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Visits

1. Time-, stress-, and temperature-dependent deformation in nanostruc.. [930]
2. Machine learning atomic-scale stiffness in metallic glass [921]
3. "Self-sharpening" tungsten high-entropy alloy [839]
4. Effects of oxidation on tensile deformation of iron nanowires: Ins.. [815]
5. Unusually high corrosion resistance in MoxCrNiCo medium entropy al.. [786]
6. Novel atomic-scale mechanism of incipient plasticity in a chemical.. [754]
7. Dislocation nucleation and evolution at the ferrite-cementite inte.. [713]
8. Hierarchical-microstructure based modeling for plastic deformation.. [682]
9. Ultrasonic plasticity of metallic glass near room temperature [682]
10. Synergistic strengthening mechanisms of rhenium in nickel-based si.. [669]
11. Statistical complexity of potential energy landscape as a dynamic .. [654]
12. One-step annealing optimizes strength-ductility tradeoff in pearli.. [627]
13. Susceptibility of shear banding to chemical short-range order in m.. [626]
14. Sluggish hydrogen diffusion and hydrogen decreasing stacking fault.. [620]
15. Understanding the serrated flow and Johari-Goldstein relaxation of.. [615]
16. Universal structural softening in metallic glasses indicated by bo.. [615]
17. Revisiting the structure-property relationship of metallic glasses.. [605]
18. Fast surface dynamics enabled cold joining of metallic glasses [604]
19. Characteristics of stress relaxation kinetics of La60Ni15Al25 bulk.. [598]
20. Unified perspective on structural heterogeneity of a LaCe-based me.. [595]
21. Deciphering the α relaxation and the anelastic-to-plastic transit.. [595]
22. Enhancing strength without compromising ductility in copper by com.. [558]
23. Stress relaxation in high-entropy Pd20Pt20Cu20Ni20P20 metallic gla.. [550]
24. A free energy landscape perspective on the nature of collective di.. [543]
25. Time, stress, and temperature-dependent deformation in nanostructu.. [538]
26. Correlating dynamic relaxation and viscoelasticity in metallic gla.. [538]
27. Inelastic deformation of metallic glasses under dynamic cyclic loa.. [534]
28. Wavy interface enables extra strengthening in an additively manufa.. [526]
29. Unraveling strongly entropic effect on beta-relaxation in metallic.. [522]
30. Atomistic interpretation of extra temperature and strain-rate sens.. [515]
31. Atomic theory of viscoelastic response and memory effects in metal.. [506]
32. Microstructural effects on the dynamical relaxation of glasses and.. [506]
33. Complexity of plastic instability in amorphous solids: Insights fr.. [502]
34. Strain gradient drives shear banding in metallic glasses [496]
35. Grain boundary-mediated plasticity accommodating the cracking proc.. [493]
36. 非晶态固体的结构可以决定性能吗? [492]
37. Correlation between vibrational anomalies and emergent anharmonici.. [490]
38. Machine-learning integrated glassy defect from an intricate config.. [476]
39. La_(30)Ce_(30)Al_(15)Co_(25)金属玻璃应力松弛行为 [472]
40. Elastic criterion for shear-banding instability in amorphous solid.. [471]
41. Dynamic mechanical relaxation and thermal creep of high-entropy La.. [469]
42. Incorporating a soft ordered phase into an amorphous configuration.. [463]
43. Assessing the utility of structure in amorphous materials [462]
44. Universal enthalpy-entropy compensation rule for the deformation o.. [456]
45. Quantifying contribution of hierarchically correlated shear microd.. [456]
46. 固体塑性实验室时间尺度的分子动力学模拟概述 [454]
47. On the kinetics of structural evolution in metallic glasses [444]
48. Dynamic responses in shocked Cu-Zr nanoglasses with gradient micro.. [443]
49. Sluggish dynamics of homogeneous flow in high-entropy metallic gla.. [441]
50. Disentangling diffusion heterogeneity in high-entropy alloys [440]
51. Mechanism transition and strong temperature dependence of dislocat.. [439]
52. Intrinsic Correlation between the Fraction of Liquidlike Zones and.. [430]
53. 基于原子尺度模拟的非晶态固体变形物理 [428]
54. Tailoring the mechanical properties of bulk metallic glasses via c.. [428]
55. Oxyhydroxide of metallic nanowires in a molecular H2O and H2O2 env.. [420]
56. Aging and rejuvenation during high-temperature deformation in a me.. [417]
57. Atomistic structural mechanism for the glass transition: Entropic .. [416]
58. Bridging shear transformation zone to the atomic structure of amor.. [413]
59. Elastic interactions of plastic events in strained amorphous solid.. [403]
60. Achieving structural rejuvenation in metallic glass by modulating .. [402]
61. Modulating mechanical performances of metallic amorphous materials.. [399]
62. Prediction of chemical short-range order in high-/medium-entropy a.. [399]
63. Ergodic Structural Diversity Predicts Dynamics in Amorphous Materi.. [386]
64. Fracture universality in amorphous nanowires [380]
65. Atomistic insights on the influence of pre-oxide shell layer and s.. [372]
66. Structural Parameter of Orientational Order to Predict the Boson V.. [368]
67. 固体塑性微观机制加速分子动力学模拟 [366]
68. Ratchetting in Cold-Drawn Pearlitic Steel Wires [362]
69. Alterable tension-compression asymmetry in work hardening of an ad.. [356]
70. Training beta relaxation to rejuvenate metallic glasses [343]
71. Physics motivated fractional viscoelasticity model for dynamic rel.. [320]
72. Laser shock peening strengthens additively manufactured high-entro.. [317]
73. The anelastic origin of mechanical cycling induced rejuvenation in.. [313]
74. Fundamental links between shear transformation, fi relaxation, and.. [311]
75. 固体微观塑性跨时间尺度原子模拟 [309]
76. Correlation between strain rate sensitivity and a relaxation of me.. [307]
77. Hidden spatiotemporal sequence in transition to shear band in amor.. [307]
78. Ultra fast amorphization of crystalline alloys by ultrasonic vibra.. [301]
79. Prediction of pressure-promoted thermal rejuvenation in metallic g.. [300]
80. Phonon instability of a multi-principal element alloy [300]
81. Reversible anelastic deformation mediated by β relaxation and.. [289]
82. Influence of oscillation strain on the dynamic mechanical relaxati.. [276]
83. Emergent failure transition of pearlitic steel at extremely high s.. [249]
84. Disorder-order transition in multiprincipal element alloy: A free .. [244]
85. Short-range order and its impacts on the BCC MoNbTaW multi-princip.. [243]
86. Mechanical anisotropy in additively manufactured laminated high-en.. [240]
87. Structural rejuvenation and relaxation of a metallic glass under t.. [238]
88. Ultra-Efficient and Cost-Effective Platinum Nanomembrane Electroca.. [238]
89. Amorphous Thickness-Dependent Strengthening-Softening Transition i.. [204]
90. Creep deformation in metallic glasses: A global approach with stra.. [198]
91. Role of chemical disorder in slowing down diffusion in complex con.. [172]
92. Dynamics-Entropy Relationship in Metallic Glasses [171]
93. Multi-principal element materials: Structure, property, and proces.. [169]
94. Deciphering non-elastic deformation in amorphous alloy: Simultaneo.. [166]
95. Connection between Mechanical Relaxation and Equilibration Kinetic.. [148]
96. A model on the coupling between cyclic fatigue and microstructure .. [119]
97. Structural mechanism of glass transition uncovered by unsupervised.. [111]
98. Integrating dynamic relaxation with inelastic deformation in metal.. [102]
99. Atomistic mechanisms of dynamics in a two-dimensional dodecagonal .. [96]
100. An Artificial Intelligence Constitutive Model for Amorphous Solids.. [95]

Downloads

1. Machine learning atomic-scale stiffness in metallic glass [511]
2. Unusually high corrosion resistance in MoxCrNiCo medium entropy al.. [454]
3. Novel atomic-scale mechanism of incipient plasticity in a chemical.. [400]
4. Correlating dynamic relaxation and viscoelasticity in metallic gla.. [364]
5. "Self-sharpening" tungsten high-entropy alloy [356]
6. Wavy interface enables extra strengthening in an additively manufa.. [326]
7. On the kinetics of structural evolution in metallic glasses [319]
8. Quantifying contribution of hierarchically correlated shear microd.. [304]
9. Characteristics of stress relaxation kinetics of La60Ni15Al25 bulk.. [292]
10. Time-, stress-, and temperature-dependent deformation in nanostruc.. [270]
11. One-step annealing optimizes strength-ductility tradeoff in pearli.. [262]
12. Ultrasonic plasticity of metallic glass near room temperature [259]
13. Time, stress, and temperature-dependent deformation in nanostructu.. [250]
14. Revisiting the structure-property relationship of metallic glasses.. [239]
15. Bridging shear transformation zone to the atomic structure of amor.. [235]
16. A free energy landscape perspective on the nature of collective di.. [230]
17. Enhancing strength without compromising ductility in copper by com.. [229]
18. Hierarchical-microstructure based modeling for plastic deformation.. [222]
19. Atomistic structural mechanism for the glass transition: Entropic .. [218]
20. Unraveling strongly entropic effect on beta-relaxation in metallic.. [217]
21. Strain gradient drives shear banding in metallic glasses [216]
22. 基于原子尺度模拟的非晶态固体变形物理 [215]
23. Fast surface dynamics enabled cold joining of metallic glasses [215]
24. Mechanism transition and strong temperature dependence of dislocat.. [213]
25. Sluggish hydrogen diffusion and hydrogen decreasing stacking fault.. [212]
26. Effects of oxidation on tensile deformation of iron nanowires: Ins.. [211]
27. 固体塑性实验室时间尺度的分子动力学模拟概述 [202]
28. 非晶态固体的结构可以决定性能吗? [199]
29. Dislocation nucleation and evolution at the ferrite-cementite inte.. [197]
30. Modulating mechanical performances of metallic amorphous materials.. [194]
31. Universal enthalpy-entropy compensation rule for the deformation o.. [189]
32. Synergistic strengthening mechanisms of rhenium in nickel-based si.. [182]
33. Oxyhydroxide of metallic nanowires in a molecular H2O and H2O2 env.. [180]
34. Understanding the serrated flow and Johari-Goldstein relaxation of.. [173]
35. Atomistic interpretation of extra temperature and strain-rate sens.. [172]
36. Correlation between vibrational anomalies and emergent anharmonici.. [166]
37. Universal structural softening in metallic glasses indicated by bo.. [164]
38. Susceptibility of shear banding to chemical short-range order in m.. [164]
39. Atomic theory of viscoelastic response and memory effects in metal.. [163]
40. Dynamic responses in shocked Cu-Zr nanoglasses with gradient micro.. [163]
41. Statistical complexity of potential energy landscape as a dynamic .. [162]
42. Elastic criterion for shear-banding instability in amorphous solid.. [161]
43. Sluggish dynamics of homogeneous flow in high-entropy metallic gla.. [160]
44. Machine-learning integrated glassy defect from an intricate config.. [159]
45. 固体塑性微观机制加速分子动力学模拟 [154]
46. Intrinsic Correlation between the Fraction of Liquidlike Zones and.. [153]
47. Ratchetting in Cold-Drawn Pearlitic Steel Wires [151]
48. Grain boundary-mediated plasticity accommodating the cracking proc.. [148]
49. Alterable tension-compression asymmetry in work hardening of an ad.. [148]
50. Unified perspective on structural heterogeneity of a LaCe-based me.. [147]
51. Disentangling diffusion heterogeneity in high-entropy alloys [146]
52. Aging and rejuvenation during high-temperature deformation in a me.. [146]
53. Achieving structural rejuvenation in metallic glass by modulating .. [146]
54. Complexity of plastic instability in amorphous solids: Insights fr.. [145]
55. Inelastic deformation of metallic glasses under dynamic cyclic loa.. [145]
56. La_(30)Ce_(30)Al_(15)Co_(25)金属玻璃应力松弛行为 [141]
57. Tailoring the mechanical properties of bulk metallic glasses via c.. [131]
58. Phonon instability of a multi-principal element alloy [127]
59. Microstructural effects on the dynamical relaxation of glasses and.. [123]
60. Hidden spatiotemporal sequence in transition to shear band in amor.. [123]
61. Assessing the utility of structure in amorphous materials [122]
62. Atomistic insights on the influence of pre-oxide shell layer and s.. [119]
63. Structural Parameter of Orientational Order to Predict the Boson V.. [116]
64. Physics motivated fractional viscoelasticity model for dynamic rel.. [115]
65. Stress relaxation in high-entropy Pd20Pt20Cu20Ni20P20 metallic gla.. [110]
66. Ergodic Structural Diversity Predicts Dynamics in Amorphous Materi.. [107]
67. Elastic interactions of plastic events in strained amorphous solid.. [101]
68. Ultra fast amorphization of crystalline alloys by ultrasonic vibra.. [99]
69. Prediction of pressure-promoted thermal rejuvenation in metallic g.. [97]
70. Dynamic mechanical relaxation and thermal creep of high-entropy La.. [97]
71. 固体微观塑性跨时间尺度原子模拟 [96]
72. Incorporating a soft ordered phase into an amorphous configuration.. [94]
73. Influence of oscillation strain on the dynamic mechanical relaxati.. [94]
74. Correlation between strain rate sensitivity and a relaxation of me.. [93]
75. The anelastic origin of mechanical cycling induced rejuvenation in.. [90]
76. Fracture universality in amorphous nanowires [79]
77. Training beta relaxation to rejuvenate metallic glasses [67]
78. Reversible anelastic deformation mediated by β relaxation and.. [65]
79. 镍钴铬多主元合金高温高压相图与相变动力学模拟 [60]
80. Emergent failure transition of pearlitic steel at extremely high s.. [56]
81. Fundamental links between shear transformation, fi relaxation, and.. [54]
82. Laser shock peening strengthens additively manufactured high-entro.. [53]
83. Amorphous Thickness-Dependent Strengthening-Softening Transition i.. [53]
84. Disorder-order transition in multiprincipal element alloy: A free .. [47]
85. Short-range order and its impacts on the BCC MoNbTaW multi-princip.. [44]
86. Prediction of chemical short-range order in high-/medium-entropy a.. [25]
87. Role of chemical disorder in slowing down diffusion in complex con.. [24]
88. Ultra-Efficient and Cost-Effective Platinum Nanomembrane Electroca.. [20]
89. Structural rejuvenation and relaxation of a metallic glass under t.. [18]
90. A model on the coupling between cyclic fatigue and microstructure .. [17]
91. Structural mechanism of glass transition uncovered by unsupervised.. [17]
92. Deciphering non-elastic deformation in amorphous alloy: Simultaneo.. [15]
93. An Artificial Intelligence Constitutive Model for Amorphous Solids.. [14]
94. Multi-principal element materials: Structure, property, and proces.. [13]
95. Connection between Mechanical Relaxation and Equilibration Kinetic.. [13]
96. Creep deformation in metallic glasses: A global approach with stra.. [11]
97. Mechanical memory and relaxation decoupling of metallic glasses in.. [10]
98. Spotting structural defects in crystals from the topology of vibra.. [10]
99. Decoupling the chemical-ordering-dependent dislocation and diffusi.. [7]
100. Anelastic relaxation considering physical aging effects in a high-.. [6]