Ships from: The UK
ERYONE ABS 1.75mm 3D Printing Filament 1kg Ideal for Hard Wearing Prints
£17.95
£26.95
ERYONE ABS filament is a new material designed to durable and heat resistant prints. It's great for mechanical parts and parts needing a high heat resistance.
Quality is at the heart of ERYONE, Founded in 2018, Headquartered in Shenzhen, the heart of Chinese Electronics, ERYONE benefits from direct access to raw material suppliers and young talent.
Features:
Minimum Tolerance | Low Warping | Ensure Consistent Feeding and Stable PrintsMinimum tolerance and low warping to ensure consistent feeding and stable prints, No clogging, extremely high successful rate, resulting in printed parts that have an outstanding surface finish and are highly precise.
Purest-grade Material | Made in USA
Professional Packaging | Vacuumed SealedERYONE is supplied in a sealed vacuum bag with a desiccant bag to keep it dry and keep out dust and foreign particles, prevent nozzle jams and yield smooth 3D models.
High Compatibility: Compatible with most 3D Printers that support 1.75mm ABS filament.
NOTE: Requires good ventilation during printing due to stronger fumes that are typical with ABS.
Specifications:
Filament Diameter: 1.75mm
Tolerance: ± 0.03mm
Print Temperature: 230-260°C
Heated Bed Temp: 90-110°C
Fan Speed: None to Minimal
Recommended Print Speed 30-60mm/s
Produced mainly from Corn Starch, eco friendly material.
Net Weight: 1kg (inc spool)
Gross Weight: 1.3-1.4kg
FAQ:
Clogging: Clogging is caused by uneven wire diameter or too low a temperature. Clean the nozzle before use and raise the temperature to reduce the chance of clogging.
Stringing: If the temperature is too high, the flow of PLA is too fast, or the feed parameters are not set properly, wire stringing will be caused. Reducing the temperature and speed corrections will solve these issues.
Over Extrusion: Too high a temperature, too slow speed, or nozzle diameter in the section does not match will cause too much extruding at the nozzle outlet, and there will be residual material.