Stratasys ABS-M30

Category: ABS , Acrylonitrile Butadiene Styrene
Manufacturer: Stratasys
Trademark: Stratasys
Fillers: -
Ports: Qinzhou, Shekou, Shanghai, Ningbo
Delivery Terms FOB, CIF, DAP, DAT, DDP
PDF: KLvEQQ_Stratasys-ABS-M30.pdf
PRICE: ​Order Products​ email   sales@su-jiao.com
Wechat: WECHAT
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Production-Grade Thermoplastic for Fortus 3D Production Systems

ABS-M30 is up to 25-70 percent stronger than standard Stratasys ABS and is an ideal material for conceptual modeling, functional prototyping, manufacturing tools, and end-use-parts. ABS-M30 has greater tensile, impact, and flexural strength than standard ABS. Layer bonding is significantly stronger than that of standard ABS, for a more durable part. This results in more realistic functional tests and higher quality parts for end use. When combined with a Fortus® 3D Production System, ABS-M30 gives you Real Parts™ that are stronger, smoother, and with better feature detail.
General Information
Features
  • Durable
  • Good Chemical Resistance
  • Good Sterilizability
  • Good Surface Finish
  • High Heat Resistance
  • High Impact Resistance
  • High Strength
Uses
  • Decorative Parts
  • Engineering Parts
  • Modeling Material
  • Prototyping
  • Tooling
UL File Number
  • E345258
Appearance
  • Black
  • Blue
  • Dark Grey
  • Ivory
  • Red
  • White
Processing Method
  • 3D Printing, Fused Filament Fabrication (FFF)
PhysicalNominal ValueUnitTest Method
Specific Gravity 1.04g/cm³ASTM D792
Thickness - Layer Capability 127.0 to 330.2µm
ElectricalNominal ValueUnitTest Method
Volume Resistance 15.0E+13 to 4.0E+14ohmsASTM D257
HardnessNominal ValueUnitTest Method
Rockwell Hardness 110ASTM D785
MechanicalNominal ValueUnitTest Method
Tensile Modulus 2(3.18 mm)2410MPaASTM D638
Tensile Strength 3(3.18 mm)35.9MPaASTM D638
Tensile Elongation 4(Break, 3.18 mm)4.0%ASTM D638
Flexural Modulus 52320MPaASTM D790
Flexural Strength 660.7MPaASTM D790
ImpactNominal ValueUnitTest Method
Notched Izod Impact (23°C)140J/mASTM D256A
Unnotched Izod Impact (23°C)280J/mASTM D256
ThermalNominal ValueUnitTest Method
Deflection Temperature Under Load ASTM D648
    0.45 MPa, Unannealed, 3.18 mm 95.6°C
    1.8 MPa, Unannealed, 3.18 mm 82.2°C
Glass Transition Temperature 108°CDSC
Vicat Softening Temperature 98.9°CASTM D1525 7
CLTE ASTM E831
    Flow 8.8E-5cm/cm/°C
    Transverse 8.5E-5cm/cm/°C
ElectricalNominal ValueUnitTest Method
Dielectric Strength 2.8 to 15kV/mmASTM D149
Dielectric Constant 82.70 to 2.90ASTM D150
Dissipation Factor 94.9E-3 to 5.2E-3ASTM D150
FlammabilityNominal ValueUnitTest Method
Flame Rating (2.50 mm)HBUL 94
Note Message
1 .All Electrical Property values were generated from the average of test plaques built with default part density (solid). Test plaques were 4.0 x 4.0 x 0.1 inches (102 x 102 x 2.5 mm) and were built both in the flat and vertical orientation. The range of values is mostly the result of the difference in properties of test plaques built in the flat vs. vertical orientation.
2 .Type I, 5.1 mm/min
3 .Type I, 5.1 mm/min
4 .Type I, 5.1 mm/min
5 .Method I (3 point load), 1.3 mm/min
6 .Method I (3 point load), 1.3 mm/min
7 .Rate B (120°C/h), Loading 2 (50 N)
8 .All Electrical Property values were generated from the average of test plaques built with default part density (solid). Test plaques were 4.0 x 4.0 x 0.1 inches (102 x 102 x 2.5 mm) and were built both in the flat and vertical orientation. The range of values is mostly the result of the difference in properties of test plaques built in the flat vs. vertical orientation.
9 .All Electrical Property values were generated from the average of test plaques built with default part density (solid). Test plaques were 4.0 x 4.0 x 0.1 inches (102 x 102 x 2.5 mm) and were built both in the flat and vertical orientation. The range of values is mostly the result of the difference in properties of test plaques built in the flat vs. vertical orientation.
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