Availability: | |
---|---|
Creating sculptures with 3D printing using PLA Marble requires careful consideration when choosing the right filament. Here are the key aspects to keep in mind.
The aesthetic appeal is of utmost importance. Different PLA Marble filaments offer various color combinations and marbling patterns. For sculptures, you want to choose a filament that enhances the overall look and mood of your piece. If you're creating a realistic marble - like sculpture, look for filaments with a more natural - looking white and gray marbling. On the other hand, if you're going for a more artistic or abstract look, filaments with bold, vibrant colors and unique marbling effects can be a great choice.
The mechanical properties of the PLA Marble filament also play a crucial role. Sculptures often need to have good strength and durability to withstand handling and display. A filament with higher tensile strength and impact resistance will ensure that your sculpture doesn't break or chip easily. Additionally, consider the flexibility of the filament. Some sculptures may require a certain degree of flexibility to achieve the desired shape or movement, while others need a more rigid material.
The printability of the filament is another essential factor. Since sculptures can have complex geometries and fine details, you need a PLA Marble filament that can be easily extruded and adhere well to the print bed. Filaments with a smooth flow and good layer adhesion will help you create detailed and accurate sculptures. Check the recommended printing temperature range and printing speed of the filament to ensure compatibility with your 3D printer and the specific requirements of your sculpture project.
The diameter accuracy of the PLA Marble filament is also vital. Inconsistent diameters can lead to uneven layer thickness and poor surface finish, which can significantly affect the quality of your sculpture. Opt for filaments with a high - precision diameter, preferably within a tolerance of ± 0.02mm, to ensure a smooth and consistent printing process.
Finally, consider the cost - effectiveness. While you want a high - quality PLA Marble filament for your sculptures, it's also important to stay within your budget. Compare the prices of different filaments from various brands, taking into account their quality and performance. Sometimes, buying in bulk can get you a better price per unit. By carefully evaluating these factors, you can choose the right PLA Marble filament that will bring your sculpture ideas to life with stunning results. Aliz PLA Marble is a good choose.
Creating sculptures with 3D printing using PLA Marble requires careful consideration when choosing the right filament. Here are the key aspects to keep in mind.
The aesthetic appeal is of utmost importance. Different PLA Marble filaments offer various color combinations and marbling patterns. For sculptures, you want to choose a filament that enhances the overall look and mood of your piece. If you're creating a realistic marble - like sculpture, look for filaments with a more natural - looking white and gray marbling. On the other hand, if you're going for a more artistic or abstract look, filaments with bold, vibrant colors and unique marbling effects can be a great choice.
The mechanical properties of the PLA Marble filament also play a crucial role. Sculptures often need to have good strength and durability to withstand handling and display. A filament with higher tensile strength and impact resistance will ensure that your sculpture doesn't break or chip easily. Additionally, consider the flexibility of the filament. Some sculptures may require a certain degree of flexibility to achieve the desired shape or movement, while others need a more rigid material.
The printability of the filament is another essential factor. Since sculptures can have complex geometries and fine details, you need a PLA Marble filament that can be easily extruded and adhere well to the print bed. Filaments with a smooth flow and good layer adhesion will help you create detailed and accurate sculptures. Check the recommended printing temperature range and printing speed of the filament to ensure compatibility with your 3D printer and the specific requirements of your sculpture project.
The diameter accuracy of the PLA Marble filament is also vital. Inconsistent diameters can lead to uneven layer thickness and poor surface finish, which can significantly affect the quality of your sculpture. Opt for filaments with a high - precision diameter, preferably within a tolerance of ± 0.02mm, to ensure a smooth and consistent printing process.
Finally, consider the cost - effectiveness. While you want a high - quality PLA Marble filament for your sculptures, it's also important to stay within your budget. Compare the prices of different filaments from various brands, taking into account their quality and performance. Sometimes, buying in bulk can get you a better price per unit. By carefully evaluating these factors, you can choose the right PLA Marble filament that will bring your sculpture ideas to life with stunning results. Aliz PLA Marble is a good choose.
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 |