h2.BASF { color: #004a96; margin: 5px 0px 20px; } h3.BASF{ text-align: center; color: #004a96; margin: 10px 0px 15px; } h4.BASF { color: #21a0d2; margin: 5px 0px 10px; } .boxes { background-color: #21a0d2; color: #fff; border: 20px solid #f7f7f7; } a.BASF { color: white; } ul.BASF { padding-left: 40px; line-height: 1.5; } Ultrafuse® ABS ABS is the second most used 3D printing material Strong, flexible and has a high heat resistance. ABS is a preferred plastic for engineers and professional applications. ABS can be smoothened with acetone. To make a proper 3D print with ABS you will need a heated print bed. The filament is available in 9 colors. Benefits at a Glance Long life span Very tough High wear and tear Can be used for working parts Chemical resistance Example Applications Functional prototypes Chemical environment Reasonable heat resistance Material Properties Tensile Strength (MPa): 21.3 (ZX), 36.3 (XY) Flexural Modulus (MPa): 1587 (ZX), 1767 (XZ), 1833 (XY) Elongation at Break: 1.8 % (ZX), 7.4 % (XY) Impact Strength Izod notched (kJ/m2): 3.5 (ZX), 18.9 (XZ), 18.8 (XY) Impact Strength Izod unnotched (kJ/m2): 7.2 (ZX), 35.7 (XZ), 40.0 (XY) HDT @ 0.45 MPa: 96 oC Printing Guidelines Nozzle Temperature: 240-260 °C Build Chamber Temperature: - Bed Temperature: 90 - 110 °C Bed Material: Tape, Spray, Glue Nozzle Diameter: ≥ 0.4 mm Print Speed: 40-80 mm / s Next Steps Printing Profiles Ultimaker Raised 3D Prusa BCN3D Material Details Techincal Data Sheet Saftey Data Sheet