KSPA12 is a white nylon powder with a particle size D50 of about 50 microns and a narrow and uniform distribution. The powder has high sphericity and extremely high fluidity. It completely adopts the synthesis technology self-developed by the Kings team, which reduces costs while maintaining good surface quality and mechanical properties. The powder has a high reusability rate and can approach 100% utilization.
Product Details
PRODUCT DESCRIPTION
KSPA12 is a white nylon powder characterized by a D50 particle size of approximately 50 microns and a precise, uniform distribution. With high sphericity and exceptional fluidity, this powder incorporates the self-developed synthesis technology by the Kings team, effectively minimizing costs
while preserving excellent surface quality and mechanical properties. Notably, it boasts a high reusability rate, approaching near 100% utilization.
TYPICAL FEATURES
> Exceptional color stability with repeated use.
> Powder particle size (D50) is around 50 microns, with a narrow and uniform distribution, displaying high sphericity and remarkable fluidity.
> Maintains excellent mechanical properties and achieves a flawless surface finish even at 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 | KJ/㎡ | ISO 178 |
Flexural Strength | 50 | KJ/㎡ | ISO 178 |
Other Properties | Value | Unit | Test Standard |
Powder Melting temperature (10℃/min) | 187 | ℃ | ISO 11357 |
Vicat softening temperature (50℃/h50N) | 100 | ℃ | ISO 306 |
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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