Appropriate 'micro' zirconia beads (10-30μm) for nanoparticle dispersion.
NZ10、NZ30、NZ50、NZ30HLC
Zirconia beads suitable for wet dispersion and fine grinding bead mills in sizes of 10μm and 30μm. Ideal for dispersing nanoparticles with properties equivalent to insulators! Samples available now.
Micro zirconia beads "Niimi NZ Bead Series" are zirconia beads suitable for wet dispersion and fine grinding bead mills, available in sizes of 10μm and 30μm. They are ideal for use in the dispersion and stirring of pigments, inks, paints, color filters, etc., allowing for finer particles and better color output. 【Features】 ■ High strength, resistant to chipping and cracking ■ Excellent wear resistance ■ High purity with minimal impurities ■ High sphericity ■ Sharp size distribution ■ Smooth surface ■ High toughness with yttria-stabilized zirconia *For more details, please refer to the PDF available for download or contact us directly. *If you would like a sample, please specify "Sample Request" in your inquiry.
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Applications/Examples of results
○ Dispersion and micronization of electronic materials (dielectrics, piezoelectrics, etc.) ○ Dispersion and micronization of nanotechnology materials ○ Dispersion and micronization of pigments, inks, and paints ○ Dispersion and micronization of pharmaceuticals and food ○ Microparticle peening
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Our company has established a stable business foundation by balancing a wide range of fuels, from industrial fuels for factories to automotive fuels through the expansion of gas stations. Furthermore, while developing our business centered around fuel, we are evolving into a flexible service provider that can meet the diverse needs of our customers. In the manufacturing sector, we are expanding our business into growth areas such as the production of new material fine ceramics and the recycling of waste oil and sludge. Additionally, as a new business initiative, we are also granulating high melting point spherical powders for metal 3D printers. [Key Focus Areas] ■ Manufacturing of ceramic components ■ Granulation of metal powders for 3D printers using plasma melting