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3D printing with PLA Marble filaments can be a rewarding experience, but it also comes with its own set of challenges. Here are some valuable tips and techniques to help you achieve the best results.
Before starting a print, it's crucial to properly calibrate your 3D printer. This includes calibrating the extruder to ensure accurate filament flow, leveling the print bed for proper adhesion, and adjusting the temperature settings according to the recommended range of the PLA Marble filament. A well - calibrated printer will reduce the chances of common printing issues such as under - extrusion, over - extrusion, and warping.
When it comes to the printing process, start with a slow printing speed, especially when printing the first few layers. This allows the filament to adhere better to the print bed and reduces the risk of the print detaching. As the print progresses and the structure becomes more stable, you can gradually increase the printing speed to save time. However, be careful not to increase the speed too much, as this can lead to poor layer adhesion and a rough surface finish.
To enhance the marbling effect of your PLA Marble prints, consider using a slicer software with advanced settings. Some slicers allow you to adjust the flow rate, layer height, and infill pattern, which can all impact the appearance of the marbling. Experiment with different settings to find the combination that creates the most visually appealing marbling effect for your project.
Proper filament handling is also essential. Store your PLA Marble filaments in a dry, cool place to prevent moisture absorption, which can cause the filament to become brittle and lead to printing issues. If your filament has absorbed moisture, you can dry it using a filament dryer or an oven at a low temperature (usually around 50 - 60°C) for a few hours before printing.
Another useful technique is to use a raft or brim when printing large or complex models. A raft provides an extra layer of support between the print bed and the model, improving adhesion and reducing the risk of warping. A brim, on the other hand, adds a thin layer of material around the base of the model, increasing the contact area with the print bed and also helping to prevent warping.
Finally, post - processing your 3D prints can significantly enhance their appearance. Sanding, polishing, and painting can be used to smooth out the surface, highlight the marbling effect, and add a professional finish to your PLA Marble 3D prints. By following these tips and techniques, you can master the art of 3D printing with PLA Marble filaments and create stunning, high - quality prints.
3D printing with PLA Marble filaments can be a rewarding experience, but it also comes with its own set of challenges. Here are some valuable tips and techniques to help you achieve the best results.
Before starting a print, it's crucial to properly calibrate your 3D printer. This includes calibrating the extruder to ensure accurate filament flow, leveling the print bed for proper adhesion, and adjusting the temperature settings according to the recommended range of the PLA Marble filament. A well - calibrated printer will reduce the chances of common printing issues such as under - extrusion, over - extrusion, and warping.
When it comes to the printing process, start with a slow printing speed, especially when printing the first few layers. This allows the filament to adhere better to the print bed and reduces the risk of the print detaching. As the print progresses and the structure becomes more stable, you can gradually increase the printing speed to save time. However, be careful not to increase the speed too much, as this can lead to poor layer adhesion and a rough surface finish.
To enhance the marbling effect of your PLA Marble prints, consider using a slicer software with advanced settings. Some slicers allow you to adjust the flow rate, layer height, and infill pattern, which can all impact the appearance of the marbling. Experiment with different settings to find the combination that creates the most visually appealing marbling effect for your project.
Proper filament handling is also essential. Store your PLA Marble filaments in a dry, cool place to prevent moisture absorption, which can cause the filament to become brittle and lead to printing issues. If your filament has absorbed moisture, you can dry it using a filament dryer or an oven at a low temperature (usually around 50 - 60°C) for a few hours before printing.
Another useful technique is to use a raft or brim when printing large or complex models. A raft provides an extra layer of support between the print bed and the model, improving adhesion and reducing the risk of warping. A brim, on the other hand, adds a thin layer of material around the base of the model, increasing the contact area with the print bed and also helping to prevent warping.
Finally, post - processing your 3D prints can significantly enhance their appearance. Sanding, polishing, and painting can be used to smooth out the surface, highlight the marbling effect, and add a professional finish to your PLA Marble 3D prints. By following these tips and techniques, you can master the art of 3D printing with PLA Marble filaments and create stunning, high - quality prints.
Printing Parameters
Description | Data | Desciption | Data |
Nozzle Temperature | 190—230℃ | Heated bed Temperature | 50-60℃ |
Printing Platform Material | Soft Magnetic Sticker | Printing Platform Surface Treatment | No Processing Required |
Bottom Value Sparation Distance | 0.4-0.6 | Withdrawal Distance | 1mm |
Environment Temperature | Room temperature | Withdrawal Speed | 50mm/s |
Recommended Support Material | PVA | Drying Temperature | 50℃ |
Printing Speed | 40--250 mm/s | Cooling Fan | 100% |
Suitable for all FDM 3D Printers / 3D Printing Machines |
Physical Properties
Properties | Testing method | Value |
Density | ASTM D792 | @23℃ 1.25g/cm3 |
Melt Flow Index | ASTM D1238 | 190℃/2.16kg 9g/10min |
Flame Properties
Properties | Testing method | Value |
Flame Retardance | UL94 | @1.5mm HB |
Thermal Performance
Properties | Testing Method | Value | |
Glass Transsition | ASTM D7426 | @10℃/min 60.9℃ | |
Melting Temperature | ASTM D7426 | @10℃/min 164℃ | |
Decomposition Temperature | ASTM E2402 | @20℃/min ≥364℃ | |
Cofficient of Thermal Expansion | ASTM E831 | 101×10-06 ㎛(m· ℃) | |
Shrinking Percentage | ASTM D955 | @23℃ 0.1-0.3% | |
Vicat Softening Temperature | ASTM D1525 | 5kg,50℃/h 54℃ | |
Heat Distortion Temperature | ASTM D648 | 0.45Mpa/53℃ |
Mechanical Performance
Printing Direction | Testing Standard | Data |
Tensile Strength | ASTM D638 | @50mm/min 60.6Mpa |
Elongation at break | ASTM D638 | @50mm/min 6.3% |
Flexural Strength | ASTM D790 | @2mm/min 65Mpa |
Flexural Modulus | ASTM D790 | @2mm/min 1895Mpa |
Charpy Impact Strength with Notched | ASTM D256 | @3.2mm 33J/㎡ |
Young Modulus | ASTM D638 | @1mm/min 2760Mpa |
Chemical Resistance
Item | Grade |
Weak Acids Affect pH3-6 | Good |
Strong Acids Affect pH<3 | Poor |
Weak Base Affect pH8-10 | Good |
Strong Base Affect pH>10 | Poor |
Deionized Water | Good |
Athyl Alcohol | Average |
Acetone | Poor |
Gasoline | Good |
Ether | Good |
Printing Parameters
Description | Data | Desciption | Data |
Nozzle Temperature | 190—230℃ | Heated bed Temperature | 50-60℃ |
Printing Platform Material | Soft Magnetic Sticker | Printing Platform Surface Treatment | No Processing Required |
Bottom Value Sparation Distance | 0.4-0.6 | Withdrawal Distance | 1mm |
Environment Temperature | Room temperature | Withdrawal Speed | 50mm/s |
Recommended Support Material | PVA | Drying Temperature | 50℃ |
Printing Speed | 40--250 mm/s | Cooling Fan | 100% |
Suitable for all FDM 3D Printers / 3D Printing Machines |
Physical Properties
Properties | Testing method | Value |
Density | ASTM D792 | @23℃ 1.25g/cm3 |
Melt Flow Index | ASTM D1238 | 190℃/2.16kg 9g/10min |
Flame Properties
Properties | Testing method | Value |
Flame Retardance | UL94 | @1.5mm HB |
Thermal Performance
Properties | Testing Method | Value | |
Glass Transsition | ASTM D7426 | @10℃/min 60.9℃ | |
Melting Temperature | ASTM D7426 | @10℃/min 164℃ | |
Decomposition Temperature | ASTM E2402 | @20℃/min ≥364℃ | |
Cofficient of Thermal Expansion | ASTM E831 | 101×10-06 ㎛(m· ℃) | |
Shrinking Percentage | ASTM D955 | @23℃ 0.1-0.3% | |
Vicat Softening Temperature | ASTM D1525 | 5kg,50℃/h 54℃ | |
Heat Distortion Temperature | ASTM D648 | 0.45Mpa/53℃ |
Mechanical Performance
Printing Direction | Testing Standard | Data |
Tensile Strength | ASTM D638 | @50mm/min 60.6Mpa |
Elongation at break | ASTM D638 | @50mm/min 6.3% |
Flexural Strength | ASTM D790 | @2mm/min 65Mpa |
Flexural Modulus | ASTM D790 | @2mm/min 1895Mpa |
Charpy Impact Strength with Notched | ASTM D256 | @3.2mm 33J/㎡ |
Young Modulus | ASTM D638 | @1mm/min 2760Mpa |
Chemical Resistance
Item | Grade |
Weak Acids Affect pH3-6 | Good |
Strong Acids Affect pH<3 | Poor |
Weak Base Affect pH8-10 | Good |
Strong Base Affect pH>10 | Poor |
Deionized Water | Good |
Athyl Alcohol | Average |
Acetone | Poor |
Gasoline | Good |
Ether | Good |