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Polymer Property : Particle Size = 9.0 µm Product List

Physical Properties

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Physical Properties Metric English Comments
Particle Size 9.0 µm
9.0 µm
median; Microtrac
Nyco NYAD® M400 Wollastonite
Powdered grade.Wollastonite is a naturally occurring white mineral with an acicular (needle-shaped) particle structure. This distinctive particle morphology makes wollastonite an ideal performance m..
Particle Size 9.0 µm
9.0 µm
median; Microtrac
Nyco NYAD® MD400 Wollastonite
Powdered grade.Wollastonite is a naturally occurring white mineral with an acicular (needle-shaped) particle structure. This distinctive particle morphology makes wollastonite an ideal performance m..
Particle Size <= 9.0 µm
<= 9.0 µm
Average; Internal Method
Solvay Specialty Polymers Algoflon® L206 Polytetrafluoroethylene (PTFE)  (Unverified Data**)
Algoflon® L206 is a white PTFE micropowder comprising loose agglomerates of sub-micron sized particles. It is specially recommended for use as an additive in elastomers (e.g. perfluoroelastomers) t..
Particle Size 9.0 µm
9.0 µm
50% of particles, (TF Powder)
Ferro IP 760 Passivation Glasses (Pb-B-Si-Al; Pb-Si-Al; Si-Pb-Al Silicates)
Glass Type: Pb-B-Si-Al Typical Powder Form: TF, REG, RWG, SRRG Ferro's passivation glasses are designed for use on transistors, thyristors, and diodes. These products are formulated and produced to..
Particle Size 9.0 µm
9.0 µm
50% of particles, (TF Powder)
Ferro IP 780 Passivation Glasses (Pb-B-Si-Al; Pb-Si-Al; Si-Pb-Al Silicates)
Glass Type: Pb-Si-Al Typical Powder Form: TF, REG, RWG, SRRG Ferro's passivation glasses are designed for use on transistors, thyristors, and diodes. These products are formulated and produced to a..
Particle Size 9.0 µm
9.0 µm
50% of particles, (TF Powder)
Ferro IP 830 Passivation Glasses (Pb-B-Si-Al; Pb-Si-Al; Si-Pb-Al Silicates)
Glass Type: Pb-B-Si-Al Typical Powder Form: TF, REG, RWG, SRRG Ferro's passivation glasses are designed for use on transistors, thyristors, and diodes. These products are formulated and produced to..
Particle Size 9.0 µm
9.0 µm
50% of particles, (TF Powder)
Ferro IP 900 Passivation Glasses (Pb-B-Si-Al; Pb-Si-Al; Si-Pb-Al Silicates)
Glass Type: Si-Pb-Al Typical Powder Form: TF, REG, RWG, SRRG Ferro's passivation glasses are designed for use on transistors, thyristors, and diodes. These products are formulated and produced to a..
Particle Size 9.0 µm
9.0 µm
90%
Minelco UltraCarb LH15 Hydrated Magnesium Calcium Carbonate
Mineral Flame RetardantUltracarb combines properties normally associated with several different materials that can be used jointly or individually to benefit many applications including rubber, plas..
Particle Size 9.0 µm
9.0 µm
90%
Minelco UltraCarb LH15X Hydrated Magnesium Calcium Carbonate
Mineral Flame RetardantUltracarb combines properties normally associated with several different materials that can be used jointly or individually to benefit many applications including rubber, plas..
Particle Size 9.0 µm
9.0 µm
Mean
Momentive Performance Materials AC6069 Boron Nitride (BN) Powder
GE Advanced Ceramics boron nitride (BN) powder grade AC6069 consists of single-crystal hexagonal particles with an average particle size of 9 µm. AC6069 has a relatively tight particle size distr..
Particle Size 9.0 µm
9.0 µm
Mean
Momentive Performance Materials NX9 Boron Nitride (BN) Powder
Grades NX1, NX5, NX9, and NX10. The NX line makes BN accessible to users of alternate materials, such as aluminum nitride, alumina, and fused silica, who may have previously ruled out BN.NX grades a..
Particle Size 9.0 - 13 µm
9.0 - 13 µm
H.C. Starck Amperit® 140.067 Tungsten (W)
HS Number: 81011000
Particle Size >= 9.0 µm
>= 9.0 µm
10%
H.C. Starck Amperit® 290.8 Water Atomized Nickel-Aluminum 69-31 (NiAl)
Particle Size 9.0 - 13 µm
9.0 - 13 µm
10%
H.C. Starck Amperit® 588.059 Chromium Carbide-Nickel Chromium 75-25 (Cr3C2-NiCr)
Particle Size 9.0 µm
9.0 µm
50% of particles, (TF Powder)
Ferro IP 730 Passivation Glasses (Pb-B-Si-Al; Pb-Si-Al; Si-Pb-Al Silicates)
Glass Type: Pb-B-Si-Al Typical Powder Form: TF, REG, RWG, SRRG Ferro's passivation glasses are designed for use on transistors, thyristors, and diodes. These products are formulated and produced to..
Particle Size 9.0 µm
9.0 µm
50% of particles, (TF Powder)
Ferro IP 745 Passivation Glasses (Pb-B-Si-Al; Pb-Si-Al; Si-Pb-Al Silicates)
Glass Type: Pb-B-Si-Al Typical Powder Form: TF, REG, RWG, SRRG Ferro's passivation glasses are designed for use on transistors, thyristors, and diodes. These products are formulated and produced to..
Particle Size 9.0 µm
9.0 µm
50% of particles, (TF Powder)
Ferro IP 770 Passivation Glasses (Pb-B-Si-Al; Pb-Si-Al; Si-Pb-Al Silicates)
Glass Type: Pb-Si-Al Typical Powder Form: TF, REG, RWG, SRRG Ferro's passivation glasses are designed for use on transistors, thyristors, and diodes. These products are formulated and produced to a..
Particle Size 9.0 µm
9.0 µm
Silberline A-6578FG
A-6578FG is a standard polished grade; class A, fine leafing aluminum pigment carried in C-66 exempt mineral spirits.Applications: Trade & Maintenance
Particle Size 9.0 µm
9.0 µm
Silberline Extra Fine "P"
Extra Fine "P" is a standard polished grade; class "A", fine, leafing aluminum pigment carried in mineral spirits.Applications: Trade & Maintenance
Particle Size 9.0 µm
9.0 µm
Silberline L-2422-PA
L-2422PA is a small particle size, bright leafing aluminum pigment based on standard cornflake geometry. It is a cost effective pigment for producing strong metallic effects with good coverage in li..
Particle Size 9.0 µm
9.0 µm
Silberline "A" Series A-1592FG
A-1592FG is a very fine, high opacity, non-leafing aluminum pigment for solvent based industrial coatings. Due to the small particle size, this grade is well suited for imparting high opacity at low..
Particle Size 9.0 - 15 µm
9.0 - 15 µm
d90, Guaranteed
TIMCAL TIMREX® LSG10 Natural Graphite
TIMREX Natural Flake Graphite is produced in a wide range of products distinguished by particle size distribution, chemistry and carbon content. Timcal mines the graphite from its own source in Lac-..
Particle Size 9.0 µm
9.0 µm
Median
CIMBAR EliteTalc® 21 Cosmetic Talc
Cimbar performance Minerals MV, LLC Talc U.S.P. Cosmetic talcs are designed specifically for cosmetic formulations. Talc is commonly used in cosmetics for its ability to bind to oils, create a mois..
Particle Size 9.0 - 12 µm
9.0 - 12 µm
D50
CIMBAR UltraMag & UltraMag ST 10 Magnesium Hydroxide Powder
UltraMag is a naturally ground, white, high-purity Magnesium Hydroxide suitable for a wide range of applications including water treatment slurries, plastics, rubber and flame-retardant/smoke suppre..
Particle Size 9.0 - 15 µm
9.0 - 15 µm
D(0.5)
Akzo Nobel Expancel® 051 WU 40 Wet unexpanded microspheres
Expancel microspheres are thermoplastic hollow spheres. The microspheres are white spherically formed particles with a thermoplastic shell encapsulating a gas. When the microspheres are heated the..
Particle Size 9.0 - 15 µm
9.0 - 15 µm
D(0.5)
Akzo Nobel Expancel® 461 DU 40 Dry unexpanded microspheres
Expancel microspheres are thermoplastic hollow spheres. The microspheres are white spherically formed particles with a thermoplastic shell encapsulating a gas. When the microspheres are heated the..
Particle Size <= 9.0 µm
<= 9.0 µm
average
Oceanchem Group Magnesium Hydroxide
Molecular Formula: Mg(OH)2Cas No.: 1309-42-8Use: Magnesium hydroxide is a non-halogen flame retardant recommended where use of halogenated products is limited or prohibited. In addition, it is an e..
Particle Size 9.0 µm
9.0 µm
Asahi Glass Fluon® L150J PTFE Lubricant
Fluon®PTFE lubricants are used as additive to plastics, rubbers, paints, greases and so on. Frictional resistance decreases and non-stick increases on the applied surface.Information provided by As..
Particle Size 9.0 - 13 µm
9.0 - 13 µm
10%
H.C. Starck Amperit® 529.053 Tungsten Carbide - Hastalloy C 85-15 (NiMoCrFeCo)
Particle Size 9.0 - 15 µm
9.0 - 15 µm
D(0.5)
Akzo Nobel Expancel® 051 DU 40 Dry unexpanded microspheres
Expancel microspheres are thermoplastic hollow spheres. The microspheres are white spherically formed particles with a thermoplastic shell encapsulating a gas. When the microspheres are heated the..
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