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PLA 850 Sakata

PLA-SAKATA-850-WHITE-175-1000
15.91 € 15.91 €
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In stock 23 units available for immediate shipping.
units available for shipping in 5 - 7 days
Available for shipment within 5 - 7 days

Product temporarily out of stock with these characteristics. Select another combination.

Product temporarily out of stock with these characteristics. Select another combination.

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Approximate delivery date: Monday 22 December

The PLA 850 filament from Sakata 3D represents an advanced evolution within the technical PLA for 3D printing segment, combining sustainability, dimensional accuracy, and superior mechanical strength. Manufactured using the renowned PLA Ingeo 3D 850 resin, developed by NatureWorks, this biodegradable material stands out as a high-value solution for demanding FDM additive manufacturing applications.

PLA Ingeo 3D 850: advanced biopolymer for high-end 3D printing

The foundation of PLA 850 lies in the Ingeo 3D 850 resin, an engineering-grade biopolymer specifically designed for functional 3D printing applications. This material is characterized by its high crystallization speed, a key property that significantly enhances the thermal and mechanical stability of printed parts. Compared to conventional PLA, PLA 850 delivers superior technical performance and greater reliability in continuous printing processes.

Video 1: PLA 850 delivers vibrant colors and an outstanding finish. Source: Sakata3D

High thermal and mechanical resistance in high-performance PLA filament

The PLA 850 from Sakata 3D stands out for its enhanced temperature resistance, excellent mechanical properties, and very low thermal shrinkage. These characteristics significantly reduce warping issues in 3D printing, enabling the production of parts with high dimensional accuracy, strong structural stability, and a superior surface finish. In many cases, the material’s stability allows complex geometries to be printed without the need for supports.

Excellent bed adhesion and easy 3D printing

Thanks to its excellent build plate adhesion, PLA 850 does not strictly require a heated bed, although working within a range of 40 °C to 60 °C is recommended to maximize final part quality. The recommended extrusion temperature ranges between 200 °C and 220 °C, ensuring stable, smooth printing and broad compatibility with most FDM 3D printers on the market.

Video 2: A maker shares their experience with Sakata PLA 850 after one year of use. Source: Lucas 3D

PLA filament ideal for prototypes, tooling, and functional parts

PLA 850 is especially well suited for the production of prototypes, tooling, and functional parts that require a higher level of strength and stability than standard PLA can offer. Its balance between ease of printing, durability, and thermal performance makes it a versatile material for professional and technical environments.

Wide color range with high gloss and excellent opacity

Available in more than 40 colors, PLA 850 delivers a high-gloss finish and excellent opacity, features that are especially valued in applications where visual appearance is critical. This broad color selection makes it possible to combine technical performance with a consistent, high-quality aesthetic in every print.

General information

Material PLA
Format 1 kg
Density (D792) 1.24 g/cm³
Filament diameter 1.75 mm
Filament tolerance ± 0.05 mm
Filament length (Ø 1.75 mm) ±335 m / (Ø 2.85 mm) ±110 m

Printing properties

Printing temperature 195-230 ºC
Print bed temperature [Optional] 50 ºC-70 ºC
Chamber temperature
Cooling fan
Recommended printing speed 120 mm/s

Mechanical properties

Izod impact strength (ASTM D256) 118 KJ/m²
Elongation at break (D638) 3.31 %
Tensile strength (D638) 50 MPa
Tensile modulus (D638) 2315 MPa
Flexural strength - MPa
Flexural modulus - MPa
Surface hardness -

Thermal properties

Melting temperature (D3418) 165-180 ºC ºC
Softening temperature - ºC

Specific properties

Transparency

Other

HS Code 3916.9
Spool diameter (outer) 200 mm
Spool diameter (inner hole) 53 mm
Spool width 70 mm

To achieve maximum performance from PLA 850 by Sakata 3D, it is recommended to adjust the nozzle temperature within the range of 195 °C to 220 °C, selecting lower values to prioritize surface detail and higher temperatures to improve flow in high-speed prints or larger parts.

This material offers excellent build plate adhesion, making a heated bed unnecessary, although an optional temperature of 50 °C to 70 °C can provide greater stability for large-format prints. Using the cooling fan at 100 % promotes proper material solidification and takes advantage of its high crystallization speed, improving layer definition, overhangs, and bridges. A layer height between 0.1 mm and 0.3 mm is recommended, allowing the resolution to be adjusted according to the desired balance between surface quality and production time.

A wall thickness of 1.2 mm helps achieve solid and stable parts, while the ability to print at speeds of up to 120 mm/s increases productivity without compromising final quality. The crystallization temperature, ranging between 80 °C and 110 °C, enhances thermal resistance and dimensional stability, delivering superior technical performance compared to conventional PLA.

Featured properties

Printing temperature
195-230 ºC
Filament diameter
1.75 mm
Density
1,24 g/cm³

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