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FusRock — Industrial FDM Materials Solution
Date/Revised: 2023-07-01 Version No: 5.1
ASA

ASA has excellent all-round properties, featuring minimal odor and UV resistance. It is an alternative to ABS filaments due to its similar physical and mechanical properties with ABS. FusFree™ S-Multi Quick-Remove Support Material is a good support material for ASA, and it solves the question of poor support surface quality when ASA works as a self-support material.

Product highlights

Low Odor

FusFun™ ASA gives out minimal odor compared with other traditional ABS filaments during printing. It is more suitable for 3D printing hobbyists.

UV Resistance

FusFun™ ASA can resist material degradation, aging and color fading which are caused by UV. It is a good choice for outdoor application with its excellent aging resistance and weather resistance. Its aging resistance can be 10 times higher than that of traditional ABS filaments.

Product introduction

ASA has excellent all-round properties, featuring minimal odor and UV resistance. It is an alternative to ABS filaments due to its similar physical and mechanical properties with ABS. FusFree™ S-Multi Quick-Remove Support Material is a good support material for ASA, and it solves the question of poor support surface quality when ASA works as a self-support material.

Product details

Parameter Value / range
Color Natural, White, Black, Red, Yellow, Grey, Blue
Filament Ø 1.75 mm
Net weight 1 kg

Material properties

Physical properties

Property Test method Typical value
Density ISO 1183 1.07 g/cm³
Melt index - 250 g/10min
Glass transition temperature ISO 11357 98 °C

Thermal properties

Property Test method Unit Typical value
-

Mechanical properties

Property Test method Unit Typical value
Tensile Modulus XY ISO527 MPa 2317 ± 246.0
Tensile Break Strength XY ISO527 MPa 32.23 ± 1.13
Elongation at Break XY ISO527 % 5.2 ± 1.40
Flexural Strength XY ISO178 MPa 64.49 ± 1.3
Flexural Modulus XY ISO178 MPa 2399 ± 147
Notched Impact XY ISO179 kJ/m² 12.9 ± 0.9
Tensile Strength Z ISO527 MPa 27.87 ± 0.42
Tensile Modulus Z ISO527 MPa 2037 ± 64.0
Elongation at Break Z ISO527 % 2.43 ± 0.27

Printed specimen parameters:Specimens printed under the following conditions: Nozzle size 0.4mm,Nozzle temp 250°C, Bed temp 105°C, Print speed 50mm/s, Infill 100%, Infill angle ±45°

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