Thingiverse
grbl_mill
par glumanda
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##grbl_mill
* fully printable
* large parts are printed with a 0.8 mm nozzle
* smaller parts with a 0.4 mm nozzle
* completly designed with openSCAD
* derived from http://www.thingiverse.com/thing:44854
* you need the MCAD library https://github.com/SolidCode/MCAD
####Usage
* open grbl_mill_main.scad in openSCAD to view the assembled mill
* you can select the viewed part in the main file by commenting out the appropriate line
* in grbl_mill_const.scad you can adjust the main construction
* in the division Configuration you can configure the width (count) of profiles for each direction separatly
* there are some more flags to configuring the mill
* some tuning is done directly in grbl_mill_parts.scad
* all things are downloadable
####Working Area
* xy: 107.5 mm x 84.3 mm
* z = about 40 - 50 mm, depending from tool and using the t-nut profiles
* is enough for milling pcbs or hobbed bolts
####Profiles
* using alu profiles from http://www.kinetikm
* fully printable
* large parts are printed with a 0.8 mm nozzle
* smaller parts with a 0.4 mm nozzle
* completly designed with openSCAD
* derived from http://www.thingiverse.com/thing:44854
* you need the MCAD library https://github.com/SolidCode/MCAD
####Usage
* open grbl_mill_main.scad in openSCAD to view the assembled mill
* you can select the viewed part in the main file by commenting out the appropriate line
* in grbl_mill_const.scad you can adjust the main construction
* in the division Configuration you can configure the width (count) of profiles for each direction separatly
* there are some more flags to configuring the mill
* some tuning is done directly in grbl_mill_parts.scad
* all things are downloadable
####Working Area
* xy: 107.5 mm x 84.3 mm
* z = about 40 - 50 mm, depending from tool and using the t-nut profiles
* is enough for milling pcbs or hobbed bolts
####Profiles
* using alu profiles from http://www.kinetikm
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