Especificaciones Técnicas y Pautas de Diseño de los materiales de impresión en 3D

grey bg group

Todas las especificaciones técnicas y pautas de diseño de los materiales que empleamos en la impresión 3D

Comparación mecánica de materiales de alto rendimiento

Este diagrama de radar compara las principales propiedades mecánicas de nuestros materiales de alto rendimiento, incluidos MJF PA12, MJF PA12 S, SLS PA11, SLS PA12 y SLS PA11 CF. Pone de relieve las diferencias en el módulo de tracción, la resistencia a la tracción y el alargamiento a la rotura, ofreciendo una visión clara del perfil de rendimiento de cada material. Esta comparación visual ayuda a identificar el material más adecuado para requisitos funcionales específicos, ya sea que la prioridad sea la rigidez, la resistencia o la flexibilidad.

Polímeros

AVAILABLE AT LAYER THICKNESS MINIMUM WALLTHICKNESS ACCURACY MAX SIZE (mm) MINIMUM VISIBLEDETAIL ENGRAVING EMBOSSING
DLS Technology Rigid Polyurethane 100 µm Unsupported : 2.5mm Supported : 1mm XY: ± 0.1mm Z: ± 0.4mm 180 x 110 x 290 (z) mm 0.5mm 0.3mm 0.3mm
Elastomeric Polyurethane 100 µm Unsupported : 2.5mm Supported : 1mm 180 x 110 x 100 mm 0.6mm 0.3mm 0.3mm

AVAILABLE AT LAYER THICKNESS MINIMUM WALLTHICKNESS ACCURACY MAX SIZE (mm) MINIMUM VISIBLEDETAIL ENGRAVING EMBOSSING
SLA Technology Transparent Resin 100 µm 0.8mm ±0.2% (with a lower limit of ±0.2 mm) 200 x 125 x 210 mm 0.3 mm 0.3 mm
Prototyping Resin 100 µm 0.8mm ±0.2% (with a lower limit of ±0.2 mm) 144 x 144 x 174 mm 0.5mm 0.5mm
Type PA 100 µm 0,7 mm NFT 58000 Standard Class (Category 3) 750 x 650 x 550 mm
Type PP 100 µm NFT 58000 Standard Class (Category 3) 750 x 650 x 550 mm
Type ABS 100 µm NFT 58000 Standard Class (Category 3) 750 x 650 x 550 mm
Type PC 100 µm NFT 58000 Standard Class (Category 3) 750 x 650 x 550 mm
Tough 50 µm NFT 58000 Standard Class (Category 3) 750 x 650 x 550 mm
High temp 50 µm NFT 58000 Standard Class (Category 3) 750 x 650 x 550 mm
FLEX 80SH 100 µm NFT 58000 Standard Class (Category 3) 750 x 650 x 550 mm

AVAILABLE AT LAYER THICKNESS MINIMUM WALLTHICKNESS ACCURACY MAX SIZE (mm) MINIMUM VISIBLEDETAIL ENGRAVING EMBOSSING
Polyjet Technology VeroWhite 28 µm 2mm 203 x 254 x 251 mm 0.2mm 0.5mm 0.5mm
VeroClear 28 µm 2mm 203 x 254 x 251 mm 0.2mm 0.5mm 0.5mm
SEBS like NFT 58000 Standard Class (Category 3) 256 x 256 x 256 mm
ABS like NFT 58000 Standard Class (Category 3) 256 x 256 x 256 mm

AVAILABLE AT LAYER THICKNESS MINIMUM WALLTHICKNESS ACCURACY MAX SIZE (mm) MINIMUM VISIBLEDETAIL ENGRAVING EMBOSSING
DLP / LCD Technology Ultracur3D® EPD 1086 100 µm 0.6mm ± 100µm 510 x 280 x 350 mm (X – Y – Z) 0.3mm 0.3mm
Ultracur3D® RG3280 100 µm 0.6mm ± 100µm 120 x 120 x 120 mm 0.3mm 0.3mm
Pro Black 10 50 µm NFT 58000 Standard Class (Category 3)) 123.5 x 69.5 x 345 mm
Rubber 65 A 50 µm NFT 58000 Standard Class (Category 3) 122.8 x 69.1 x 347.7 mm
Rigid Gray 50 µm NFT 58000 Standard Class (Category 3) 124.7 x 70.1 x 345.3 mm

AVAILABLE AT LAYER THICKNESS MINIMUM WALLTHICKNESS ACCURACY MAX SIZE (mm) MINIMUM VISIBLEDETAIL ENGRAVING EMBOSSING
Vacuum Casting PX 205 NFT 58000 Standard Class (Category 3) 700 x 450 x 400 (Please contact us for larger parts)
PX 223 HT NFT 58000 Standard Class (Category 3) 700 x 450 x 400 (Please contact us for larger parts)
PX 226 NFT 58000 Standard Class (Category 3) 700 x 450 x 400 (Please contact us for larger parts)
PX 212 L NFT 58000 Standard Class (Category 3) 700 x 450 x 400 (Please contact us for larger parts)
PX 245L NFT 58000 Standard Class (Category 3) 700 x 450 x 400 (Please contact us for larger parts)
PX 280 NFT 58000 Standard Class (Category 3) 700 x 450 x 400 (Please contact us for larger parts)
PX 331 NFT 58000 Standard Class (Category 3) 700 x 450 x 400 (Please contact us for larger parts)
PX 523 NFT 58000 Standard Class (Category 3) 700 x 450 x 400 (Please contact us for larger parts)
UPX8400 NFT 58000 Standard Class (Category 3) 700 x 450 x 400 (Please contact us for larger parts)
PX 243HT NFT 58000 Standard Class (Category 3) 700 x 450 x 400 (Please contact us for larger parts)

AVAILABLE AT TENSILE MODULUS TENSILE STRENGTH ELONGATION AT BREAK HARDNESS SHORE IMPACT STRENGTH(IZOD NOTCHED) GLASS TRANSITIONTEMPERATURE HDT B (0,45 MPa, DRY) DENSITY FLEXURAL MODULUS FLEXURAL STRENGTH
DLS Technology Rigid Polyurethane 1700 – 2200 MPa 42 – 47 MPa 90 – 120 % 21 – 23 J/m 80°C 70°C 1.01 – 1.02 g/mL (Liquid) 1500 – 2200 MPa 55 – 71 MPa
Elastomeric Polyurethane 8 ± 1 MPa 15 MPa 300% 71 (Shore A) – 10°C 1.03 g/cm³

AVAILABLE AT TENSILE MODULUS TENSILE STRENGTH ELONGATION AT BREAK HARDNESS SHORE IMPACT STRENGTH(IZOD NOTCHED) GLASS TRANSITIONTEMPERATURE HDT B (0,45 MPa, DRY) DENSITY FLEXURAL MODULUS FLEXURAL STRENGTH
SLA Technology Transparent Resin 2575 MPa 51 MPa 10% 29 J/m 56 °C 2450 MPa 92 MPa
Prototyping Resin 1.6 GPa (Green) 2.8 GPa (postcured) 38 MPa (Green) 65 MPa (postcured) 12% (Green) 6.2% (post-cured) 16 J/m (Green) 25 J/m (postcured) 49.7°C (Green) 73.1°C (postcured) 1.25 GPa (Green) 2.2 GPa (postcured)
Type PA 1790–1980 MPa 38–44 MPa 14–22% 35–52 J/m 62°C 1.19g/cm³ 1520–2070 MPa 52–71 MPa
Type PP 1590–1660 38 MPa 13–20% Shore D 80 19–24 J/m 60°C 58–63°C 1.19g/cm³ 1380–1660 MPa 55–58 MPa
Type ABS 3200 63–68 MPa 5–8% Shore D 85 12–22 J/m 56°C 55–58°C 1.19g/cm³ 2690–3240 MPa 88–110 MPa
Type PC 2270–2640 MPa 46–53 MPa 3–15% Shore D 80–85 40–58 J/m 62–70°C 51°C 1.17g/cm³ 1980–2310 MPa 72–84 MPa
Tough 1460 MPa 34 MPa 155% Shore D 76 42 J/m 109.6°C 66°C 1.12g/cm³ 1370 MPa 41 MPa
High temp 2800 MPa 58 MPa 3.3% 18 J/m 120°C 2600 MPa 95 MPa
FLEX 80SH 8.9 MPa 120% Shore A 80 27°C

AVAILABLE AT TENSILE MODULUS TENSILE STRENGTH ELONGATION AT BREAK HARDNESS SHORE IMPACT STRENGTH(IZOD NOTCHED) GLASS TRANSITIONTEMPERATURE HDT B (0,45 MPa, DRY) DENSITY FLEXURAL MODULUS FLEXURAL STRENGTH
Polyjet Technology VeroWhite 2000 – 3000 MPa 50 – 65 MPa 10 – 25% 83 – 86 (Shore D) 20- 30 J/m 52 -54 °C 45 – 50 °C 1.17 – 1.18 g/cm³ (Polymerisé) 2200 – 3200 MPa 75-110 MPa
VeroClear 2000 – 3000 MPa 50 – 65 MPa 10 – 25% 83 – 86 (Shore D) 20- 30 J/m 52 – 54 °C 45 – 50 °C 1.18 – 1.19 g/cm³ (Polymerisé) 2200 – 3200 MPa 75-110 MPa
SEBS like 1.3–1.8 MPa 1.3–1.8 MPa 110–130% Shore A 27
ABS like 1700–2300 MPa 40–60 MPa 15–25% Shore D 75 25–35 J/m 25–35°C 1500–2500 MPa 55–75 MPa

AVAILABLE AT TENSILE MODULUS TENSILE STRENGTH ELONGATION AT BREAK HARDNESS SHORE IMPACT STRENGTH(IZOD NOTCHED) GLASS TRANSITIONTEMPERATURE HDT B (0,45 MPa, DRY) DENSITY FLEXURAL MODULUS FLEXURAL STRENGTH
DLP / LCD Technology Ultracur3D® EPD 1086 1810 MPa 42 MPa 26% 81 (Shore D) 28 J/m (23° Machined) 53°C 1.18 g/cm³ 1620 MPa 67 MPa
Ultracur3D® RG3280 10000 MPa 76 MPa 0.7 – 1% 96 (Shore D) 24 J/m >280°C 1.73 g/cm³ 8780 MPa 73 MPa
Pro Black 10 2320 MPa 63 MPa 12% Shore D 79 24 J/m 62°C 70°C 1.16g/cm³ 2290 MPa 92 MPa
Rubber 65 A 23 MPa 5 MPa 126% Shore A 65 -10°C 1.12g/cm³
Rigid Gray 30% 72°C 2200 MPa

AVAILABLE AT TENSILE MODULUS TENSILE STRENGTH ELONGATION AT BREAK HARDNESS SHORE IMPACT STRENGTH(IZOD NOTCHED) GLASS TRANSITIONTEMPERATURE HDT B (0,45 MPa, DRY) DENSITY FLEXURAL MODULUS FLEXURAL STRENGTH
Vacuum Casting PX 205 Shore D 70 100°C 55°C 1.08 g/cm³ 500 MPa
PX 223 HT Shore D 80 120°C 120°C 1,14 g/cm³ 2300 MPa
PX 226 70 MPa 15% Shore D 82 Charpy (unnotched): 70 kJ/m² 105°C 92°C 1.20 g/cm³ 2500 MPa 105 MPa
PX 212 L 40 MPa 10% Shore D 76 Charpy: >50 kJ/m² 100°C 75°C 1,15 g/cm³ 1200 MPa 55 MPa
PX 245L 85 MPa 3% Shore D 85 Charpy: 30 kJ/m² 95°C 92°C 1.22 g/cm³ 4500 MPa 150 MPa
PX 280 Shore D 85 80°C 1,19 g/cm³ 2800 MPa
PX 331 Shore D 87 100°C 90°C 1,35 g/cm³ 3700 MPa
PX 523 17 MPa 430% Shore A 95 70°C 1.10 g/cm³
UPX8400 1800 MPa 61 MPa 13% Shore D 80 Charpy (unnotched): 41 kJ/m² 220°C 190 – 195°C 1.19 g/cm³ 1850 MPa 80 MPa

Resinas

LAYER THICKNESS MINIMUM WALL THICKNESS ACCURACY MAX SIZE (mm) MINIMUM VISIBLE DETAIL ENGRAVING EMBOSSING
DLS Technology Rigid Polyurethane 100 µm Unsupported : 2.5mm Supported : 1mm XY: ± 0.1mm Z: ± 0.4mm 180 x 110 x 290 (z) mm 0.5mm 0.3mm 0.3mm
Elastomeric Polyurethane 100 µm Unsupported : 2.5mm Supported : 1mm 180 x 110 x 100 mm 0.6mm 0.3mm 0.3mm
SLA Technology Transparent Resin 100 µm 0.8mm ±0.2% (with a lower limit of±0.2 mm) 200 x 125 x 210 mm 0.3 mm 0.3 mm
Prototyping Resin 100 µm 0.8mm ±0.2% (with a lower limit of ±0.2 mm) 144 x 144 x 174 mm 0.5mm 0.5mm
Polyjet Technology VeroWhite 28 µm 2mm 203 x 254 x 251 mm 0.2mm 0.5mm 0.5mm
VeroClear 28 µm 2mm 203 x 254 x 251 mm 0.2mm 0.5mm 0.5mm
DLP / LCD Technology Ultracur3D® EPD 1086 100 µm 0.6mm ± 100µm 510 x 280 x 350 mm (X – Y – Z) 0.3mm 0.3mm
Ultracur3D® RG3280 100 µm 0.6mm ± 100µm 120 x 120 x 120 mm 0.3mm 0.3mm

TENSILE MODULUS TENSILE STRENGTH ELONGATION AT BREAK HARDNESS SHORE IMPACT STRENGTH (IZOD NOTCHED) GLASS TRANSITION TEMPERATURE HDT B (0,45 MPa, DRY) DENSITY FLEXURAL MODULUS FLEXURAL STRENGTH
DLS Technology Rigid Polyurethane 1700 – 2200 MPa 42 – 47 MPa 90 – 120 % 21 – 23 J/m 80°C 70°C 1.01 – 1.02 g/mL (Liquid) 1500 – 2200 MPa 55 – 71 MPa
Elastomeric Polyurethane 8 ± 1 MPa 15 MPa 300% 71 (Shore A) – 10°C 1.03 g/cm³
SLA Technology Transparent Resin 2575 MPa 51 MPa 10% 29 J/m 56 °C 2450 MPa 92 MPa
Prototyping Resin 1.6 GPa (Green) 2.8 GPa (postcured) 38 MPa (Green) 65 MPa (postcured) 12% (Green) 6.2% (post-cured) 16 J/m (Green) 25 J/m (postcured) 49.7°C (Green) 73.1°C (postcured) 1.25 GPa (Green) 2.2 GPa (postcured)
Polyjet Technology VeroWhite 2000 – 3000 MPa 50 – 65 MPa 10 – 25% 83 – 86 (Shore D) 20- 30 J/m 52 -54 °C 45 – 50 °C 1.17 – 1.18 g/cm³ (Polymerized) 2200 – 3200 MPa 75-110 MPa
VeroClear 2000 – 3000 MPa 50 – 65 MPa 10 – 25% 83 – 86 (Shore D) 20- 30 J/m 52 – 54 °C 45 – 50 °C 1.18 – 1.19 g/cm³ (Polymerized) 2200 – 3200 MPa 75-110 MPa
DLP / LCD Technology Ultracur3D® EPD 1086 1810 MPa 42 MPa 26% 81 (Shore D) 28 J/m (23° Machined) 53°C 1.18 g/cm³ 1620 MPa 67 MPa
Ultracur3D® RG3280 10000 MPa 76 MPa 0.7 – 1% 96 (Shore D) 24 J/m >280°C 1.73 g/cm³ 8780 MPa 73 MPa

Metales

AVAILABLE AT LAYER THICKNESS MINIMUM WALL THICKNESS ACCURACY MAX SIZE (mm) MINIMUM VISIBLE DETAIL ENGRAVING EMBOSSING
DMLS / SLM Aluminum AISi10Mg0,6 150 µm 1mm XY: ± 0.1mm Z: ± 0.4mm MAX SIZE 220 x 220 x 250 MIN SIZE – 1mm 0.5mm 0.5mm
Titanium 6AI-4V 60 µm 1mm MAX SIZE 220 x 220 x 250 MIN SIZE – 1mm 0.5mm 0.5mm
Stainless Steel 316L 40 µm 1mm ± 100µm MAX SIZE 220 x 220 x 250 MIN SIZE – 1mm 0.5mm 0.5mm

AVAILABLE AT LAYER THICKNESS MINIMUM WALL THICKNESS ACCURACY MAX SIZE (mm) MINIMUM VISIBLE DETAIL ENGRAVING EMBOSSING
Wax Casting Bronze 25 µm 0.8mm ± 100µm MAX SIZE 125 x 125 x 40 MIN SIZE – 0.4mm 0.5mm 0.4mm
Brass 25 µm 0.8mm ± 200µm MAX SIZE 125 x 125 x 40 mm MIN SIZE 0.6 x 2.4 x 2.4 mm 0.4mm 0.4mm 0.5mm
Sterling Silver 25 µm 0.8mm ± 100µm MAX SIZE 125 x 125 x 40 mm MIN SIZE 2.4 x 2.4 x 0.8 mm 0.4mm 0.4mm 0.5mm

AVAILABLE AT LAYER THICKNESS MINIMUM WALL THICKNESS ACCURACY MAX SIZE (mm) MINIMUM VISIBLE DETAIL ENGRAVING EMBOSSING
Binder Jetting Stainless Steel 316L 35 µm 1mm ±3%, with a minimum threshold of ±0.3 mm MAX SIZE 50 mm (L) x 80 mm (W) x 40mm (H) 0.8 mm 0.5 mm 0.5 mm

AVAILABLE AT TENSILE MODULUS TENSILE STRENGTH ELONGATION AT BREAK MELTING TEMPERATURE IMPACT STRENGTH (IZOD NOTCHED) GLASS TRANSITION TEMPERATURE HDT B (0,45 MPa, DRY) DENSITY COMPOSITION
DMLS / SLM Aluminum AISi10Mg0,6 70 ± 5 GPa 410 MPa 5 ± 2% 560°C 240 MPa Aluminum: >89% Silicon: 9 – 10 % Magnesium: 0.2 – 0.6 %
Titanium 6AI-4V XY: 108 ± 20 GPa Z: 112 ± 13 GPa XY: 1260 ± 40 MPa Z: 1250 ± 50 MPa XY: 7 ± 3 % Z: 9 ± 3 % 1660°C XY: 1125 ± 65 MPa Z: 1130 ± 75 MPa 4.41 g/cm³ Titanium: 88 – 100 % Aluminum: 5.5 – 6.5 % Vanadium: 3.5 – 4.5 %
Stainless Steel 316L XY: 220 GPa Z: 186 GPa XY: 650 ± 50 MPa Z: 540 ± 55 MPa XY: 40 ± 15 % Z: 50 ± 20 % 1400°C 550 ± 50 MPa 30 J/cm² 89 HRB 7.9 g/cm³ Iron: 66- 70% Chrome: 16-18% Nickel: 11- 14% Molybdenum: 2- 3%

AVAILABLE AT TENSILE MODULUS TENSILE STRENGTH ELONGATION AT BREAK MELTING TEMPERATURE IMPACT STRENGTH (IZOD NOTCHED) GLASS TRANSITION TEMPERATURE HDT B (0,45 MPa, DRY) DENSITY COMPOSITION
Wax Casting Bronze 1450°C Copper: 90% Tin: 10%
Brass 1450°C Chopper: 80% Zinc: 15% Tin: 5%
Sterling Silver 951°C Silver: 93% Copper: 4% Zinc: 3%

AVAILABLE AT TENSILE MODULUS TENSILE STRENGTH ELONGATION AT BREAK MELTING TEMPERATURE IMPACT STRENGTH (IZOD NOTCHED) GLASS TRANSITION TEMPERATURE HDT B (0,45 MPa, DRY) DENSITY COMPOSITION
Binder Jetting Stainless Steel 316L 179 ± 18 GPa 506 ± 7 MPa 63 ± 3% 7.7 g/cm³ Fe balance, Cr 16–18%, Ni 10–14%, Mo 2–3%, Mn ≤2%, Si ≤1%, C ≤0.03%, N ≤0.1%

Cortado Láser

Pautas de Diseño

Laser cutting guidelines
Haga clic para descargar

Especificaciones Técnicas

Laser Cutting material comparison - Technical specifications
Haga clic para descargar

¿Listo para hacer realidad tu modelo 3D?

Cargue su archivo 3D, seleccione los materiales y las opciones de acabado, y deje que nuestro servicio profesional de impresión 3D se encargue del resto. Sus piezas se entregan a su puerta en cuestión de días. Consigue tu prototipo impreso en 3D hoy.