Products & Services
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Supplier: ASTM International
Description: an admixture of powders (MIM-316L); precipitation hardening stainless steel produced from pre-alloyed powder or an admixture of powders (MIM-17-4 PH); and ferritic stainless steel produced from pre-alloyed powder or an admixture of powders
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Supplier: ASTM International
Description: an admixture of powders (MIM-316L); precipitation hardening stainless steel produced from pre-alloyed powder or an admixture of powders (MIM-17-4 PH); and ferritic stainless steel produced from pre-alloyed powder or an admixture of powders
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Supplier: ASTM International
Description: 1.1 This specification covers ferrous metal injection molded materials fabricated by mixing elemental or prealloyed metal powders with binders, injecting into a mold, debinding, and sintering, with or without subsequent heat treatment.
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Supplier: Essen Magnetics Pty Ltd
Description: Metal Injection Molding (MIM) is a variation on traditional plastic injection molding that enables the fabrication of solid metal parts utilizing injection molding technology. In this process, the raw material, referred to as the feedstock, is a powder mixture of metal and polymer.
- Location: East Asia / Pacific Only
- Metal Types: Copper, Iron-Nickel Alloy, Tungsten-Copper Alloy, Carbon Steel, Nickel Steel, Stainless Steel, Titanium Alloys
- Services Offered: Powder Metal (P/M) Services, Prototype
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Description: Innovation is responsible for the rapid growth of the powder injection molding industry (metal injection molding, ceramic injection molding, and cemented carbide injection molding), a nearly $2 billion advanced manufacturing industry. This conference will provide a venue for the
- Frequency: Annually
- Industry: Ceramics and Glass/Ceramic and Glass Fabrication, Manufacturing, Metals and Metal Fabrication
- Type: Conference
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Supplier: Precipart
Description: Metal Injection Molding is a practical alternative to traditional production processes such as machining, press sintering and lost-wax casting. Benefits of Metal Injection Molding Highest degree of design freedom for complex shapes and geometries Functional
- Location: North America, United States Only, Northeast US Only, Europe Only, South Asia Only
- Metal Types: Copper, Iron-Nickel Alloy, Tungsten-Copper Alloy, Carbon Steel, Nickel Steel, Stainless Steel, Superalloys (Inconel 713, etc.), Titanium Alloys, Other
- Services Offered: Clean Room Molding, Micro Molding, Powder Metal (P/M) Services, Prototype, Low Volume Production, High Volume Production, Assembly Services, Design Assistance, Heat Treating / Stress Relieving, Just-In-Time Capability, Machining, Packaging / Shipping, Polishing / Buffing, Tool / Mold Making
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Supplier: Polymer Technologies Inc.
Description: Metal Injection Molding (MIM) is a powder metallurgy process that utilizes plastic injection molding technology to shape a component or part. It is an enabling process that creates opportunities for increased part functionality and lower production cost. Our MIM Process
- Location: North America, United States Only, Northeast US Only
- Metal Types: Iron-Nickel Alloy, Tungsten-Copper Alloy, Carbon Steel, Nickel Steel, Stainless Steel, Superalloys (Inconel 713, etc.), Titanium Alloys, Tool Steel, Other
- Services Offered: Micro Molding, Powder Metal (P/M) Services, Low Volume Production, High Volume Production, Assembly Services, Coining, Design Assistance, Machining, Packaging / Shipping, Tool / Mold Making
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Supplier: Megamet Solid Metals, Inc.
Description: Metal Injection Molding - MIM Megamet Solid Metals, Inc. is an ISO 9001:2008 certified manufacturer of custom metal injection molded components for a variety of manufacturing industries, including medical devices, firearms, defense, aerospace, electronic entry control
- Location: North America, United States Only, Midwest US Only
- Metal Types: Copper, Iron-Nickel Alloy, Tungsten-Copper Alloy, Carbon Steel, Nickel Steel, Stainless Steel, Superalloys (Inconel 713, etc.), Titanium Alloys, Tool Steel
- Services Offered: Powder Metal (P/M) Services, Prototype, Low Volume Production, High Volume Production, Assembly Services, Coining, Design Assistance, Heat Treating / Stress Relieving, Just-In-Time Capability, Machining, Packaging / Shipping, Plating, Polishing / Buffing, Tool / Mold Making
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Description: This monograph introduces the subject of soft magnetism to engineers, technologists and technical sales personnel that have responsiblity for components processed by Powder Metallurgy (PM) and Metal Injection Molding (MIM). Emphasis is placed on the practical relevance of the
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Supplier: Advanced Powder Products, Inc.
Description: Metal injection molding is a manufacturing process that combines two technologies into one, powder metallurgy with plastic injection molding. The MIM process is tailored for high volume production of small, metal components that have complex geometries and tight tolerances.
- Forming Process: Metal Injection Molding (MIM), Sintering, Other
- Location: North America, United States Only, Northeast US Only
- Material: Copper, Stainless Steel, Steel, Titanium Alloy, Other
- Services: Design Assistance, High Volume Production, Prototype / Short Run, Secondary Machining, Sinter Hardening, Tool / Mold Making
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Description: International Conference on Powder Metallurgy & Particulate Materials, the International Journal of Powder Metallurgy, and SAE International. The selected papers contribute to identifying the proper processing parameters to achieve improved properties for PM and MIM
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Supplier: Polymer Technologies Inc.
Description: Metal Injection Molding (MIM) is a powder metallurgy process that utilizes plastic injection molding technology to shape a component or part. It is an enabling process that creates opportunities for increased part functionality and lower production cost. Our MIM Process
- Density Ratio (% Theoretical Density): Fully Dense, 90% to 99% T.D., 85% to 90% T.D., < 85% T.D., Open Porosity Material
- Forming Process: Metal Injection Molding (MIM)
- Location: North America, United States Only, Northeast US Only
- Material: Aluminum, Copper, Nickel Alloy, Refractory Metal, Stainless Steel, Steel, Titanium Alloy
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Supplier: Megamet Solid Metals, Inc.
Description: Metal Injection Molding - MIM Megamet Solid Metals, Inc. is an ISO 9001:2008 certified manufacturer of custom metal injection molded components for a variety of manufacturing industries, including medical devices, firearms, defense, aerospace, electronic entry control
- Density Ratio (% Theoretical Density): 90% to 99% T.D.
- Forming Process: Metal Injection Molding (MIM), Sintering
- Location: North America, United States Only, Midwest US Only
- Material: Copper, Nickel Alloy, Stainless Steel, Steel, Titanium Alloy
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Supplier: ASTM International
Description: 1.1 These standard practices cover the specifications for those uniaxially compacted test specimens that are used in ASTM standards, the procedures for producing and preparing these test specimens, and reference the applicable standards. 1.2 Basic tool design and engineering
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Supplier: Advanced Powder Products, Inc.
Description: Maximize your investment by testing and qualifying your parts in real MIM alloys. Ideal for low volume and initial product validation, ProtoMIM® acts as a bridge tool while your production tool is in design and build. This rapid prototype option is especially useful during the
- Capabilities: Molding, Powder Metal Forming
- Location: North America, United States Only, Northeast US Only
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Supplier: Tanfel
Description: Tanfel offers a full solution for your custom fabricated metal part needs. A variety of materials and finishes are available along with tool fabrication, design support, stocking and warehousing options and a variety of other value added services. Prototype - Small Production - Large
- Applications: Construction / Building Products, Custom Profiles / Cross Sections, Heat Sinks, Rod / Wire, Tubing / Hose
- Circle / Diameter Capabilities: 0.4724 to 9.06 inch
- Materials: Series 2xxx, Series 3xxx, Series 5xxx, Series 6xxx, Series 7xxx
- Processes: Hot Extrusion
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Supplier: Tanfel
Description: Tanfel offers a full solution for your custom fabricated metal part needs. A variety of materials and finishes are available along with tool fabrication, design support, stocking and warehousing options and a variety of other value added services. Prototype - Small Production - Large
- Additional Services: CAD / CAM Support, Design Assistance, Just-in-Time Delivery, Prototype Services, Low Volume Production, High Volume Production, Reverse Engineering
- Capabilities: Deep Hole Drilling, Drilling, Etching / Chemical Milling, Honing, Jig Boring, Milling, Screw Machining, Turning, Wire EDM
- Diameter Capacity: Less than 1", 1" - 3", 3" - 6", 6" - 48"
- Length Capacity: Less than 1", 1" - 3", 3" - 6", 6" - 48"
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Description: ISO 2740:2009 is applicable to all sintered metals and alloys, excluding hardmetals. ISO 2740:2009 specifies: 1) the die cavity dimensions used for making tensile test pieces by pressing and sintering, and by Metal Injection Moulding (MIM) and sintering; and 2) the dimensions of
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Description: manufactured by means of the Metal Injection Moulding (MIM) process only. It does not apply to structural parts manufactured by other powder metallurgy routes, such as press-and-sinter or powder-forging technologies.
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Supplier: CSA Group
Description: ISO 2740:2009 is applicable to all sintered metals and alloys, excluding hardmetals. ISO 2740:2009 specifies: 1) the die cavity dimensions used for making tensile test pieces by pressing and sintering, and by Metal Injection Moulding (MIM) and sintering; and 2) the dimensions of
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Supplier: CSA Group
Description: manufactured by means of the Metal Injection Moulding (MIM) process only. It does not apply to structural parts manufactured by other powder metallurgy routes, such as press-and-sinter or powder-forging technologies.
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Description: electric parts Alumina Material: Capacitor, PTC, PZT, Varistor, Serdip, Inductor, Ferrite Zirconia Material: MLCC, Ni-MLCC, PTC, PZT, Disc Capacitor, Ferrite For sintering sintered metal Powder metallurgy, MIM, oil-less metal For sintering other ceramics
- Applications: Ceramics / Glass Manufacturing, Refractory / High Temperature Materials
- Material Type: Alumina / Aluminum Oxide, Zirconia, Specialty Ceramic
- Shape / Form: Kiln Furniture / Support, Fabricated / Custom Shape
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Supplier: Plansee SE
Description: to more than 2000°C (3632 °F) and then cooled down again. With our many years of experience in the field of powder metallurgy, we produce crucibles of a particularly high density and purity. By correctly filling the mold used for the crucible and carefully controlling the temperature
- Application / Industry: Other
- Bottom Type / Pour Method: Round Bottom
- Crucible Products: Crucible - Cylindrical (Straight wall)
- Material Types: Molybdenum / Mo Alloy
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Sedor, vice president, member and industry relations, Metal Powder Industries Federation (MPIF). “The annual MIM conference provides an optimal venue for gaining industry insight and learning about the latest technology.” Innovation is responsible for the rapid growth of the (read more)
Browse Trade Shows, Conferences, and Exhibitions Datasheets for Metal Powder Industries Federation (MPIF) -
developments and example applications are identified for each of the four main categories of PM processes: press & sinter; metal injection molding (MIM); metal additive manufacturing (AM); and isostatic pressing. This update also reviews the achievements made by the PM industry from 2017-2022 and (read more)
Browse Standards and Technical Documents Datasheets for Metal Powder Industries Federation (MPIF) -
mixture of metal and polymer. For this reason, MIM is sometimes referred to as Powder Injection Molding (PIM). Using a standard injection molding machine, the powder is melted and injected into a mold, where it cools and solidifies into the shape of the desired part. Subsequent (read more)
Browse Metal Injection Molding (MIM) Services Datasheets for Essen Magnetics Pty Ltd -
Powder Metallurgy (PM) is an advanced manufacturing metal-forming process for producing high-quality net-shape components for a wide variety of applications. The PM process comprises four categories: press and sinter (P&S); metal injection molding (MIM); metal additive manufacturing (AM (read more)
Browse Datasheets for Metal Powder Industries Federation (MPIF)
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2022 MPIF Award Winning MIM Part - Slide Release
Originally designed for stamping, but the complex geometry was too much of a challenge, the powder metallurgy (PM) metal injection molding (MIM) process was selected for this one-piece firearm slide release.
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Using Spark OES for Metal Injection Molding
Since its first demonstration back in the 1930s, metal injection molding (MIM) has become an essential metal fabrication technique. MIM at a basic level is the formation of small metal shapes from a metal powder that is fused together. This enables highly complex shapes to be created with almost
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Metal Injection Molding
Metal injection molding (MIM) offers a manufacturing capability for producing complex shapes in large quantities. The process utilizes fine metal powders (typically less than 20 micrometers) that are custom formulated with a binder (various thermoplastics, waxes, and other materials
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How Metal 3D Printing Compliments Metal Injection Molding
In today 's fast-paced world, time to market is critical when considering a new design or existing product enhancement. Here at Advanced Powder Products, APP, we harness the power of metal injection molding and 3D metal printing to reinforce and showcase the world of MIM possibilities. PrintAlloy
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Full Densification of Loosely Packed W–Cu Composite Powders
The high sinter- ability attained by such a tailoring of raw powder for MIM can be attributed .
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Properties and sintering behaviour of fine spherical iron powders produced by new hydrogen reduction process
K. Murray and M. Kearns: ‘Review of developments in gas atomised alloy metal powders for MIM appli- cations’, Proc.
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Powder Metallurgy Stainless Steels
4.2.1 Powders for MIM . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
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Metal Injection Moulding Powder Produced by High Pressure Water Atomisation
Thus, these powders can be used in a wide variety of fields: for metal filters and powder metallurgy, and also as ultrafine powders for MIM .
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Manufacturing process 5
Abb. 4.3 gas atomizing Tes powder and in the carbonyl method produced ferrous powder for MIM processes .
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ZHRSD2002P397
Kato, Ultrafine Powder for MIM and Large Components Made Using MIM, Powder Metallurgy in Automotive Applications, P. Ramakrishnan, Ed., Science Publishers, 1998, p 75 J.D. Holmgren, J.O. Gibson, and C. Sheer, Some Aspects of Arc Vaporised Submicron Particulates, Ultrafine Particles …
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PowderMet 2007: a breath of fresh air in 'mile-high' Denver
In powders for MIM , BASF had found the US market becoming still stronger as a result of MPIF’s promotional efforts.
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Handbook of Residual Stress and Deformation of Steel
Ultrafine Powder for MIM and Large Components Made Using MIM, Powder Metallurgy in Automotive Appli- cations, P. Ramakrishnan, Ed., Science Publishers, 1998, p 75 .
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ZPMSS2007P039
4.2.1 Powders for MIM .
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News & Views
market fine alloy iron powders for MIM .
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