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Effect of substrate orientation on formation of cluster glass state in epitaxial LaMnO3 thin films 期刊论文
JOURNAL OF ALLOYS AND COMPOUNDS, 2020, 卷号: 847, 页码: 8
Authors:  Liang, Yong Mei;  Wang, Zhan Jie;  Wu, Ying Jie;  Lin, Jun Liang;  Zhang, Zhi Dong
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LaMnO3  Thin films  Cluster glass state  Crystalline orientation  Strain state  
Effect of substrate orientation on formation of cluster glass state in epitaxial LaMnO3 thin films 期刊论文
JOURNAL OF ALLOYS AND COMPOUNDS, 2020, 卷号: 847, 页码: 8
Authors:  Liang, Yong Mei;  Wang, Zhan Jie;  Wu, Ying Jie;  Lin, Jun Liang;  Zhang, Zhi Dong
Favorite  |  View/Download:55/0  |  Submit date:2021/02/02
LaMnO3  Thin films  Cluster glass state  Crystalline orientation  Strain state  
First-principles investigations of elastic stability and electronic structure of cubic platinum carbide under pressure 期刊论文
Journal of Applied Physics, 2011, 卷号: 110, 期号: 10
Authors:  X. W. Sun;  Q. F. Chen;  X. R. Chen;  L. C. Cai;  F. Q. Jing
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Phase-transition  Ground-state  Nitrides  Instabilities  Crystals  Compound  Strain  Ptc  
The enhancement of transformation induced plasticity effect on austenitic stainless steels by cyclic tensile loading and unloading 期刊论文
Materials Letters, 2011, 卷号: 65, 期号: 11, 页码: 1545-1547
Authors:  Y. Xu;  S. H. Zhang;  H. W. Song;  M. Cheng;  H. Q. Zhang
Adobe PDF(707Kb)  |  Favorite  |  View/Download:55/0  |  Submit date:2012/04/13
Austenitic Steels  Loading Modes  Phase Transformation  Mechanical  Properties  X-ray Techniques  Induced Martensitic-transformation  Ti Maraging-steel  Strain-induced  Martensite  Back Stress Evolution  Volume Fraction Lines  Mechanical-properties  Deformation  304-stainless-steel  Behavior  State  
THE DYNAMIC PHASE TRANSFORMATION AND FORMATION OF NANOCRYSTALLINE STRUCTURE IN SUS304 AUSTENITIC STAINLESS STEEL SUBJECTED TO HIGH PRESSURE TORSION 期刊论文
Reviews on Advanced Materials Science, 2008, 卷号: 18, 期号: 7, 页码: 577-582
Authors:  J. G. Li;  M. Umemoto;  Y. Todaka;  K. Fujisaku;  K. Tsuchiya
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Deformation-induced Transformation  Strain State  Carbon-steel  Martensite  
Formation of nanostructured surface layer on AISI 304 stainless steel by means of surface mechanical attrition treatment 期刊论文
Acta Materialia, 2003, 卷号: 51, 期号: 7, 页码: 1871-1881
Authors:  H. W. Zhang;  Z. K. Hei;  G. Liu;  J. Lu;  K. Lu
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Surface Mechanical Attrition Treatment  Nanostructured Material  Grain  Refinement Mechanism  Aisi 304 Stainless Steel  Mechanical Twins  Deformation-induced Transformation  Microstructural Evolution  Room-temperature  Strain State  Fcc Alloys  Nanocrystallization  Fe  Behavior  Grain