture rate INS-6711 < 1 %
Melt flow index (MFI) ISO 1133-1 (@210°C – 2,16 kg) 21 - 25 g/10min
Melting Temperature (Tm) ISO 11357-1 DSC (10°C/min – 20-220°C) 159 °C

 

PRINT PARAMETERS AND SPECIMENS DIMENSIONS

 

PRINTING DIRECTIONXY
Printing Speed 44 mm/s
Infill 100% - rectilinear
Infill Angle 45°/-45°
Nozzle Temperature 260°C
Bed T° 60°C

 

PRINTED SPECIMENS PROPERTIES

 

PROPERTIESTEST METHODSVALUES
ELECTRICAL PROPERTIES Surface resistivity ASTM D257 107 - 109 Ω/sq
MECHANICAL PROPERTIES Tensile modulus ISO 527-2/5A/50 46 MPa
Tensile Strength ISO 527-2/1A/50 13.1 MPa
Tensile Stress at Break ISO 37/2/500 12.8 MPa
Tensile strain at break (type A) ISO 37/2/500 > 400 %
Flexural modulus ISO 178 54 MPa
Flexural stress at conventional deflection (3,5% strain)* ISO 178 2 MPa
Charpy impact resistance ISO 179-1/1eA No Break
Shore Hardness ISO 868 91A

 

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.

Created on 13/11/2019 - Revised on 13/03/2023.

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