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Microcompression of brittle and anisotropic crystals: recent advances and current challenges in studying plasticity in hard materials
by
Korte-Kerzel, Sandra
in
Alloys
/ Biomaterials
/ Brittle fracture
/ Brittle materials
/ Characterization and Evaluation of Materials
/ Deformation mechanisms
/ Hard materials
/ Indium antimonide
/ Intermetallic compounds
/ Materials Engineering
/ Materials Science
/ Mechanical properties
/ Metal compounds
/ Nanotechnology
/ Oxides
/ Plastic properties
/ Polymer Sciences
/ Prospective Article
/ Prospective Articles
/ Studies
/ Temperature
2017
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Microcompression of brittle and anisotropic crystals: recent advances and current challenges in studying plasticity in hard materials
by
Korte-Kerzel, Sandra
in
Alloys
/ Biomaterials
/ Brittle fracture
/ Brittle materials
/ Characterization and Evaluation of Materials
/ Deformation mechanisms
/ Hard materials
/ Indium antimonide
/ Intermetallic compounds
/ Materials Engineering
/ Materials Science
/ Mechanical properties
/ Metal compounds
/ Nanotechnology
/ Oxides
/ Plastic properties
/ Polymer Sciences
/ Prospective Article
/ Prospective Articles
/ Studies
/ Temperature
2017
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Microcompression of brittle and anisotropic crystals: recent advances and current challenges in studying plasticity in hard materials
by
Korte-Kerzel, Sandra
in
Alloys
/ Biomaterials
/ Brittle fracture
/ Brittle materials
/ Characterization and Evaluation of Materials
/ Deformation mechanisms
/ Hard materials
/ Indium antimonide
/ Intermetallic compounds
/ Materials Engineering
/ Materials Science
/ Mechanical properties
/ Metal compounds
/ Nanotechnology
/ Oxides
/ Plastic properties
/ Polymer Sciences
/ Prospective Article
/ Prospective Articles
/ Studies
/ Temperature
2017
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Microcompression of brittle and anisotropic crystals: recent advances and current challenges in studying plasticity in hard materials
Journal Article
Microcompression of brittle and anisotropic crystals: recent advances and current challenges in studying plasticity in hard materials
2017
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Overview
Recent years have seen an increased application of small-scale uniaxial testing—microcompression—to the study of plasticity in macroscopically brittle materials. By suppressing fast fracture, new insights into deformation mechanisms of more complex crystals have become available, which had previously been out of reach of experiments. Structurally complex intermetallics, metallic compounds, or oxides are commonly brittle, but in some cases extraordinary, though currently mostly unpredictable, mechanical properties are found. This paper aims to give a survey of current advances, outstanding challenges, and practical considerations in testing such hard, brittle, and anisotropic crystals.
Publisher
Cambridge University Press,Springer International Publishing,Springer Nature B.V
Subject
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