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Filaments TPC 45D BASF Ultrafuse® TPC 45D Filament 1.75, 0.500 kg - selver
TPC 45D BASF Ultrafuse® TPC 45D Filament 1.75, 0.500 kg - selver

BASF Ultrafuse® TPC 45D Filament 1.75, 0.500 kg - selver


37.44 0


  • Flexibility
  • Impact resistance
  • Rubber-like elastomer
  • Hardness Shore 45D
  • Manufacturer: BASF 3D Printing Solutions GmbH

Model

In stock




Technical data and information

Rubber-like thermoplastic copolyester elastomer (TPE-C)

  • Hotend: 220 - 240 °C / 428 - 464 °F
  • Heated bed: : 20 - 60 °C / 68 - 140 °F
  • Filament diameter: 1.75, 2.85 mm
  • Nozzle diameter: ≥0.4 mm
  • Print speed: 20 - 50 mm/s
    Drying recommendations: 60 °C in a filament dryer or vacuum oven for 4 to 16 hours.
    Please note: To ensure consistent material properties, it should always be kept dry.

General properties

Density: 1150 kg/m3 / 71.8 lb/ft3 / ISO 1183-1

Thermal properties

Glass transition temperature: -35 °C / -31 °F / ISO 11357-2

Melting temperature: 180 °C / 356 °F
ISO 11357-3

*Note:

Product data are provided in good faith and represent typical properties based on current BASF team knowledge and experience; these data should not be considered specification limits or minimum values. These characteristics do not create any liability, warranty or guarantee of product performance



Product descriptions

TPC 45D is a flexible, rubber-like thermoplastic copolyester elastomer (TPE-C) with a hardness of 45D that is derived from rapeseed oil and combines the best properties of elastomers (rubbers) and polyesters. The material provides excellent adhesion in the Z direction, which means that the printed layers do not separate - even under severe deformation.

Ultrafuse TPC 45D filament should be stored at 15 - 25°C in its original sealed packaging in a clean and dry environment. If the recommended storage conditions are observed, the products will have a minimum shelf life of 12 months.
Product safety
Recommended: Handle materials in a well-ventilated area or use professional extraction systems.

Especially suitable for printing flexible parts such as miniature tires, drive belts, bracelets and parts that must be extremely flexible and must be bent frequently.

This material has been proven to have up to 40% lower carbon footprint compared to similar copolyesters.





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BG117672466
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Ruse, "Lipnik" 123
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