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This edition includes the selected papers in the area of engineering plasticity, which were presented at the 14th Asia-Pacific Symposium on Engineering Plasticity and its Applications (AEPA 2018) was held on Jeju Island, Korea during December 2-7, 2018. Steel, Alloys, Composites, Materials Properties, Material Behavior, Material Plasticity, Process Modeling, Forming Technologies, Kinematic Hardening, Forming Limit, Polycrystal Modeling, Numerical Methods Materials Science.
Classical plasticity is a well established domain of mechanics and engineering, providing the basis for many engineering structural design, manufacturing processes and natural phenomena. New important characteristics are emerging in the interdisciplinary approach of micro-, meso- and macro-mechanics, and through analysis, experiments and computation.The interaction of mechanics and materials scientists is introducing tremendous changes in the two disciplines, so that the possibility of materials being processed on the microscale to achieve the desired macroscopic properties is rapidly approaching.A comprehensive overview on the latest developments in both macroplasticity and microplasticity theories, their interactions and applications in various engineering disciplines such as solid mechanics, structural analysis and geo-mechanics, materials science and technology, and metal forming and machining, is given in this volume. Case studies written by international experts focus on aspects such as the applications of plasticity in interdisciplinary and non-conventional areas. The 150 papers provide a current and useful reference source on the latest advances for both research workers and engineers in the various fields of plasticity.
Selected, peer reviewed papers from International Conference on Advances in Materials and Processing Technologies (AMPT), 2-5 November, 2008
Advances in Tuna Aquaculture: From Hatchery to Market provides detailed overviews on the current status of tuna fisheries, fattening, and farming practices, as well as advances in closed-cycle tuna aquaculture. Contributors are renowned scientists, internationally recognized as authorities in their fields. This book addresses all basic and applied aspects of tuna aquaculture, presenting and discussing the global status of tuna fisheries, reproduction, broodstock management, spawning, larval rearing and early developmental stages including nursery and grow out methods. It presents incorporates the most comprehensive and updated data, statistics, and trends in tuna fisheries and aquaculture, covering and addresses a variety of topics ranging fromfrom endocrinology, nutrition, diseases, and genetics to economics and markets. It covers describes recent up-to-date progress on tuna aquaculture and hatchery development. It also provides a synopsisn overview of the challenges presently confronted by tuna aquaculturists,facing tuna aquaculture and and offers innovative views on the challengesbottle-neck issues faced by the industry with the current shift from fisheries to fattening to closed-cycle aquaculture. This is the first book to encompass all aspects related to the tuna aquaculture industry, and merges them into a state-of-the-art compendium that will serve as seminal reference for students, researchers, and professionals working with tuna biology, fisheries, and aquaculture worldwide. - Incorporates and reviews the most recent information on tuna fisheries and aquaculture - Presents the most innovative production technologies in tuna aquaculture, from hatchery to market - Includes important information on tuna, derived from industry experience and academic research on larval rearing technology and grow out operations - Encompasses and discusses key topics such as genetics, diseases, nutrition, endocrinology, and reproduction, as well as developments, challenges, and future opportunities in tuna aquaculture - Provides the latest scientific methods and technologies to maximize efficiencies and production - Presents the independent and collective assessments, viewpoints, and visions of various scientists, all internationally recognized as authorities in the field
The collection of scientific papers by results of 13-th Asia-Pacific Symposium on Engineering Plasticity and Its Applications (AEPA2016, December 4-8, 2016, Higashi-Hiroshima City, Japan) highlights basic moments of modern achievements in the field of study and of the practical use of the plastic properties and other mechanical properties of various structure materials for the purposes of modern mechanical engineering. We hope this collection will be useful for many scientists and engineers whose activities is related with modern engineering materials and their processing. Steel, Alloys, Plasticity, Strength, Crystalization, Damage, Fatique Properties, Processing, Forming Materials Science.
In Economies of Abandonment, Elizabeth A. Povinelli explores how late liberal imaginaries of tense, eventfulness, and ethical substance make the global distribution of life and death, hope and harm, and endurance and exhaustion not merely sensible but also just. She presents new ways of conceptualizing formations of power in late liberalism—the shape that liberal governmentality has taken as it has responded to a series of legitimacy crises in the wake of anticolonial and new social movements and, more recently, the “clash of civilizations” after September 11. Based on longstanding ethnographic work in Australia and the United States, as well as critical readings of legal, academic, and activist texts, Povinelli examines how alternative social worlds and projects generate new possibilities of life in the context of ordinary and extraordinary acts of neglect and surveillance. She focuses particularly on social projects that have not yet achieved a concrete existence but persist at the threshold of possible existence. By addressing the question of the endurance, let alone the survival, of alternative forms of life, Povinelli opens new ethical and political questions.
Selected, peer reviewed papers from the 11th Asia-Pacific Conference on Engineering Plasticity and its Applications (AEPA 2012), December 5-7, 2012, Singapore
S2Pokeweed, a plant abundant in Appalachia, exhibits some chemical similarities to a related species that has shown molluscicidal properties. Because this suggests that pokeweed, Phytolacca americana L. (P. decandra L.), has potential for controlling fresh-water snails, we have compiled this report of its chemical composition, uses, propagation methods, and other potentially useful species of the genus Phytolacca. The related species, Phytolacca dodencandra L'Her, was found to be the source of a molluscicide, which could pIay an important role in control of bilharziasis, a parasitic disease of humans widespread in Puerto Rico, Africa, and other tropical areas (22). Dead snails and small fish were observed in waterways in areas of Ethiopia where people washed their clothes with this Phytolacca's fruit, which is rich in saponins. Some distance downstream and immediately upstream from the washing places, abundant live snails were present, suggesting that the fruit contained a toxin acting as a molluscicide. This was subsequently confirmed by laboratory tests; tap-water extracts of the dried and powdered fruit had an LC100 (lethal concentration) of 10 parts per million against snails (Biomphalaria, Bulinus: and Lymnea spp.) after 24-hour exposure at 23OC. Furthermore, it was shown that molluscicidal potency was not affected by the presence of soil or vegetable matter, an important factor when the molluscicide is used under natural conditions. S3.
Selected, peer reviewed papers from the 13th Asia-Pacific Symposium on Engineering Plasticity and its Applications (AEPA2016), December 4-8, 2016, Hiroshima, Japan
The aim is to introduce recent advances in engineering plasticity and its applications. The scope covers a wide range of topics on metals, rock soil, rubber, ceramics, polymers, composites, etc., which are involved in engineering plasticity. The papers represent a diverse nature of engineering plasticity and its application, which include constitutive modeling, damage, fracture, fatigue and failure, crash dynamics, structural plasticity, multi-scale plasticity, crystal plasticity, etc.