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 |
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 |
|
Uses |
|
Appearance |
|
Forms |
|
Processing Method |
|
Physical | Nominal Value | Unit | Test Method |
---|---|---|---|
Density | 1.16 | g/cm³ | |
Water Absorption | ASTM D570 | ||
Equilibrium 1 | 0.61 | % | |
Equilibrium 2 | 0.68 | % | |
Viscosity (30°C) | 350 | mPa·s |
Mechanical | Nominal Value | Unit | Test Method |
---|---|---|---|
Poisson's Ratio | ASTM D638 | ||
-- 3 | 0.43 to 0.45 | ||
-- 4 | 0.40 to 0.42 |
Additional Information | Nominal Value | Unit | |
---|---|---|---|
Critical Exposure | 6.73 | mJ/cm² | |
Penetration Depth | 110.2 | µm |
Hardness | Nominal Value | Unit | Test Method |
---|---|---|---|
Durometer Hardness | ASTM D2240 | ||
Shore D 5 | 86 to 87 | ||
Shore D 6 | 86 to 88 |
Mechanical | Nominal Value | Unit | Test Method |
---|---|---|---|
Tensile Modulus | ASTM D638 | ||
-- 7 | 2540 to 2620 | MPa | |
-- 8 | 2880 to 2960 | MPa | |
-- 9 | 2180 to 2310 | MPa | |
Tensile Strength | ASTM D638 | ||
-- 10 | 66.1 to 68.1 | MPa | |
-- 11 | 56.9 to 57.1 | MPa | |
-- 12 | 42.2 to 43.8 | MPa | |
Tensile Elongation | ASTM D638 | ||
Break 13 | 8.0 to 16 | % | |
Break 14 | 6.0 to 9.0 | % | |
Break 15 | 8.0 to 12 | % | |
Flexural Modulus | ASTM D790 | ||
-- 16 | 1990 to 2130 | MPa | |
-- 17 | 2280 to 2340 | MPa | |
-- 18 | 2400 to 2450 | MPa | |
Flexural Strength | ASTM D790 | ||
-- 19 | 66.7 to 70.5 | MPa | |
-- 20 | 84.9 to 87.7 | MPa | |
-- 21 | 83.8 to 86.7 | MPa |
Impact | Nominal Value | Unit | Test Method |
---|---|---|---|
Notched Izod Impact | ASTM D256A | ||
-- 22 | 15 to 18 | J/m | |
-- 23 | 20 to 22 | J/m |
Thermal | Nominal Value | Unit | Test Method |
---|---|---|---|
Deflection Temperature Under Load | ASTM D648 | ||
0.45 MPa, Unannealed 24 | 93.0 to 98.0 | °C | |
0.45 MPa, Unannealed 25 | 53.0 to 56.0 | °C | |
1.8 MPa, Unannealed 26 | 46.0 to 47.0 | °C | |
1.8 MPa, Unannealed 27 | 74.0 to 78.0 | °C | |
Glass Transition Temperature | ASTM E1545 | ||
-- 28 | 57.0 to 59.0 | °C | |
-- 29 | 78.0 to 96.0 | °C | |
CLTE - Flow | ASTM E831 | ||
-40 to 0°C 30 | 6.7E-5 to 6.8E-5 | cm/cm/°C | |
-40 to 0°C 31 | 7.5E-5 to 7.6E-5 | cm/cm/°C | |
0 to 50°C 32 | 8.2E-5 to 8.6E-5 | cm/cm/°C | |
0 to 50°C 33 | 1.0E-4 to 1.1E-4 | cm/cm/°C | |
50 to 100°C 34 | 1.1E-4 to 1.2E-4 | cm/cm/°C | |
50 to 100°C 35 | 1.1E-4 to 1.4E-4 | cm/cm/°C | |
100 to 150°C 36 | 1.3E-4 to 1.4E-4 | cm/cm/°C | |
100 to 150°C 37 | 1.5E-4 to 1.6E-4 | cm/cm/°C |
Electrical | Nominal Value | Unit | Test Method |
---|---|---|---|
Dielectric Strength | ASTM D149 | ||
-- 38 | 14 | kV/mm | |
-- 39 | 13 to 14 | kV/mm | |
Dielectric Constant | ASTM D150 | ||
60 Hz 40 | 3.10 to 3.30 | ||
60 Hz 41 | 3.50 to 3.60 | ||
1 kHz 42 | 3.40 to 3.50 | ||
1 kHz 43 | 3.10 to 3.20 | ||
1 MHz 44 | 2.90 to 3.00 | ||
1 MHz 45 | 3.10 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 |
Resin Grade | Manufacturer | Category | Trademark |
---|---|---|---|
Rainmaker Polypropylene MCHPGL20 | Rainmaker Polymers LLC | PP Homopolymer | Rainmaker Polypropylene |
Telcar® TL-2560F | Teknor Apex Company | TPE | Telcar® |
Nipol® IR 2200 | Zeon Corporation | IR | Nipol® IR |
PENTAMID B GV60 H black | PENTAC Polymer GmbH | Nylon 6 | PENTAMID B |
ALTECH® PA6 A 2030/109 | ALBIS PLASTIC GmbH | Nylon 6 | ALTECH® PA6 |