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Lamp “Waterdrop” 3d model
Gazzaladra
Gazzaladra
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Image 1 of 8
Lamp “Waterdrop” 3d model
Lamp “Waterdrop” video thumbnail
Lamp “Waterdrop” 3d model
Lamp “Waterdrop” 3d model
Lamp “Waterdrop” 3d model
Lamp “Waterdrop” 3d model
Lamp “Waterdrop” 3d model
Lamp “Waterdrop” 3d model
Lamp “Waterdrop” 3d model
Lamp “Waterdrop” 3d model

Lamp “Waterdrop”

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A table lamp inspired by the ripple waves of waterdrops.

Instructions

  • Get an LED puck cabinet light like the Bambulab LED lamp kit 001.
  • Print the design in a translucent filament, The areas where the light shines through are 1.6 mm 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.
  • Attach the light with the double-sided tape (from the lamp kit) to the base.
  • Make sure the cable is in the designated hole and screw the base into the shade.
  • Enjoy your new lamp!

Size assembled: 96 x 96 x 212 mm

Print settings Important: Do not use any other light source than LED with this Design. Depending on the strength of your LED certain parts of the print might warm up. Your filament has a certain heat deflection temperature that defines at which temperature deformation might occur. Make sure to build a safe product by verifying that the print is not affected by the amount of heat that your light source emits! If you are uncertain or have little experience in building electrified products, please consult a professional! Usually, a strong LED bulb does not get hotter than 50 degrees Celsius while regular PLA does not deform under 58 degrees Celsius. Those are approximate numbers, and you need to verify that for your own product selection.

Required build volume: 100 x 100 x 200 mm Material usage: 150 g

Material: Filament that can handle the heat that your light source 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 Infill: 15% Build plate adhesion type: none – a brim for the shade if you have bad bed adhesion

Community Makes (1)
I used PLA Transparent Rainbow with Silver Glitter. Kept all the settings the same and it printed beautifully. PEIPlate with good adhesion. Completed led holder bottom first to test how the filament would do as it is thin. I love the result!
I used PLA Transparent Rainbow with Silver Glitter. Kept all the settings the same and it printed beautifully. PEIPlate with good adhesion. Completed led holder bottom first to test how the filament would do as it is thin. I love the result!


Community Makes (1)
I used PLA Transparent Rainbow with Silver Glitter. Kept all the settings the same and it printed beautifully. PEIPlate with good adhesion. Completed led holder bottom first to test how the filament would do as it is thin. I love the result!
I used PLA Transparent Rainbow with Silver Glitter. Kept all the settings the same and it printed beautifully. PEIPlate with good adhesion. Completed led holder bottom first to test how the filament would do as it is thin. I love the result!

Discussions
Diana P
diana.pitman
I used PLA Transparent Rainbow with Silver Glitter. Kept all the settings the same and it printed beautifully. PEIPlate with good adhesion. Completed led holder bottom first to test how the filament would do as it is thin. I love the result!
I used PLA Transparent Rainbow with Silver Glitter. Kept all the settings the same and it printed beautifully. PEIPlate with good adhesion. Completed led holder bottom first to test how the filament would do as it is thin. I love the result! 3d model
 3d model
 3d model
 3d model
 3d model
PrinterBambu Lab P1S
MaterialPLA
SupportsNone

Lamp “Waterdrop”

284 downloads · 2 years ago in  and 
Gazzaladra
Gazzaladra18K followers
Follow
Subscribe for access starting at $12 USD
Get access to this model and 140+ more
This model is restricted by licensing terms.