• 3D Printing Material JSPA 12BK
  • 3D Printing Material JSPA 12BK
  • 3D Printing Material JSPA 12BK
  • 3D Printing Material JSPA 12BK
  • 3D Printing Material JSPA 12BK
  • 3D Printing Material JSPA 12BK
  • 3D Printing Material JSPA 12BK
  • 3D Printing Material JSPA 12BK
  • 3D Printing Material JSPA 12BK
  • 3D Printing Material JSPA 12BK
  • 3D Printing Material JSPA 12BK
  • 3D Printing Material JSPA 12BK
  • 3D Printing Material JSPA 12BK
  • 3D Printing Material JSPA 12BK

3D Printing Material JSPA 12BK

No.JS-Printing material-PA 12BK

Nylon Powder KSPA12BK

KSPA12BK is a black nylon powder featuring a D50 particle size of approximately 50 microns, showcasing a narrow and uniform distribution. It can be sintered using fiber or carbon dioxide lasers, exhibiting high sphericity and exceptional fluidity. With a reusability rate approaching 100%, the 3D printed parts retain outstanding mechanical properties and a flawless surface finish.

Nylon printing material JSPA12BK
Nylon Powder KSPA12BK KSPA12BK is a black nylon powder featuring a D50 particle size of approximately 50 microns, showcasing a narrow and uniform distribution. It can be sintered using fiber or carbon dioxide lasers, exhibiting high sphericity and exceptional fluidity. With a reusability rate approaching 100%, the 3D printed parts retain outstanding mechanical properties and a flawless surface finish.
3D Printing Material PA12BK:
Printing Material PA12BK
  • 3D Printing Material JSPA 12BK
  • 3D Printing Material JSPA 12BK
  • 3D Printing Material JSPA 12BK
  • 3D Printing Material JSPA 12BK
  • 3D Printing Material JSPA 12BK
  • 3D Printing Material JSPA 12BK
  • 3D Printing Material JSPA 12BK

Description

Product Details

TECHNICAL DATASHEET

PRODUCT DESCRIPTION

JSPA12BK is a black nylon powder featuring a D50 particle size of approximately 50 microns, showcasing a narrow and uniform distribution. It can be sintered using fiber or carbon dioxide lasers, exhibiting high sphericity and exceptional fluidity. With a reusability rate approaching 100%, the 3D-printed parts retain outstanding mechanical properties and a flawless surface finish.

TYPICAL FEATURES

> Sinterable with fiber or carbon dioxide laser.

> Powder particle size (D50) is around 50 microns, with a narrow and uniform distribution, high sphericity, and exceptional fluidity.

> Retains excellent mechanical properties and achieves a flawless surface finish even with close to 100% powder reuse rate.

IDEAL APPLICATIONS

- Functional structures

- Concept prototypes

- Automotive, aerospace, architectural, and electronic applications

TECHNICAL DATASHEET

Mechanical property Value Unit Test Standard
Tensile Modulus 1600 Mpa ISO 527
Tensile Strength 46 Mpa ISO 527
Strain at break 20 % ISO 527
Charpy impact strength 38 KJ/㎡ ISO 179
Charpy notched impact strength 7.5 KJ/㎡ ISO 179
Flexural modulus 1400 Mpa ISO 178
Flexural Strength 50 Mpa ISO 178

Other properties Value Unit Test Standard
Powder Melting temperature (10℃/min) 187 ISO 11357
Vicat softening temperature (50℃/h50N) 100 ISO 11357
Density (Laser Sintered) 0.94 g/cm³ Own method
Density (Powder) 0.52 g/cm³ Own method
Particle Size (D50) 50 μm Laser Diffraction
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