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Functionally Graded Materials

Functionally Graded Materials
Author: Rasheedat Modupe Mahamood
Publisher: Springer
Total Pages: 118
Release: 2017-02-14
Genre: Technology & Engineering
ISBN: 3319537563

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This book presents the concept of functionally graded materials as well as their use and different fabrication processes. The authors describe the use of additive manufacturing technology for the production of very complex parts directly from the three dimension computer aided design of the part by adding material layer after layer. A case study is also presented in the book on the experimental analysis of functionally graded material using laser metal deposition process.


Metal Based Functionally Graded Materials

Metal Based Functionally Graded Materials
Author: Jerzy Sobczak
Publisher: Bentham Science Publishers
Total Pages: 79
Release: 2009
Genre: Science
ISBN: 1608050386

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The aim of this Ebook is to provide a comprehensive overview of the basic production techniques for manufacturing of metal-based graded materials. A concise description of experimental methods and short analysis of some specific structures obtained are pr


Functionally Graded Materials

Functionally Graded Materials
Author: Y. Miyamoto
Publisher: Springer Science & Business Media
Total Pages: 339
Release: 2013-11-27
Genre: Technology & Engineering
ISBN: 1461553016

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Seven years have elapsed since Dr. Renee Ford, editor-in-chief of Materials Technology, first suggested to me to publish a book on Functionally Graded Materials (FGMs). She said that the FGM concept, then largely unknown outside of Japan and a relatively few laboratories elsewhere, would be of great interest to everyone working in the materials field because of its potentially universal applicability. There was no book about FGMs in English at that time, although the number of research papers, review articles, and FGM conference proceedings had been increasing yearly. We discussed what the book should cover, and decided it should present a comprehensive description from basic theory to the most recent applications of FGMs. This would make it useful both as an introduction to FGMs for those simply curious about what this new materials field was all about, and also as a textbook for researchers, engineers, and graduate students in various material fields. The FGM Forum in Japan generously offered to support this publication program. is very difficult for an individual author to write a book that Because it covers such a wide range of various aspects of many different materials, I invited more than 30 eminent materials scientists throughout the world, who were associated with FGM research, to contribute selected topics. I also asked several leading researchers in this field to edit selected chapters: Dr. Barry H. Rabin, then at the U. S.


Additive Manufacturing of Metal-based Functionally Graded Materials

Additive Manufacturing of Metal-based Functionally Graded Materials
Author: Ashley Reichardt
Publisher:
Total Pages: 237
Release: 2017
Genre:
ISBN:

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Over the last decade, critical advancements have allowed metal additive manufacturing to graduate from a mere prototyping tool to a full-scale manufacturing process. Substitution of load-bearing components with their lighter, stronger, and less expensive additively manufactured counterparts is already becoming commonplace in the aerospace, automotive, and energy industries. With qualification underway, research efforts can now be directed towards bringing the more revolutionary capabilities of additive manufacturing to fruition. One such area is the ability to incorporate multiple alloys within a single build to fabricate complex geometry functionally graded structures, thus eliminating the need for extraneous welds and joints. As it turns out, local tailoring of composition is within the means of commercial laser deposition systems. However, its implementation is wholeheartedly a materials problem, driven by the difficulty of establishing strong metallurgical bonds between incompatible alloys. This dissertation provides a comprehensive treatment of the subject, from initial consideration of its challenges, to the development of specific gradient components. Based on a review of advances in dissimilar metal welding and additive-based functional grading, a pragmatic approach is conceived of for developing individual gradients from start to finish. Incompatibilities between dissimilar alloys are generalized as brittle intermetallic formation, thermal property mismatch, and other metallurgical issues. Building upon the efforts of others, a series of strategies is then defined for exploiting the unique capabilities of additive manufacturing to overcome these. Among the most compelling is the use of multi-powder feeder laser deposition to carry out nonlinear paths in composition space that circumvent deleterious phases, as predicted by CALPHAD thermodynamic modeling. Also proposed is the elimination of sharp interfaces between alloys of mismatching properties using smooth compositional grading. Upon implementing these strategies in the course of this thesis, it quickly became clear that each gradient system still requires some level of independent development to address alloy-specific concerns. In response, an approach is introduced that makes use of both modeling and experimental efforts to iteratively improve upon a given gradient design. Prototype gradients are fabricated with laser deposition and subjected to microstructural characterization to identify the critical issues that impact the gradient’s integrity. Thermodynamic modeling efforts are then directed towards identifying design modifications to overcome these issues. The process is repeated until successful, repeatable gradients are achieved. The latter part of the thesis is dedicated to demonstrating this approach in two distinct experimental case studies, concerning the development of gradients from (1) titanium to stainless steel, and (2) maraging steel to austenitic stainless steel. In both cases, microstructural characterization proved to be instrumental in identifying the particular issues affecting the gradients, such that they could be addressed directly with modeling. For the case of joining titanium with steel, severe brittle intermetallic formation was identified as the primary cause of failure. Modeling was thus focused on predicting phase equilibria along the gradient, such to identify a nonlinear composition path free of intermetallic formation. The maraging to stainless steel gradients, by contrast, exhibited greater inherent chemical compatibility. Their development rather required close attention to the alloys’ impurity contents, hardening mechanisms, and microstructural features to determine a means of reducing undesirable secondary phases and defects. Critical analysis of the results for both gradients imparted a number of “lessons learned”, providing guidance for future development of this capability.


Functionally Graded Materials (FGMs)

Functionally Graded Materials (FGMs)
Author: Pulak M. Pandey
Publisher: CRC Press
Total Pages: 254
Release: 2021-09-15
Genre: Technology & Engineering
ISBN: 1000439348

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The science and study of functionally graded materials (FGMs) have intrigued researchers over the last few decades. Their application has the capability to produce parts with unmatched properties which are virtually impossible to obtain via conventional material routes. This book addresses various FGM aspects and provides a relevant, high-quality, and comprehensive data source. The book covers trends, process classification on various bases, physical processes involved, structure, properties, applications, advantages, and limitations. Emerging trends in the field are discussed in detail and advancements are thoroughly reviewed and presented to broaden the spectrum of FGM applications. This reference book will be of interest to scholars, researchers, academicians, industry practitioners, government labs, libraries, and anyone interested in the area of materials engineering.


TMS 2022 151st Annual Meeting & Exhibition Supplemental Proceedings

TMS 2022 151st Annual Meeting & Exhibition Supplemental Proceedings
Author: The Minerals, Metals & Materials Society
Publisher: Springer Nature
Total Pages: 1597
Release: 2022-03-11
Genre: Technology & Engineering
ISBN: 3030923819

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This collection presents papers from the 151st Annual Meeting & Exhibition of The Minerals, Metals & Materials Society.


Functionally Graded Materials 1996

Functionally Graded Materials 1996
Author: I. Shiota
Publisher: Elsevier
Total Pages: 803
Release: 1997-09-02
Genre: Technology & Engineering
ISBN: 0080532098

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Since a formulated concept of functionally graded materials (FGMs) was proposed in 1984 as a means of preparing thermal barrier materials, a coordinated research has been developed since 1986. The 125 papers presented here present state of the art research results and developments on FGM from the past decade. A wide spectra of topics are covered including design and modeling, fracture analysis, powder metallurgical processes, deposition and spray processes, reaction forming processes, novel processes, material evaluation for structural applications, organic and intelligent materials. Three reviews associated with national research programs on FGMs promoted in Japan and Germany, and the historical perspective of FGM research in Europe are presented as well. The resulting work is recommended to researchers, engineers and graduate school students in the fields of materials science and engineering, mechanical and medical engineering.


TMS 2018 147th Annual Meeting & Exhibition Supplemental Proceedings

TMS 2018 147th Annual Meeting & Exhibition Supplemental Proceedings
Author: The Minerals, Metals & Materials Society
Publisher: Springer
Total Pages: 961
Release: 2018-02-03
Genre: Technology & Engineering
ISBN: 3319725262

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This collection features papers presented at the 147th Annual Meeting & Exhibition of The Minerals, Metals & Materials Society.


Advances in Friction-Stir Welding and Processing

Advances in Friction-Stir Welding and Processing
Author: M.-K. Besharati-Givi
Publisher: Elsevier
Total Pages: 827
Release: 2014-12-08
Genre: Technology & Engineering
ISBN: 0857094556

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Friction-stir welding (FSW) is a solid-state joining process primarily used on aluminum, and is also widely used for joining dissimilar metals such as aluminum, magnesium, copper and ferrous alloys. Recently, a friction-stir processing (FSP) technique based on FSW has been used for microstructural modifications, the homogenized and refined microstructure along with the reduced porosity resulting in improved mechanical properties. Advances in friction-stir welding and processing deals with the processes involved in different metals and polymers, including their microstructural and mechanical properties, wear and corrosion behavior, heat flow, and simulation. The book is structured into ten chapters, covering applications of the technology; tool and welding design; material and heat flow; microstructural evolution; mechanical properties; corrosion behavior and wear properties. Later chapters cover mechanical alloying and FSP as a welding and casting repair technique; optimization and simulation of artificial neural networks; and FSW and FSP of polymers. Provides studies of the microstructural, mechanical, corrosion and wear properties of friction-stir welded and processed materials Considers heat generation, heat flow and material flow Covers simulation of FSW/FSP and use of artificial neural network in FSW/FSP