TECHNICAL DATA SHEET
GreenTec Pro 3D Printing
Properties of GreenTec Pro. A PEEK-Like alternative for 3D printing
What is GreenTec Pro 3D printing?
GreenTec Pro is a technical biopolymer that delivers very high mechanical performance, comparable in many applications to engineering plastics such as PEEK. It is designed for functional parts that must maintain their shape under load, withstand heat, and endure real mechanical stresses without deformation. Compared to common materials like ABS or PETG, it offers higher structural rigidity, better dimensional accuracy, and a cleaner finish, both in printing and in subsequent machining.
Made from 100% renewable raw materials, it is the ideal choice if you are looking for a PEEK-like alternative in 3D printing that combines technical performance with environmental responsibility.
Technical Properties of GreenTec Pro for 3D Printing
PARAMETER
VALUE
Tensile Strength
45 – 55 MPa
Tensile Modulus
3500 – 3700 MPa
Elongation at Break
2 – 3 %
Breaking Stress
~50 MPa
Flexural Strength
70 – 75 MPa
Flexural Modulus
3600 MPa
Heat Deflection Temperature (HDT) at 0.45 MPa
~120 °C
Heat Deflection Temperature (HDT) at 1.8 MPa
~85 – 90 °C
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Design Specifications for GreenTec Pro 3D Printing
PARAMETER
VALUE
Manufacturing Technology
FDM
Layer Height
0.2 mm
Default Infill
20%
Accuracy
±0.2% (with a lower limit of ±0.2 mm)
Minimum Detail
0.6 mm
Minimum Wall Thickness
1.0 mm
Warping Risk
Low
Interconnected or moving parts
Not Allowed
Embossed Detail
0.5 mm
Engraved Detail
0.3 mm
Maximum Dimensions
360 mm X 360 mm X 360 mm
* The values shown on this page are indicative and non-binding. They reflect the properties of the material without additional heat treatment. Values may vary depending on the manufacturer. For more information, please contact us.
MANUFACTURING SERVICES
Discover Our Technologies
At Manfacter, we offer professional-quality 3D printing solutions to bring your ideas to life. From rapid prototyping to end-use parts production, we guarantee high-quality, fast, and cost-effective results. We use industry-leading technologies such as SLS, FDM, SLA, and MJF, allowing us to adapt to the needs of any sector.
It offers speed and the ability to produce complex geometries without support structures.
It offers the highest resolution level and accuracy among all additive manufacturing technologies.
Ideal for engineering thanks to its ability to produce complex geometries.
It offers a wide variety of materials and the capability to produce large parts.
It offers speed and the ability to produce complex geometries without support structures.
It offers the highest resolution level and accuracy among all additive manufacturing technologies.
Ideal for engineering thanks to its ability to produce complex geometries.
It offers a wide variety of materials and the capability to produce large parts.

