Plástico de impresión 3D en material ABS

Plástico básico, mejores propiedades mecánicas y térmicas que el PLA.

Plástico de impresión 3D en material ABS

Plástico básico, mejores propiedades mecánicas y térmicas que el PLA.

Descripción

Aplicación
FDM industrial
Puntos fuertes
Mayor tamaño de construcción en comparación con FDM de sobremesa, Materiales de calidad industrial, Tolerancia más ajustada en comparación con FDM de sobremesa
Puntos débiles
Impresión cara

Propiedades

Plazos de entrega
< 2 días
Espesor de pared
0,8 mm
Tolerancias
± 0,3% con un límite inferior de ± 0,3 mm (± 0,012″)
Tamaño máximo de la pieza

Materiales ABS disponibles

Propiedad Valor Propiedades mecánicas Resistencia última a la tracción 28 - 32 MPa Límite elástico

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Preguntas frecuentes

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. 

Preguntas frecuentes

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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