Characteristic particles

Characteristic particles
This is an introduction to particles that have distinctive features in their material and shape.
1~12 item / All 12 items
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Fujimi Powder Technology "Angular Nano Alumina"
Very sharp particle size distribution! Introducing powder technology with uniform particle diameter.
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High-quality alumina-based polishing material "PWA" with plate-like crystals.
Achieves a finely polished surface and demonstrates excellent polishing efficiency! A polishing material rich in functionality.
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Plate-like particles "titanium phosphate" for fillers, slip agents, and paint additives.
Refractive index 1.79; high white degree plate-like particles 'Titanium Phosphate' have no photocatalytic activity and do not decompose organic matter! (Development product)
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Spherical composite particles made from submicron and single micron raw materials.
Granulation processing of fine powders into spherical particles with excellent fluidity. In addition to single compositions, it is also possible to achieve uniform spherical particle formation with multiple compositions. Various filler applications.
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Fujimi / Sintered Heat Dissipation Filler with α-type SiC Ultra-fine Particles Silicon Carbide
A diverse lineup of α-type SiC with an average particle size ranging from 250 nm to 58 μm! Suitable for sintered body materials, wear-resistant coatings, plating additives, and heat dissipation fillers!
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High Purity Colloidal Silica Slurry Polishing Material 'COMPOL'
Achieve a damage-free polished surface with high efficiency! Mirror finishing is possible on various materials such as electronic material substrates like sapphire, metals, and ceramics.
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Introduction of carbide powder for 3D printers (additive manufacturing).
We offer carbide powder suitable for 3D printing applications! The powder design tailored to the molding methods (such as PBF and DED) contributes to the densification and high hardness of the printed objects.
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Solid lubricants and light-diffusing particles, high aspect ratio plate-like fillers, titanium phosphate.
By adding it to grease and lubricants, improvements in seizure resistance and wear resistance are expected. Please also consider its application to light diffusion films.
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Introduction of research project results on ultra-hard alloy powder for 3D additive manufacturing.
[Case Study of 3D Printer Development Initiatives] Introducing the achievement of producing ultra-hard punches with internal piping, with over 100,000 shots in actual use.
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Heat release and thermal conduction filler, cylindrical particles, thermal conductivity, zinc oxide.
Fujimi / Forms a thermal conduction path with a high aspect ratio, improving thermal conductivity for TIMs and more! The rounded surface ensures good filling properties for resins and other materials.
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Cemented carbide powder for 3D printers (additive manufacturing) *Contributes to densification and high hardness.
We offer carbide powder suitable for 3D printing applications! Powder design tailored to the molding methods (such as PBF and DED) contributes to the densification and high hardness of the printed objects.
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Plate-shaped white particles of titanium phosphate contribute to the improvement of the lubrication performance of solid lubricants!
Particles of titanium phosphate contribute to "improved anti-seizing properties" and "extended lubrication performance" when added to solid lubricants such as grease!
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