3D-Druck von Kunststoffen aus ABS-Material

Handelsüblicher Kunststoff, der im Vergleich zu PLA bessere mechanische und thermische Eigenschaften aufweist.

3D-Druck von Kunststoffen aus ABS-Material

Handelsüblicher Kunststoff, der im Vergleich zu PLA bessere mechanische und thermische Eigenschaften aufweist.

Beschreibung

Anmeldung
Industrielles FDM
Stärken
Größere Baugröße im Vergleich zu Desktop-FDM, industrietaugliche Materialien, engere Toleranzen im Vergleich zu Desktop-FDM
Schwachstellen
Teurer Druck

Eigenschaften

Vorlaufzeit
< 2 Tage
Wanddicke
0,8 mm
Toleranzen
± 0,3% mit einer Untergrenze von ± 0,3 mm (± 0,012″)
Maximale Teilegröße

Verfügbare ABS-Materialien

Eigenschaft Wert Mechanische Eigenschaften Höchstzugkraft 28 - 32 MPa Streckgrenze

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Häufig gestellte Fragen

ABS M30

  • Is ABS-M30 strong enough for real production parts?

    Yes. ABS-M30 is significantly stronger and tougher than standard FDM ABS, offering up to 25–70% improvement depending on geometry. It is frequently used for low-volume production, industrial jigs, fixtures, and functional prototypes that must withstand real mechanical testing. 

  • Can ABS-M30 be machined after printing?

    Absolutely. ABS-M30 can be drilled, tapped, milled, or CNC-finished to achieve higher precision. XC Machining often uses hybrid manufacturing: FDM printing for complex geometry and CNC machining for tight-tolerance surfaces or mounting features. 

  • Is ABS-M30 suitable for outdoor or high-temperature applications?

    ABS-M30 performs well in normal indoor environments but is not ideal for prolonged outdoor exposure due to UV sensitivity. For sunlight-exposed or high-temperature applications, ABS-M30 is not recommended, ASA or PC-ABS are better choices. 

  • Does ABS-M30 produce visible layer lines? Can they be removed?

    Yes, like all FDM materials, ABS-M30 prints with visible layer lines. These can be removed through sanding, priming, painting, or acetone vapor smoothing. XC Machining provides multiple finishing options to achieve a smooth, injection-molded appearance. 

  • How accurate are ABS-M30 parts compared to CNC-machined ABS?

    CNC ABS offers superior dimensional accuracy, tighter tolerances, and perfectly smooth surfaces. ABS-M30, however, is better for complex geometries and internal features. Many customers choose XC Machining’s hybrid workflow, 3D print the shape, then CNC-finish the critical surfaces. 

Häufig gestellte Fragen

ABS M30

  • Is ABS-M30 strong enough for real production parts?

    Yes. ABS-M30 is significantly stronger and tougher than standard FDM ABS, offering up to 25–70% improvement depending on geometry. It is frequently used for low-volume production, industrial jigs, fixtures, and functional prototypes that must withstand real mechanical testing. 

  • Can ABS-M30 be machined after printing?

    Absolutely. ABS-M30 can be drilled, tapped, milled, or CNC-finished to achieve higher precision. XC Machining often uses hybrid manufacturing: FDM printing for complex geometry and CNC machining for tight-tolerance surfaces or mounting features. 

  • Is ABS-M30 suitable for outdoor or high-temperature applications?

    ABS-M30 performs well in normal indoor environments but is not ideal for prolonged outdoor exposure due to UV sensitivity. For sunlight-exposed or high-temperature applications, ABS-M30 is not recommended, ASA or PC-ABS are better choices. 

  • Does ABS-M30 produce visible layer lines? Can they be removed?

    Yes, like all FDM materials, ABS-M30 prints with visible layer lines. These can be removed through sanding, priming, painting, or acetone vapor smoothing. XC Machining provides multiple finishing options to achieve a smooth, injection-molded appearance. 

  • How accurate are ABS-M30 parts compared to CNC-machined ABS?

    CNC ABS offers superior dimensional accuracy, tighter tolerances, and perfectly smooth surfaces. ABS-M30, however, is better for complex geometries and internal features. Many customers choose XC Machining’s hybrid workflow, 3D print the shape, then CNC-finish the critical surfaces. 

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