Advances in Powder Metallurgy & Particulate Materials

Advances in Powder Metallurgy & Particulate Materials
Title Advances in Powder Metallurgy & Particulate Materials PDF eBook
Author
Publisher
Pages 420
Release 2002
Genre Composite materials
ISBN

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Advances in Powder Metallurgy & Particulate Materials, 2000: Coatings

Advances in Powder Metallurgy & Particulate Materials, 2000: Coatings
Title Advances in Powder Metallurgy & Particulate Materials, 2000: Coatings PDF eBook
Author
Publisher
Pages 94
Release 2000
Genre Metal powders
ISBN

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Advances in Powder Metallurgy

Advances in Powder Metallurgy
Title Advances in Powder Metallurgy PDF eBook
Author Isaac Chang
Publisher Elsevier
Pages 624
Release 2013-08-31
Genre Technology & Engineering
ISBN 085709890X

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Powder metallurgy (PM) is a popular metal forming technology used to produce dense and precision components. Different powder and component forming routes can be used to create an end product with specific properties for a particular application or industry. Advances in powder metallurgy explores a range of materials and techniques used for powder metallurgy and the use of this technology across a variety of application areas.Part one discusses the forming and shaping of metal powders and includes chapters on atomisation techniques, electrolysis and plasma synthesis of metallic nanopowders. Part two goes on to highlight specific materials and their properties including advanced powdered steel alloys, porous metals and titanium alloys. Part three reviews the manufacture and densification of PM components and explores joining techniques, process optimisation in powder component manufacturing and non-destructive evaluation of PM parts. Finally, part four focusses on the applications of PM in the automotive industry and the use of PM in the production of cutting tools and biomaterials.Advances in powder metallurgy is a standard reference for structural engineers and component manufacturers in the metal forming industry, professionals working in industries that use PM components and academics with a research interest in the field. - Discusses the forming and shaping of metal powders and includes chapters on atomisation techniques - Highlights specific materials and their properties including advanced powdered steel alloys, porous metals and titanium alloys - Reviews the manufacture and densification of PM components and explores joining techniques

Advances in powder metallurgy

Advances in powder metallurgy
Title Advances in powder metallurgy PDF eBook
Author A. Simchi
Publisher Elsevier Inc. Chapters
Pages 32
Release 2013-08-31
Genre Technology & Engineering
ISBN 0128088575

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Warm compaction is a cost saving and effective method for obtaining high performance powder metallurgy (PM) parts. This chapter presents the principles of warm compaction and technical aspects of the process. The green and sintered properties of warm compacted parts are discussed and compared with conventionally (cold) produced compacts. The applications of the process for ferrous and non-ferrous PM parts are presented and future trends are outlined.

Advances in Powder Metallurgy & Particulate Materials, 2000: Compaction & forming

Advances in Powder Metallurgy & Particulate Materials, 2000: Compaction & forming
Title Advances in Powder Metallurgy & Particulate Materials, 2000: Compaction & forming PDF eBook
Author
Publisher
Pages 216
Release 2000
Genre Metal powders
ISBN

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Advances in Powder Metallurgy & Particulate Materials, 2000: Advanced particulate materials

Advances in Powder Metallurgy & Particulate Materials, 2000: Advanced particulate materials
Title Advances in Powder Metallurgy & Particulate Materials, 2000: Advanced particulate materials PDF eBook
Author
Publisher
Pages 190
Release 2000
Genre Metal powders
ISBN

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Advances in powder metallurgy

Advances in powder metallurgy
Title Advances in powder metallurgy PDF eBook
Author H. Danninger
Publisher Elsevier Inc. Chapters
Pages 71
Release 2013-08-31
Genre Technology & Engineering
ISBN 0128088591

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Ferrous powder metallurgy (PM) makes up the majority of powder metallurgy products with regard to tonnage. Improving performance is the main trend for pressed and sintered parts, in particular the introduction of cost-effective alloy elements such as Cr and Mn. Furthermore, much can be gained in ferrous PM by elaborate secondary operations. In metal injection moulding (MIM) products, there is a clear trend towards increasingly complex shapes and microsized parts. PM tool steels offer a much finer and fully isotropic microstructure compared to their wrought counterparts and the carbide content may be much higher, resulting in excellent application properties.