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Our high - quality 1.75mm PLA filament is engineered to meet the rigorous standards of 3D printing enthusiasts and professionals across Europe and America. The 1.75mm diameter is one of the most commonly used specifications in the 3D printing industry, ensuring compatibility with a vast majority of 3D printers on the market.
What truly sets this filament apart is its exceptional quality. Manufactured using advanced production techniques, it features consistent diameter tolerance, which is crucial for smooth and reliable extrusion. This consistency eliminates issues such as jams and uneven layers, resulting in prints that are not only precise but also aesthetically pleasing. The filament has a high melting point, providing good dimensional stability and reducing the risk of warping during the printing process.
Whether you're printing intricate miniatures, large - scale models, or functional components, our high - quality 1.75mm PLA filament delivers outstanding results every time. It adheres well to the print bed, ensuring a strong first layer and a successful print from start to finish. With a wide selection of colors and finishes available, users can choose the perfect option to suit their specific project requirements.
Our high - quality 1.75mm PLA filament is engineered to meet the rigorous standards of 3D printing enthusiasts and professionals across Europe and America. The 1.75mm diameter is one of the most commonly used specifications in the 3D printing industry, ensuring compatibility with a vast majority of 3D printers on the market.
What truly sets this filament apart is its exceptional quality. Manufactured using advanced production techniques, it features consistent diameter tolerance, which is crucial for smooth and reliable extrusion. This consistency eliminates issues such as jams and uneven layers, resulting in prints that are not only precise but also aesthetically pleasing. The filament has a high melting point, providing good dimensional stability and reducing the risk of warping during the printing process.
Whether you're printing intricate miniatures, large - scale models, or functional components, our high - quality 1.75mm PLA filament delivers outstanding results every time. It adheres well to the print bed, ensuring a strong first layer and a successful print from start to finish. With a wide selection of colors and finishes available, users can choose the perfect option to suit their specific project requirements.
Mechanical Properties
Property | Testing Method | Testing Condition | Injection Molding Typical Value | 3D Printing X-Y Axis Typical Value | 3D Printing Z Axis Typical Value | Unit |
Tensile Strength | ISO 527 | 50mm/min | 63.33 | 34.74±4 | 30.34±4 | MPa |
Elongation at Break | ISO 527 | 50mm/min | 3.31 | 5.18±1 | 1.6±0.2 | % |
Tensile Modulus | ISO 527 | 50mm/min | 2408.34 | 2200.4±100 | 2057.5±100 | MPa |
Flexural Strength | ISO 178 | 2mm/min | 91.04 | 58.36±4 | 44.31±4 | MPa |
Flexural Modulus | ISO 178 | 2mm/min | 3646.67 | 2326.67±100 | 2057.5±100 | MPa |
Charpy Impact Strength | ISO 179 | 23℃ | 24.73 | 18±2 | 7.54±1 | KJ/㎡ |
Izod Impact Strength | ISO 180 | 23℃ | 18.1 | 12.66±2 | 6.44±1 | KJ/㎡ |
Physical Properties
Property | Testing Method | Testing Condition | Typical Value | Unit |
Density | ISO 1183 | Immersion | 1.17 | g/cm3 |
Melt Flow index(MFR) | ISO 1133 | 210℃/2.16kg | 2-7 | g/10 min |
Moisture Absorption
Property | Testing Method | Testing Condition | Injection Molding Typical Value | 3D Printing Typical Value | Unit |
Moisture Absorption | ISO 62 | 50%RH*23℃ | 0.5 | 0.6 | % |
Chemical Properties
Property | Testing Result |
Weak Acid Resistance | Not Resistant |
Strong Acid Resistance | Not Resistant |
Weak Base Resistance | Not Resistant |
Strong Base Resistance | Not Resistant |
Organic Solution Resistance | Not Resistant |
Thermal Properties
Property | Testing Method | Testing Condition | Injection Molding Typical Value | 3D Printing X-Y Axis Typical Value | 3D Printing Z Axis Typical Value | Unit |
Glass Transition Temperature | DSC | 10℃/min | 65.5 | ℃ | ||
Crystallization Temperature | DSC | 10℃/min | 107.7 | ℃ | ||
Melting Point | DSC | 10℃/min | 147.8 | ℃ | ||
Distortion Temperature | TGA | 20℃/min | N/A | ℃ | ||
Heat Distortion Temperature | ISO 75 | 0.45MPa | 57.6 | 55.3 | 56.6 | ℃ |
Heat Distortion Temperature | ISO 75 | 1.8MPa | 56.5 | 54.8 | 52.4 | ℃ |
Vicat Softening Temperature | ISO 306 | 50℃/10N | 61.6 | 59.6 | 60 | ℃ |
Recommended 3D Printing Parameters
*Based on 0.4 mm nozzle. Printing conditions may vary with different nozzle diameters
Printing Temperature | 210-230(℃) |
Bed Temperature | 50-60(℃) |
Wall Layers | 2 Layers |
Top and Bottom Layers | 4 Layers |
Infill | 100% |
Ambient Temperature | 25℃ |
Cooling Fan | 0-10% |
Printing Speed | 30 — 50 (mm/s) |
Nozzle Diameter | 0.4 mm |
3DPrinting Actual Parameters
*All specimens must be left at room temperature for 24 hours before testing. The parameters are based on the Bambulab P1S 3D printer.
Printing Temperature | 220(℃) |
Bed Temperature | 55(℃) |
Wall Layers | 2 Layers |
Top and Bottom Layers | 4 Layers |
Infill | 100% |
Ambient Temperature | 25℃ |
Cooling Fan | 10% |
Printing Speed | 50 (mm/s) |
Nozzle Diameter | 0.4 mm |
Mechanical Properties
Property | Testing Method | Testing Condition | Injection Molding Typical Value | 3D Printing X-Y Axis Typical Value | 3D Printing Z Axis Typical Value | Unit |
Tensile Strength | ISO 527 | 50mm/min | 63.33 | 34.74±4 | 30.34±4 | MPa |
Elongation at Break | ISO 527 | 50mm/min | 3.31 | 5.18±1 | 1.6±0.2 | % |
Tensile Modulus | ISO 527 | 50mm/min | 2408.34 | 2200.4±100 | 2057.5±100 | MPa |
Flexural Strength | ISO 178 | 2mm/min | 91.04 | 58.36±4 | 44.31±4 | MPa |
Flexural Modulus | ISO 178 | 2mm/min | 3646.67 | 2326.67±100 | 2057.5±100 | MPa |
Charpy Impact Strength | ISO 179 | 23℃ | 24.73 | 18±2 | 7.54±1 | KJ/㎡ |
Izod Impact Strength | ISO 180 | 23℃ | 18.1 | 12.66±2 | 6.44±1 | KJ/㎡ |
Physical Properties
Property | Testing Method | Testing Condition | Typical Value | Unit |
Density | ISO 1183 | Immersion | 1.17 | g/cm3 |
Melt Flow index(MFR) | ISO 1133 | 210℃/2.16kg | 2-7 | g/10 min |
Moisture Absorption
Property | Testing Method | Testing Condition | Injection Molding Typical Value | 3D Printing Typical Value | Unit |
Moisture Absorption | ISO 62 | 50%RH*23℃ | 0.5 | 0.6 | % |
Chemical Properties
Property | Testing Result |
Weak Acid Resistance | Not Resistant |
Strong Acid Resistance | Not Resistant |
Weak Base Resistance | Not Resistant |
Strong Base Resistance | Not Resistant |
Organic Solution Resistance | Not Resistant |
Thermal Properties
Property | Testing Method | Testing Condition | Injection Molding Typical Value | 3D Printing X-Y Axis Typical Value | 3D Printing Z Axis Typical Value | Unit |
Glass Transition Temperature | DSC | 10℃/min | 65.5 | ℃ | ||
Crystallization Temperature | DSC | 10℃/min | 107.7 | ℃ | ||
Melting Point | DSC | 10℃/min | 147.8 | ℃ | ||
Distortion Temperature | TGA | 20℃/min | N/A | ℃ | ||
Heat Distortion Temperature | ISO 75 | 0.45MPa | 57.6 | 55.3 | 56.6 | ℃ |
Heat Distortion Temperature | ISO 75 | 1.8MPa | 56.5 | 54.8 | 52.4 | ℃ |
Vicat Softening Temperature | ISO 306 | 50℃/10N | 61.6 | 59.6 | 60 | ℃ |
Recommended 3D Printing Parameters
*Based on 0.4 mm nozzle. Printing conditions may vary with different nozzle diameters
Printing Temperature | 210-230(℃) |
Bed Temperature | 50-60(℃) |
Wall Layers | 2 Layers |
Top and Bottom Layers | 4 Layers |
Infill | 100% |
Ambient Temperature | 25℃ |
Cooling Fan | 0-10% |
Printing Speed | 30 — 50 (mm/s) |
Nozzle Diameter | 0.4 mm |
3DPrinting Actual Parameters
*All specimens must be left at room temperature for 24 hours before testing. The parameters are based on the Bambulab P1S 3D printer.
Printing Temperature | 220(℃) |
Bed Temperature | 55(℃) |
Wall Layers | 2 Layers |
Top and Bottom Layers | 4 Layers |
Infill | 100% |
Ambient Temperature | 25℃ |
Cooling Fan | 10% |
Printing Speed | 50 (mm/s) |
Nozzle Diameter | 0.4 mm |