Wholesale Metal Powder Suppliers
Metal powders are essential materials for additive manufacturing (3D printing), powder metallurgy (sintered parts, cemented carbide), surface coating (thermal spray, cold spray), electronic pastes, pyrotechnics, and specialty chemical applications. Towobo connects manufacturers and processors with verified wholesale suppliers of aluminium powder, titanium powder (CP and alloy), copper and copper alloy powders, iron and carbonyl iron powders, stainless steel powders (316L, 17-4PH, 304L), nickel and nickel superalloy powders, and refractory metal powders (tungsten, molybdenum). Sourced from Germany, USA, Japan, China, Sweden, and Canada with full ASTM/ISO particle size data and ATEX explosion safety information.
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Find Metal Powder Suppliers →Metal Powder Production Methods
Gas atomisation: inert gas (argon or nitrogen) stream shatters a molten metal stream — produces highly spherical powders with low oxygen content; preferred for AM (additive manufacturing) and MIM (metal injection moulding). Applications: titanium alloys (Ti-6Al-4V), nickel superalloys (IN718, IN625), stainless steels (316L). Water atomisation: high-pressure water jet — irregular morphology, lower cost, higher oxygen; used for iron, stainless steel, and copper powders for PM and MIM. Plasma atomisation: RF plasma melting — highest sphericity and purity; premium grade for aerospace AM applications. Electrolytic production: cathode deposition — used for copper and iron powders; very high purity and low apparent density. Carbonyl process: thermal decomposition of metal carbonyls — produces ultra-fine (<10 µm) spherical carbonyl iron (CIP) and carbonyl nickel powders; used in MIM, magnetic cores, and EMI shielding.
Particle Size Distribution: D10, D50, D90
Metal powder particle size is characterised by the volume-weighted cumulative distribution: D10 (10% of particles finer than this diameter), D50 (median diameter), D90 (90% of particles finer). For SLM/LPBF additive manufacturing: typical specification 15–53 µm (D10 ~15, D50 ~30, D90 ~53); coarser powders (45–106 µm) for EBM (electron beam melting). For PM press-and-sinter: 45–150 µm D50 range. For MIM: D50 5–20 µm with narrow distribution. For thermal spray: 45–75 µm for HVOF; 75–125 µm for APS plasma spray. ASTM B214 (sieve analysis) and ASTM B822 (laser diffraction, Mastersizer) are standard test methods. Request laser diffraction PSD report (Dv10, Dv50, Dv90) and SEM images to confirm sphericity and satellite content.
Powder Metallurgy vs Additive Manufacturing Grades
PM (Powder Metallurgy) grades: press-and-sinter iron and steel powders from Höganäs, GKN Hoeganaes — irregular morphology, high green strength; MIM grades — fine (<20 µm), can be water- or gas-atomised; cemented carbide (WC-Co) grades from Sandvik, Kennametal. AM (Additive Manufacturing) grades: tight PSD control (15–53 µm for L-PBF), high sphericity (>90% spherical), low oxygen (<1,000 ppm for reactive metals), excellent flowability (Hall Flow <30 s/50 g per ASTM B213). AM powder costs are significantly higher than PM: AM-grade Ti-6Al-4V from $200–500/kg vs PM-grade from $50–150/kg. AM powders require traceability certification including powder lot number, production date, chemical analysis, PSD, flowability, apparent density, and oxygen content per ASTM B213–B215.
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