ProtoGen 18420

Category: Unspecified , Unspecified
Manufacturer: DSM Somos®
Trademark: ProtoGen
Fillers: -
Ports: Qinzhou, Shekou, Shanghai, Ningbo
Delivery Terms FOB, CIF, DAP, DAT, DDP
PDF: zBgY2B_ProtoGen-18420.pdf
PRICE: ​Order Products​ email   sales@su-jiao.com
Wechat: WECHAT
Message
DSM's Somos® ProtoGen 18420 is a liquid, ABS-like, photopolymer that produces accurate parts ideal for general purpose applications. Somos® ProtoGen resins are the first stereolithography resins to demonstrate different material properties based on machine exposure control. Based on Somos® Oxetane™ chemistry, Somos® ProtoGen 18420 offers superior chemical resistance, a wide processing latitude and excellent tolerance to a broad range of temperatures and humidity, both during and after the build.

Applications
This high-temperature resistant, ABS-like photopolymer is used in solid imaging processes, like stereolithography, to build three-dimensional parts. Somos® ProtoGen 18420 provides considerable processing latitude and is ideal for the medical, electronic, aerospace and automotive markets that demand accurate RTV patterns, durable concept models, highly accurate and humidity & temperature resistant parts.
General Information
Features
  • Durable
  • Good Chemical Resistance
  • High Heat Resistance
  • Humidity Resistant
Uses
  • Aerospace Applications
  • Automotive Applications
  • Electrical/Electronic Applications
  • General Purpose
  • Medical/Healthcare Applications
  • Modeling Material
  • Mold Making
  • Patterns
Appearance
  • White
Forms
  • Liquid
Processing Method
  • 3D Printing, Stereolithography
PhysicalNominal ValueUnitTest Method
Density 1.16g/cm³
Water Absorption ASTM D570
    Equilibrium 10.61%
    Equilibrium 20.68%
Viscosity (30°C) 350mPa·s
MechanicalNominal ValueUnitTest Method
Poisson's Ratio ASTM D638
    -- 30.43 to 0.45
    -- 40.40 to 0.42
Additional InformationNominal ValueUnit
Critical Exposure 6.73mJ/cm²
Penetration Depth 110.2µm
HardnessNominal ValueUnitTest Method
Durometer Hardness ASTM D2240
    Shore D 586 to 87
    Shore D 686 to 88
MechanicalNominal ValueUnitTest Method
Tensile Modulus ASTM D638
    -- 72540 to 2620MPa
    -- 82880 to 2960MPa
    -- 92180 to 2310MPa
Tensile Strength ASTM D638
    -- 1066.1 to 68.1MPa
    -- 1156.9 to 57.1MPa
    -- 1242.2 to 43.8MPa
Tensile Elongation ASTM D638
    Break 138.0 to 16%
    Break 146.0 to 9.0%
    Break 158.0 to 12%
Flexural Modulus ASTM D790
    -- 161990 to 2130MPa
    -- 172280 to 2340MPa
    -- 182400 to 2450MPa
Flexural Strength ASTM D790
    -- 1966.7 to 70.5MPa
    -- 2084.9 to 87.7MPa
    -- 2183.8 to 86.7MPa
ImpactNominal ValueUnitTest Method
Notched Izod Impact ASTM D256A
    -- 2215 to 18J/m
    -- 2320 to 22J/m
ThermalNominal ValueUnitTest Method
Deflection Temperature Under Load ASTM D648
    0.45 MPa, Unannealed 2493.0 to 98.0°C
    0.45 MPa, Unannealed 2553.0 to 56.0°C
    1.8 MPa, Unannealed 2646.0 to 47.0°C
    1.8 MPa, Unannealed 2774.0 to 78.0°C
Glass Transition Temperature ASTM E1545
    -- 2857.0 to 59.0°C
    -- 2978.0 to 96.0°C
CLTE - Flow ASTM E831
    -40 to 0°C 306.7E-5 to 6.8E-5cm/cm/°C
    -40 to 0°C 317.5E-5 to 7.6E-5cm/cm/°C
    0 to 50°C 328.2E-5 to 8.6E-5cm/cm/°C
    0 to 50°C 331.0E-4 to 1.1E-4cm/cm/°C
    50 to 100°C 341.1E-4 to 1.2E-4cm/cm/°C
    50 to 100°C 351.1E-4 to 1.4E-4cm/cm/°C
    100 to 150°C 361.3E-4 to 1.4E-4cm/cm/°C
    100 to 150°C 371.5E-4 to 1.6E-4cm/cm/°C
ElectricalNominal ValueUnitTest Method
Dielectric Strength ASTM D149
    -- 3814kV/mm
    -- 3913 to 14kV/mm
Dielectric Constant ASTM D150
    60 Hz 403.10 to 3.30
    60 Hz 413.50 to 3.60
    1 kHz 423.40 to 3.50
    1 kHz 433.10 to 3.20
    1 MHz 442.90 to 3.00
    1 MHz 453.10 to 3.30
Note Message
1 .UV Postcure & Thermal Postcure
2 .UV Postcure at HOC -2
3 .UV Postcure at HOC -2
4 .UV Postcure & Thermal Postcure
5 .UV Postcure & Thermal Postcure
6 .UV Postcure at HOC -2
7 .UV Postcure at HOC +3
8 .UV Postcure & Thermal Postcure
9 .UV Postcure at HOC -2
10 .UV Postcure & Thermal Postcure
11 .UV Postcure at HOC +3
12 .UV Postcure at HOC -2
13 .UV Postcure at HOC -2
14 .UV Postcure & Thermal Postcure
15 .UV Postcure at HOC +3
16 .UV Postcure at HOC -2
17 .UV Postcure & Thermal Postcure
18 .UV Postcure at HOC +3
19 .UV Postcure at HOC -2
20 .UV Postcure & Thermal Postcure
21 .UV Postcure at HOC +3
22 .UV Postcure & Thermal Postcure
23 .UV Postcure at HOC -2
24 .UV Postcure & Thermal Postcure
25 .UV Postcure at HOC -2
26 .UV Postcure at HOC -2
27 .UV Postcure & Thermal Postcure
28 .UV Postcure at HOC -2
29 .UV Postcure & Thermal Postcure
30 .UV Postcure & Thermal Postcure
31 .UV Postcure at HOC -2
32 .UV Postcure & Thermal Postcure
33 .UV Postcure at HOC -2
34 .UV Postcure & Thermal Postcure
35 .UV Postcure at HOC -2
36 .UV Postcure at HOC -2
37 .UV Postcure & Thermal Postcure
38 .UV Postcure & Thermal Postcure
39 .UV Postcure at HOC -2
40 .UV Postcure & Thermal Postcure
41 .UV Postcure at HOC -2
42 .UV Postcure at HOC -2
43 .UV Postcure & Thermal Postcure
44 .UV Postcure & Thermal Postcure
45 .UV Postcure at HOC -2
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