Advanced Materials : proceedings of the International Conference on "Physics and Mechanics of New Materials and Their Applications", PHENMA 2019 / edited by Ivan A. Parinov, Shun-Hsyung Chang, Banh Tien Long.
2020
TA401.3
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Title
Advanced Materials : proceedings of the International Conference on "Physics and Mechanics of New Materials and Their Applications", PHENMA 2019 / edited by Ivan A. Parinov, Shun-Hsyung Chang, Banh Tien Long.
Meeting Name
International Conference on "Physics and Mechanics of New Materials and Their Applications" (2019 : Hanoi, Vietnam)
ISBN
9783030451202 (electronic book)
3030451208 (electronic book)
9783030451196
3030451208 (electronic book)
9783030451196
Published
Cham : Springer, 2020.
Language
English
Description
1 online resource (xxxvi, 621 pages) : illustrations
Item Number
10.1007/978-3-030-45
Call Number
TA401.3
Dewey Decimal Classification
620.1/1
Summary
This book presents selected peer-reviewed contributions from the 2019 International Conference on "Physics and Mechanics of New Materials and Their Applications", PHENMA 2019 (Hanoi, Vietnam, 7-10 November, 2019), divided into four scientific themes: processing techniques, physics, mechanics, and applications of advanced materials. The book describes a broad spectrum of promising nanostructures, crystals, materials and composites with special properties. It presents nanotechnology approaches, modern environmentally friendly techniques and physical-chemical and mechanical studies of the structural-sensitive and physical-mechanical properties of materials. The obtained results are based on new achievements in material sciences and computational approaches, methods and algorithms (in particular, finite-element and finite-difference modeling) applied to the solution of different technological, mechanical and physical problems. The obtained results have a significant interest for theory, modeling and test of advanced materials. Other results are devoted to promising devices demonstrating high accuracy, longevity and new opportunities to work effectively under critical temperatures and high pressures, in aggressive media, etc. These devices demonstrate improved comparative characteristics, caused by developed materials and composites, allowing investigation of physio-mechanical processes and phenomena based on scientific and technological progress.
Note
International conference proceedings.
Bibliography, etc. Note
Includes bibliographical references and author index.
Access Note
Access limited to authorized users.
Series
Springer proceedings in materials ; v. 6.
Available in Other Form
Advanced Materials : Proceedings of the International Conference on Physics and Mechanics of New Materials and Their Applications , PHENMA 2019
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Table of Contents
Influence of Composition and Structure of Pt-Based Electrocatalysts on Their Durability in Different Conditions of Stress-Test
Investigation of the Effect of Different Organic Additives on Morphology and Electrocatalytic Activity of Platinum Nanomaterials towards Oxygen Reduction Reactions
Investigation of the Effect of Different Organic Additives on Morphology and Electrocatalytic Activity of Platinum Nanomaterials towards Oxygen Reduction Reactions
Morphology and Structure of Carbon Nanoparticles Generated from Graphite Nitrate Co-intercalation Compound. Effect of Sonication Regime.
Investigation of the Effect of Different Organic Additives on Morphology and Electrocatalytic Activity of Platinum Nanomaterials towards Oxygen Reduction Reactions
Investigation of the Effect of Different Organic Additives on Morphology and Electrocatalytic Activity of Platinum Nanomaterials towards Oxygen Reduction Reactions
Morphology and Structure of Carbon Nanoparticles Generated from Graphite Nitrate Co-intercalation Compound. Effect of Sonication Regime.