Technical datasheet

Somos® WeatherX™ 100

Supplied byStratasys- Last Updated on Dec 5, 2023

Somos® WeatherX™ 100 by Stratasys is an environmentally durable DLP photopolymer developed for 3D printing functional testing prototypes and end-use parts. It produces parts repeatedly and predictably, with the right set of performance properties that last over time.
  • It exhibits optimized balance of weather-, chemical- & temperature resistance, toughness and dimensional stability.
  • It shows robust material behavior in printing and post-processing.
  • Provides low water absorption and lasting mechanical & functional properties, even compared to UV-stabilized thermoplastics.
  • Allows good print resolution suitable for challenging geometries, easy & fast post-processing, black color consistently across the print, and isotropic properties throughout the printed part.
  • It is used in transportation/outdoor vehicles (motorcycle components, housings, switches, trim pieces), industrial equipment (irrigation components, instrumentation, filters), and consumer goods (sports & leisure, backpack clips, binding straps).
  • Somos® WeatherX™ 100 is also used in interior and exterior applications exposed to UV and humid environments.
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Somos® WeatherX™ 100 properties

Mechanical properties

PropertiesValue & unitTest conditionTest method
Elongation at Break0.0 Visible After LoginVisible After LoginVisible After Login
Elongation at Yield0.0 Visible After LoginVisible After LoginVisible After Login
Impact Strength, Notched Izod0.0 Visible After LoginVisible After LoginVisible After Login
Modulus of Elasticity0.0 Visible After LoginVisible After LoginVisible After Login
Tensile Strength, Ultimate0.0 Visible After LoginVisible After LoginVisible After Login

Other properties

PropertiesValue & unitTest conditionTest method
Density, Liquid0.0 Visible After LoginVisible After LoginVisible After Login
Viscosity0.0 Visible After LoginVisible After LoginVisible After Login

Physical properties

PropertiesValue & unitTest conditionTest method
Critical Exposure Energy0.0 Visible After LoginVisible After LoginVisible After Login
Penetration Depth0.0 Visible After LoginVisible After LoginVisible After Login

Thermal properties

PropertiesValue & unitTest conditionTest method
Deflection Temperature at 0.46 MPa (66 psi)0.0 Visible After LoginVisible After LoginVisible After Login
Glass Transition Temperature (Tg)0.0 Visible After LoginVisible After LoginVisible After Login

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