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The following parameters are only suggested print settings for this material.
To ensure the best print quality, it is necessary to choose the appropriate settings for a specific printer and printing conditions.
Physical properties | Test method | Unit | Typical value |
---|---|---|---|
Specific density | ISO 1183 | g/cm3 | 1.12 |
Mechanical properties | Test method | Unit | Typical value |
Tensile strength @ Yield | ISO 527 | MPa | 48 |
Tensile strength @ Break | ISO 527 | MPa | 50 |
Tensile modulus | ISO 527 | MPa | 2500 |
Elongation @ Yield | ISO 527 | % | 4 |
Elongation @ Break |
ISO 527 | % | 9 |
Flexural strength | ISO 178 | Mpa | - |
Flexural modulus |
ISO 178 | MPa | - |
Izod Impact strength (Notched) @ 23°C |
ISO 180 | kJ/m2 | 4 |
Thermal Properties |
Test method | Unit | Typical value |
Heat Distortion Temperature @ 0.45 Mpa |
ISO 75 | °C | 50 |
Heat Distortion Temperature @ 1.8 Mpa |
ISO 75 | °C | 40 |
Vicat Softening Temperature |
ISO 306 | °C | 50 |
Glass Transition Temperature Tg |
DSC | °C | 55 |
Meting Temperature Tm |
DSC | °C | 155-160 |
Continuous Use Temperature (UL Yellow Card) |
UL 746 | °C | - |
Fiberlogy FiberSatin makes models look as if they were not a product of a 3D printer.
High layer bondability and the slightly glossy, matte finish conceal the drawbacks of additive printing technology, such as the visible boundaries between individual layers.
FiberSatin can be an alternative to silk filaments for people who look around for an interesting finish in a rather matte and refined version.
In addition to its unique visual properties, FiberSatin is also distinguished by its unique texture.
To the touch, it resembles filaments with the addition of carbon fiber, thanks to which it diffuses the light, giving off a subtle shine.
FiberSatin is as easy to print with as traditional PLA. To achieve a successful printout, it is enough to use the existing Fiberlogy EASY PLA profile or other filament profile from the PLA family.