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eSUN ePLA-CF 3D Filament 1.75mm 1kg
eSun ePLA-CF Carbon Fibre PLA is a new material integrating German-imported short-cut carbon fibers into PLA.
eSun ePLA-LW Light Weight PLA is a new material specifically designed for printing RC Aeroplanes and other lightweight items.The foaming ratio is up to 220%!
PLA-LW (Lightweight PLA) is a material specially developed by eSUN for the fields of model airplanes, drones, and COSPLAY. Compared with WOOD Filaments, ePLA-LW has increased interlayer bonding, and the foaming rate and strength can be controlled by adjusting the printing temperature.
Use active foaming technology to achieve lightweight, low-density PLA parts. The foaming volume ratio is up to 220%! When printing the same volume model, 1 roll of ePLA-LW can be used as 2.2 rolls of ordinary PLA! In addition, Foaming makes the layered pattern almost invisible, and the surface of the printed item has a matte and delicate finish. At around 210-270°C, this material starts to foam during printing, increasing its volume by nearly 1.2 times! By lowering the extrusion rate by up to 45%, ultra lightweight parts are able to be made!
Under the same model and at the same speed, the use of lightweight PLA enables the model aircraft to have a lighter wing load and a lower stall speed. For models such as airplanes, under the condition of balanced strength, reducing the weight as much as possible can greatly improve the performance of the airplane.
* Low density, up to 0.54g/cm3
* The foaming volume ratio is 220%, and 1 roll of ePLA-LW is equivalent to 2.2 rolls of ordinary PLA
* Free adjustment of strength and foaming ratio
* Excellent surface effect, matte and delicate
* Good adhesion between layers, resistant to explosion and easy to repair
* Easy to paint, strong surface paint adhesion
* Excellent print-ability; large models do not warp and do not need a constant temperature chamber
Physical performance indicators of unfoamed consumables:
3D PRINTING FILAMENT |
Test Method |
ePLA-LW |
Melt Flow Index(g/10min) |
GB/T 3682-2000 |
8.1(190℃/2.16kg) |
Density |
GB/T 1033-86 |
1.2g/cm3 |
IZOD Impact Strength(kJ/㎡) |
GB/T 1843-96 |
8.58kJ/㎡ |
Tensile Strength(MPa) |
GB/T 1040-92 |
32.2MPa |
Elongation at Break(%) |
GB/T 1040-92 |
68.9% |
Flexural Strength(MPa) |
GB/T 9341-2000 |
41.31MPa |
Flexural Modulus(MPa) |
GB/T 9341-2000 |
1701MPa |
Filament |
Wood |
ePLA-LW |
Foaming process |
Foaming during production but not foaming during printing |
No foaming during production, foaming during printing |
Interlayer bonding |
Normal |
Strong |
Density |
0.7 |
Up to 0.54 |
Free adjustment of foaming ratio and strength |
No |
210-270℃ |
Filament |
ePLA-LW |
Recommended printing temperature |
190-270℃ |
Unfoamed printing temperature |
190-210℃ |
Foam printing temperature |
210-270℃ |
Maximum foaming temperature |
270℃ |
Maximum foaming rate (270℃) |
122% |
Lowest extrusion rate (270℃) |
45% |
Bed temperature |
45-60°C/No heating (Masking paper, PVP solid glue, glass board, carbon fiber board, PEI) |
Printing speed |
40-80mm/s |
Note: Printing test conditions: nozzle 190-280℃; layer height 0.2mm; bed 45℃; speed 40mm/s
Temperature/℃ |
200 |
210 |
220 |
230 |
240 |
250 |
260 |
270 |
280 |
Foaming rate/% |
0 |
0 |
11 |
33 |
82 |
100 |
122 |
122 |
82 |
Volume ratio/% |
100 |
100 |
111 |
133 |
182 |
200 |
222 |
222 |
182 |
Extrusion rate/% |
100 |
100 |
90 |
75 |
55 |
50 |
45 |
45 |
55 |
Density/g/cm3 |
1.2 |
1.2 |
1.08 |
0.9 |
0.66 |
0.6 |
0.54 |
0.54 |
0.66 |
speed |
40mm/s |
1. Note that the first layer speed setting is consistent with the actual printing speed, set to 100% of the actual printing speed, turn off the first layer and small area printing speed reduction function, the first layer extrusion rate is consistent with the actual foaming extrusion rate, such as 270 degrees set to 45% of the first layer extrusion rate; if the bed adhesion is too strong, you can set the bottom value when printing.
2. Pay attention to the maximum operating temperature of the printer. Most Teflon tube printers cannot be operated for a long time above 250℃. Long-term printing above this temperature may cause blocking. If the temperature exceeds 250℃, high temperature printers such as metal hoses are required for printing.
3. Yellowing of printed parts after high temperature foaming is a normal phenomenon. Lowering the printing temperature can help alleviate this.
4. Since the ePLA-LW foams continuously in the melting cavity of the high-temperature nozzle, the retraction basically does not work. Stringing is normal during printing. It is recommended to print the rc plane in vase mode to reduce the effect of stringing.
5. Foaming ratio is related to temperature, printing speed, nozzle melting cavity size, pay attention to compare model design wall thickness according to your own printing situation, adjust extrusion rate, temperature, speed and other parameters.
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