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Mushroom lamp “Amanita Muscaria”

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Mushroom lamp “Amanita Muscaria” 3d model
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Mushroom lamp “Amanita Muscaria” 3d model
Mushroom lamp “Amanita Muscaria” 3d model
Mushroom lamp “Amanita Muscaria” 3d model
Mushroom lamp “Amanita Muscaria” 3d model
Mushroom lamp “Amanita Muscaria” 3d model
Mushroom lamp “Amanita Muscaria” 3d model
Mushroom lamp “Amanita Muscaria” 3d model
Mushroom lamp “Amanita Muscaria” 3d model
Mushroom lamp “Amanita Muscaria” 3d model
Mushroom lamp “Amanita Muscaria” 3d model
Mushroom lamp “Amanita Muscaria” 3d model
Mushroom lamp “Amanita Muscaria” 3d model
Mushroom lamp “Amanita Muscaria” 3d model
Mushroom lamp “Amanita Muscaria” 3d model
Mushroom lamp “Amanita Muscaria” - Used a tricolor silk on the cap and a uv-color change for the off-white features. Ended up using a battery operated puck for the light.  - 3d model
Mushroom lamp “Amanita Muscaria” 3d model
Mushroom lamp “Amanita Muscaria” 3d model
Mushroom lamp “Amanita Muscaria” 3d model
This model is restricted by licensing terms. 
53 Likes81 DownloadsJuly 4, 2024
This model is restricted by licensing terms. 


One of the world’s most famous mushrooms embodied in a naturalistic lamp design.

Instructions

  • Get the Bambulab LED lamp kit 001 or a similar sized LED puck or cabinet light kit from a different manufacturer – check the cross-section image for measurements.
  • Print the cap in a non-translucent filament, preferably red.
  • Print the Stem, 21 Insert_A and 25 Insert_B in a light-colored or transparent filament, preferably white. The areas where the light shines through are 1.6 thick. You can print a test piece of this horizontal thickness to evaluate the translucency of your filament by holding the light behind the print.
  • Print the holder.
  • Glue the holder into the cap.
  • Attach the lamp with the double-sided tape (from the lamp kit) to the holder.
  • Funnel the wire through the stem.
  • Click the Stem into the Cap.
  • Enjoy your new lamp!
  • In case your LED breaks one day you can dissemble the design by remove the stem with a pencil or screwdriver that you insert into the hole of the cap and lift it up. Remove the broken LED and replace it with a new one

Size assembled: 150 x 150 x 200 mm

Print settings

Important: This design uses the Bambulab Lamp kit 001. You can substitute it with a similar LED puck light from a different manufacturer. According to my measurements this light type emits a maximum of about 60 degrees Celsius of heat. Measurement on the print after 6 hours on showed that all parts beside the holder reach no more than 40 degrees Celsius. The holder reaches 60 degrees Celsius, same as the metal part of the lamp. PETG usually does not deform under 70 degrees Celsius. It is better suited for lamps in general and the holder in particular. PLA usually does not deform under 58 degrees Celsius. I printed all parts beside the holder in PLA and the holder in PETG. Make sure to verify that your material choice is not affected by the amount of heat that your light emits!

Required build volume: 160 x 160 x 160 mm Material usage: 220 g Material: Filament that can handle the heat that your bulb emits. Print direction: stls are rotated correctly, check images Support: none Nozzle size: 0,4 mm Line width: 0,4 mm Layer height 0,2 mm for Cap, Stem and Holder; 0,08 mm for Insert_A and Insert_B Infill: 15% Build plate adhesion type: none


53 Likes81 DownloadsJuly 4, 2024




This model is restricted by licensing terms. 
53 Likes81 DownloadsJuly 4, 2024
This model is restricted by licensing terms.