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High-temperature materials for structural applications: New perspectives on high-entropy alloys, bulk metallic glasses, and nanomaterials
by
Liaw, Peter K.
, Huang, E-Wen
in
Advantages
/ Aerospace engineering
/ Aircraft
/ Alloy development
/ Aluminum
/ Amorphous materials
/ Applied and Technical Physics
/ Business metrics
/ Characterization and Evaluation of Materials
/ Coal
/ Composite materials
/ Correlation analysis
/ Diffraction
/ Emissions
/ Energy Materials
/ Entropy
/ High entropy alloys
/ High resolution
/ High-Temperature Materials for Structural Applications
/ In situ measurement
/ Laboratories
/ Materials Engineering
/ Materials Science
/ Metallic glasses
/ Metallurgy
/ Metals
/ Nanomaterials
/ Nanotechnology
/ Neutrons
/ Nickel alloys
/ Precipitation hardening
/ Researchers
/ Residual stress
/ Software
/ Stainless steel
/ Synchrotron radiation
/ Titanium alloys
/ X-rays
/ Yield stress
2019
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High-temperature materials for structural applications: New perspectives on high-entropy alloys, bulk metallic glasses, and nanomaterials
by
Liaw, Peter K.
, Huang, E-Wen
in
Advantages
/ Aerospace engineering
/ Aircraft
/ Alloy development
/ Aluminum
/ Amorphous materials
/ Applied and Technical Physics
/ Business metrics
/ Characterization and Evaluation of Materials
/ Coal
/ Composite materials
/ Correlation analysis
/ Diffraction
/ Emissions
/ Energy Materials
/ Entropy
/ High entropy alloys
/ High resolution
/ High-Temperature Materials for Structural Applications
/ In situ measurement
/ Laboratories
/ Materials Engineering
/ Materials Science
/ Metallic glasses
/ Metallurgy
/ Metals
/ Nanomaterials
/ Nanotechnology
/ Neutrons
/ Nickel alloys
/ Precipitation hardening
/ Researchers
/ Residual stress
/ Software
/ Stainless steel
/ Synchrotron radiation
/ Titanium alloys
/ X-rays
/ Yield stress
2019
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Do you wish to request the book?
High-temperature materials for structural applications: New perspectives on high-entropy alloys, bulk metallic glasses, and nanomaterials
by
Liaw, Peter K.
, Huang, E-Wen
in
Advantages
/ Aerospace engineering
/ Aircraft
/ Alloy development
/ Aluminum
/ Amorphous materials
/ Applied and Technical Physics
/ Business metrics
/ Characterization and Evaluation of Materials
/ Coal
/ Composite materials
/ Correlation analysis
/ Diffraction
/ Emissions
/ Energy Materials
/ Entropy
/ High entropy alloys
/ High resolution
/ High-Temperature Materials for Structural Applications
/ In situ measurement
/ Laboratories
/ Materials Engineering
/ Materials Science
/ Metallic glasses
/ Metallurgy
/ Metals
/ Nanomaterials
/ Nanotechnology
/ Neutrons
/ Nickel alloys
/ Precipitation hardening
/ Researchers
/ Residual stress
/ Software
/ Stainless steel
/ Synchrotron radiation
/ Titanium alloys
/ X-rays
/ Yield stress
2019
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High-temperature materials for structural applications: New perspectives on high-entropy alloys, bulk metallic glasses, and nanomaterials
Journal Article
High-temperature materials for structural applications: New perspectives on high-entropy alloys, bulk metallic glasses, and nanomaterials
2019
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Overview
Tougher, lighter, and more formable and machinable metals for broader ranges of applications at higher temperatures are needed now more than ever. High-performance computing, high-resolution microscopy, and advanced spectroscopy methods, including neutrons and synchrotron x-rays, together with advances in metallurgy and metal mixology, reveal the potential of multicomponent advanced metals, such as multicomponent bulk metallic glasses and advanced high-entropy alloys. The development of new experimental approaches relates bulk properties and voxel-associated optimized properties throughout structures with high resolution. The correlations from in situ measurements greatly improve crystal plasticity-based models. This issue of MRS Bulletin overviews recent progress in the field, and this article highlights the importance of these new perspectives. The latest progress and directions in the science and technology for prospective high-temperature metals for structural applications are reported.
Publisher
Cambridge University Press,Springer International Publishing,Springer Nature B.V
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