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Supplier: Metalor Technologies USA Corporation
Description: ), tungsten (AgW), tungsten carbide (AgWC), tin oxide (AgSnO2), iron oxide (AgFe2O3), cadmium oxide (AgCdO) and so on.
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Supplier: Sulzer Metco
Description: powder Thermospray™, depending on the specific material chosen. Thermal sprayed carbide coatings are often the best choice to protect against: Abrasion Adhesion Erosion (solid particle or cavitation) Fretting Impact Galling Sliding wear Hard surfaces Complex combined
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Supplier: GFS Chemicals, Inc.
Description: ITEM#:A8862 WC CAS#:12070-12-1 F.W.:195.86 NFPA#: Specific Gravity: 0.000 DOT:NR Descriptions: -325 Mesh Specification TEST Properties No properties.
- State of Matter: Powder
- Ionic Component: Transition Metals (Ti, Fe, Ni, etc)
- Non-Metal Compounds: All Non-Metals, Carbides
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Supplier: Advanced Abrasives Corp.
Description: RDP is the recommended product for machining many types of ceramic, glass and tungsten carbide. This material is ideal for all vitrified, phenolic and polyimide bond systems.
- Type: Abrasive Grain / Powder
- Abrasive Grain / Material Type: Diamond
- Applications: Internal / Bores
- Material / Composition: Superabrasive - Diamond
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Description: WMP HC (1.5 to 20.0 µm): The well-known standard grades are mainly used as alloying element in superalloys, raw material for cemented carbide production, diamond tools, W-Cu/Ag infiltration composites, unalloyed tungsten rods and wires
- Function: Alloying - Microalloying
- Metal / Alloy Types: Refractory / Reactive Alloy, Tungsten / Tungsten Alloy
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Supplier: CoorsTek
Description: Durable Tungsten Carbide for Extreme Service Applications Removing Technological Barriers CoorsTek® Material Development Teams create technology enabling materials to solve every day technical problems. Since we began manufacturing tungsten carbide materials in the early 1990s, we have
- Applications: Wear Parts / Tooling
- Carbon and Graphite Material Type: Graphite
- Shape / Form: Fabricated / Custom Shape
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Supplier: ESAB Welding and Cutting Products
Description: RC 60 with tungsten carbide particles. Nickel base powder with fine mesh tunsten carbide particles.
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Supplier: Bellman-Melcor LLC
Description: Silvaloy A-38T is used for joining ferrous metals, copper, copper alloys, nickel, nickel alloys and combinations of these metals. The tin content provides good wetting on many difficult to wet metals such as stainless steel and tungsten carbide. This alloy, being free of Zn or Cd, is preferred
- Shape / Form: Foil, Fabricated (Casting / Forging), Powder, Sheet, Strip, Wire / Shaped Wire
- Standards / Specifications: Specialty / Other
- Metal / Alloy Types: Silver / Silver Alloy
- Nonferrous Metals: Non-ferrous - Any Type, Copper, Brass or Bronze Alloy (UNS C), Noble / Precious Metal (UNS P)
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Featured Products for Tungsten Carbide Powder Top
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H.C. Starck Inc. - Fabricated Products Group
Tungsten High Density Alloys
Applications: Tungsten is a metal with a wide range of uses, the largest of which is as tungsten carbide (W2C, WC) in cemented carbides. Cemented carbides (also called hardmetals) are wear-resistant materials used by the metalworking, mining, petroleum and construction industries. Tungsten alloys are a forged material for boring bars and shafts with a highly insensitive surface due to higher hardness than the other materials, caused by solidification during the forging process. Download a free brochure... (read more)
Browse Tungsten and Tungsten Alloys Datasheets for H.C. Starck Inc. - Fabricated Products Group -
General Carbide Corporation
Grade Selector Guide
narrows the range of choices for the designer to specify the optimum grade for any application more easily than ever. About General Carbide Corporation. General Carbide manufactures more than 50 grades of tungsten carbide tooling for a variety of cutting and metal forming applications, including: Ammunition, boring bar, can-making, fastener and powder metal/compaction, steel and wire manufacturing; general industrial wear parts and metalforming; oil and gas components; rotary cutting dies... (read more)
Browse Carbides and Carbide Materials (Hardmetals) Datasheets for General Carbide Corporation -
General Carbide Corporation
Powder Metal Compaction Tooling
General Carbide is a major supplier of carbide tooling to the Powder Metal (PM) Industry. We supply grades that display high wear resistance as well as high fracture toughness. Our Wire EDM grades are formulated to withstand Wire & Ram EDM and are guaranteed not to crack. We supply all the standard C9 thru C14 grades along with our premium grade selection of GC-813CT, GC-411CT, GC-613CT, GC-618T. These grades demonstrate enhanced performance, due to unique tungsten carbide crystal structure... (read more)
Browse Tool Blanks Datasheets for General Carbide Corporation -
Saint-Gobain Ceramics - Hexoloy® Products
Hexoloy® SP Silicon Carbide
. This material is a fine grain, single phase SiC product produced via pressureless sintering of submicron silicon carbide powder. As a result of this homogenous SiC composition, it exhibits the same outstanding corrosion resistance as does its forerunner Hexoloy® SA SiC. Superior performance is assured across a nearly universal range of environments including both strong acids and bases. Hexoloy® SP SiC's corrosion resistance exceeds that of all reaction-bonded SiC's, tungsten carbides... (read more)
Browse Industrial Ceramic Materials Datasheets for Saint-Gobain Ceramics - Hexoloy® Products -
Saint-Gobain Ceramics - Hexoloy® Products
Hexoloy® SA Silicon Carbide
Hexoloy® SA SiC is produced by the pressureless sintering of submicron silicon carbide powder. The sintering process results in a self-bonded, fine grain (less than 10µm) SiC product, which is extremely hard, lightweight and low in porosity. The material can be formed into complex shapes with greater than 98% theoretical density. Hexoloy® SA SiC is highly resistant to corrosion, erosion, sliding wear, high temperature and thermal shock. Corrosion Resistance. The corrosion resistance of Hexoloy... (read more)
Browse Industrial Ceramic Materials Datasheets for Saint-Gobain Ceramics - Hexoloy® Products -
Sturtevant Inc.
Micronizer Jet Milling Ceramic Powder
For processing ceramic powders, product contact parts can be made from Aluminum Oxide, Tungsten Carbide, Zirconium Oxide, Silicon Carbide, as well as many polymeric compounds. The variety of replaceable liners provides protection against wear and contamination. The Micronizer® will accept a granular feed size of up to 20 mesh (850 microns), but 100-200 mesh (75-150 microns) is preferable to achieve maximum product fineness and maximum capacity. In most cases, the Micronizer® can mill ceramic... (read more)
Browse Grinding Mills and Pulverizers Datasheets for Sturtevant Inc. -
Advanced Abrasives Corp.
Resin Bond Diamond Powder RDP Machining
Resin Bond Diamond Powder (RDP) is the recommended product for machining many types of ceramic, glass and tungsten carbide. This material is ideal for all vitrified, phenolic and polyimide bond systems. Advanced Abrasives Corporation offers the highest quality superabrasive powders in the industry. The manufacturing process is monitored with state of the art equipment and continuous quality control checks. Every powder is tailored to their customer's unique application or process. (read more)
Browse Diamond Powders and Superabrasive Grains Datasheets for Advanced Abrasives Corp. -
EFD Induction a.s.
More chain. More gain
and nanopowders industries. The technology is particularly effective at spheroidizing, densifying and purifying powders such as silica and tungsten carbide. These powders are employed by manufacturers in the electronics, biomedical and energy industries. Induction preheating. EFD Induction is present in a series of industries for preheating-primarily the automotive, cable and wire, electrotechnical, and tube and pipe industries. In many cases, our preheating solutions are integrated into production lines... (read more)
Browse Induction Heaters Datasheets for EFD Induction a.s. -
EFD Induction a.s.
Meet us at Metalloobrabotka
Plasma. Induction plasma technology has had a significant impact on the optical fibre, ceramics and nanopowders industries. The technology is particularly effective at spheroidizing, densifying and purifying powders such as silica and tungsten carbide. These powders are employed by manufacturers in the electronics, biomedical and energy industries. Induction preheating. EFD Induction is present in a series of industries for preheating-primarily the automotive, cable and wire, electrotechnical... (read more)
Browse Induction Heaters Datasheets for EFD Induction a.s. -
EFD Induction a.s.
A Proven Way to Meet Oil & Gas Pipe Standards
technology has had a significant impact on the optical fibre, ceramics and nanopowders industries. The technology is particularly effective at spheroidizing, densifying and purifying powders such as silica and tungsten carbide. These powders are employed by manufacturers in the electronics, biomedical and energy industries. Induction preheating. EFD Induction is present in a series of industries for preheating-primarily the automotive, cable and wire, electrotechnical, and tube and pipe industries... (read more)
Browse Welding, Brazing, and Soldering Equipment Datasheets for EFD Induction a.s. -
EFD Induction a.s.
Induction heating for the aviation industry
on the optical fibre, ceramics and nanopowders industries. The technology is particularly effective at spheroidizing, densifying and purifying powders such as silica and tungsten carbide. These powders are employed by manufacturers in the electronics, biomedical and energy industries. Induction preheating. EFD Induction is present in a series of industries for preheating-primarily the automotive, cable and wire, electrotechnical, and tube and pipe industries. In many cases, our preheating... (read more)
Browse Induction Heaters Datasheets for EFD Induction a.s. -
EFD Induction a.s.
A Proven Solution For Complicated Geometries !
around. Induction heating produces plasma through a process called Inductively Coupled Plasma. Induction plasma technology has had a significant impact on the optical fibre, ceramics and nanopowders industries. The technology is particularly effective at spheroidizing, densifying and purifying powders such as silica and tungsten carbide. These powders are employed by manufacturers in the electronics, biomedical and energy industries. Induction preheating. EFD Induction is present in a series... (read more)
Browse Induction Heaters Datasheets for EFD Induction a.s. -
EFD Induction a.s.
EFD is well known within the Tube &Pipe industry
and nanopowders industries. The technology is particularly effective at spheroidizing, densifying and purifying powders such as silica and tungsten carbide. These powders are employed by manufacturers in the electronics, biomedical and energy industries. Induction preheating. EFD Induction is present in a series of industries for preheating-primarily the automotive, cable and wire, electrotechnical, and tube and pipe industries. In many cases, our preheating solutions are integrated into production lines... (read more)
Browse Induction Heaters Datasheets for EFD Induction a.s. -
EFD Induction a.s.
Reduce distortion & costs hardening small gears.
effective at spheroidizing, densifying and purifying powders such as silica and tungsten carbide. These powders are employed by manufacturers in the electronics, biomedical and energy industries. Induction preheating. EFD Induction is present in a series of industries for preheating-primarily the automotive, cable and wire, electrotechnical, and tube and pipe industries. In many cases, our preheating solutions are integrated into production lines. Using induction rather than gas or a furnace... (read more)
Browse Induction Heaters Datasheets for EFD Induction a.s. -
EFD Induction a.s.
Partial, Bar End Heating & Shaped & Flat Sections
. Induction heating produces plasma through a process called Inductively Coupled Plasma. Induction plasma technology has had a significant impact on the optical fibre, ceramics and nanopowders industries. The technology is particularly effective at spheroidizing, densifying and purifying powders such as silica and tungsten carbide. These powders are employed by manufacturers in the electronics, biomedical and energy industries. Induction preheating. EFD Induction is present in a series of industries... (read more)
Browse Induction Heaters Datasheets for EFD Induction a.s. -
EFD Induction a.s.
Die hardening with induction
or molecules and are free to move around. Induction heating produces plasma through a process called Inductively Coupled Plasma. Induction plasma technology has had a significant impact on the optical fibre, ceramics and nanopowders industries. The technology is particularly effective at spheroidizing, densifying and purifying powders such as silica and tungsten carbide. These powders are employed by manufacturers in the electronics, biomedical and energy industries. Induction preheating. EFD... (read more)
Browse Industrial Heaters Datasheets for EFD Induction a.s. -
EFD Induction a.s.
Induction Is Phenomenal At Generating Heat Fast!
stripped from atoms or molecules and are free to move around. Induction heating produces plasma through a process called Inductively Coupled Plasma. Induction plasma technology has had a significant impact on the optical fibre, ceramics and nanopowders industries. The technology is particularly effective at spheroidizing, densifying and purifying powders such as silica and tungsten carbide. These powders are employed by manufacturers in the electronics, biomedical and energy industries. Induction... (read more)
Browse Induction Heaters Datasheets for EFD Induction a.s. -
EFD Induction a.s.
Induction heating for the aerospace industry
at spheroidizing, densifying and purifying powders such as silica and tungsten carbide. These powders are employed by manufacturers in the electronics, biomedical and energy industries. Induction preheating. EFD Induction is present in a series of industries for preheating-primarily the automotive, cable and wire, electrotechnical, and tube and pipe industries. In many cases, our preheating solutions are integrated into production lines. Using induction rather than gas or a furnace for preheating... (read more)
Browse Induction Heaters Datasheets for EFD Induction a.s.
Conduct Research Top
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Tungsten
by powder-metallurgy methods. Tungsten, Tunsten Metal Prices. Send Request for Quote 973-276-5000. f: 973-276-5050. Home. Warehouse Products. Forgings. Custom Hand-Rolled Bars. Custom Melting. Value Added Services. Free Catalog. Quick Literature. In the News. White Papers. Metals Outlook. Send Request
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Carbide Design in Wear Resistant Powder Materials
One area where powder metallurgy has proven to be superior to other means of manufacturing is wear resistant structures. Highly wear resistant high speed steel powders are commonly used in both HIPped and pressed and sintered forms. The carbide size and structure obtained depends both on production
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Analysis of Trace Elements in Tungsten Carbide using the Teledyne Leeman Labs Prodigy DC Arc
Tungsten carbide is a fine gray powder with a melting point of 2870ºC and a hardness of 8.5-9.0, surpassed in hardness only by diamond materials. Tungsten carbide is produced via reaction between tungsten metal and carbon at high temperatures; it is not a naturally occurring compound. The hardness
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Copper Tungsten
Copper tungsten materials are composites of tungsten and copper. They are produced using powder metallurgy processes. Copper tungsten is very expensive compared to other electrode materials, but useful in making deep slots under poor flushing conditions, and in EDM machining of tungsten carbide
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Screen Classifying Cutter Allows Recycling of Tungsten Heavy Alloys
in that they do not melt, but are compacted from powder into shapes and sintered to full density, after which they are machined and finished. Scrap is generated as a result of compaction, of sawing of large blocks, and other process scrap. Aerojet experimented with techniques to reclaim tungsten heavy alloys
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Powder Metallurgy (PM) Primer: Conventional Powdered Metal Components
such as tungsten carbide or. high-speed steel, which permits high volumes of parts to be produced before wear of. the tooling becomes a consideration. Once a part is being produced in a "steady-state". fashion on a set of tools, the results are consistent from part -to -part. Since the dies and tooling
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Variability of Feedstock Viscosity and Its Correlation with Dimensional Variability of Green Powder Injection Moulded Components
). The other powder was high pressure water. atomised with a D. of -22. 90. mm (Fig. 1c). Table 1 shows. the average of three measurements for the powder character-. istics of the different materials. A powder loading of. 65 vol.-% was kept as a constant for all feedstocks. The. powders were dry
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State of North American PM Industry-2008
opened the gates for substitution. The stainless steel powder market in 2007 declined an estimated 5 percent to 9,676 short tons. Nickel powder shipments were off about 5 percent to an estimated 9,190 tons. Tungsten and. tungsten carbide powder shipments increased an estimated 3 percent to 4,650 tons
Engineering Web Search: Tungsten Carbide Powder Top
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Tungsten Carbide Powder from Shijiazhuang Shiyun Metal Tech...
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Tungsten Carbide Powder, 99.9+%, APS < 1 µm
click on links to view details) Yellow Tungsten Oxide (WO3) Powder, 99.98% Blue Tungsten Oxide (WO2.98) Powder, 99.98% Ammonium Meta Tungstate,
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