PETGMakerBot
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The chemical resistance of Makerbot Method PETG makes it a preferred material for liquid containers and bottles, and it is also ideal for prototyping these types of products. PETG is also frequently used in research laboratories where chemical resistance is required for functional parts or containers. The first advanced material in the METHOD Specialty Materials line for professionals. PETG is the material of choice for printing high-performance parts that require excellent durability as well as resistance to temperature, moisture, and chemicals. Engineers and designers use PETG to quickly and flexibly produce durable prints that withstand industrial applications such as functional prototypes, fixtures, and end-use parts. Functional prototypes Designers and engineers can create functional prototypes that combine excellent part durability with resistance to temperature, moisture, and chemicals. Machine builders and manufacturing engineers can quickly and flexibly produce durable, custom parts that are heat- and chemical-resistant. Engineers and mechanical designers can produce functional parts for end-use applications that offer durability and flexibility, such as snap fasteners and hinges. Technical Specifications
Material TypeThe base polymer type determines printability, strength, flexibility, and heat resistance
PETG
Print TemperatureRecommended nozzle temperature range. Stay within range for best layer adhesion and surface quality
240°C - 255°C
Bed TemperatureHeated bed temperature to prevent warping. Some materials like PLA can print without a heated bed
70°C - 80°C
Diameter1.75mm is standard, 2.85mm for some printers
1.75 mm
Spool WeightNet weight of filament on the spool. Standard spools are 1kg (1000g)
750g
DensityMaterial density affects part weight. Higher density = heavier prints for the same volume
1.27 g/cm³