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Descrição
The Super Tiny Filament Test v2 is a highly efficient calibration model designed to test the most essential print behaviors—bridging, overhangs, stringing, and extrusion—in one ultra-compact, fast-to-print object. This second version improves upon the original by integrating embossed labels along the base of each model, allowing users to print multiple tests with different filaments and easily identify them afterward. This small feature greatly enhances organization and consistency during filament comparisons.
Optimized for speed and efficiency, each test prints in under half hour, using less than 0.5 grams of filament. It’s perfect for rapid testing during spool swaps, temperature tuning, or profile creation. Whether you're experimenting with PLA, PETG, TPU, or advanced blends like carbon or glass fiber-infused filaments, this tool helps you visualize key performance differences in real-world print conditions.
Ideal for both hobbyists and professionals, the test is also batch-print friendly: just line up several versions, each with a different filament, and label results instantly thanks to the built-in identifiers. It’s a minimal yet powerful benchmark that saves time, reduces waste, and boosts precision.
If you want to build a well-documented filament library, refine slicer settings, or compare brands, the Super Tiny Filament Test v2 is an essential addition to your toolkit.😁
Availabe materials:
- PLA
- PLA+
- PLA SILK
- PLA-HF
- PLA-GF
- PLA-CF
- PLA GLOW
- PLA MATE
- PETG
- PETG-CF
- PETG-HF
- PETG TRANSLUCENT
- PETG-GF
- ABS
- ASA
- PC
- PA
- TPU
- RECYCLED PET
What's New in v2?
- Embossed material labels under each test
- Designed for printing multiple tests in a row
- Prints in LESS THAN 30 minutes with 0.20 mm layers
- Uses under 0.5 grams of filament
- Excellent for side-by-side comparison
- Great for documenting results when testing new rolls
What It Tests:
- Overhang performance at steep angles
- Bridging capacity across micro gaps
- Stringing under minimal retraction
- First-layer and adhesion behavior
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