
Original: $15.13
-70%$15.13
$4.54The Story
eSun 1.75mm 1kg Roll PLA-Matte Filament Lilac Color
The eSun 1.75mm PLA-Matte Filament in Lilac is a premium 3D printer filament designed for eco-conscious makers. Crafted with an environmentally friendly approach, the spool is made from recycled PETG, ABS, and PLA waste, while the packaging uses recyclable paper.
This matte PLA offers a delicate finish that reduces visible layer lines, delivering clean and professional-looking prints. With its strong durability, smooth extrusion, and clog-free performance, it ensures reliable results for long printing sessions.
Perfect for early-stage concept models and rapid prototyping, this filament also provides 21% more output compared to standard matte PLA filaments—making it both efficient and sustainable.
Features:
- Non-harmful, non-toxic, and eco-friendly
- Good material hardness and strength.
- appropriate for complex models.
- Low material shrinkage rate and consistent diameter.

Details & Craftsmanship
Every detail has been carefully considered to bring you the perfect product.

Details & Craftsmanship
Every detail has been carefully considered to bring you the perfect product.
Description
eSun 1.75mm 1kg Roll PLA-Matte Filament Lilac Color
The eSun 1.75mm PLA-Matte Filament in Lilac is a premium 3D printer filament designed for eco-conscious makers. Crafted with an environmentally friendly approach, the spool is made from recycled PETG, ABS, and PLA waste, while the packaging uses recyclable paper.
This matte PLA offers a delicate finish that reduces visible layer lines, delivering clean and professional-looking prints. With its strong durability, smooth extrusion, and clog-free performance, it ensures reliable results for long printing sessions.
Perfect for early-stage concept models and rapid prototyping, this filament also provides 21% more output compared to standard matte PLA filaments—making it both efficient and sustainable.
Features:
- Non-harmful, non-toxic, and eco-friendly
- Good material hardness and strength.
- appropriate for complex models.
- Low material shrinkage rate and consistent diameter.

















