Packed with step-by-step instructions and color photos, The Complete Idiot's Guide® to Making Metal Jewelry explains essential techniques — soldering, smithing, stamping, hammering, casting, riveting, and wiring. Readers will learn how to work with easily obtainable but beautiful metals while making a dozen original projects — along the way, discovering alternate methods, ways to correct mistakes, safety tips, online video instruction, and more.
This book shares insights on post-processing techniques adopted to achieve precision-grade surfaces of additive manufactured metals including material characterization techniques and the identified material properties. Post-processes are discussed from support structure removal and heat treatment to the material removal processes including hybrid manufacturing. Also discussed are case studies on unique applications of additive manufactured metals as an exemplary of the considerations taken during post-processing design and selection. Addresses the critical aspect of post-processing for metal additive manufacturing Provides systematic introduction of pertinent materials Demonstrates post-process technique selection with the enhanced understanding of material characterization methods and evaluation Includes in-depth validation of ultra-precision machining technology Reviews precision fabrication of industrial-grade titanium alloys, steels, and aluminium alloys, with additive manufacturing technology The book is aimed at researchers, professionals, and graduate students in advanced manufacturing, additive manufacturing, machining, and materials processing.
This junior/senior textbook presents fundamental concepts ofstructure property relations and a description of how theseconcpets apply to every metallic element except iron. Part One of the book describes general concepts of crystalstructure, microstructure and related factors on the mechanical,thermal, magnetic and electronic properties of nonferrous metals,intermetallic compounds and metal matrix composites. Part Two discusses all the nonferrous metallic elements from twoperspectives: First it explains how the concepts presented in PartOne define the properties of a particular metallic element and itsalloys. Second is a description of the major engineering uses ofeach metal. This section features sidebar pieces describingparticular physical property oddities, engineering applications andcase studies. An Instructor's Manual presenting detailed solutionsto all the problems in the book is available from the Wileyeditorial department. An Instructor's Manual presenting detailed solutions to all theproblems in the book is available from the Wiley editorialdepartment.
The U.S.-Japan Joint Seminar on Stability and Ductility of Steel Structures under Cyclic Loading was held in Osaka, Japan on July 1-3, 1991. This three-day seminar was devoted to five main topics: 1) materials properties and plasticity models, which featured experimental investigations of the material properties of structural steels and plasticity models of the material characteristics under dynamic and cyclic loading conditions; 2) experimental observations, which featured experimental studies of cyclic buckling behavior of steel structural members and frames subjected to dynamic and cyclic loading conditions; 3) analytical modeling, which discussed analytical modeling of the cyclic buckling behavior of steel structural members and frames; 4) design implementation, which emphasized earthquake engineering design of steel structures against cyclic buckling; and 5) future research needs, in which future analytical and experimental research needs on the behavior and design of steel structures subjected to dynamic and cyclic loading conditions were identified. This book contains 30 contributed papers presented at the seminar.
In this wide-ranging interdisciplinary work, the authors draw on history, anthropology, and materials engineering to present a comprehensive and ambitious examination of the multifaceted roles of iron and steel throughout history and the current and future challenges faced by the steel industry. Ohjoon Kwon, Joo Choi, and Hae-Geon Lee provide readers with an in-depth understanding of the history of iron and steel and their impact on human society from a materials engineering perspective. They begin by describing the characteristics of iron and steel and the history of human use of and interaction with these metals by compiling the fundamental knowledge necessary to understand iron’s unique properties and metallurgical phenomena. Following this, they explain the influence of steel on human society and culture, focusing on Industrial Revolution and warfare. They also give examples that are rarely discussed elsewhere, such as developments in Asia or iron’s influence on thought and philosophy using Confucianism and Marxism as examples. Readers will then be able to apply this contextual knowledge to address the profound impact of emerging challenges, such as global environmental issues and the Fourth Industrial Revolution. Despite the technical nature of this book, all terminology is fully explained to facilitate better comprehension for those who may not possess an engineering education or a direct interest in metallurgy. This book is therefore invaluable not only as a technical book but also as a guide to the development history of human civilization and its future challenges.
With a wealth of illustrations, examples, discussion questions, and case studies, the Food Packaging Science and Technology covers basic principles and technologies as well as advanced topics such as active, intelligent, and sustainable packaging with unparalleled depth and breadth of scope. Emphasizing the application of relevant scientific
Here is the latest edition of a compact reference that has been a real treasure for materials personnel for more than 15 years. Packed with pictures, definitions, and descriptions of ANSI and API piping materials, such as flanges, fittings, bolts, gaskets, and required wrench sizes, it serves as an excellent guide for "rookies" and a ready reference for "old-timers" alike. This compact reference is packed with pictures, definitions, and descriptions of ANSI and API piping materials, such as flanges, fittings, bolts, gaskets, and required wrench sizes. It contains basic information and data to answer common questions that arise in materials handling, pipe fitting, and engineering.
1. Transducers and Data Acquisition / Richard B. Hathaway, Kah Wah Long -- 2. Fatigue Damage Theories / Yung-Li Lee -- 3. Cycle Counting Techniques / Yung-Li Lee, Darryl Taylor -- 4. Stress-Based Fatigue Analysis and Design / Yung-Li Lee, Darryl Taylor -- 5. Strain-Based Fatigue Analysis and Design / Yung-Li Lee, Darryl Taylor -- 6. Fracture Mechanics and Fatigue Crack Propagation / Jwo Pan, Shih-Huang Lin -- 7. Fatigue of Spot Welds / Mark E. Barkey, Shicheng Zhang -- 8. Development of Accelerated Life Test Criteria / Yung-Li Lee, Mark E. Barkey -- 9. Reliability Demonstration Testing / Ming-Wei Lu -- 10. Fatigue Analysis in the Frequency Domain / Yung-Li Lee.
This monograph written by two Chinese scientists of the younger generation opens a window into the world of thoughts on Mechanical Metallurgy in this fascinating area of our world, characterized by age old cultural heritage as weil as by its dynamic evolution into the future. Based on notions and names all so familiar to the western scientist, and regarding the subject from the point of view of the theoretical mechanical engineer (Yang) as weil as that of the materials and manufacturing engineer (Lee), the authors present a synthesis of both approaches and endeavour to guide the reader from basic theory to engineering applications. Between structural defects in the micrometer scale and the meter-measures of engineering components, the term of mesoplasticity is meant to place the reader right in the center: This is certainly achallenging enterprise, and the editor expresses his sincere wishes as to enrichment and stimulation which will emanate from this interesting book and its creative perspective. Prof. B. Ilschner March, 1993. Preface In the past two decades, enormous advances in materials and manufacturing tech nology have been achieved, which upgrade the material design, processing and precision manufacturing as quantitative and concise scientific disciplines. Rapid improvements on mechanics understanding have been instrumental in the above mentioned development. A topic of great interest and importance in plasticity re search has been the design and processing of materials themselves on the mesoscale to achieve the desired macroscopic properties.
This book introduces accountants and managers to an historical perspective of corporate financial reporting to employees. It presents a resource for research and practice based upon a literature that for its pre-1970 decades has been largely unfamiliar to contemporary educators, researchers and practitioners alike. In addition the pieces not only provide an historical view of issues and arguments, but of actual reporting practice and audience responses. For the students and researcher, these readings offer a first-hand glimpse into the intentions of employee report producers, the critiques of observers at the time, and the requirements of employees in some instances. For report producers, managers and accountants, it reveals some of the reporting traditions that we have inherited today as well as reporting practices that have already been recommended, tried and tested in the past. The readings selected cover a sixty year period from the 1920s through to the close of the 1970s, with the exception of the first contribution by Lewis, Parker and Sutcliffe (1984) that serves as the historical overview and analysis for the whole text.
Understand why fatigue happens and how to model, simulate, design and test for it with this practical, industry-focused reference Written to bridge the technology gap between academia and industry, the Metal Fatigue Analysis Handbook presents state-of-the-art fatigue theories and technologies alongside more commonly used practices, with working examples included to provide an informative, practical, complete toolkit of fatigue analysis. Prepared by an expert team with extensive industrial, research and professorial experience, the book will help you to understand: - Critical factors that cause and affect fatigue in the materials and structures relating to your work - Load and stress analysis in addition to fatigue damage—the latter being the sole focus of many books on the topic - How to design with fatigue in mind to meet durability requirements - How to model, simulate and test with different materials in different fatigue scenarios - The importance and limitations of different models for cost effective and efficient testing Whilst the book focuses on theories commonly used in the automotive industry, it is also an ideal resource for engineers and analysts in other disciplines such as aerospace engineering, civil engineering, offshore engineering, and industrial engineering. - The only book on the market to address state-of-the-art technologies in load, stress and fatigue damage analyses and their application to engineering design for durability - Intended to bridge the technology gap between academia and industry - written by an expert team with extensive industrial, research and professorial experience in fatigue analysis and testing - An advanced mechanical engineering design handbook focused on the needs of professional engineers within automotive, aerospace and related industrial disciplines
Publisher's Note: Products purchased from Third Party sellers are not guaranteed by the publisher for quality, authenticity, or access to any online entitlements included with the product. Analyze material properties and select optimal materials for civil engineering projects This hands-on textbook offers complete coverage of the construction materials that civil engineers use in the field. You will learn how to analyze material properties and select appropriate materials for civil engineering projects of all types and sizes. Materials for Civil Engineering: Properties and Applications in Infrastructure lays out key characteristics, manufacturing processes, and sustainability issues. Data analysis of materials is emphasized throughout, with references to ASTM standards for material testing. Coverage includes: • Selection of materials • Aggregates • Concrete • Steel • Asphalt • Timber • Masonry • FRP composites
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