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Selective Laser Sintering Additive Manufacturing Technology

Selective Laser Sintering Additive Manufacturing Technology
  • Author : Chunze Yan,Yusheng Shi,Li Zhaoqing,Shifeng Wen,Qingsong Wei
  • Publisher :Unknown
  • Release Date :2020-11-20
  • Total pages :972
  • ISBN : 9780081029947
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Summary : Selective Laser Sintering Additive Manufacturing Technology is a unique and comprehensive guide to this emerging technology. It covers in detail the equipment, software algorithms and control systems, material preparations and process technology, precision control, simulation analysis, and provides examples of applications of selective laser sintering (SLS). SLS technology is one of the most promising advances in 3D printing due to the high complexity of parts it can form, short manufacturing cycle, low cost, and wide range of materials it is compatible with. Typical examples of SLS technology include SLS manufacturing casting molds, sand molds (core), injection molds with conformal cooling channels, and rapid prototyping of ceramic and plastic functional parts. It is already widely used in aviation, aerospace, medical treatment, machinery, and numerous other industries. Drawing on world-leading research, the authors provide state of the art descriptions of the technologies, tools, and techniques which are helping academics and engineers use SLS ever more effectively and widely. Provides instructions for how to accurately use SLS for forming Analyses the numerical simulation methods for key SLS technologies Addresses the use of SLS for a range of materials, including polymer, ceramic and coated sand powder

Modern Manufacturing Processes

Modern Manufacturing Processes
  • Author : Muammer Koc,Tugrul Özel
  • Publisher :Unknown
  • Release Date :2019-09-24
  • Total pages :544
  • ISBN : 9781118071922
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Summary : Provides an in-depth understanding of the fundamentals of a wide range of state-of-the-art materials manufacturing processes Modern manufacturing is at the core of industrial production from base materials to semi-finished goods and final products. Over the last decade, a variety of innovative methods have been developed that allow for manufacturing processes that are more versatile, less energy-consuming, and more environmentally friendly. This book provides readers with everything they need to know about the many manufacturing processes of today. Presented in three parts, Modern Manufacturing Processes starts by covering advanced manufacturing forming processes such as sheet forming, powder forming, and injection molding. The second part deals with thermal and energy-assisted manufacturing processes, including warm and hot hydrostamping. It also covers high speed forming (electromagnetic, electrohydraulic, and explosive forming). The third part reviews advanced material removal process like advanced grinding, electro-discharge machining, micro milling, and laser machining. It also looks at high speed and hard machining and examines advances in material modeling for manufacturing analysis and simulation. Offers a comprehensive overview of advanced materials manufacturing processes Provides practice-oriented information to help readers find the right manufacturing methods for the intended applications Highly relevant for material scientists and engineers in industry Modern Manufacturing Processes is an ideal book for practitioners and researchers in materials and mechanical engineering.

Laser Additive Manufacturing

Laser Additive Manufacturing
  • Author : Milan Brandt
  • Publisher :Unknown
  • Release Date :2016-09-01
  • Total pages :498
  • ISBN : 9780081004340
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Summary : Laser Additive Manufacturing: Materials, Design, Technologies, and Applications provides the latest information on this highly efficient method of layer-based manufacturing using metals, plastics, or composite materials. The technology is particularly suitable for the production of complex components with high precision for a range of industries, including aerospace, automotive, and medical engineering. This book provides a comprehensive review of the technology and its range of applications. Part One looks at materials suitable for laser AM processes, with Part Two discussing design strategies for AM. Parts Three and Four review the most widely-used AM technique, powder bed fusion (PBF) and discuss other AM techniques, such as directed energy deposition, sheet lamination, jetting techniques, extrusion techniques, and vat photopolymerization. The final section explores the range of applications of laser AM. Provides a comprehensive one-volume overview of advances in laser additive manufacturing Presents detailed coverage of the latest techniques used for laser additive manufacturing Reviews both established and emerging areas of application

Laser Additive Manufacturing of High-Performance Materials

Laser Additive Manufacturing of High-Performance Materials
  • Author : Dongdong Gu
  • Publisher :Unknown
  • Release Date :2015-04-21
  • Total pages :311
  • ISBN : 9783662460894
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Summary : 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.

Additive Manufacturing of High-performance Metals and Alloys

Additive Manufacturing of High-performance Metals and Alloys
  • Author : Igor Shishkovsky
  • Publisher :Unknown
  • Release Date :2018-07-11
  • Total pages :154
  • ISBN : 9781789233889
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Summary : Freedoms in material choice based on combinatorial design, different directions of process optimization, and computational tools are a significant advantage of additive manufacturing technology. The combination of additive and information technologies enables rapid prototyping and rapid manufacturing models on the design stage, thereby significantly accelerating the design cycle in mechanical engineering. Modern and high-demand powder bed fusion and directed energy deposition methods allow obtaining functional complex shapes and functionally graded structures. Until now, the experimental parametric analysis remains as the main method during AM optimization. Therefore, an additional goal of this book is to introduce readers to new modeling and material's optimization approaches in the rapidly changing world of additive manufacturing of high-performance metals and alloys.

New Trends in 3D Printing

New Trends in 3D Printing
  • Author : Igor Shishkovsky
  • Publisher :Unknown
  • Release Date :2016-07-13
  • Total pages :270
  • ISBN : 9789535124795
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Summary : A quarter century period of the 3D printing technology development affords ground for speaking about new realities or the formation of a new technological system of digital manufacture and partnership. The up-to-date 3D printing is at the top of its own overrated expectations. So the development of scalable, high-speed methods of the material 3D printing aimed to increase the productivity and operating volume of the 3D printing machines requires new original decisions. It is necessary to study the 3D printing applicability for manufacturing of the materials with multilevel hierarchical functionality on nano-, micro- and meso-scales that can find applications for medical, aerospace and/or automotive industries. Some of the above-mentioned problems and new trends are considered in this book.

Additive Manufacturing Technologies

Additive Manufacturing Technologies
  • Author : Ian Gibson,David Rosen,Brent Stucker
  • Publisher :Unknown
  • Release Date :2014-11-26
  • Total pages :498
  • ISBN : 9781493921133
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Summary : This book covers in detail the various aspects of joining materials to form parts. A conceptual overview of rapid prototyping and layered manufacturing is given, beginning with the fundamentals so that readers can get up to speed quickly. Unusual and emerging applications such as micro-scale manufacturing, medical applications, aerospace, and rapid manufacturing are also discussed. This book provides a comprehensive overview of rapid prototyping technologies as well as support technologies such as software systems, vacuum casting, investment casting, plating, infiltration and other systems. This book also: Reflects recent developments and trends and adheres to the ASTM, SI, and other standards Includes chapters on automotive technology, aerospace technology and low-cost AM technologies Provides a broad range of technical questions to ensure comprehensive understanding of the concepts covered

Selective Laser Melting for Metal and Metal Matrix Composites

Selective Laser Melting for Metal and Metal Matrix Composites
  • Author : Song Bo,Shifeng Wen,Chunze Yan,Qingsong Wei,Yusheng Shi
  • Publisher :Unknown
  • Release Date :2020-10-07
  • Total pages :280
  • ISBN : 9780081030066
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Summary : 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

A Focus on SLM and SLS Methods in 3D Printing

A Focus on SLM and SLS Methods in 3D Printing
  • Author : Emerald Group Publishing Limited
  • Publisher :Unknown
  • Release Date :2015-10-29
  • Total pages :216
  • ISBN : 9781785608643
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Summary : A Focus on SLM and SLS Methods in 3D Printing is an indispensable collection of articles for anyone involved in additive manufacturing - from academics and researchers through to engineers and managers within the manufacturing industry.

Selective Laser Sintering

Selective Laser Sintering
  • Author : Lambert M. Surhone,Miriam T. Timpledon,Susan F. Marseken
  • Publisher :Unknown
  • Release Date :2010-07-23
  • Total pages :146
  • ISBN : 6131024235
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Summary : Please note that the content of this book primarily consists of articles available from Wikipedia or other free sources online. Selective laser sintering (SLS) is an additive manufacturing technique that uses a high power laser (for example, a carbon dioxide laser) to fuse small particles of plastic, metal (Direct Metal Laser Sintering), ceramic, or glass powders into a mass representing a desired 3-dimensional object. The laser selectively fuses powdered material by scanning cross-sections generated from a 3-D digital description of the part (for example from a CAD file or scan data) on the surface of a powder bed. After each cross-section is scanned, the powder bed is lowered by one layer thickness, a new layer of material is applied on top, and the process is repeated until the part is completed.

Selective Laser Melting

Selective Laser Melting
  • Author : Prashanth Konda Gokuldoss
  • Publisher :Unknown
  • Release Date :2020-04-03
  • Total pages :98
  • ISBN : 9783039285785
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Summary : Additive manufacturing (AM) is one of the manufacturing processes that warrants the attention of industrialists, researchers, and scientists. AM has the ability to fabricate materials to produce parts with complex shapes without any theoretical restrictions combined with added functionalities. Selective laser melting (SLM), also known as laser-based powder bed processing (LPBF), is one of the main AM process that can be used to fabricate wide variety of materials that are Al-, Ti-, Fe-, Ni-, Co-, W-, Ag-, and Au-based, etc. However, several challenges need to be addressed systematically, such as development of new materials that suit the SLM process conditions so the process capabilities can be fully used to produce new properties in these materials. Other issues in the field are the lack of microstructure–property correlations, premature failure, etc. Accordingly, this Special Issue (book) focuses mainly on the microstructure-correlation in three different alloys: AlSi10Mg, Ti6Al4V, and 304L stainless steel, where six articles are presented. Hence, this Special Issue outlines microstructure–property correlations in the SLM processed materials and provides a value addition to the field of AM.

Industrializing Additive Manufacturing - Proceedings of Additive Manufacturing in Products and Applications - AMPA2017

Industrializing Additive Manufacturing - Proceedings of Additive Manufacturing in Products and Applications - AMPA2017
  • Author : Mirko Meboldt,Christoph Klahn
  • Publisher :Unknown
  • Release Date :2017-09-05
  • Total pages :362
  • ISBN : 9783319668666
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Summary : These proceedings exchange ideas and knowledge among engineers, designers and managers on how to support real-world value chains by developing additive manufactured series products. The papers from the conference show a holistic, multidisciplinary view.

Advances in 3D Printing & Additive Manufacturing Technologies

Advances in 3D Printing & Additive Manufacturing Technologies
  • Author : David Ian Wimpenny,Pulak M. Pandey,L. Jyothish Kumar
  • Publisher :Unknown
  • Release Date :2016-08-23
  • Total pages :186
  • ISBN : 9789811008122
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Summary : This edited volume comprises select chapters on advanced technologies for 3D printing and additive manufacturing and how these technologies have changed the face of direct, digital technologies for rapid production of models, prototypes and patterns. Because of its wide applications, 3D printing and additive manufacturing technology has become a powerful new industrial revolution in the field of manufacturing. The evolution of 3D printing and additive manufacturing technologies has changed design, engineering and manufacturing processes across industries such as consumer products, aerospace, medical devices and automotives. The objective of this book is to help designers, R&D personnel, and practicing engineers understand the state-of-the-art developments in the field of 3D Printing and Additive Manufacturing.

Laser Additive Manufacturing

Laser Additive Manufacturing
  • Author : Milan Brandt
  • Publisher :Unknown
  • Release Date :2016-09-01
  • Total pages :498
  • ISBN : 9780081004340
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Summary : Laser Additive Manufacturing: Materials, Design, Technologies, and Applications provides the latest information on this highly efficient method of layer-based manufacturing using metals, plastics, or composite materials. The technology is particularly suitable for the production of complex components with high precision for a range of industries, including aerospace, automotive, and medical engineering. This book provides a comprehensive review of the technology and its range of applications. Part One looks at materials suitable for laser AM processes, with Part Two discussing design strategies for AM. Parts Three and Four review the most widely-used AM technique, powder bed fusion (PBF) and discuss other AM techniques, such as directed energy deposition, sheet lamination, jetting techniques, extrusion techniques, and vat photopolymerization. The final section explores the range of applications of laser AM. Provides a comprehensive one-volume overview of advances in laser additive manufacturing Presents detailed coverage of the latest techniques used for laser additive manufacturing Reviews both established and emerging areas of application

Laser-Based Additive Manufacturing of Metal Parts

Laser-Based Additive Manufacturing of Metal Parts
  • Author : Linkan Bian,Nima Shamsaei,John Usher
  • Publisher :Unknown
  • Release Date :2017-08-09
  • Total pages :328
  • ISBN : 9781498739993
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Summary : Laser-Based Additive Manufacturing (LBAM) technologies, hailed by some as the "third industrial revolution," can increase product performance, while reducing time-to-market and manufacturing costs. This book is a comprehensive look at new technologies in LBAM of metal parts, covering topics such as mechanical properties, microstructural features, thermal behavior and solidification, process parameters, optimization and control, uncertainty quantification, and more. The book is aimed at addressing the needs of a diverse cross-section of engineers and professionals.

Micro Selective Laser Sintering of Silicon Carbide

Micro Selective Laser Sintering of Silicon Carbide
  • Author : Nanzhu Zhao
  • Publisher :Unknown
  • Release Date :2017
  • Total pages :258
  • ISBN : OCLC:1023432807
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Summary : Silicon carbide (SiC) is of high importance in modern industry due to its superior properties including low bulk density, high hardness, high thermal conductivity, and excellent thermal shock and corrosion resistance. However, the strong Si – C covalent bond, lack of liquid phase, and low self-diffusivity of SiC make it very difficult for the production of fully dense parts without sintering aids or external pressure. These difficulties can be bypassed with the implementation of selective laser sintering, which enables the generation of complex-shape, high-resolution SiC parts with structural integrity. Current sintering process normally involves a powder mixture of silicon carbide as a structural material and polymer as a binder material for the generation of the preforms. It is then further sintered in high-temperature furnace to achieve full densification. In general, liquid silicon infiltration process is accompanied during the furnace sintering in order to minimize porosity and thus, maintain structural stability and enhance material properties. However, excessive infiltration may lead to overfill of the structure, deteriorating the surface and small features. The goal of the proposed research is to apply selective laser sintering technology to achieve additive manufacturing of SiC parts with micro scale resolution. The proposed work is focused on the development of a micro SLS system as well as the investigation of different methods for the freeform fabrication of SiC. More specifically, the objectives of this research are threefold. Firstly, a simulation model is developed to analyze the interaction between laser radiation and micron-sized powders. Ideal system and processing parameters are estimated from the model and analyzed with experimental results. Secondly, the design of a new micro selective laser sintering system that is capable of micro scale featuring resolution is proposed. Improvements in laser scanning system and powder coating and compaction processes are studied. Finally, a material-specific micro SLS process is developed for the generation of SiC parts with complex geometry, micro scale resolution, and structural integrity. Different binding mechanisms and sintering additives are studied to facilitate the process and enhance the porosity control.

Additive Manufacturing

Additive Manufacturing
  • Author : T.S. Srivatsan,T.S. Sudarshan
  • Publisher :Unknown
  • Release Date :2015-09-25
  • Total pages :444
  • ISBN : 9781498714785
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Summary : Get Ready for the Future of Additive Manufacturing Additive Manufacturing: Innovations, Advances, and Applications explores the emerging field of additive manufacturing (AM)—the use of 3D printing to make prototype parts on demand. Often referred to as the third industrial revolution, AM offers many advantages over traditional manufacturing. This process enables users to quickly build three-dimensional objects from the bottom-up, adding material one cross-sectional layer at a time directly from a computer model. This book provides a clear overview of specific technologies related to AM. It covers existing and emerging techniques in AM in use for a wide spectrum of manufacturing applications, and highlights the advantages of each technique with specific references to technological applications. Introduces Valuable Processes for Making Prototype Parts among Manufacturers of Many Types The book outlines many of the processes developed using various materials ranging from metals to plastics, and composites to human tissue. It presents recent innovations and potential viable applications that include: near-net shape capabilities, superior design, geometric flexibility, innovations in fabrication using multiple materials, and reduced tooling and fixturing. It also introduces several illustrations and case studies that focus on the present and far-reaching applications, developments, and future prospects of AM technologies. Written by renowned experts in their fields, this book: Covers the reactive inkjet printing of nylon materials relevant to AM Discusses the AM of metals using the techniques of free space deposition and selective laser melting Provides a comparison between AM materials and human tissues Addresses the use of AM for medical devices and drug and cell delivery Focuses on the relevance of AM to rare earth magnets and more Additive Manufacturing: Innovations, Advances, and Applications emphasizes the use of AM commensurate with advances in technical applications, and provides a solid background on the fundamentals and principles of this rapidly developing field.

Laser Sintering with Plastics

Laser Sintering with Plastics
  • Author : Manfred Schmid
  • Publisher :Unknown
  • Release Date :2018-05-07
  • Total pages :218
  • ISBN : 9781569906859
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Summary : Laser Sintering (LS) with plastics is one of the most promising additive manufacturing technologies: it is currently regarded as the process most likely in the future to permanently cross the border between prototyping and the production of functional parts. This step is challenging because it means that the technology must meet certain requirements that are also valid for traditional and established production processes. Only by succeeding at this step can a wide industry acceptance of LS be expected in the future. In this context, this book covers all levels of the LS process chain, including: - Current state of the machine technology - Essential process steps, both before and during sintering - Specific demands of the materials, powder production methods, and evaluation of powder properties - Mechanical properties and density of the parts produced by LS Examples of LS-produced parts are given, including those with special design features, to illustrate the characteristics and also the limitations of the LS method. In particular, the distinct advantages of LS parts over parts produced with other plastics processing methods (e.g., injection molding) are discussed.

Additive Manufacturing Technologies and Applications

Additive Manufacturing Technologies and Applications
  • Author : Salvatore Brischetto,Paolo Maggiore,Carlo Giovanni Ferro
  • Publisher :Unknown
  • Release Date :2018-07-09
  • Total pages :188
  • ISBN : 9783038425489
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Summary : This book is a printed edition of the Special Issue "Additive Manufacturing Technologies and Applications" that was published in Technologies

3D Printing and Additive Manufacturing Technologies

3D Printing and Additive Manufacturing Technologies
  • Author : L. Jyothish Kumar,Pulak M. Pandey,David I. Wimpenny
  • Publisher :Unknown
  • Release Date :2019
  • Total pages :229
  • ISBN : 9811303061
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Summary : This book presents a selection of papers on advanced technologies for 3D printing and additive manufacturing, and demonstrates how these technologies have changed the face of direct, digital technologies for the rapid production of models, prototypes and patterns. Because of their wide range of applications, 3D printing and additive manufacturing technologies have sparked a powerful new industrial revolution in the field of manufacturing. The evolution of 3D printing and additive manufacturing technologies has changed design, engineering and manufacturing processes across such diverse industries as consumer products, aerospace, medical devices and automotive engineering. This book will help designers, R & D personnel, and practicing engineers grasp the latest developments in the field of 3D Printing and Additive Manufacturing.

Additive Manufacturing Volume 2

Additive Manufacturing Volume 2
  • Author : Prashanth Konda Gokuldoss,Zhi Wang
  • Publisher :Unknown
  • Release Date :2020-04-15
  • Total pages :352
  • ISBN : 9783039284146
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Summary : Additive manufacturing (AM) is one of the manufacturing processes that warrants the attention of industrialists, researchers and scientists, because of its ability to produce materials with a complex shape without theoretical restrictions and with added functionalities. There are several advantages to employing additive manufacturing as the primary additive manufacturing process. However, there exist several challenges that need to be addressed systematically. A couple such issues are alloy design and process development. Traditionally alloys designed for conventional cast/powder metallurgical processes were fabricated using advanced AM processes. This is the wrong approach considering that the alloys should be coined based on the process characteristics and meta-stable nature of the process. Hence, we must focus on alloy design and development for AM that suits the AM processes. The AM processes, however, improve almost every day, either in terms of processing capabilities or processing conditions. Hence, the processing part warrants a section that is devoted to these advancements and innovations. Accordingly, the present Special Issue (book) focuses on two aspects of alloy development and process innovations. Here, 45 articles are presented covering different AM processes including selective laser melting, electron beam melting, laser cladding, direct metal laser sintering, ultrasonic consolidation, wire arc additive manufacturing, and hybrid manufacturing. I believe that this Special Issue bears is vital to the field of AM and will be a valuable addition.