Skip to product information
1 of 2

SUNLU PLA META Black Filament | High-Speed HS Printing | 1.75mm 1KG for 3D Printer/Printing

SUNLU PLA META Black Filament | High-Speed HS Printing | 1.75mm 1KG for 3D Printer/Printing

27 in stock

Regular price $21.90 SGD
Regular price $23.90 SGD Sale price $21.90 SGD
Sale Sold out

Authorised Brand Agent of SUNLU - Authorization No.: ZHSL-20240415. We are ACRA, GEBIZ registered. You may contact us directly at hello@alttabelectronics.com.

PLA Meta also owns its unique advantage with that of as low as 185-195°C, which is an impressive and significant improvement compared to that of 210-230°C of PLA+, and thus PLA Meta takes on better melt fluidity at same printing temperature, facilitating better extrusion stability in 3D printers at a higher printing speed. Moreover, the utilization of thinner layer thickness becomes feasible, due to a lower minimum extrusion temperature, enabling the efficient extrusion and precise deposition of thinner layers, such as 0.2mm, even at elevated printing speeds.

Advantages:

- Superior fluidity of PLA Meta can achieve an ultra-fine layer thickness of 0.2mm and a smoother surface, more suitable for printing complex and intricate components.

- Superior fluidity also make it more compatible with high speed 3d printing. - Lower thermal expansion coefficient and higher dimensional stability of PLA Meta can maximize the precision and shape consistency of prints.

- Exceedingly improved elongation at break makes it tougher and more resilient than PLA+, enabling its high performance in applications that may be subjected to large strains, impacts, or delamination. - It offers a variety of standard colors and custom color options, with many more choices than PLA+.

Disadvantages:

- Higher cost. PLA Meta is more expensive than SUNLU PLA+, as modified high-performance materials. This may limit their application in some cost-sensitive areas.

- PLA+ has a better performance in mechanical strength and rigidity, which represents heightened strength and stable shape retention. It is more suitable for circumstances where the shape of the printed object needs to remain stable under a high load.

View full details