Comprehensive Materials Processing provides students and professionals with a one-stop resource consolidating and enhancing the literature of the materials processing and manufacturing universe. It provides authoritative analysis of all processes, technologies, and techniques for converting industrial materials from a raw state into finished parts or products. Assisting scientists and engineers in the selection, design, and use of materials, whether in the lab or in industry, it matches the adaptive complexity of emergent materials and processing technologies. Extensive traditional article-level academic discussion of core theories and applications is supplemented by applied case studies and advanced multimedia features. Coverage encompasses the general categories of solidification, powder, deposition, and deformation processing, and includes discussion on plant and tool design, analysis and characterization of processing techniques, high-temperatures studies, and the influence of process scale on component characteristics and behavior. Authored and reviewed by world-class academic and industrial specialists in each subject field Practical tools such as integrated case studies, user-defined process schemata, and multimedia modeling and functionality Maximizes research efficiency by collating the most important and established information in one place with integrated applets linking to relevant outside sources
"Comprehensive Materials Processing "provides students and professionals with a one-stop resource consolidating and enhancing the literature of the materials processing and manufacturing universe.
Containing a mixture of review articles, case studies and research findings resulting from R & D activities in industrial and academic domains, this reference work focuses on how some finish manufacturing processes are advantageous for a ...
The purpose of this book is to show how general principles afford insight into laser processes.
Engineers and scientists alike will find this book to be an excellent introduction to the topic of porous materials, in particular the three main groups of porous materials: porous metals, porous ceramics, and polymer foams.
... L. Rosario, M. Schladenhauffen, B. Seth, C. Shea, T. Shinohara, J. Singh, R. Stanton, M. Stanziano, G. Stevens, A. Subramani, B. Sullivan, ... R. Turner, S. C. Yang, Z. Yoosufani, J. Young, J. C. Woschenko, D. Zenger, and Y. Zhang.
The book begins with an overview of the technology and challenges to applying the technology in manufacturing.
Powder metallurgy diamond tools. Amsterdam, Boston: Elsevier. Lengauer, W. (2012). Hard metals and cermets; actual tendencies of development (in German); contribution to the planned book of Kolaska and Ettmayer. Lohmann, Voigtländer.
In addition, the book discusses the use of functional materials for the development of active, smart and intelligent packaging, possible migration and toxicity of nanomaterials for foods and regulatory aspects, and commercial applications.
The book offers superior coverage of electrical, optical, and magnetic materials than competing text.The author has taught introductory courses in material science and engineering both in academia and industry (AT&T Bell Laboratories) and ...
Res. A 86A (2008) 607À616. [5] Y. Wang, Y. Shi, S. Huang, Structure and properties of laser sintered nylon 12/rectorite composites, Acta Materiae Compositae Sinica 22 (2) (2005) 52À56. [6] Y. Wang, Y. Shi, S. Huang, Preparation of nylon ...