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Using PLA Marble in DIY projects offers a plethora of benefits that can enhance the creativity and quality of your handmade items.
One of the most obvious advantages is the aesthetic appeal. The unique marbling effect of PLA Marble filaments adds a touch of elegance and sophistication to any DIY project. Whether you're creating jewelry, home decor, or small figurines, the natural - looking marble patterns can transform a simple object into a work of art. The wide range of color combinations available allows you to match the style of your project, whether it's a classic, neutral - toned piece or a bold, colorful creation.
PLA Marble is also relatively easy to work with, making it an ideal choice for DIY enthusiasts of all skill levels. It has a low melting point, which means it can be easily extruded through 3D printers or heated tools for other DIY techniques. The material adheres well to different surfaces, reducing the need for additional adhesives in many cases. This ease of use allows you to quickly bring your creative ideas to life without getting frustrated by complex processes.
Another benefit is the durability of PLA Marble. Once printed or formed, it has sufficient strength to withstand normal handling and use in most DIY projects. For example, if you're making a keychain or a small storage box, the PLA Marble material will hold up well over time. It's also resistant to moisture to a certain extent, protecting your DIY items from damage in normal indoor environments.
In addition, using PLA Marble in DIY projects is an environmentally friendly choice. PLA (polylactic acid) is a biodegradable thermoplastic made from renewable resources such as corn starch or sugarcane. By choosing PLA Marble, you're reducing your environmental impact compared to using non - biodegradable materials. This makes it a great option for those who are conscious about sustainability and want to create DIY projects with a clear conscience.
Finally, PLA Marble offers a high level of customization. With 3D printing, you can create unique shapes and designs that are tailored specifically to your needs. You can also experiment with different marbling patterns and color combinations to make each DIY project truly one - of - a - kind. Whether you're making gifts for friends and family or creating items for personal use, the ability to customize with PLA Marble adds a special touch that makes your DIY projects stand out.
Using PLA Marble in DIY projects offers a plethora of benefits that can enhance the creativity and quality of your handmade items.
One of the most obvious advantages is the aesthetic appeal. The unique marbling effect of PLA Marble filaments adds a touch of elegance and sophistication to any DIY project. Whether you're creating jewelry, home decor, or small figurines, the natural - looking marble patterns can transform a simple object into a work of art. The wide range of color combinations available allows you to match the style of your project, whether it's a classic, neutral - toned piece or a bold, colorful creation.
PLA Marble is also relatively easy to work with, making it an ideal choice for DIY enthusiasts of all skill levels. It has a low melting point, which means it can be easily extruded through 3D printers or heated tools for other DIY techniques. The material adheres well to different surfaces, reducing the need for additional adhesives in many cases. This ease of use allows you to quickly bring your creative ideas to life without getting frustrated by complex processes.
Another benefit is the durability of PLA Marble. Once printed or formed, it has sufficient strength to withstand normal handling and use in most DIY projects. For example, if you're making a keychain or a small storage box, the PLA Marble material will hold up well over time. It's also resistant to moisture to a certain extent, protecting your DIY items from damage in normal indoor environments.
In addition, using PLA Marble in DIY projects is an environmentally friendly choice. PLA (polylactic acid) is a biodegradable thermoplastic made from renewable resources such as corn starch or sugarcane. By choosing PLA Marble, you're reducing your environmental impact compared to using non - biodegradable materials. This makes it a great option for those who are conscious about sustainability and want to create DIY projects with a clear conscience.
Finally, PLA Marble offers a high level of customization. With 3D printing, you can create unique shapes and designs that are tailored specifically to your needs. You can also experiment with different marbling patterns and color combinations to make each DIY project truly one - of - a - kind. Whether you're making gifts for friends and family or creating items for personal use, the ability to customize with PLA Marble adds a special touch that makes your DIY projects stand out.
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 |