Metal Matrix Composites by Friction Stir Processing / Ranjit Bauri, Devinder Yadav.
Material type: TextSeries: Friction stir welding and processing book seriesPublication details: Oxford, United Kingdom : Butterworth-Heinemann, 2017Description: 1 online resourceContent type: text Media type: computer Carrier type: online resourceISBN: 9780128137307; 0128137304Subject(s): Friction welding | Metallic composites -- Welding | TECHNOLOGY & ENGINEERING -- Technical & Manufacturing Industries & Trades | Friction weldingGenre/Form: Electronic books.Additional physical formats: Print version:: No titleDDC classification: 671.5/2 LOC classification: TS228.9Online resources: ScienceDirect Summary: Metal Matrix Composites by Friction Stir Processing discusses the capabilities of utilizing friction stir processing (FSP) as a tool to manufacture new materials, such as composites. FSP is considered a tool for grain refinement. However, this work illustrates how FSP has a wider capability due to the material flow and mixing the process offers. This book highlights such aspects by demonstrating the ability of the process to incorporate a second phase and make metal matrix composites (MMCs). The book covers the current research on processing MMCs by FSP, and presents a novel approach of making ductile MMCs by FSP using metal particle reinforcements.Item type | Current library | Call number | Status | Date due | Barcode |
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Ebooks | Mysore University Main Library | Not for loan | EBKELV1061 |
Includes bibliographical references.
Metal Matrix Composites by Friction Stir Processing discusses the capabilities of utilizing friction stir processing (FSP) as a tool to manufacture new materials, such as composites. FSP is considered a tool for grain refinement. However, this work illustrates how FSP has a wider capability due to the material flow and mixing the process offers. This book highlights such aspects by demonstrating the ability of the process to incorporate a second phase and make metal matrix composites (MMCs). The book covers the current research on processing MMCs by FSP, and presents a novel approach of making ductile MMCs by FSP using metal particle reinforcements.
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