PLA, PETG, ABS, or TPU: Picking the Right Filament
Every filament makes a different trade-off between strength, flexibility, and how forgiving it is to print. Here's how the four most common materials actually stack up on the bench.
The Numbers, Side by Side
A fast reference before you dig into the details below.
| Material | Beginner Friendliness | Strength | Flex | Heat Tolerance | Typical Use | Cost per kg |
|---|---|---|---|---|---|---|
| PLA | Very Easy | Moderate | Rigid, brittle | Low (~55โ60ยฐC) | Prototypes, display models, low-stress parts | $15โ25 |
| PETG | Easy | Good | Slight give | Moderate (~70โ75ยฐC) | Functional parts, outdoor brackets, containers | $18โ28 |
| ABS | Moderate | Good | Slight give | High (~90โ95ยฐC) | Enclosures, automotive trim, load-bearing parts | $18โ26 |
| TPU | Difficult | Moderate | Fully flexible | Moderate (~65โ70ยฐC) | Gaskets, phone cases, vibration dampers | $25โ35 |
Material by Material
PLA
The material almost every printer ships tuned for out of the box. Low print temperature, minimal shrinkage, and it doesn't need a heated enclosure to behave. The trade-off is brittleness โ PLA parts crack rather than bend under stress.
PETG
The material most people upgrade to once PLA parts start breaking in real use. Nearly as forgiving to print, with real gains in toughness, moisture resistance, and heat tolerance.
ABS
The go-to when a part actually needs to survive heat โ think dashboard mounts or anything near a heat source. Without an enclosure, corners lift and crack as it cools unevenly, so it's not the easiest starting material.
TPU
A rubber-like flexible filament for parts that need to bend, compress, or absorb an impact. It runs slow and can jam on a bowden setup if fed too fast โ a direct-drive extruder makes life considerably easier.
Slicer Starting Points
A reasonable baseline for each material โ tune from here based on your specific printer.
| Material | Print Speed | Part Cooling | Retraction | Dry-Out Setting |
|---|---|---|---|---|
| PLA | 55โ70 mm/s | 100% | Bowden: 5โ6mm, Direct: 1โ2mm | 45ยฐC for 4โ6 hrs |
| PETG | 40โ60 mm/s | 30โ50% | Bowden: 6โ7mm, Direct: 2โ3mm | 65ยฐC for 4โ6 hrs |
| ABS | 40โ60 mm/s | 0โ20% | Bowden: 5โ6mm, Direct: 1โ2mm | 70ยฐC for 2โ4 hrs |
| TPU | 15โ30 mm/s | 50% | Minimal or disabled | 60ยฐC for 4โ6 hrs |
Cooling is kept low on ABS to avoid layer cracking from rapid temperature swings. Retraction distances assume a reasonably well-tuned extruder โ run a retraction tower before trusting these numbers on a new machine.
Where People Actually Go Wrong
Most first-attempt failures on a new material trace back to one of these.
Match the Material to the Job
Filament FAQ
Does the filament brand matter as much as the material?
Less than you'd think for the printer itself, but tolerance and consistency vary a lot by brand. What matters most is matching the temperature settings to the specific spool, since brands can differ slightly even within the same material.
Is a heated bed required for all four materials?
PLA can technically print without one, but PETG, ABS, and TPU all benefit from โ or need โ a heated bed to get proper first-layer adhesion and reduce warping.
Which of these is safest to print in a bedroom?
PLA and PETG give off the least noticeable smell. ABS produces stronger fumes and is best kept to a well-ventilated space or an enclosure with filtration.
Can old filament actually go bad?
It doesn't expire in a strict sense, but it does absorb moisture from the air over time, which shows up as stringing, popping, and rough surfaces. Store spools sealed with desiccant when they're not on the printer.
