MAR MR-EasePA12-CF Carbon Fiber Reinforced 3D Printing Consumables Surface Quality and High Strength
MAR MR-EasePA12-CF Carbon Fiber Reinforced 3D Printing Consumables Surface Quality and High Strength
Regular price
$74.38 USD
Regular price
$87.50 USD
Sale price
$74.38 USD
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MAR-MR-EasePA12-CF Carbon Fiber Reinforced 3D Printing Consumables Surface Quality and High Strength
Specification:
Model No | MR-EasePA12-CF | Cable Net Weight | 1kg |
Color | Black | Nozzle Temperature | 280-300℃ |
Bed Temp | 40-70℃ | Print Speed |
30-120mm/s |
Bed | PEI film or coating with PVP glue | Fan | Off |
Cable Size | 1.75mm | Feature | High flowability hardness |
Product Description:
MAR-MR-EasePA12-CF is specially developed for FDM 3D printing process, and its substrate material is PA12 long-chain nylon, which has low density, low moisture absorption, high strength, high abrasion resistance, excellent chemical resistance and high heat resistance. It also has good dimensional stability, no warpage and no shrinkage during the printing process, and can be used with Green Quick-Remove support material to solve the problem of poor molding effect on the support surface of complex models.
Material Properties:
Property |
Testing method |
Typical value |
Density |
ISO 1183 |
1.06 g/cm³ |
Water absorption |
ISO 62: Method 1 |
0.6 % |
Melting Temperature |
ISO 11357 |
167℃ |
Melt index |
260℃, 2.16kg |
11 |
Determination of temperature |
ISO 75: Method A |
105℃ (1.80MPa) |
ISO 75: Method B |
125℃ (0.45MPa) |
|
Tensile strength(X-Y) |
ISO 527 |
74.48±2.85 MPa |
Young’s modulus(X-Y) |
3113.73±349.0 MPa |
|
Elongation at break (X-Y) |
3.84±0.20 % |
|
Bending strength (X-Y) |
ISO 178 |
116.4±4.17 MPa |
Bending modulus (X-Y) |
3603.79±353.81 MPa |
|
Charpy impact strength (X-Y) |
ISO 179 |
8.03±0.66 KJ/㎡ |
Single shell Z-axis tensile strength |
Custom method: Vase mode/ Nozzle size 0.6mm/Layer height 0.3mm/ Layer time 20s |
31.98 ± 1.96 MPa |
Specimens printed under the following conditions: Nozzle temp 300°C, Bed temp 80℃, Print speed 45mm/s, Infill 100%, Infill angle ±45°
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