Powder Metallurgy Stainless Steels: Processing, Microstructures, and Properties by Erhard Klar, Erhard Klar, Prasan K. Samal

Powder Metallurgy Stainless Steels: Processing, Microstructures, and Properties



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Powder Metallurgy Stainless Steels: Processing, Microstructures, and Properties Erhard Klar, Erhard Klar, Prasan K. Samal ebook
Page: 243
ISBN: 0871708485, 9780871708489
Publisher:
Format: pdf


Powder Metallurgy Stainless Steels—Processing, Microstructures, and Properties Erhard Klar and Prasan K. Advances in powder metallurgy: Properties, processing and applications book download Download Advances in powder metallurgy: Properties, processing and applications Processing, Microstructures, and Properties. Book documents poweder metallurgy processing. This paper presents a study for making micro 316-L stainless steel components by soft lithography in combination with powder metallurgical processes. B) tensile properties c) toughness d) high temperature behavior e) formability and machinability 3) Corrosion and Oxidation Resistance a) influence of alloy b) influence of microstructure c) intergranular d) pitting and crevice corrosion e) general 3) influence of metallurgical properties 4) influence of inclusions 5) influence of tool material. Other Processing 1) Foundry practices 2) Powder metallurgy practices 3) Tube making. Binders, lubricants, and the processing, properties,. Powder Metallurgy Stainless Steels: Processing, Microstructures, and Properties. Save now on, Powder Technology and Application,. Powder-metallurgy parts, commonly referred to as P/M parts, are produced by the powder-metallurgy process, which involves blending of powders, pressing the mixture in a die, and then sintering or heating the compact in a controlled atmosphere to bond the contacting. Also, prealloys such as low-alloy steels, bronze, brass, nickel-silver, and stainless steel are produced in which each particle is itself an alloy, thus ensuring a homogeneous metallurgical structure in the part. Stainless steel and aluminum powders are still the main materials for powder metallurgy but titanium and titanium alloys offer unparalleled advantages. Erhard Klar, Erhard Klar, Prasan K.

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