Fiberon™ PA612-CF15

比PA6吸湿性更低
比PA12更强韧

Description

Fiberon™PA612-CF15是一款碳纤维增强的长链共聚酰胺线材。得益于其化学结构,与PA6/66和PA6基材料相比,该产品的湿气敏感性更低,机械性能优于PA12基材料。此外,碳纤维增强和Warpfree™(防翘曲™)技术提高了使用该材料生产的打印件的尺寸稳定性。

 

Fiberon™PA612-CF15与PolyMidePA612-CF配方相同,但Fiberon™PA612-CF15打印出的黑色可能略深。

低湿气敏感性
卓越的机械性能
可靠性高

Characteristics

Printing Temperature:

250˚C - 300˚C

Bed Temperature:

25˚C - 50˚C

Printing Speed:

30mm/s -60mm/s

Fan:

OFF

Direct Drive Retraction Distance:

3mm

Direct Drive Retraction Speed:

40mm/s

Indirect Drive Retraction Distance:

6mm

Indirect Drive Retraction Speed:

60mm/s

Drying Settings:

100˚C for 8h

Dry Settings Notes:

(Only if the material has absorbed moisture)

Annealing:

80˚C for 6h

Colors

Colors

No SKUs found!

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Series

Specifications

Fiberon™ PA612-CF15

print
settings

Printing Temperature:
250˚C - 300˚C
Bed Temperature:
25˚C - 50˚C
Printing Speed:
30mm/s -60mm/s
Fan:
OFF
Direct Drive Retraction Distance:
3mm
Direct Drive Retraction Speed:
40mm/s
Indirect Drive Retraction Distance:
6mm
Indirect Drive Retraction Speed:
60mm/s
Annealing:
80˚C for 6 h
Recommended Support Materials:
PolySupport™ for PA12
Dry Settings:
100˚C for 8h
(Only if the material has absorbed moisture)

MEchanical Properties

(XY)Young's Modulus (MPa):
4735.7 ± 87.8 MPa
ISO 527, GB/T 1040
(Z)Young's Modulus (MPa):
2085.8 ± 91.7 MPa
ISO 527, GB/T 1040
(XY)Tensile Strength:
86.0 ± 0.9 MPa
ISO 527, GB/T 1040
(Z)Tensile Strength:
29.9 ± 2.1 MPa
ISO 527, GB/T 1040
(XY)Elongation at break(%):
2.8 ± 0.1 %
ISO 527, GB/T 1040
(Z)Elongation at break(%)
1.7 ± 0.1 %
ISO 527, GB/T 1040
(XY)Bending Modulus (MPa):
4331.2 ± 90.0 MPa
ISO 178, GB/T 9341
(XY)Bending Strength (MPa):
125.1 ± 2.6 MPa
ISO 178, GB/T 9341
(XY)Charpy Impact Strength:
6.8 ± 0.3 kJ/m2
ISO 179, GB/T 1043

Thermal Properties

Glass Transition Temperature:
N/A
DSC, 10°C/min
Melting Temperature:
N/A
DSC, 10°C/min
Heat Deflection Temperature
(1.8MPa):
114.3 °C
ISO 75 1.8MPa
Heat Deflection Temperature
(0.45MPa)
175.1 °C
ISO 75 0.45MPa

Material Properties

Technology

Warp-Free technology

Fiber adhesion technology

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