Advances in Powder Metallurgy

Advances in Powder Metallurgy PDF Author: Eugene R. Andreotti
Publisher:
ISBN: 9781878954015
Category :
Languages : en
Pages : 0

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Advances in Powder Metallurgy

Advances in Powder Metallurgy PDF Author: Eugene R. Andreotti
Publisher:
ISBN: 9781878954015
Category :
Languages : en
Pages : 0

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Advances in Powder Metallurgy, 1990

Advances in Powder Metallurgy, 1990 PDF Author: E. R. Andreotti
Publisher: Metal Powder Industry
ISBN: 9781878954008
Category : Powder metallurgy
Languages : en
Pages : 1712

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Proceedings of the 1990 Powder Metallurgy Conference & Exhibition, Sponsored by the Metal Powder Industries Federation and the American Powder Metallurgy Institute, May 20-23, 1990, Pittsburgh, Pennsylvania

Proceedings of the 1990 Powder Metallurgy Conference & Exhibition, Sponsored by the Metal Powder Industries Federation and the American Powder Metallurgy Institute, May 20-23, 1990, Pittsburgh, Pennsylvania PDF Author: Eugene R. Andreotti
Publisher:
ISBN: 9781878954015
Category : Powder metallurgy
Languages : en
Pages : 0

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Advances in Powder Metallurgy & Particulate Materials

Advances in Powder Metallurgy & Particulate Materials PDF Author:
Publisher:
ISBN:
Category : Composite materials
Languages : en
Pages : 666

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PM Into the 1990's

PM Into the 1990's PDF Author:
Publisher:
ISBN:
Category : Powder metallurgy
Languages : en
Pages : 578

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Advances in powder metallurgy

Advances in powder metallurgy PDF Author: I. Todd
Publisher: Elsevier Inc. Chapters
ISBN: 0128088583
Category : Technology & Engineering
Languages : en
Pages : 624

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Book Description
Metal injection moulding (MIM) is a manufacturing process used for small-to-medium-shaped precision components. This chapter provides a detailed overview of MIM and includes descriptions of the principles of the process such as powders, binders, mixing and feedstock analysis, injection moulding, binder removal (debinding), sintering and post-sintering. The chapter concludes with case studies and the design requirements for MIM and its applications.

Advances in Powder Metallurgy & Particulate Materials

Advances in Powder Metallurgy & Particulate Materials PDF Author:
Publisher:
ISBN:
Category : Powder metallurgy
Languages : en
Pages : 488

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Advances in Particulate Materials

Advances in Particulate Materials PDF Author: A. Bose
Publisher: Elsevier
ISBN: 1483292258
Category : Technology & Engineering
Languages : en
Pages : 441

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Book Description
Advances in Particulate Materials introduces the approaches and principles associated with basic powder production, and details the most critical, state-of-the-art advancements in the area of materials processing and particulate materials. As the demands of modern technology increase, particulate materials facilitates the production of numerous advanced materials that may be utilized in aerospace, automotive, defense, chemical, and medical industries. Provides in-depth coverage of some of the most exciting and crucial developments in the area of particulate materials Covers both processing and the materials aspect of some of the emerging areas of particulate materials.

Physical Metallurgy and processing of Intermetallic Compounds

Physical Metallurgy and processing of Intermetallic Compounds PDF Author: N.S. Stoloff
Publisher: Springer Science & Business Media
ISBN: 1461312159
Category : Technology & Engineering
Languages : en
Pages : 690

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Book Description
The attractive physical and mechanical properties of ordered intermetallic alloys have been recognized since early in this century. However, periodic attempts to develop intermetallics for structural applications were unsuc cessful, due in major part to the twin handicaps of inadequate low-temper ature ductility or toughness, together with poor elevated-temperature creep strength. The discovery, in 1979, by Aoki and Izumi in Japan that small additions of boron caused a dramatic improvement in the ductility of Ni3Al was a major factor in launching a new wave of fundamental and applied research on intermetallics. Another important factor was the issuance in 1984 of a National Materials Advisory Board reported entitled "Structural Uses for Ductile Ordered Alloys," which identified numerous potential defense-related applications and proposed the launching of a coordinated development program to gather engineering property and processing data. A substantial research effort on titanium aluminides was already underway at the Air Force Materials Laboratory at Wright Patterson Air Force Base in Ohio and, with Air Force support, at several industrial and university laboratories. Smaller programs also were under way at Oak Ridge National Laboratory, under Department of Energy sponsorship. These research efforts were soon augmented in the United States by funding from Department of Defense agencies such as Office of Naval Research and Air Force Office of Scientific Research, and by the National Science Foundation.

Steel Heat Treatment Handbook

Steel Heat Treatment Handbook PDF Author: George E. Totten
Publisher: CRC Press
ISBN: 9780824797508
Category : Technology & Engineering
Languages : en
Pages : 1208

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Book Description
This comprehensive resource provides practical, modern approaches to steel heat treatment topics such as sources of residual stress and distortion, hardenability prediction, modeling, effects of steel alloy chemistry on heat treatment, quenching, carburizing, nitriding, vacuum heat treatment, metallography, and process equipment. Containing recent data and developments from international experts, the Steel Treatment Handbook discusses the principles of heat treatment; quenchants, quenching systems, and quenching technology; strain gauge procedures, X-ray diffraction, and other residual stress measurement methods; carburizing and carbonitriding; powder mettalurgy technology; metallography and physical property determination; ecological regulations and safety standards; and more. Well illustrated with nearly 1000 tables, equations, figures, and photographs, the Steel Heat Treatment Handbook is an excellent reference for materials, manufacturing, heat treatment, maintenance, mechanical, industrial, process and quality control, design, and research engineers; department or corporate metallurgists; and upper-level undergraduate and graduate students in these disciplines.