Thingiverse
The impossible factory (benchmark)
von romanos1983
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The impossible FDM benchmark.
In this model everything is designed to fail.
If you want to fine tune your high end 3D printer you are in the good place.
But i must warn you, this is not an easy benchmark, everything must be in perfect condition mechanically , electronically and your profile must be fine tuned to succeed this benchmark.
In this benchmark i included:
1: OVERHANGS (conical and radial)
2: BRIDGING (all types wide, thin, long and short )
3: VOLUMETRIC FLOW (only on the bottom)
4: NO SUPPORTS
5: STRINGING (both long and short)
6: PRESSURE ADVANCE (for klipper) (LINEAR ADVANCE for marlin)
7: ARACHNE ENGINE TUNING (arachne engine have some bad reputation on thin walls)
8: ONE LAYER WATER LEAKS (layer adhesion must be perfect ON X,Y,Z AXIS)
9: THIN WALLS
10: SMALL TEXT QUALITY
11: TEXTURE QUALITY
12: RINGING-GHOSTING (input shaper)
13: ARTIFACTS (from the extruder)
14: LAYER CONSISTENCY (from the extruder or bad lead screws even from bed PID)
15: CO
In this model everything is designed to fail.
If you want to fine tune your high end 3D printer you are in the good place.
But i must warn you, this is not an easy benchmark, everything must be in perfect condition mechanically , electronically and your profile must be fine tuned to succeed this benchmark.
In this benchmark i included:
1: OVERHANGS (conical and radial)
2: BRIDGING (all types wide, thin, long and short )
3: VOLUMETRIC FLOW (only on the bottom)
4: NO SUPPORTS
5: STRINGING (both long and short)
6: PRESSURE ADVANCE (for klipper) (LINEAR ADVANCE for marlin)
7: ARACHNE ENGINE TUNING (arachne engine have some bad reputation on thin walls)
8: ONE LAYER WATER LEAKS (layer adhesion must be perfect ON X,Y,Z AXIS)
9: THIN WALLS
10: SMALL TEXT QUALITY
11: TEXTURE QUALITY
12: RINGING-GHOSTING (input shaper)
13: ARTIFACTS (from the extruder)
14: LAYER CONSISTENCY (from the extruder or bad lead screws even from bed PID)
15: CO
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