Ultrafuse Metal vs PETG
Compare Ultrafuse Metal and PETG filaments side-by-side so you can pick the right one for your 3D printing project.
Ultrafuse Metal
-Versatile 3D printing filament
PETG
APolyethylene Terephthalate Glycol-modified
Tougher than PLA, higher temp tolerance, more durable in real-world use
Detailed Comparison
Property
Ultrafuse Metal
PETG
Tier Rating
Tier null
Tier A
Family
Specialty
PETG
Nozzle Temp
250°C
230-250°C
Bed Temp
100°C
70-90°C
Enclosure
not needed
optional
Cooling
Moderate cooling; too much cooling can hurt layer adhesion
Moisture Sensitivity
low
moderate
Green marks the generally easier or more forgiving option in that row, based on tier, enclosure needs, and moisture sensitivity. It is not always the better choice for a specific job, so weigh it against what your project actually needs.
Strengths Comparison
Ultrafuse Metal Strengths
PETG Strengths
- Tougher than PLA, higher temp tolerance, more durable in real-world use
- Good clarity and low friction among easy-to-print materials
Considerations
Ultrafuse Metal Caveats
PETG Caveats
- Overhangs/bridges sag; supports can be hard to remove
- Absorbs water fairly quickly
Frequently Asked Questions
Is Ultrafuse Metal or PETG better for 3D printing?
PETG is generally rated higher (Tier A) compared to Ultrafuse Metal (Tier null). However, the best choice depends on your specific needs: Ultrafuse Metal is best for various applications, while PETG is best for Tougher than PLA, higher temp tolerance, more durable in real-world use.
What are the temperature differences between Ultrafuse Metal and PETG?
Ultrafuse Metal prints at 250°C nozzle / 100°C bed. PETG prints at 230-250°C nozzle / 70-90°C bed.
Do Ultrafuse Metal and PETG need an enclosure?
Ultrafuse Metal: not needed. PETG: optional.
Which is more beginner-friendly: Ultrafuse Metal or PETG?
Both Ultrafuse Metal and PETG are beginner-friendly options.