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SpecMet USA — tungsten Division

TUNGSTEN &
TUNGSTEN Alloys

The heaviest commercially practical metal. The highest melting point of any element. From pure tungsten rod and sheet to heavy alloy counterweights, tungsten carbide, and W-Re high-temperature alloys — we match surplus industrial inventory with qualified buyers. Commission-only. No risk to the seller.
Extreme Properties, Active Market
Tungsten's unique combination of the highest melting point (3,422°C), highest density among commercial metals (19.3 g/cm³), and exceptional hardness creates a deep and persistent buyer base across defense, aerospace, medical, semiconductor, and energy industries.
All Forms Brokered
Pure tungsten rod, sheet, wire, and plate; tungsten heavy alloy bar and blanks; tungsten carbide powder and scrap; W-Cu composites; W-Re wire and alloys; and ferrotungsten — we handle the full product spectrum.
Commission on Delivery
Our commission is earned only after your material ships and the buyer confirms receipt. SpecMet Brokerage never takes ownership. No retainers, no upfront fees, no obligation if we cannot find a buyer.
Why Tungsten Commands Premium Pricing

Extraordinary Properties.
Irreplaceable Applications.

No other commercially available metal matches tungsten's combination of melting point, density, and hardness. These properties are not merely impressive on paper — they are what make tungsten irreplaceable in applications where no substitute exists, creating sustained buyer demand for surplus material in any form.
3,422°C
Melting Point — Highest of All Metals
19.3
Density g/cm³ — Denser Than Lead
7.5
Mohs Hardness
74
Atomic Number — Symbol W (Wolfram)
PURE TUNGSTEN
PURE TUNGSTEN (W)
Rod · Sheet · Plate · Wire · Crucibles

Commercially pure tungsten (99.95%+) processed by powder metallurgy into wrought forms. Used for TIG welding electrodes, high-temperature furnace components, X-ray targets, sputtering targets, and lamp filaments. Cannot be cast due to the extreme melting point.
HEAVY ALLOY (WHA)
TUNGSTEN HEAVY ALLOYS
W-Ni-Fe · W-Ni-Cu

Tungsten with 90–97% W balance in nickel-iron or nickel-copper matrix. Density 16.85–18.85 g/cm³. Machinable unlike pure tungsten. Used for radiation shielding, counterweights, kinetic energy penetrators, and vibration damping — wherever concentrated mass is needed.
TUNGSTEN CARBIDE
TUNGSTEN CARBIDE (WC)
WC Powder · Cemented Carbide · Scrap/Sludge

Tungsten carbide is the dominant hard material for cutting tools, mining drill bits, wear parts, and drawing dies. WC combined with cobalt binder (cemented carbide) is the world's most important wear-resistant engineered material. Carbide scrap has an active and well-established recycling market.
W-Cu COMPOSITES
TUNGSTEN-COPPER
W-Cu 70/30 · W-Cu 80/20 · W-Cu 85/15

Infiltrated or sintered composites combining tungsten's thermal stability with copper's electrical conductivity. Primary applications in electrical contact materials (EDM electrodes, spot welding tips) and high-performance heat sinks for power electronics and microwave devices.
W-Re ALLOYS
TUNGSTEN-RHENIUM
W-3Re · W-5Re · W-25Re · W-26Re

Adding rhenium to tungsten dramatically improves ductility and strength at ultra-high temperatures while raising recrystallization temperature. W-Re alloys are essential for thermocouple wire, rocket nozzle inserts, ion engine components, and semiconductor manufacturing equipment operating above 2,000°C.
FERROTUNGSTEN
FERROTUNGSTEN (FeW)
FeW70 · FeW75 · FeW80 · High-Carbon / Low-Carbon

Ferrotungsten is the primary alloying addition for tungsten in steels — high-speed tool steels (M2, M42), die steels (H series), and specialty engineering grades. Typically 70–80% W balance iron. Surplus ferrotungsten from steel mill inventory reductions has an active buyer base among specialty steel producers.
Surplus Materials We Handle

Specific Products &
What Buyers Pay For

Tungsten is one of the most strategically important refractory metals in industrial manufacturing. Its unique properties mean buyers exist across a remarkably diverse range of end markets — from defense contractors to semiconductor fabs to dental prosthetic manufacturers. Below are the most actively traded surplus tungsten categories.
Refractory Metal Supply Chain Context: Tungsten is classified as a critical mineral by the U.S. government and the EU. China controls approximately 80% of global tungsten mining and processing capacity. This supply concentration means surplus tungsten inventory — in any form — attracts immediate attention from domestic buyers seeking supply chain independence. Western-origin tungsten consistently commands a premium over Chinese material in defense and aerospace supply chains.
01pURE TUNGSTEN

PURE TUNGSTEN ROD, SHEET & PLATE

W ≥ 99.95% · Wrought / Sintered Forms
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Pure tungsten in wrought form — rod, bar, sheet, plate, foil, and wire — is produced by pressing and sintering tungsten powder followed by hot working (swaging, rolling, drawing) to achieve the desired shape and properties. Because tungsten cannot be melted and cast conventionally due to its extreme melting point of 3,422°C, all wrought tungsten products begin as powder metallurgy billets. Pure tungsten rod and sheet are essential for high-temperature furnace components (heating elements, radiation shields, crucibles), X-ray and gamma-ray shielding collimators, sputtering targets for semiconductor thin film deposition, TIG welding electrodes, and ion implantation components. Surplus pure tungsten in wrought form is among the most immediately tradeable tungsten material we broker, with buyers in semiconductor, medical imaging, and defense industries.
Purity
99.95% W minimum (typical)
Density
19.3 g/cm³
Melting Point
3,422°C (6,192°F)
Key Standards
ASTM B760 · AMS specs by form/application
End-Use Applications
High-Temperature Furnace Elements
Radiation Shielding Collimators
Sputtering Targets (Semiconductor)
TIG Welding Electrodes
X-Ray Tube Anodes / Targets
Ion Implantation Components
Vacuum Furnace Hardware
Active Semiconductor & Medical Buyers
Semiconductor equipment manufacturers and medical imaging companies (CT, PET, fluoroscopy) are consistent buyers of pure tungsten rod and sheet. Surplus from equipment upgrades, process changes, or overordering in these industries moves quickly. Chemical purity certificates and physical form documentation are the key requirements for buyer evaluation.
02PURE TUNGSTEN

TUNGSTEN WIRE

W Wire · Non-Sag / Doped · Fine to Heavy Gauge
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Tungsten wire is produced by repeated hot drawing of sintered tungsten rod through progressively smaller dies — a labor-intensive process requiring specialized equipment — which gives it exceptional tensile strength, particularly at fine diameters where it approaches the theoretical strength of tungsten. Non-sag (NS) or doped tungsten wire contains small additions of potassium, silicon, and aluminum which inhibit grain boundary migration at high temperatures, making it essential for lamp filaments that must survive thousands of thermal cycles. Fine tungsten wire (under 100 µm) is used in thermocouple assemblies, medical guidewires, orthopedic cable, dental applications, and scientific instruments. Heavy gauge tungsten wire serves as heating elements in high-vacuum furnaces. Surplus spooled tungsten wire is an active secondary market product across lighting, medical, and industrial sectors.
Diameter Range
12 µm (fine) to 6+ mm (heavy gauge)
Key Grades
Pure W, Non-Sag (Doped), W-Re wire
Tensile Strength
Up to 600+ ksi (fine drawn wire)
Key Standards
AMS specs, JEDEC standards
End-Use Superalloys
Lamp Filaments (Incandescent / Halogen)
Medical Guidewires
Thermocouple Wire
Vacuum Furnace Heating Elements
Orthopedic Cable
Electron Microscopy Filaments
Scientific Instruments
Diameter & Grade Define Value
Tungsten wire value is strongly determined by diameter and grade. Non-sag doped wire for lamp applications, fine medical-grade wire, and W-Re thermocouple wire all have distinct buyer pools. Spooled surplus with documented diameter, grade, and purity moves to specialized buyers quickly. Bulk or mixed wire is placed with toll processors and recyclers.
03HEAVY ALLOY

TUNGSTEN HEAVY ALLOY (WHA)

ASTM B777 Class 1–4 · W-Ni-Fe · W-Ni-Cu
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Tungsten heavy alloys (WHA) are produced by liquid-phase sintering tungsten powder, typically 90–97% W, with a nickel-iron or nickel-copper binder. The result is a dense, machinable tungsten-base material with densities ranging from approximately 16.85 to 18.85 g/cm³. Unlike pure tungsten, WHA can be machined more readily with conventional tooling, making it practical for complex-shaped parts, counterweights, shielding components, and precision ballast. ASTM B777 applies specifically to tungsten-base, high-density metal and defines four WHA classes by nominal tungsten content and density: Class 1 at approximately 90% W, Class 2 at 92.5% W, Class 3 at 95% W, and Class 4 at 97% W. Lower-density classes generally offer better machinability and toughness, while higher-density classes provide greater mass concentration and radiation attenuation. Magnetic W-Ni-Fe and non-magnetic W-Ni-Cu compositions address different application requirements. WHA is roughly twice the density of steel and significantly denser than lead, making it a common lead-replacement material for radiation shielding, ballast, and counterweight applications.
Tungsten Content
90% (Class 1) to 97% (Class 4)
Density Range
16.85 – 18.85 g/cm³
Compositions
W-Ni-Fe (magnetic) / W-Ni-Cu (non-magnetic)
Key Standards
ASTM B777, AMS 7725, MIL-T-21014
End-Use Applications
Radiation Shielding (Medical / Nuclear)
Kinetic Energy Penetrators (Defense)
Aerospace Balance Weights
Vibration Damping Inserts
Boring Bar Ballast
Counterweights (Satellites / Aircraft)
Fragmentation Devices
Oil Well Logging Tools
Broad Defense & Medical Buyer Base
Surplus WHA bar, blanks, and machined parts from defense contractors, aerospace programs, and medical imaging equipment manufacturers are among the most consistently traded refractory metal surplus we broker. ASTM B777 class documentation and density certification are the key buyer requirements. Even non-certified WHA scrap retains significant value for recyclers recovering the tungsten content.
04cARBIDE

TUNGSTEN CARBIDE

WC · Cemented Carbide · WC-Co Scrap
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Tungsten carbide (WC) is produced by carburizing tungsten powder at high temperature and is the primary feedstock for cemented carbide — the world's most important hard material, used in cutting tool inserts, mining drill bits, wear-resistant components, and drawing dies. Cemented carbide consists of WC particles (typically 70–97% by weight) bonded with cobalt (3–25%) or nickel binder, sintered to a fully dense material of extraordinary hardness (Vickers hardness 1,400–2,000 HV). The tungsten carbide secondary materials market is one of the most active and well-established in refractory metals — WC scrap, swarf, and reclaim is recycled back into tungsten oxide and pure tungsten powder at dedicated recycling facilities. Buyers for WC-Co scrap include cemented carbide manufacturers, recyclers, and tungsten chemical producers.
WC Content
70–97% WC (application dependent)
Binder
Co (3–25%) or Ni binder
Hardness
1,400–2,000 HV (material dependent)
Surplus Forms
Inserts, scrap, swarf, powder, sludge
End-Use Markets
Cutting Tool Inserts
Mining Drill Bits & Buttons
Wear-Resistant Components
Drawing Dies & Nozzles
Road Milling Tools
WC Powder Production
Recycling / Reclaim
Active Recycling Market
Tungsten carbide scrap — including used inserts, worn tooling, and WC-Co sludge from grinding operations — has one of the most active recycling markets in specialty metals. WC scrap value is primarily driven by the tungsten content recovered. Cobalt content also adds value. We work with recyclers and primary producers to find the best buyer for any form of WC surplus, from clean mixed-grade inserts to grinding swarf.
05W-Cu COMPOSITE

TUNGSTEN-COPPER

W-Cu · 70/30 · 80/20 · 85/15 Ratios
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Tungsten-copper composites are produced by infiltrating a sintered tungsten skeleton with molten copper, combining tungsten's thermal stability and low thermal expansion with copper's exceptional electrical and thermal conductivity. The result is a material that neither melts nor significantly deforms under the extreme heat and current loads of electrical discharge machining (EDM) electrodes, resistance spot welding tips, and high-power microwave window flanges. W-Cu is also the preferred heat sink material for power electronics modules where coefficient of thermal expansion (CTE) matching to silicon or gallium arsenide substrates is critical. Common compositions run from W70Cu30 (best conductivity) to W85Cu15 (highest density and hardness). Surplus W-Cu in rod, plate, and machined electrode form is produced by EDM shops, electronics manufacturers, and welding equipment producers.
Tungsten Content
70–85% W
Copper Content
15–30% Cu
Density (W80Cu20)
~15.2 g/cm³
Key Property
High conductivity + high-temp stability
End-Use Applications
EDM Electrodes
Resistance Spot Welding Tips
Power Electronics Heat Sinks
Microwave Window Flanges
High-Voltage Circuit Breaker Contacts
Plasma Spray Anodes
EDM & Electronics Surplus
W-Cu rod and plate from EDM electrode manufacturing operations, electronics packaging operations, and welding equipment manufacturers is the most common surplus form. Buyers include EDM shops needing cost-effective electrode stock and electronics manufacturers sourcing heat sink material. Composition documentation (W% and Cu%) is the key buyer requirement.
06W-Re ALLOY

TUNGSTEN-RHENIUM ALLOYS

W-3Re · W-5Re · W-25Re · W-26Re Wire & Sheet
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Tungsten-rhenium (W-Re) alloys represent the pinnacle of refractory metal engineering. Adding rhenium to tungsten — through the "rhenium effect" — dramatically improves room-temperature ductility, raises the recrystallization temperature, and increases strength at ultra-high temperatures where no other material survives. W-Re wire pairs (typically W-3Re/W-25Re or W-5Re/W-26Re) form Type C and Type D thermocouples that measure temperatures from 0°C to 2,315°C in oxidizing and non-oxidizing atmospheres — used in rocket engine testing, nuclear reactors, glass furnaces, and crystal growth furnaces. W-Re sheet and rod are used in ion propulsion thruster grids, semiconductor crystal growth equipment, and advanced aerospace structural components. Rhenium's crustal abundance is approximately 1 part per billion (ppb) — making it one of the rarest elements in Earth's crust — and making W-Re alloys among the highest value-per-pound tungsten materials we broker.
Common Compositions
W-3%Re, W-5%Re, W-25%Re, W-26%Re
Max Service Temp
~2,315°C (4,199°F)
Thermocouple Types
Type C (W5-W26Re) / Type D (W3-W25Re)
Key Standards
ASTM E696, ASTM E230, AMS 7897
End-Use Applications
Type C / Type D Thermocouples
Rocket Engine Testing
Nuclear Reactor Instrumentation
Ion Propulsion Thruster Grids
Crystal Growth Furnaces
Glass Furnace Instrumentation
Semiconductor Manufacturing Equipment
Highest Value-Per-Pound Tungsten Surplus
W-Re alloys — particularly high-rhenium compositions (W-25Re, W-26Re) — command prices reflecting rhenium's extraordinary scarcity. Surplus W-Re thermocouple wire, sheet, and rod from aerospace programs, nuclear facilities, or crystal growth operations can represent significant recoverable value per kilogram. Composition verification (Re%) is the critical documentation for buyer evaluation.
07FERROTUNGSTEN

FERROTUNGSTEN (FeW)

FeW70 · FeW75 · FeW80 · W Balance Fe
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Ferrotungsten is the primary alloying vehicle for introducing tungsten into steel melts, providing the controlled tungsten addition that gives high-speed tool steels (M2, M42, T1, T15), hot work die steels (H-series), and special structural steels their defining properties. Tungsten in steel increases hardness at elevated temperatures — the "red hardness" that allows high-speed steel cutting tools to retain their edge even when cutting generates significant heat. Standard ferrotungsten grades contain 70–80% tungsten with an iron balance, in broken lump form for addition to electric arc furnace heats. Surplus ferrotungsten from steel mill inventory reductions, reformulated melt schedules, or trading company positions is brokered to specialty steel producers and tool steel manufacturers who represent a consistent and active buyer base.
Tungsten Content
70–80% W (grade dependent)
Balance
Iron (Fe) + minor impurities
Physical Form
Broken lump, crushed, or granulated
Key Use
High-speed tool steel ladle additions
End-Use Steel Grades
M2 High-Speed Steel
M42 Super High-Speed Steel
T1 / T15 Tungsten High-Speed
H-Series Hot Work Die Steels
Special Structural Steel Grades
Welding Electrode Manufacture
Steel Mill Buyer Network
Surplus ferrotungsten from steel mill inventory reductions, trading positions, or reformulated melt practices moves efficiently to specialty steel producers who use it in electric arc furnace additions. Chemical analysis for W%, C%, S%, and P% are the standard buyer requirements. We maintain active relationships with tool steel and special alloy steel producers who are consistent buyers of this material.
08POWDER

TUNGSTEN POWDER

W Powder · Sintering / Spray / AM Grades
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Tungsten powder — produced by hydrogen reduction of tungsten oxide — is the fundamental feedstock for all powder metallurgy tungsten products. Particle size and purity govern the application: coarse powder (10–30 µm FSSS) is used for pressing and sintering WHA and pure tungsten parts; fine powder (1–5 µm) is used for tungsten carbide production; ultra-fine and spherical powder grades serve thermal spray coatings, additive manufacturing, and metal injection molding. High-purity grades (99.99%+) serve semiconductor sputtering target production and specialty electronics. Surplus tungsten powder from closed sintering operations, reformulated powder metallurgy programs, or quality-rejected lots is of direct interest to sintering shops, carbide producers, and thermal spray applicators.
Purity Range
99.9% – 99.999% W (grade dependent)
Particle Size Range
0.5 µm (fine) to 150 µm (coarse)
Key Grades
Sintering, carbide-grade, thermal spray, UHP
Key Markets
COA · FSSS particle size · Purity / oxygen data · SEMI specs where applicable
End-Use Applications
WHA & Pure W Sintering
Tungsten Carbide Feedstock
Thermal Spray Coatings
Metal Injection Molding
Sputtering Target Production
Additive Manufacturing
Grade and Size Determine Buyer
Tungsten powder surplus value depends on purity, particle size, morphology, and whether the powder has been stored correctly (tungsten oxide formation on particle surfaces degrades sinterability and must be assessed). Original certificates of conformance and FSSS particle size data are essential for buyer qualification. We help sellers understand what testing is needed before bringing surplus powder to market.
The Process

How Our Brokerage Works

Simple, transparent, and commission-only. You don't pay us anything until a qualified buyer receives your material.
01

Submit Your Inventory

Tell us what you have — material type, grade, quantity, form, and any available analysis or mill certs. The more detail you provide, the faster we can identify buyers.
02

We Identify Buyers

We work our network of qualified industrial buyers — superalloy producers, steel mills, aluminum foundries, plating operations, and fabricators — to find the right match for your material.
03

Terms Are Agreed

Once a buyer is identified, terms are negotiated between you and the buyer. We facilitate but do not take title to the material — this is a direct seller-to-buyer transaction.
04

We Earn on Delivery

Our commission is collected only after the product ships and is confirmed received. No upfront fees, no retainers. Our success depends entirely on yours.
Inventory We Handle

Forms & Conditions Accepted

We work with tungsten and tungsten-bearing materials across all product forms and conditions. Pure material with analytical documentation commands the strongest pricing. We also consistently place mixed lots, scrap, and recycled material with appropriate secondary buyers.
pURE TUNGSTEN ROD & BAR
All diameters, sintered or wrought, with or without machining
TUNGSTEN SHEET & PLATE
All thicknesses, pure W or doped grades, prime and off-cut
TUNGSTEN WIRE
All diameters, pure and non-sag grades, spooled or cut lengths
WHA BAR & BLANKS
ASTM B777 Class 1–4, sintered rough or machined, all sizes
WHA MACHINED PARTS
Shielding blocks, counterweights, and custom parts from canceled orders
TUNGSTEN-COPPER ROD & PLATE
EDM electrode stock and heat sink material in all compositions
W-Re WIRE & SHEET
Thermocouple grade and structural W-Re alloys — all compositions
TUNGSTEN CARBIDE SCRAP
Used inserts, worn tooling, grinding swarf, and WC-Co sludge
FERROTUNGSTEN & POWDER
FeW alloy, sintering-grade W powder, and high-purity specialty grades
Ready to Move Your Inventory?

Tell Us What You Have

Submit your inventory details and a member of the SpecMet USA team will respond within one business day. We work with procurement managers, inventory controllers, plant managers, and CFOs across steel production, aerospace, medical device, particle physics, chemical processing, and electronics manufacturing.

No obligation. No upfront cost. No commitment required to submit an inquiry. If we can identify a qualified buyer for your tungsten material, we will — and we earn our commission only when the deal closes.

All inquiries are handled confidentially.
By submitting this form you agree to be contacted by the SpecMet USA team. We do not share your information with any third party without your explicit consent.