Nickel Base Single Crystals Across Length Scales Books

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Nickel Base Single Crystals Across Length Scales


Nickel Base Single Crystals Across Length Scales
  • Author : Georges Cailletaud
  • Publisher : Elsevier
  • Release : 2020-11-01
  • ISBN : 9780128193587
  • Language : En, Es, Fr & De
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In the hottest zones of aero-engines and industrial gas turbines, the need for outstanding properties makes it mandatory for the use of superalloys and single crystal superalloys. This kind of material has been optimized from empirical solutions, with very low input from the models for design purposes. This drawback is mainly due to the complexity of industrial alloys creating an issue of predictive modelling. This book is written to simultaneously address the most advanced knowledge in metallurgy and computational mechanics applied to superalloys used as a bare material or with thermal barrier coating system. Joining both aspects, the book helps to understand the mechanisms driving properties and their evolution from fundamental to application level. The guidelines provided are helpful for students and researchers who wish to understand issues and solutions, to optimize materials and to model them in a cross-check analysis, from atomistic to component scale. The book is useful for both students and engineers, making accessible the most advanced methods for processing, characterization and design. Provides an up to date overview of the field of superalloys Covers the relationship between microstructural evolution and mechanical behaviour at high temperatures Discusses both basic and advanced modelling and characterization techniques Includes case studies illustrating the application of the techniques presented in the book

Integrated Computational Materials Engineering ICME


Integrated Computational Materials Engineering  ICME
  • Author : Somnath Ghosh
  • Publisher : Springer Nature
  • Release : 2020-03-20
  • ISBN : 9783030405625
  • Language : En, Es, Fr & De
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‚ÄčThis book introduces research advances in Integrated Computational Materials Engineering (ICME) that have taken place under the aegis of the AFOSR/AFRL sponsored Center of Excellence on Integrated Materials Modeling (CEIMM) at Johns Hopkins University. Its author team consists of leading researchers in ICME from prominent academic institutions and the Air Force Research Laboratory. The book examines state-of-the-art advances in physics-based, multi-scale, computational-experimental methods and models for structural materials like polymer-matrix composites and metallic alloys. The book emphasizes Ni-based superalloys and epoxy matrix carbon-fiber composites and encompasses atomistic scales, meso-scales of coarse-grained models and discrete dislocations, and micro-scales of poly-phase and polycrystalline microstructures. Other critical phenomena investigated include the relationship between microstructural morphology, crystallography, and mechanisms to the material response at different scales; methods of identifying representative volume elements using microstructure and material characterization, and robust deterministic and probabilistic modeling of deformation and damage. Encompassing a slate of topics that enable readers to comprehend and approach ICME-related issues involved in predicting material performance and failure, the book is ideal for mechanical, civil, and aerospace engineers, and materials scientists, in in academic, government, and industrial laboratories.

Superalloys 2012


Superalloys 2012
  • Author : Eric S. Huron
  • Publisher : John Wiley & Sons
  • Release : 2012-10-02
  • ISBN : 9781118516409
  • Language : En, Es, Fr & De
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A superalloy, or high-performance alloy, is an alloy that exhibits excellent mechanical strength at high temperatures. Superalloy development has been driven primarily by the aerospace and power industries. This compilation of papers from the Twelfth International Symposium on Superalloys, held from September 9-13, 2012, offers the most recent technical information on this class of materials.

Computational Methods for Microstructure Property Relationships


Computational Methods for Microstructure Property Relationships
  • Author : Somnath Ghosh
  • Publisher : Springer Science & Business Media
  • Release : 2010-11-17
  • ISBN : 1441906436
  • Language : En, Es, Fr & De
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Computational Methods for Microstructure-Property Relationships introduces state-of-the-art advances in computational modeling approaches for materials structure-property relations. Written with an approach that recognizes the necessity of the engineering computational mechanics framework, this volume provides balanced treatment of heterogeneous materials structures within the microstructural and component scales. Encompassing both computational mechanics and computational materials science disciplines, this volume offers an analysis of the current techniques and selected topics important to industry researchers, such as deformation, creep and fatigue of primarily metallic materials. Researchers, engineers and professionals involved with predicting performance and failure of materials will find Computational Methods for Microstructure-Property Relationships a valuable reference.

Creep and Fracture in High Temperature Components


Creep and Fracture in High Temperature Components
  • Author : European Creep Collaborative Committee
  • Publisher : DEStech Publications, Inc
  • Release : 2005
  • ISBN : 1932078495
  • Language : En, Es, Fr & De
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Provides information from around the world on creep in multiple high-temperature metals, alloys, and advanced materials.