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PLA Basic 3D Printing Filament PLA Basic 3D Printing Filament
PLA Basic 3D Printer Filament PLA Basic 3D Printer Filament
PLA Basic 3D Printer Filament PLA Basic 3D Printer Filament
PLA Basic 3D Printer Filament PLA Basic 3D Printer Filament

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Biodegradable PLA Filament for 3D Printing

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Compared to traditional PLA, Aliz PLA Basic improves impact resistance (toughening); High bonding strength (exceptional layer adhesion); Not easy to draw & stringing when printing; Increased service cycle life: The biodegradable cycle of PLA was delayed).
 
Diameter: 1.75mm/2.85mm
Weight of each roll:1kg/2.5kg
Color:
Availability:
In the era of heightened environmental awareness, our biodegradable PLA filament for 3D printing emerges as the eco - friendly choice that aligns perfectly with the values of the European and American markets. Derived from renewable resources such as corn starch, this filament offers a sustainable alternative to traditional petroleum - based plastics.
When discarded, it breaks down naturally in composting environments, reducing the burden on landfills and minimizing the ecological footprint. This makes it an ideal option for schools, universities, and environmentally - conscious businesses in Europe and America that are looking to incorporate 3D printing into their operations without compromising on their green initiatives.
Moreover, the biodegradable PLA filament doesn't sacrifice performance for sustainability. It boasts excellent printability, with a smooth extrusion process that results in detailed and accurate 3D prints. Whether you're creating small prototypes, artistic sculptures, or functional parts, this filament ensures a high - quality finish. The wide range of available colors also allows for creative freedom, enabling users to bring their designs to life in vibrant hues while still maintaining their commitment to the environment.

PLA Basic Product Description 2 1500x1000

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



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Jiangyin Longshan Synthetic Materials Co., Ltd. is a modified plastics company integrating R&D, production and sales, specializing in the development of medium and high-end modified materials.

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