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- BeschreibungArnitel® ID2045 is a highly flexible TPC (thermoplastic copolyester) that can be used in a broad range of applications from sports mouth guards to electronics. It is a flexible polymer with very good UV- and chemical-resistance compared to other flexible polymers such as TPU (thermoplastic urethane).
Arnitel® ID2045 is an ECO label filament made with 50% bio-based feedstock. It brings speed to your 3D printing production ? it loads onto the machine and prints twice as fast as other TPCs. It combines this easy and fast printing with high performance characteristics enabled by excellent inter-layer adhesion due to its slower crystallization behavior.
Possible applications
Automotive, Aerospace, Railway, Motorsports ? e.g. lighting frames, tubes, wipers
Flexible tools and electronics
Healthcare ? such as prosthetics, bruxism splints
Sports & Lifestyles ? e.g. shoe midsoles, mouth guards, shin guards, glasses, earbuds, smart watches, jewelry - Read moreGeneral printing guidelines *
Nozzle size: ? 0.25mm Layer height: > 0.1mm * Flow rate: ± 100%
Print temp: ± 220 - 245° C * Print speed: Low / Medium * Retraction: No
Heat bed: ± 40 - 60° C * Fan speed: 0% Printing surface: Glass + DimaFix / PET tape
Enclosed printer needed: Preferred Heated Build Chamber: No Experience level: Intermediate
*) Above displayed settings are meant as guidance to find your optimal print settings. These ranges in settings should work for most printers, but please do feel free to experiment outside these ranges if you think it is suitable for your printer. There are a lot of different type of printers, hot-ends and printer offsets that it is extremely difficult to give an overall one-size-fits-all setting.
*) First layer : 100 - 150% of first layer thickness.
*) Arnitel® ID 2045 can be used with a range of nozzle temperature (210?250 °C / 410?482°F). Preferred temperature to print your object is 230°C / 446°F. To generate a homogeneous melt, the melt temperature should always be above 200°C / 392°F. Optimal mechanical properties will be achieved at melt temperature between (210?250 °C / 410?482°F).
*) Print speed: 20 - 50 mm/s (obeying the maximal throughput in cm3/s of the extruder)
*) Do only remove printed object from print bed when print bed has cooled down to ambient temperatures, as otherwise printed part can deform severely.
Filament length
?: 1.10 g/cc 50 gr coil 0.5 Kg spool
Ø 1.75mm ± 18.9m ± 189m
Ø 2.85mm ± 7.1m ± 71m
Storage and conditioning
Arnitel® ID grades are supplied in airtight, moisture-proof packaging at a moisture level <0.05 w%.
In order to prevent moisture pick up and contamination, supplied packaging should be kept closed and undamaged. For the same reason, partially used bags should be sealed before re-storage. Allow the material that has been stored elsewhere to adapt to the temperature in the processing room while keeping the bag closed. To prevent moisture condensing on filaments, bring cold filaments up to ambient temperature in the print shop while keeping the packaging closed.
DSM Plastics Finder
For more technical information and guidelines please visit DSM Plastics Finder.
Product export information
HS Code: 39169090 Description: Monofilament Country of origin: the Netherlands
Compliance *
This filament is compliant to below listed directives and regulations.
RoHS directive 2011/65/EC
REACH directive 1907/2006/EC
*) This declaration of conformity to directives and regulations is prepared according to our present standard of knowledge and may be amended if new cognitions are available and applies only for the above described products. - Questions(FAQs)
L'ASA è il materiale consigliato per l'uso esterno. A differenza dell'ABS, l'ASA è altamente resistente ai raggi UV, non ingiallisce e mantiene le sue proprietà meccaniche anche sotto l'esposizione diretta del sole e degli agenti atmosferici.
Il PETG è un materiale molto viscoso. Per ridurre lo stringing, è fondamentale calibrare correttamente la temperatura di stampa e la distanza di ritrazione. Inoltre, assicurati che il filamento sia asciutto, poiché l'umidità assorbita peggiora drasticamente questo fenomeno.
In generale è sconsigliato, poiché ogni resina ha tempi di esposizione e composizioni chimiche differenti. Mescolarle potrebbe portare a fallimenti di stampa o a una polimerizzazione incompleta del pezzo.
La resina liquida è considerata un rifiuto speciale. Non deve mai essere gettata negli scarichi domestici. È necessario polimerizzare i residui liquidi (esponendoli al sole o a lampade UV) fino a renderli solidi, dopodiché possono essere smaltiti seguendo le normative locali sui rifiuti plastici speciali.
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