Description

Book Synopsis

Standardized processing routes for PM fabrication

Powder Metallurgy in Design: Wear, Corrosion and Fatigue Resistance is an essential resource for anyone in the field. Powder metallurgy allows engineers to control the microstructure of the metal, resulting in materials more suitable for the fabrication of unique parts with unique properties — yet the process of formulating these metals is itself unique. This book standardizes and codifies the necessary processing routes, and helps engineers incorporate the potential of these products into the design stage of a project.



Table of Contents
Powder metallurgy - the process and possibilities; design powder metallurgy for adhesive wear resistance; designing with tungsten carbide for erosive/corrosive applications; tungsten carbide for abrasion resistant aplications; designign with powder metallurgy for increased fatigue life; using powder metallury for friction metals.

Powder Metallurgy in Design: Wear, Corrosion and

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    A Hardback by PEP (Professional Engineering Publishers)

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      View other formats and editions of Powder Metallurgy in Design: Wear, Corrosion and by PEP (Professional Engineering Publishers)

      Publisher: John Wiley & Sons Inc
      Publication Date: 01/04/2000
      ISBN13: 9781860583032, 978-1860583032
      ISBN10: 1860583032

      Description

      Book Synopsis

      Standardized processing routes for PM fabrication

      Powder Metallurgy in Design: Wear, Corrosion and Fatigue Resistance is an essential resource for anyone in the field. Powder metallurgy allows engineers to control the microstructure of the metal, resulting in materials more suitable for the fabrication of unique parts with unique properties — yet the process of formulating these metals is itself unique. This book standardizes and codifies the necessary processing routes, and helps engineers incorporate the potential of these products into the design stage of a project.



      Table of Contents
      Powder metallurgy - the process and possibilities; design powder metallurgy for adhesive wear resistance; designing with tungsten carbide for erosive/corrosive applications; tungsten carbide for abrasion resistant aplications; designign with powder metallurgy for increased fatigue life; using powder metallury for friction metals.

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