FDM Material · General Purpose

PET-G Filament

Chemical-resistant copolyester balancing ease of printing with genuine mechanical toughness — the everyday workhorse.

General PurposeChemical ResistantEasy PrintCopolyesterPETG
Tensile Strength
48 MPa
Heat Deflection
70 °C
Density
1.27 g/cm³
Print Temp
235–245 °C
Fracktal PETG filament spool on black background

Quick Reference

Material properties
Category
General Purpose Copolyester
Base Polymer
Polyethylene Terephthalate Glycol (PETG)
Filler
None
Tensile Strength
48 MPa
Heat Deflection (HDT)
70 °C
Density
1.27 g/cm³
Moisture Sensitivity
Low — dry 65 °C / 4 h if stored unsealed
Nozzle Temp
235–245 °C
Nozzle Diameter
≥ 0.4 mm
Nozzle Material
Brass or hardened steel
Bed Temperature
70–85 °C
Enclosure
Optional (reduces stringing)
Post-Processing
Sand, drill, light acetone polish
Comparative Profile

Material Property Profile

PETGThis material
CF-PAComparison

Values scored 0–10 from measured mechanical data and print process behaviour. Select a material above to compare properties.

2.55.07.510
Measured Properties

Key Properties

Engineering values with context that decides whether PETG is the right choice for your application.

A dogbone specimen under load in the stainless wedge grips of a tensile testing machine
Tensile Strength
48 MPa
Comparable to ABS with far better layer adhesion.
A printed bracket held at temperature in a laboratory oven
Heat Deflection
70 °C
Suitable for most indoor applications; avoids hot car interiors.
A printed part resting on a precision laboratory balance
Density
1.27 g/cm³
Mid-range density — heavier than PLA, lighter than PC.
Printed coupons immersed in clear solvent in beakers
Chemical Resistance
Good
Resists dilute acids, alkalis, and most common solvents.
A specimen necking as it is stretched
Elongation at Break
18 %
Ductile failure mode — bends before snapping.
A filament spool sealed in a dry box with desiccant
Moisture Absorption
0.2 % (sat.)
Low hygroscopicity — brief drying usually sufficient.
Printer Compatibility

Machine Requirements

Hard thresholds for reliable PETG output — check your printer meets these before loading the filament.

RequirementMinimum SpecRecommended
Nozzle Temperature230 °C235–245 °C
Bed Temperature65 °C70–85 °C
EnclosureOpenOptional enclosure
Nozzle MaterialBrassBrass or hardened steel
Cooling Fan25 %50–75 %
Retraction3 mm4–6 mm @ 45 mm/s

PEI bed with glue stick: PETG bonds very aggressively to PEI. Apply a thin glue stick layer as a release agent — otherwise you risk damaging the print surface when removing parts.

Where It Is Used

Applications — By Industry

3D printed translucent PET-G parts for mechanical and structural

Mechanical / Structural

  • General-purpose brackets
  • Enclosure panels
  • Structural supports
3D printed PETG chemical-resistant laboratory equipment

Chemical / Lab

  • Chemical-resistant containers
  • Lab equipment components
  • Fluid contact parts
3D printed PETG protective enclosure

Electronics

  • Translucent housings
  • Cable management clips
  • PCB enclosures
3D printed translucent PET-G parts for r&d and prototyping

R&D / Prototyping

  • Functional fit-check models
  • Rapid iteration parts
  • Test fixtures
Benchmark

Tensile Strength — FDM Materials (MPa)

20406080CF-PA82PC62CF-PETG58PLA56Nylon PA1250PETG48PC-ABS48ASA42ABS38TPU 95A28PP28
Performance Map

Heat Deflection vs Tensile Strength

Available Materials

Versatile amorphous polymer balancing strength and printability. Excellent chemical resistance and moderate heat deflection. Great for general-purpose engineering parts.
03060901201501800153045607590Tensile Strength (MPa) — ASTM D638Heat Deflection Temperature (°C) — ASTM D648 @ 0.455 MPaPETGCF-PANylon PA12PLAABSTPU 95APCCF-PETGASAPC-ABSPP
Decision Guide

When to Use PETG — and When Not To

Use PETG when

  • You need chemical resistance for solvents or dilute acids
  • Easy printing with minimal warping or cracking
  • Parts will see moderate mechanical loads and impacts
  • Semi-transparent or clear aesthetics are desirable
  • A Snowflake desktop printer is the available machine

Avoid PETG when

  • Operating temperature above 70 °C (use ABS or PC)
  • Very high-stress or fatigue-critical structural parts (use Nylon)
  • Surfaces that contact food or beverages (use food-grade alternatives)
  • Parts requiring acetone vapour smoothing (use ABS)
Design for Additive

DfAM Tips for PETG

Design rules that get the best performance from PETG.

A thin wall beside a wall built from enough perimeters

Wall Thickness ≥ 0.8 mm

PETG layers bond well — 2 perimeters give a solid wall. Use 3+ for structural parts.

A printed hole against the smallest one that stays round

Min Hole Diameter: 1.2 mm

PETG expands slightly on cooling. Add 0.1 mm clearance on precision fits.

An unsupported overhang at the steepest angle that still prints

Max Overhang: 50°

PETG bridges better than ABS. Use supports at 50° or beyond for critical surfaces.

A part torn from a bare plate beside one released from a thin film

PEI Bed — Use Glue Stick

PETG sticks too aggressively to bare PEI. A thin layer of glue stick prevents tearing when removing prints.

Ready to print in PETG?

Order Fracktal PETG filament — available in 500 g and 1 kg spools.

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