United States
Manufacturer/ Producer
United States
AMETEK offerswater atomized powder versions of the Tribaloy® alloys T-400 and T-800. These alloys are Cobalt-Molybdenum-Chromium-Silicon (Co-Mo-Cr-Si) based materials that are extremely hard due to the formation of high fractions of intermetallic laves phases. They also exhibit very good oxidation and corrosion performance due to their design chemistry. Tribaloy® alloys are used extensively as hard-phase particles in powder metallurgy of automotive valve seats and guides as well as for other components in the drivetrain requiring enhanced wear performance at elevated temperatures. Tribaloy® alloys are also used extensively for coating and cladding applications in a variety of markets ranging from industrial to aerospace. Tribaloy® T-400 is designed for exceptional wear properties in metal-metal contact scenarios at high temperatures. The alloy has high Co and Mo content and high laves phase fraction leading to very high hardness with reasonable
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AMETEK offers several different Hastelloy® alloys in powder form, including but not limited to C-22, C-276, X, and B alloys. These alloys are all nickel based and used in a variety of applications where the corrosion resistance or service temperature of stainless steels is insufficient. Hastelloy® C-22 and C-276 are used heavily in severe corrosion environments by the Chemical Processing Industry (CPI), Oil and Gas (O&G), and others. Our C-22 and C-276 powders are used to create Filters for these industries, to apply coatings by thermal spray and cladding processes, and to make sintered parts. Hastelloy® B alloys are used in extremely reducing and acidic environments with unparalleled performance in such conditions. The primary application of powders of Hastelloy is in sintered metal filters. Hastelloy® X is one of the original nickel superalloys. Hastelloy® X has excellent fabricability and weldability for a high temperature nickel alloy
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17-4 PH®, a wrought compressed stainless steel powder, combines high strength and high hardness with excellent corrosion resistance, fracture toughness and heat treatment properties. When machined, 17-4 PH® produces long, gummy chips. While soft and ductile in an annealed condition, it is capable of high hardness properties with a single precipitation or aging treatment. Applications 17-4 PH® is ideal for manufacturing aircraft fittings, braces, chemical processing components, coupling, fasteners, gas turbines, gears, hydraulic actuators, jet engines, nuclear reactor parts, pump shafts, rocket and missile components, valve stems and wear rings. The physical properties of 17-4 PH® stainless steel make it weldable by common fusion and resistance techniques. Among members of the precipitation hardening class of stainless steels, 17-4 PH® has the best weldability.
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AMETEK offers a range of wear resistant tool steel powers used in P/M, MIM, and metal additive manufacturing. Tool steels use a combination of C, Cr, Mo, V, and W in an Fe based alloy to generate a carbide microstructure in the metal alloy. Powder Metallurgy (P/M) tool steels offer the highest grade of performance, especially in respect to toughness, due to the extremely fine and uniform distribution of carbides resulting from the atomization process. AMETEK offers multiple grades in the M, D, and T series of tool steels including M3-5, D-2, and T-15 among others. Each tool steel is optimized for its respective purpose to give exceptional properties. Some tool steels, such as our premium T-15 grade, can result in hardness near 70 HRC when appropriately processed and heat treated. Materials that have been routinely produced include M-2, M3-2, M3-5, M4-2, D2, and T15.
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AMETEK stainless steel flake is manufactured from premium quality 316L stainless steel raw materials. We employ a unique milling process in our dedicated and proprietary batch production area to produce a flattened 316L particle that makes a “leaf” product or flake. As we produce the raw material in-house, our input material is abundant and controlled to the highest quality.
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AMETEK Specialty Metal Products has been a leader in developing roll bonding dissimilar metals for more than fifty years. The advantage of clad materials is the end product combines the superior properties of each metal: Strength, Corrosion Resistance, Lightweight, Cost, Thermal and Electrical Conductivity. As a result, clad products produce a material superior to any of the individual metals taken alone. Clad metals produced by our roll bond technology combine two or more metals into a single sheet or plate that can be cut, welded or formed into a finished part ranging from chemical processing chambers and pressure vessels to small applications and clad pipe. We specialize in cladding stainless steel or nickel alloys to carbon steel as well as triple layer clad plates bonding stainless steel to an aluminum core. Because of the properties offered by clad metals, and the wide variety of cladding and backing materials available today, these metals can be combined to make custom
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We have a long and established history in serving the global Powder Metallurgy industry with substantial historical product developments and leadership representation at Metal Powder Industries Federation (MPIF). Our ability to engineer customized, structural metal powders through water atomization for Powder Metallurgy (PM) applications is world renown, particularly in the automotive and industrial markets. Powder Metallurgy (PM) is the process of pressing and sintering a metal powder into a near net shape part that offers numerous advantages over other metal forming technologies including: High customization such as size, alloy and properties Cost effectiveness and sustainability due to near net shape or net shape production Shape complexity without secondary operation Products We manufacture an extensive range of alloys to numerous customers specifications including chemistry modifications.
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Our filter grade powders are available in a wide range of particle size distributions and are uniquely suited to produce sintered porous metal filters for demanding applications. Typical materials include a wide number of commercial alloys specifically tailored for filter applications. The alloys available include but are not limited to high performance Stainless Steels, Hastelloys®, Monels®, Inconels® and Nickel. We produce these alloys specifically for sintered filters in tightly controlled size distributions within the 10-250µm range for liquid and gas filtration. We routinely produce more than 25 different sizes of filter product and are happy to take on the challenge of exacting, custom specifications. Filter Powder Expertise We manufacture filter grade powders that are specially atomized to give the highly irregular shape required for precise filtration. Our plant has been producing water atomized powders for sintered
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Achieving the highest quality polyester and nylon fibers requires selection of the right fiber filter media. We offer many filtration powder options for melt spun polymers. Typical Melt Spun Polymers and Corresponding AMETEK Filtration Product Polyamide / Nylon – AMETEK DP-1 Product Line Polyethylene Terephthalate (PET) / Polyester – AMETEK 316L or DP-1 Product Line Polypropylene – AMETEK 316L or DP-1 Product Line Custom Hot Polymer Filtration materials are offered for the most demanding applications Precision Powders Provide Numerous Advantages Compared to Metallic Fibers, Sand, or Glass Outstanding continuity of spin operation Premium fiber quality through superior filtration Excellent volume performance due to robustness of metal powder Correct porosity and tortuosity in filtration media for maximum hot polymer shear enabled by our advanced water atomization technology No chemical reaction with polymer, eliminating any discoloration of the fiber
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AMETEK Specialty Metal Products is committed to meeting the demands of Metal Additive Manufacturing (AM) for mass-production of industrial components. We engineer economic AM powder of mainstream stainless steel, nickel, and cobalt alloys for non-rotor-grade components made by Laser Powder Bed, Binder Jet, and Cold Spray processes. Alloys As a leader in metal powder production for additive manufacturing, we offer several different alloys and size distributions specifically tailored for different additive manufacturing processes and machines. The most common additive manufacturing powder materials produced include: 316L (including A240 grade) 304L 17-4PH® We also offer specialty austenitic and ferritic stainless steels, as well as a selection of nickel and cobalt alloy powders for 3D printing.
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3900 Germantown Pike
19426 Collegeville - United States
Germany
Suction lances / suction tubes can be delivered in different diameters right from stock. We also can manufacture according to your drawing and/or sketch or sample. material: stainless steel AISI 304 or aluminium AlMgSi 0.5 F22 in all common tube dimension 40.0 / 50.0 and 60.3 mm right from stock special versions can be realised at short notice and for short delivery
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Suction lances / suction tubes can be delivered in different diameters right from stock. We also can manufacture according to your drawing and/or sketch or sample. material: stainless steel AISI 304 or aluminium AlMgSi 0.5 F22 in all common tube dimension 40.0 / 50.0 and 60.3 mm right from stock special versions can be realised at short notice and for short delivery
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Our stainless steel pipes offer the following characteristics: pipe ends deburred quantity delivered in accordance with customer’s specifications well and protective transport packed
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In pneumatic conveying systems, conveying abrasive products – in particular at high conveying speeds – leads to abrasion and thus to wear in the pipe bends. In order to prevent this, the pipe bend of our highly wear-resistant DWR double-skin stainless pipe bends is encased in a second pipe bend, which creates a double-walled chamber. This acts, so to speak, as a “protective shield”: After the wear has taken place on the internal pipe bend, it fills with the product to be conveyed. When this process is completed, you are then conveying „product on product“ – and no further wear is possible! Version I: „Product-on-product” In this variant, the classic “double skin” comes into effect. not suitable for foodstuffs not suitable for material change Version II: „Lined with concrete” lined with extremely hard concrete colour: light grey not suitable for foodstuffs also available: lined with borosilicate glass
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