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Therefore, microencapsulation using PGSS process could be employed for production of freely flowing powdered particles that can be used in food processing industries.
A transmission electron microscope (TEM JEOL, JEM – 2010-F) was used to characterize the ZnO, ZnO-CNT and CNT powdered particles.
The CNT, ZnO-CNT and ZnO powdered particles, its full width at half maximum (FWHM) β is used in Scherrer formula, D=frac{0.9lambda }{beta cos theta } (1).
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Many voids existed among the powder particles.
In the end, the loose powder particles are brushed away, while the glued-together particles form the desired sculpture.
The tribo-electrification of the powder particles is ubiquitous in pharmaceutical powder blending processes.
In the analysis, a ballistic model was used for modeling the in-flight powder particles.
In SLM a laser completely melts metallic powder particles together forming a 3D component.
Raman spectroscopy shows nanocrystalline phases in the milled powder particles with 100% crystalline volume fraction.
arc plasma jet with and without powder particles heated in the plasma.
Another drawback lies in the removal of unmelted powder particles from the build.
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