Metallic Amorphous Alloy Reinforcements in Light Metal Matrices

Metallic Amorphous Alloy Reinforcements in Light Metal Matrices
Author :
Publisher : Springer
Total Pages : 112
Release :
ISBN-10 : 9783319150161
ISBN-13 : 3319150162
Rating : 4/5 (162 Downloads)

Book Synopsis Metallic Amorphous Alloy Reinforcements in Light Metal Matrices by : S. Jayalakshmi

Download or read book Metallic Amorphous Alloy Reinforcements in Light Metal Matrices written by S. Jayalakshmi and published by Springer. This book was released on 2015-02-24 with total page 112 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book presents cutting-edge research on the design and development of novel, advanced high-strength, light-weight materials via the incorporation of novel reinforcements, namely, metallic amorphous alloys/bulk metallic glasses (BMG), in light metal matrix composites (LMMCs) based on Al and Mg. The book begins with an introduction to conventional ceramic reinforced light metal matrix composites, along with the major drawbacks which limit their application. Metallic amorphous alloys/Bulk Metallic Glasses (BMG) are new class of metallic materials that are distinctly differently from conventional metals/alloys in terms of their structure and thermal behavior, and exhibit extremely high strength (1 to 2 GPa) and large elastic strain limit (1 to 2%). Given these unique properties, upon their incorporation into Al/Mg-matrices, they provide superior interfacial properties, i.e. high degree of compatibility with the matrix due to their metallic nature when compared to conventional ceramic reinforcements, and thereby significantly enhance the mechanical performance of LMMCs. Amorphous/BMG reinforced LMMCs is an emerging research field and the existing literature is meager. This book discusses the various processing methods that would be suitable for these novel materials. A comparison of mechanical properties and strengthening mechanisms of amorphous/BMG reinforced composites with those of conventional ceramic composites is presented. Future research directions and wider research potential of the novel materials are discussed, and prospective applications are highlighted. For ease of understanding and comparison, appropriate schematics, tables, and figures are provided.


Metallic Amorphous Alloy Reinforcements in Light Metal Matrices Related Books

Metallic Amorphous Alloy Reinforcements in Light Metal Matrices
Language: en
Pages: 112
Authors: S. Jayalakshmi
Categories: Technology & Engineering
Type: BOOK - Published: 2015-02-24 - Publisher: Springer

GET EBOOK

This book presents cutting-edge research on the design and development of novel, advanced high-strength, light-weight materials via the incorporation of novel r
Metal Matrix Composites
Language: en
Pages: 294
Authors: Manoj Gupta
Categories: Electronic books
Type: BOOK - Published: 2018-08-15 - Publisher: MDPI

GET EBOOK

This book is a printed edition of the Special Issue "Metal Matrix Composites" that was published in Metals
Manufacturing Techniques for Materials
Language: en
Pages: 790
Authors: T.S. Srivatsan
Categories: Technology & Engineering
Type: BOOK - Published: 2018-04-09 - Publisher: CRC Press

GET EBOOK

Manufacturing Techniques for Materials: Engineering and Engineered provides a cohesive and comprehensive overview of the following: (i) prevailing and emerging
Nanocomposites VI: Nanoscience and Nanotechnology in Advanced Composites
Language: en
Pages: 172
Authors: T. S. Srivatsan
Categories: Technology & Engineering
Type: BOOK - Published: 2020-01-15 - Publisher: Springer Nature

GET EBOOK

This volume presents novel and innovative contributions in the domain specific to nanocomposites, specifically on aspects both related and relevant to the follo
Futuristic Composites
Language: en
Pages: 344
Authors: Sarabjeet Singh Sidhu
Categories: Technology & Engineering
Type: BOOK - Published: 2018-09-26 - Publisher: Springer

GET EBOOK

This book presents a collection of chapters on various aspects of futuristic composite materials, from manufacturing challenges to materials characterization. T