- Stock: 9
- Model: PLA-3D870-Transicion-1.75mm-SAKATA3D
Type:
PLA GO&PRINT
GO&PRINT Transition
GO&PRINT Recycled
PLA-M
PLA-M Transition
PLA 3D850
PLA INGEO 3D850 Fluor
PLA 3D850 MAGIC / MAGIC+
PLA 3D850 SILK
PLA 3D850 GLASS
PLA 3D850 Transition
3D850 Recycled
HR-PLA 3D870
HR-PLA 3D870 Transition
Recycled 3D870
PLA High Speed
PLA High Speed PRO
PLA High Speed PRO TransitionHigh Speed
Available Options
Sakata 3D PLA HR-870 Transition combines the Ingeo 3D870 engineering formulation with colour changes built into the filament along the spool. It is made in Spain and brings HR-870 characteristics to functional parts, figures and decorative objects where spontaneous colour variation adds value.

How the transition colour works
The shade change is built into the filament. A part shows the colours encountered as it consumes the spool, so the result depends on size, layer height, perimeters, infill, purging and starting point. A small part may finish before the next change; a higher-consumption print may show several transitions.
Two identical parts are not guaranteed to have the same colour distribution. Vases, tall figures, busts, decorations and consecutively printed sets often make effective use of the effect.
HR-870 characteristics
- Modified PLA based on Ingeo 3D870.
- Greater impact resistance and potential thermal performance than conventional PLA.
- Low warping tendency and good definition.
- Documented conventional and high-speed profiles.
- Non-abrasive material suitable for a conventional Brass nozzle.
- Made in Spain by Sakata 3D Filaments.
Specifications
| Property | Value |
|---|---|
| Material | HR-870 PLA based on Ingeo 3D870, transition colour |
| Diameter | 1.75 ± 0.03 mm |
| Maximum roundness deviation | 0.03 mm |
| Net weight | 1 kg |
| Declared density | 1.22 g/cm³ |
| Colour | Random and not selectable |
| Origin | Made in Spain |
Print settings
| Setting | Conventional | High speed |
|---|---|---|
| Nozzle | 210–225 °C | 225–240 °C |
| Speed | 50–100 mm/s | 100–400 mm/s |
| Declared maximum flow | Tune | 32 mm³/s at 240 °C |
| Bed | Above 45 °C; glass or PEI | |
| Fan | 100% | |
| Layer height | From 0.1 mm | |
Maximum speed and flow require a capable hotend, extruder and cooling system. Tune the profile for geometry and prioritise layer bonding for functional parts.
Annealing, drying and limitations
The stated 75–85 °C HDT at 0.45 MPa applies to 100%-infill specimens crystallised at 110 °C for 20 minutes. It is not a guaranteed service temperature for every part. Annealing can improve thermal performance but may also cause shrinkage or deformation; validate a specimen before treating a final part.
If the material shows moisture, Sakata recommends 4–6 hours at 55 °C. Store the spool sealed with desiccant.
3D-printer compatibility
Functionally compatible with 1.75 mm FDM/FFF printers capable of the stated range, including HTA3D HPRO and Bambu Lab A1/P1/X1, Creality Ender-3/K1, Original Prusa MK3/MK4/MINI/CORE One and Voron 0.2/Trident/2.4 families with a tuned profile.
AMS, MMU or CFS is not required for shade changes. Spool compatibility with automatic feeders must be checked separately and is not universally guaranteed.
This product is for you if
- You want HR-870-family properties with a non-repeatable colour effect.
- You print vases, figures, decorations or large parts that can consume several segments.
- You accept that every spool and part can be different.
This product is not for you if
- You need to choose colours, order or the exact transition point.
- The part must match the photograph or repeat identically.
- You require certified temperature or strength without validating the part.
For a stable selectable colour, see standard Sakata 3D PLA HR-870. If recovered material is the priority and variable colour is acceptable, choose Sakata 3D RE-HR870 recycled filament.
Not certified for food contact or medical applications. Suitable general ventilation is recommended.
| Print Settings (As reference) | |
| Printing temperature | 190ºC - 220 ºC |
| Heated Bed | No - 60 ºC |
| Layer Fan | Yes, highly recommended. |
| Material | PLA Ingeo 3D870 |