MAC Niterói – Oscar Niemeyer Museum | Multicolor AMS Architecture Model (1:417)
Source: Cults3D by kerkaporta
The MAC Niterói – Oscar Niemeyer Museum | Multicolor AMS Architecture Model (1:417) is a free printable 3D model from Cults3D by kerkaporta. SHORT DESCRIPTION Niemeyer's iconic "flying saucer" museum above Guanabara Bay: a two-part, multicolor (AMS) scale model with the red serpentine ramp, glazed ring and reflecting. You can download the STL file from the original listing below and print it at home.
About this model
SHORT DESCRIPTION Niemeyer's iconic "flying saucer" museum above Guanabara Bay: a two-part, multicolor (AMS) scale model with the red serpentine ramp, glazed ring and reflecting pool. The cup prints without supports. DESCRIPTION The Niterói Contemporary Art Museum (MAC Niterói), designed by Oscar Niemeyer and opened in 1996, is one of the most recognizable buildings of modern architecture: a white chalice rising from a single stem above a reflecting pool, reached by a sweeping red ramp. This model was built from real dimensions and reference photos, not a generic "UFO" template: - True chalice profile: cylindrical stem → curved underside → outward-leaning glazing ring → flared fascia to the 50 m rim - Recessed dark glazing with 48 mullions and 2 transoms - 90 triangular notches around the …
Frequently asked questions
- Is this 3D model free to download?
- Yes. MAC Niterói – Oscar Niemeyer Museum | Multicolor AMS Architecture Model (1:417) is free to download from Cults3D. Open it in the free Thinger app, or use the "Download from Cults3D" link above to open the original listing.
- Where is the STL hosted?
- The download is hosted by Cults3D, not by Thinger. We link you directly to the original listing by kerkaporta.
- Who made this model?
- Designed by kerkaporta, published on Cults3D. Please credit the creator when sharing your print online.
- Can I print this at home?
- Yes. This model is intended for home FDM and resin 3D printers. Check the original listing for suggested print settings like layer height and supports.