ABSeSUN
Compare with other ABS filaments
Find the best filament for your project
* Affiliate link: We may earn a commission if you purchase through this link – at no extra cost to you. Learn more
* Prices include VAT, plus shipping. We may earn a commission if you purchase through these links – at no extra cost to you. Last updated recently.
Prices may change. Historical data is for reference only.
No reviews yet
eSun ABS+ Filament in Pink is an enhanced version of classic ABS plastic, specifically engineered for 3D printing. Compared to standard ABS, ABS+ offers reduced warping and improved bed adhesion, making large prints significantly easier. This filament is characterized by high toughness, heat resistance, and mechanical strength, making it ideal for functional parts and technical applications. The recommended printing temperature ranges from 220°C to 250°C, while the bed temperature should be between 80°C and 100°C. For optimal results, a heated enclosure is recommended, although ABS+ delivers satisfactory results in open chambers as well. Strengths include good flow properties and a smooth print surface, while limitations include the need for adequate ventilation due to fumes at high temperatures. Typical applications include mechanical parts, casings, prototypes, and functional parts requiring higher heat resistance than PLA. The vibrant pink color also ensures attractive visual results for decorative projects.
Material TypeThe base polymer type determines printability, strength, flexibility, and heat resistance
ABS
Print TemperatureRecommended nozzle temperature range. Stay within range for best layer adhesion and surface quality
220°C - 250°C
Bed TemperatureHeated bed temperature to prevent warping. Some materials like PLA can print without a heated bed
80°C - 100°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)
1g
DensityMaterial density affects part weight. Higher density = heavier prints for the same volume
1.04 g/cm³