Rosa3D Filament PLA Magic Silk 1.75, 1kg, ReFill | Carnival
Rosa3D Filament PLA Magic Silk 1.75, 1kg, ReFill | Carnival
Dual-color PLA-Silk filament with silky sheen and color transition effect, supplied in ReFill format for the ROSA3D Masterpool spool.
✔️ Diameter 1.75 mm, 1 kg spool
✔️ Coextrusion of two colors in a single strand
✔️ High silky sheen and smooth color transition
✔️ Nozzle temperature 195-225 °C, bed 40-60 °C
✔️ Also suitable for high-speed printing (205-235 °C)
✔️ Low shrinkage and excellent layer adhesion
✔️ ReFill - plastic saving, Masterpool required
✔️ Odorless, easy to print Show more
Dual-color PLA-Silk filament with silky sheen and color transition effect, supplied in ReFill format for the ROSA3D Masterpool spool.
✔️ Diameter 1.75 mm, 1 kg spool
✔️ Coextrusion of two colors in a single strand
✔️ High silky sheen and smooth color transition
✔️ Nozzle temperature 195-225 °C, bed 40-60 °C
✔️ Also suitable for high-speed printing (205-235 °C)
✔️ Low shrinkage and excellent layer adhesion
✔️ ReFill - plastic saving, Masterpool required
✔️ Odorless, easy to print Show more
Product variants
Rosa3D PLA Magic Silk ReFill is a special dual-color PLA filament with a silky sheen, manufactured using coextrusion technology. Two colors are combined in a single strand, creating unique visual effects with smooth color transitions when printed. The ReFill version is designed for reusable ROSA3D Masterpool spools and saves both plastic and your money.
Key features
Magic Silk is based on PLA-Silk material, which combines the easy printability of classic PLA with a distinctive silky sheen. Thanks to dual-color coextrusion, a transition effect is created that is particularly noticeable on models with details, edges, and organic shapes. The material has low shrinkage, does not emit an unpleasant odor during printing, offers excellent layer adhesion, and reproduces details accurately. Printing is performed using standard PLA profiles without the need to reduce speed, making the material suitable for high-speed printing as well.
The ReFill version does not include a plastic spool - it is only a filament winding with a small cardboard stabilizing spool (30 g). To use it, you must own the ROSA3D Masterpool system (a reusable spool).
Technical parameters / specifications
| Parameter | Value |
|---|---|
| Filament diameter | 1.75 mm |
| Base material | PLA-Silk (dual-color coextrusion) |
| Spool weight | 1 kg (also available in 0.3 kg) |
| Nozzle temperature | 195-225 °C |
| Nozzle temperature (High Speed) | 205-235 °C |
| Bed temperature | 40-60 °C |
| Cooling | 50-100 % |
| Enclosed chamber | not required |
| Recommended layer height | 0.12-0.24 mm |
| Print speed | standard PLA profile, also suitable for high-speed |
| Drying | not usually required |
| Version | ReFill (no plastic spool, Masterpool required) |
Who is Rosa3D Filament PLA Magic Silk 1.75, 1kg, ReFill suitable for
This filament will be appreciated by creators of decorative models, figurines, vases, statues, and design objects, where the silky sheen and dual-color transition truly stand out. Thanks to its easy printability, it is suitable for both beginners and advanced users. The ReFill packaging is intended for makers who already own the ROSA3D Masterpool system and want to reduce plastic waste and save on repeat purchases. The filament is compatible with common FDM/FFF 3D printers that can process 1.75 mm filament.
Tips for use
- For maximum transition effect, choose models with organic shapes, rounded surfaces, and visible edges.
- Use full cooling (80-100 %) to enhance the sheen and clarity of details.
- Before first use, install the ROSA3D Masterpool - the ReFill package cannot be used without it.
- For high-speed printing, increase the nozzle temperature to the upper part of the recommended range (205-235 °C).
- PLA-Silk is more sensitive to moisture - store the filament in a sealed package with a moisture absorber.
- We recommend a 0.4 mm nozzle and a layer height of 0.15-0.20 mm for the optimal combination of detail and sheen.
- The transition effect is best visible on models with thin walls and a visible layer structure.












