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Global synthesis of temperature sensitivity of soil organic carbon decomposition: Latitudinal patterns and mechanisms 期刊论文
FUNCTIONAL ECOLOGY, 2019, 卷号: 33, 期号: 3, 页码: 514-523
Authors:  Wang, Qingkui;  Zhao, Xuechao;  Chen, Longchi;  Yang, Qingpeng;  Chen, Shi;  Zhang, Weidong
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carbon quality-temperature hypothesis  global warming  labile soil organic carbon  recalcitrant soil organic carbon  soil organic carbon decomposition  temperature sensitivity  
Influence of temperature on the strain rate sensitivity and deformation mechanisms of nanotwinned Cu 期刊论文
SCRIPTA MATERIALIA, 2018, 卷号: 154, 页码: 54-59
Authors:  Yang, L. W.;  Wang, C. Y.;  Monclus, M. A.;  Lu, L.;  Molina-Aldareguia, J. M.;  Llorca, J.
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Nano twinned Cu  Indentation  High temperature deformation  Strain rate sensitivity  
Strain rate-dependent high temperature compressive deformation characteristics of ultrafine-grained pure aluminum produced by ECAP 期刊论文
TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2016, 卷号: 26, 期号: 4, 页码: 966-973
Authors:  Yan Ying;  Qi Yue;  Chen Lijia;  Li Xiaowu
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RATE SENSITIVITY  MECHANICAL-PROPERTIES  BEHAVIOR  COPPER  CU  ALLOY  AL  MICROSTRUCTURE  FEATURES  METALS  equal channel angular pressing (ECAP)  pure Al  strain rate  high temperature compression  deformation  damage  microstructure  
Strain rate-dependent high temperature compressive deformation characteristics of ultrafine-grained pure aluminum produced by ECAP 期刊论文
TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2016, 卷号: 26, 期号: 4, 页码: 966-973
Authors:  Yan Ying;  Qi Yue;  Chen Lijia;  Li Xiaowu
Favorite  |  View/Download:55/0  |  Submit date:2021/02/02
RATE SENSITIVITY  MECHANICAL-PROPERTIES  BEHAVIOR  COPPER  CU  ALLOY  AL  MICROSTRUCTURE  FEATURES  METALS  equal channel angular pressing (ECAP)  pure Al  strain rate  high temperature compression  deformation  damage  microstructure  
Dynamic Strain Aging in a Newly Developed Ni-Co-Base Superalloy with Low Stacking Fault Energy 期刊论文
Journal of Materials Science & Technology, 2013, 卷号: 29, 期号: 9, 页码: 873-878
Authors:  C. G. Tian;  C. Y. Cui;  L. Xu;  Y. F. Gu;  X. F. Sun
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Ni-co Base Superalloy  Dynamic Strain Aging (Dsa)  Activation Energy  Substitutional Solute  Stacking Fault  Serrated Flow  Activation-energy  Mechanical-properties  Rate  Sensitivity  Stress  Temperature  Alloy  Parameters  Model  
Enhanced rate-dependent tensile deformation in equal channel angularly pressed Sn-Ag-Cu alloy 期刊论文
Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing, 2009, 卷号: 502, 期号: 1-2, 页码: 153-158
Authors:  Q. S. Zhu;  Z. G. Wang;  S. D. Wu;  J. K. Shang
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Sn-ag-cu Alloy  Strain Rate Sensitivity  Time-dependent Deformation  Grain Boundary Diffusion  Strain-rate Sensitivity  Lead-free Solders  Superplastic Deformation  Temperature  Joints  Flow  Microstructure  Property  Stresses  
Strain hardening behavior of ultrafine-grained Cu by analyzing the tensile stress-strain curve 期刊论文
Advanced Engineering Materials, 2008, 卷号: 10, 期号: 5, 页码: 434-438
Authors:  C. X. Huang;  S. D. Wu;  S. X. Li;  Z. F. Zhang
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Severe Plastic-deformation  Dual-phase Steels  Nanostructured Metals  Rate Sensitivity  Ductility  Copper  Nanocrystalline  Temperature  Strength  Microstructure  
High cycle fatigue behavior of a directionally solidified Ni-base superalloy DZ951 期刊论文
Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing, 2008, 卷号: 496, 期号: 1-2, 页码: 355-361
Authors:  Z. K. Chu;  J. J. Yu;  X. F. Sun;  H. R. Guan;  Z. Q. Hu
Adobe PDF(2204Kb)  |  Favorite  |  View/Download:41/0  |  Submit date:2012/04/13
Ni-base Superalloy  High Cycle Fatigue  Notch Sensitivity  Slip Bands  Single-crystal Superalloy  Crack-growth  Temperature-dependence  Elevated-temperatures  Orientation  
Hardness and strain rate sensitivity of nanocrystalline Cu 期刊论文
Scripta Materialia, 2006, 卷号: 54, 期号: 11, 页码: 1913-1918
Authors:  J. Chen;  L. Lu;  K. Lu
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Nanocrystalline Cu  Hall-petch Relation  Grain Size  Strain Rate  Sensitivity  Plastic-deformation  Activation Volume  Tensile Behavior  Copper  Metals  Strength  Ductility  Fcc  Ni  Temperature