Moiin
Nano Rigid

Ceramic-filled resin for creating functional objects & prototypes with excellent dimensional stability using 3D printing

OPTIMUM STABILITY. Ceramic-reinforced MOIIN Nano Rigid is characterised by its excellent appearance, maximum precision and high stiffness. Printed objects remain reliably stable even when exposed to high loads. The dimensionally stable material is therefore the ideal partner for the 3D printing of functional pieces or prototypes for iterative product design. Even fine details and objects with very thin walls can be reproduced with precision – a definite advantage, not only in the technical field but also in terms of design objects. MOIIN Nano Rigid is also characterised by its extremely smooth surface finish. To achieve a perfect surface, we recommend cleaning the printed object with MOIIN Smart Clean.

Sectors

  • Design
  • EDUCATION & SCIENCE
  • INDUSTRIAL MANUFACTURING
  • JEWELRY PRODUCTION
  • MEDICAL TECHNOLOGY

USES

  • Rigid objects that require high dimensional stability
  • Objects that require a particularly smooth surface
  • Functional pieces or prototypes that are exposed to high levels of mechanical stress
  • Thinner walled objects
  • Tool making
  • Gears
  • Turbines and fan blades
  • Anatomical models such as skeletons and bones
  • Hinges
  • Iterative product design
  • Engineering technology
  • Holding devices
  • Housing for electrical components
  • Decorative objects such as vases which are otherwise made of ceramics
  • Sockets and distributors

Material properties

Material PropertiesValue
ProductMOIIN NANO RIGID
Viscosity2,0 Pas
Flexural Stress at Break150 MPa
Flexural Modulus5,1 GPa
Shore Hardness (Scale D)90,6
Heat Deflection Temperature HDT A (1,8 Mpa)118 °C
Water pick-up28,1 µg/mm3
Water solubility0,7 µg/mm3

Please visit technical data page for an up-to-date table with further product data and printer compatibilities for all MOIIN Resins.

Material with additional value

Ceramic-reinforcedHigh stiffnessSmooth surfaceExcellent dimensional stabilityLow electrical conductivitySupported layer thicknesses: 25-100µm

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