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Lab adjustable shelf azimuth regulation printing (also useful for laser engraver focus):

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  • 17 likes
  • 4 downloads
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License
3D design format
RAR and STL Folder details Close
  • Barre Con sup 4pz.stl
  • Barre no sup 4pz.stl
  • Binario 4pz.stl
  • Manopola 2 pz.stl
  • Supporto barra 4 pz.stl
  • Tappo incrocio fix Barre Con sup 4pz.stl
  • Vite sollevatore SX.stl
  • Vite sollevatore dx.stl
  • componenti.rar
  • distanziatore vite dx 1 pz.stl
  • distanziatore vite sx 1 pz.stl
  • mascherina posizionamento binario e supporto 2 pz.stl
  • perno binario e supporto barra 8 pz.stl
  • ruotella fissaggio binario 4 pz.stl
  • ruotella mobile binario 4 pz.stl
  • tappo fix distanziatore vite dx sx 4 pz.stl

Learn more about the formats

Publication date 2022-01-04 at 11:14
Design number 599707

3D printer file info

3D model description

Lab adjustable shelf printing (also useful for laser engraver focus):

I made all the components so they could be easily printed
without use of support (no Brim, No Raft)
filling density min 80%
at least 3 layers of walls and tops

Max speed 100 mm / s

Get two square boards (plywood recommended) with sides from 180 to 200 mm thickness 6-10 mm
and about twenty 8-10mm screws for fixing the parts on the wooden shelves.

the parts to be printed are divided into three assembly groups:

1 Group of components to be mounted on the shelves

n. 2 template with center reference for fixing the track and support
n. 4 Track (in order pin, track, free wheel, bar with pin, fixing wheel)
n. 4 Free wheels
n. 4 Fixing wheels
n. 4 support
n. 8 pins

2 Group of components Crossed bars and fixing caps

n. 4 Bars with hole
n. 4 bars with pin
n. 4 Large caps for fixing the cross bars

3 Central group with spacer screws

n. 1 Right lifter screw
n. 1 Left lifter screw (the bases of the screws joined and locked with Attack or screws)
n. 1 right screw spacer
n. 1 left screw spacer
n. 4 fix cap spacer on the pin in order pin bar, bar with hole, cap.
n. 2 Knobs

To obtain a more resistant structure, the use of PET-G instead of PLA can be considered
and then to evaluate the replacement of the bolts with metal bolts and nuts to improve fastening of the bars

Italiano:

Stampa ripiano regolabile da laboratorio (utile anche per messa a fuoco per incisore laser) :

Ho realizzato tutti i componenti in modo da poter essere facilmente stampati
senza utilizzo di supporto ( no Brim, No Raft)
densità di riempimento min 80%
almeno 3 strati pareti e top

Velocità max 100 mm/s

Procurarsi due tavolette quadrate (consigliato legno compensato) con lati da 180 a 200 mm spessore 6-10 mm

ed una ventina di viti 8-10mm per fissaggio delle parti sui ripiani legno.

le parti da stampare sono suddivise in tre gruppi di assemblaggio:

1 Gruppo componenti da montare sui ripiani

n. 2 mascherina con riferimento centro per fissaggio di binario e supporto
n. 4 Binario ( in ordine perno, binario, rotella libera, barra con perno , rotella fissaggio)
n. 4 Rotelle libere
n. 4 Rotelle fissaggio
n. 4 supporto
n. 8 perni 

2 Gruppo componenti Barre incrociate e tappi di fissaggio

n. 4 Barre con foro
n. 4 barre con perno
n. 4 Tappi grandi fissaggio incrocio barre

3 Gruppo centrale con viti distanziatrici

n. 1 Vite sollevatore dx
n. 1 Vite sollevatore sx   (le basi delle viti unite e bloccate con Attack o viti)  
n. 1 distanziatore vite dx
n. 1 distanziatore vite sx
n. 4 tappo fix distanziatore sul perno in ordine barra perno, barra con foro, tappo.
n. 2 Manopole

Per ottenere una struttura piu resistente si puo valutare l'uso di PET-G invece del PLA
e in seguito di valutare la sostituizione dei bulloncini con bulloncini e dadi metallici per migliorare fissaggio delle barre

3D printing settings

I made all the components so they could be easily printed
without use of support (no Brim, No Raft)
filling density min 80%
at least 3 layers of walls and tops

Max speed 100 mm / s

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