Reaction-Based Laser Additive Manufacturing of Structural Metal-Ceramic Composites

Reaction-Based Laser Additive Manufacturing of Structural Metal-Ceramic Composites
Title Reaction-Based Laser Additive Manufacturing of Structural Metal-Ceramic Composites PDF eBook
Author Kellen David Traxel
Publisher
Pages 238
Release 2021
Genre Additive manufacturing
ISBN

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Increased activity in fundamental material development using laser-based metal additive manufacturing (AM) has elicited new demand for higher capability materials, particularly in the area of titanium and its composites owing to titanium's relatively low operating temperature and limited wear resistance. To this end, the current work seeks to understand the composition-processing-structure-properties for titanium matrix composites processed using laser based additive manufacturing. The first chapter is dedicated towards recent developments and strategies in material design using laser-based metal additive manufacturing methods. The subsequent chapters explore the development of a titanium matrix composite composition as well as the processing-microstructure-performance properties of a material that exhibits a unique combination of microstructure and properties when produced with two laser-based AM methods. A subsequent thermal model is utilized to understand the thermal profiles and resulting heat affected zone that forms within components produced using laser-based AM. A subsequent chapter outlines the ability for these processing strategies to additionally influence the cutting tool industry by producing WC-Co based materials with designed reinforcement. Overall, the results of this work are intended to help drive material designers and engineers in the area of laser-based AM by leveraging multiple AM methods and processing strategies. The work presented indicates that titanium-matrix-composites produced using laser-based AM can be designed and processed in variable conditions that can influence performance in many different applications in the biomedical, aerospace, nuclear, and marine environments, among many others.

Additive Manufacturing Applications for Metals and Composites

Additive Manufacturing Applications for Metals and Composites
Title Additive Manufacturing Applications for Metals and Composites PDF eBook
Author Balasubramanian, K.R.
Publisher IGI Global
Pages 348
Release 2020-06-19
Genre Technology & Engineering
ISBN 1799840557

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Additive manufacturing (AM) of metals and composites using laser energy, direct energy deposition, electron beam methods, and wire arc melting have recently gained importance due to their advantages in fabricating the complex structure. Today, it has become possible to reliably manufacture dense parts with certain AM processes for many materials, including steels, aluminum and titanium alloys, superalloys, metal-based composites, and ceramic matrix composites. In the near future, the AM material variety will most likely grow further, with high-performance materials such as intermetallic compounds and high entropy alloys already under investigation. Additive Manufacturing Applications for Metals and Composites is a pivotal reference source that provides vital research on advancing methods and technological developments within additive manufacturing practices. Special attention is paid to the material design of additive manufacturing of parts, the choice of feedstock materials, the metallurgical behavior and synthesis principle during the manufacturing process, and the resulted microstructures and properties, as well as the relationship between these factors. While highlighting topics such as numerical modeling, intermetallic compounds, and statistical techniques, this publication is ideally designed for students, engineers, researchers, manufacturers, technologists, academicians, practitioners, scholars, and educators.

Laser Additive Manufacturing of High-Performance Materials

Laser Additive Manufacturing of High-Performance Materials
Title Laser Additive Manufacturing of High-Performance Materials PDF eBook
Author Dongdong Gu
Publisher Springer
Pages 322
Release 2015-04-21
Genre Technology & Engineering
ISBN 3662460890

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This book entitled “Laser Additive Manufacturing of High-Performance Materials” covers the specific aspects of laser additive manufacturing of high-performance new materials components based on an unconventional materials incremental manufacturing philosophy, in terms of materials design and preparation, process control and optimization and theories of physical and chemical metallurgy. This book describes the capabilities and characteristics of the development of new metallic materials components by laser additive manufacturing process, including nanostructured materials, in situ composite materials, particle reinforced metal matrix composites, etc. The topics presented in this book, similar as laser additive manufacturing technology itself, show a significant interdisciplinary feature, integrating laser technology, materials science, metallurgical engineering and mechanical engineering. This is a book for researchers, students, practicing engineers and manufacturing industry professionals interested in laser additive manufacturing and laser materials processing. Dongdong Gu is a Professor at College of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics (NUAA), PR China.

Selective Laser Melting for Metal and Metal Matrix Composites

Selective Laser Melting for Metal and Metal Matrix Composites
Title Selective Laser Melting for Metal and Metal Matrix Composites PDF eBook
Author Bo Song
Publisher Academic Press
Pages 282
Release 2020-10-07
Genre Technology & Engineering
ISBN 0081030061

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Selective Laser Melting for Metal Matrix Composites explains in detail the essential preparation and characterization methods for this technology, and explores a range of innovative applications. The subject covered by this book has been the focus of increasing levels of research both in industry and academia globally. The authors have drawn on their influential cutting-edge research to provide a much-needed guide for those investigating or applying this technology. The novel material preparation methodologies addressed here provide new opportunities to expand the applications of additive manufacturing, particularly in industries such as aerospace, medical, automotive, and electronics. These applications, as well as the theory behind this technology are also covered in this book, providing a complete guide which is appropriate for engineers in industry as well as researchers. - Provides descriptions of the microstructure and properties of the components produced - Explains emerging applications of this technology in a range of industries - Covers a range of different materials including iron base, and aluminium and titanium composites - Summarises the current research landscape in this field, and signposts the problems in metal matrix composites which remain to be solved

Additive Manufacturing

Additive Manufacturing
Title Additive Manufacturing PDF eBook
Author Amit Bandyopadhyay
Publisher CRC Press
Pages 547
Release 2015-09-08
Genre Technology & Engineering
ISBN 1498766706

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The field of additive manufacturing has seen explosive growth in recent years due largely in part to renewed interest from the manufacturing sector. Conceptually, additive manufacturing, or industrial 3D printing, is a way to build parts without using any part-specific tooling or dies from the computer-aided design (CAD) file of the part. Today, mo

Laser-Based Additive Manufacturing

Laser-Based Additive Manufacturing
Title Laser-Based Additive Manufacturing PDF eBook
Author Narendra B. Dahotre
Publisher John Wiley & Sons
Pages 308
Release 2022-08-01
Genre Technology & Engineering
ISBN 3527347917

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Laser-Based Additive Manufacturing Explore laser-based additive manufacturing processes via multi-scale modeling and computer simulation In Laser-Based Additive Manufacturing: Modeling, Simulation, and Experiments, a distinguished team of researchers delivers an incisive framework for understanding materials processing using laser-based additive manufacturing (LAM). The book describes the use of computational modeling and simulation to explore and describe the LAM technique, to improve the compositional, phase, and microstructural evolution of the material, and to enhance the mechanical, chemical, and functional properties of the manufactured components. The accomplished authors combine a comprehensive overview of multi-scale modeling and simulation with experimental and practical observations, offering a systematic review of laser-material interactions in advanced LAM processes. They also describe the real-world applications of LAM, including component processing and surface functionalization. In addition to explorations of residual stresses, three-dimensional defects, and surface physical texture in LAM, readers will also find: A thorough introduction to additive manufacturing (AM), including the advantages of AM over conventional manufacturing and the challenges involved with using the technology A comprehensive exploration of computation materials science, including length- and time-scales in materials modeling and the current state of computational modeling in LAM Practical discussions of laser-material interaction in LAM, including the conversion of light energy to heat, modes of heat dissipation, and the dynamics of the melt-pool In-depth examinations of the microstructural and mechanical aspects of LAM integrated with modeling Perfect for materials scientists, mechanical engineers, and physicists, Laser-Based Additive Manufacturing: Modeling, Simulation, and Experiments is perfect for anyone seeking an insightful treatment of this cutting-edge technology in the areas of alloys, ceramics, and composites.

Solid-State Metal Additive Manufacturing

Solid-State Metal Additive Manufacturing
Title Solid-State Metal Additive Manufacturing PDF eBook
Author Hang Z. Yu
Publisher John Wiley & Sons
Pages 421
Release 2024-07-10
Genre Technology & Engineering
ISBN 3527350934

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Timely summary of state-of-the-art solid-state metal 3D printing technologies, focusing on fundamental processing science and industrial applications Solid-State Metal Additive Manufacturing: Physics, Processes, Mechanical Properties, and Applications provides detailed and in-depth discussion on different solid-state metal additive manufacturing processes and applications, presenting associated methods, mechanisms and models, and unique benefits, as well as a detailed comparison to traditional fusion-based metal additive manufacturing. The text begins with a high-level overview of solid-state metal additive manufacturing with an emphasis on its position within the metal additive manufacturing spectrum and its potential for meeting specific demands in the aerospace, automotive, and defense industries. Next, each of the four categories of solid-state additive technologies—cold spray additive manufacturing, additive friction stir deposition, ultrasonic additive manufacturing, and sintering-based processes—is discussed in depth, reviewing advances in processing science, metallurgical science, and innovative applications. Finally, the future direction of these solid-state processes, especially the material innovation and artificial intelligence aspects, are discussed. Sample topics covered in Solid-State Metal Additive Manufacturing include: Physical processes and bonding mechanisms in impact-induced bonding and microstructures and microstructural evolution in cold sprayed materials Process fundamentals, dynamic microstructure evolution, and potential industrial applications of additive friction stir deposition Microstructural and mechanical characterization and industrial applications of ultrasonic additive manufacturing Principles of solid-state sintering, binder jetting-based metal printing, and sintering-based metal additive manufacturing methods for magnetic materials Critical issues inherent to melting and solidification, such as porosity, high residual stress, cast microstructure, anisotropic mechanical properties, and hot cracking Solid-State Metal Additive Manufacturing is an essential reference on the subject for academic researchers in materials science, mechanical, and biomedicine, as well as professional engineers in various manufacturing industries, especially those involved in building new additive technologies.