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1. The nature of strength enhancement and weakening by pentagon-hepta.. [3176]
2. Dislocation nucleation governed softening and maximum strength in .. [3067]
3. Tunable rigidity of (polymeric core)-(lipid shell) nanoparticles f.. [2430]
4. Evading the strength- ductility trade-off dilemma in steel through.. [2411]
5. 孪晶对金属材料力学性能的影响及孪晶结构的应用 [2235]
6. Bending rigidity and Gaussian bending stiffness of single-layered .. [2187]
7. Grain misorientation and grain-boundary rotation dependent mechani.. [2130]
8. Statistical analysis on rolling contact fatigue in railroad axle b.. [1964]
9. Heterogeneous lamella structure unites ultrafine-grain strength wi.. [1800]
10. 非均匀脆性介质破坏的非平衡非线性统计演化 [1613]
11. Stable planar single-layer hexagonal silicene under tensile strain.. [1574]
12. Unified SIF at different stress ratios and the physical insight on.. [1568]
13. Continuum modeling of the response of a Mg alloy AZ31 rolled sheet.. [1486]
14. Microstructure and mechanical properties of aluminum 5083 weldment.. [1452]
15. Surfactant-Induced Postsynthetic Modulation of Pd Nanoparticle Cry.. [1443]
16. Atomistic simulation for deforming complex alloys with application.. [1366]
17. Cellular entry of graphene nanosheets: The role of thickness, oxid.. [1323]
18. Griffith Criterion for Brittle Fracture in Graphene [1313]
19. Towards more uniform deformation in metallic glasses: The role of .. [1293]
20. Critical Sensitivity and Trans-Scale Fluctuations in Catastrophic .. [1258]
21. Weibull modulus for diverse strength due to sample-specificity [1254]
22. A theoretical analysis of the surface dependent binding, peeling a.. [1251]
23. 高速列车的关键力学问题 [1196]
24. On the strain hardening and texture evolution in high manganese st.. [1191]
25. An extended strain energy density failure criterion by differentia.. [1178]
26. The kinetics and energetics of dislocation mediated de-twinning in.. [1167]
27. Large Single-Crystal Cu Foils with High-Index Facets by Strain-Eng.. [1158]
28. Strength softening at shear bands in metallic glasses [1149]
29. 金属非晶的强度和变形特性 [1146]
30. Twin boundary spacing-dependent friction in nanotwinned copper [1109]
31. Evolution-induced catastrophe and its predictability [1105]
32. Understanding Degradation and Enhancing Cycling Stability for High.. [1096]
33. Failure criterion for metallic glasses [1089]
34. Reformation Capability of Short-Range Order and Their Medium-Range.. [1063]
35. Tunable band structures of polycrystalline graphene by external an.. [1053]
36. Wrinkle-Free Single-Crystal Graphene Wafer Grown on Strain-Enginee.. [1021]
37. The linear-dependence of adhesion strength and adhesion range on t.. [979]
38. Mechanisms of anisotropic friction in nanotwinned Cu revealed by a.. [973]
39. Supersonic Screw Dislocations Gliding at the Shear Wave Speed [950]
40. Anisotropic size effect in strength in coherent nanowires with til.. [949]
41. Bottom-up Design of Three-Dimensional Carbon-Honeycomb with Superb.. [922]
42. Mechanics and Mechanically Tunable Band Gap in Single-Layer Hexago.. [916]
43. Scaling of maximum strength with grain size in nanotwinned fcc met.. [904]
44. Microfluidic Synthesis of Hybrid Nanoparticles with Controlled Lip.. [897]
45. A molecular dynamics study of bond exchange reactions in covalent .. [885]
46. 五七环缺陷对多晶石墨烯强度的影响 [878]
47. Large-area transfer of two-dimensional materials free of cracks, c.. [878]
48. A stochastic description on the traction-separation law of an inte.. [858]
49. Response to discussion on "An extended strain energy density failu.. [842]
50. 晶界两个自由度对多晶石墨烯力学性能的影响 [836]
51. A polycrystal based numerical investigation on the temperature dep.. [817]
52. Bending Nanowire Growth in Solution by Mechanical Disturbance [806]
53. Slip-Line-Guided Growth of Graphene [797]
54. Molecular dynamics studying on welding behavior in thermosetting p.. [792]
55. Analytical model and molecular dynamics simulations of the size de.. [769]
56. Stress evolution in elastic-plastic electrodes during electrochemi.. [758]
57. 不同温度下镁合金AZ31B的位错与孪晶滑移阻力和织构演化 [754]
58. Evolution induced catastrophe in a nonlinear dynamical model of ma.. [751]
59. 一种提高金属材料强度的方法 [746]
60. Effects of intermittent loading on fatigue life of a high strength.. [731]
61. Cryogenic temperature toughening and strengthening due to gradient.. [720]
62. Metal ductility evaluation by flattening test: The geometry depend.. [715]
63. A new finite element level set reinitialization method based on th.. [711]
64. 一种应用于电弧熔炼炉的真空高效一体铜坩埚 [701]
65. 高锰钢应变硬化和织构变化的实验和数值模拟 [697]
66. Notch strengthening or weakening governed by transition of shear f.. [686]
67. An in situ system for simultaneous stress measurement and optical .. [678]
68. Super-stretchable borophene [665]
69. 固体浮力材料研究前沿 [658]
70. Nanoscale precipitates as sustainable dislocation sources for enha.. [655]
71. Strength gradient enhances fatigue resistance of steels [653]
72. The effective fracture strength and fracture toughness of solids w.. [646]
73. 基于原子结构及相互作用势的非晶合金断裂准则 [642]
74. 纳米金属材料的界面力学行为研究 [639]
75. Theory on Bending in Cantilever Beams With Adsorbed Islands [636]
76. Dislocation Strengthening without Ductility Trade-off in Metastabl.. [633]
77. Toughening two dimensional materials through lattice disorder [627]
78. Roughening for Strengthening and Toughening in Monolayer Carbon Ba.. [618]
79. On the influence of junction structures on the mechanical and ther.. [617]
80. Grain boundary and curvature enhanced lithium adsorption on carbon [615]
81. 虚单元计算方法的最新理论与应用进展 [612]
82. 中国高铁经得起检验 [611]
83. Case study: The effect of running distance on the microstructure a.. [610]
84. The intrinsic and extrinsic factors for brittle-to-ductile transit.. [600]
85. Electronic band structure of carbon honeycombs [598]
86. A segmented load spectrum model for high-speed trains and its infl.. [597]
87. Response of an infinite beam on a bilinear elastic foundation: Bri.. [582]
88. Linear correlation between state-of-health and incremental state-o.. [582]
89. A Dugdale model based geometrical amplifier enables the measuremen.. [577]
90. An analytical solution to the stress fields of kinked cracks [572]
91. Crack deflection in brittle media with heterogeneous interfaces an.. [570]
92. A dislocation-based solution for stress introduced by arbitrary vo.. [559]
93. Binder-free three-dimensional silicon/carbon nanowire networks for.. [554]
94. Defects guided wrinkling in graphene on copper substrate [552]
95. The influence of combined gradient structure with residual stress .. [552]
96. 固体工程科学—工程材料的应用力学理论与实践 [543]
97. Interfacial Stress Transfer and Fracture in van der Waals Heterost.. [539]
98. Geometric design of micron-sized crystalline silicon anodes throug.. [531]
99. The stress-velocity relationship of twinning partial dislocations .. [528]
100. Physics-driven machine learning model on temperature and time-depe.. [518]

Downloads

1. Statistical analysis on rolling contact fatigue in railroad axle b.. [1548]
2. Dislocation nucleation governed softening and maximum strength in .. [1170]
3. The nature of strength enhancement and weakening by pentagon-hepta.. [1010]
4. Tunable rigidity of (polymeric core)-(lipid shell) nanoparticles f.. [961]
5. 孪晶对金属材料力学性能的影响及孪晶结构的应用 [892]
6. Grain misorientation and grain-boundary rotation dependent mechani.. [881]
7. Large Single-Crystal Cu Foils with High-Index Facets by Strain-Eng.. [829]
8. Bending rigidity and Gaussian bending stiffness of single-layered .. [741]
9. The linear-dependence of adhesion strength and adhesion range on t.. [656]
10. Stable planar single-layer hexagonal silicene under tensile strain.. [635]
11. Wrinkle-Free Single-Crystal Graphene Wafer Grown on Strain-Enginee.. [581]
12. Large-area transfer of two-dimensional materials free of cracks, c.. [560]
13. A new finite element level set reinitialization method based on th.. [557]
14. A theoretical analysis of the surface dependent binding, peeling a.. [551]
15. Microstructure and mechanical properties of aluminum 5083 weldment.. [539]
16. Continuum modeling of the response of a Mg alloy AZ31 rolled sheet.. [537]
17. Evading the strength- ductility trade-off dilemma in steel through.. [514]
18. Slip-Line-Guided Growth of Graphene [510]
19. Towards more uniform deformation in metallic glasses: The role of .. [502]
20. 一种应用于电弧熔炼炉的真空高效一体铜坩埚 [493]
21. Understanding Degradation and Enhancing Cycling Stability for High.. [487]
22. 固体浮力材料研究前沿 [474]
23. 一种电加热空气滤芯及低能耗空气高温杀毒灭菌装置 [473]
24. Griffith Criterion for Brittle Fracture in Graphene [465]
25. Electronic band structure of carbon honeycombs [463]
26. On the strain hardening and texture evolution in high manganese st.. [458]
27. Microfluidic Synthesis of Hybrid Nanoparticles with Controlled Lip.. [455]
28. Interfacial Stress Transfer and Fracture in van der Waals Heterost.. [436]
29. 真空高效电弧熔炼炉系统 [431]
30. Surfactant-Induced Postsynthetic Modulation of Pd Nanoparticle Cry.. [428]
31. Twin boundary spacing-dependent friction in nanotwinned copper [417]
32. Toughening two dimensional materials through lattice disorder [404]
33. Roughening for Strengthening and Toughening in Monolayer Carbon Ba.. [394]
34. Mechanisms of anisotropic friction in nanotwinned Cu revealed by a.. [389]
35. Atomistic simulation for deforming complex alloys with application.. [383]
36. Critical Sensitivity and Trans-Scale Fluctuations in Catastrophic .. [381]
37. Strength softening at shear bands in metallic glasses [374]
38. Bending Nanowire Growth in Solution by Mechanical Disturbance [374]
39. A molecular dynamics study of bond exchange reactions in covalent .. [369]
40. An analytic solution for bending of multilayered structures with i.. [368]
41. An extended strain energy density failure criterion by differentia.. [365]
42. Heterogeneous lamella structure unites ultrafine-grain strength wi.. [361]
43. 高速列车的关键力学问题 [353]
44. The kinetics and energetics of dislocation mediated de-twinning in.. [352]
45. Cellular entry of graphene nanosheets: The role of thickness, oxid.. [351]
46. Response to discussion on "An extended strain energy density failu.. [346]
47. A polycrystal based numerical investigation on the temperature dep.. [346]
48. Mechanics and Mechanically Tunable Band Gap in Single-Layer Hexago.. [331]
49. Failure criterion for metallic glasses [323]
50. Evolution-induced catastrophe and its predictability [303]
51. 五七环缺陷对多晶石墨烯强度的影响 [303]
52. 晶界两个自由度对多晶石墨烯力学性能的影响 [303]
53. 不同温度下镁合金AZ31B的位错与孪晶滑移阻力和织构演化 [297]
54. Scaling of maximum strength with grain size in nanotwinned fcc met.. [291]
55. Tunable band structures of polycrystalline graphene by external an.. [287]
56. Analytical model and molecular dynamics simulations of the size de.. [286]
57. Molecular dynamics studying on welding behavior in thermosetting p.. [286]
58. An in situ system for simultaneous stress measurement and optical .. [284]
59. Anisotropic size effect in strength in coherent nanowires with til.. [280]
60. Response of an infinite beam on a bilinear elastic foundation: Bri.. [272]
61. Bottom-up Design of Three-Dimensional Carbon-Honeycomb with Superb.. [270]
62. The failure behavior of syntactic foams as buoyancy materials for .. [270]
63. Case study: The effect of running distance on the microstructure a.. [268]
64. Stress evolution in elastic-plastic electrodes during electrochemi.. [266]
65. Anisotropic expansion and size-dependent fracture of silicon nanot.. [266]
66. A dislocation-based solution for stress introduced by arbitrary vo.. [261]
67. Weibull modulus for diverse strength due to sample-specificity [259]
68. Binder-free three-dimensional silicon/carbon nanowire networks for.. [257]
69. Crack deflection in brittle media with heterogeneous interfaces an.. [255]
70. Cryogenic temperature toughening and strengthening due to gradient.. [252]
71. Defects guided wrinkling in graphene on copper substrate [243]
72. Supersonic Screw Dislocations Gliding at the Shear Wave Speed [242]
73. Unconventional Deformation Behaviours of Nanoscaled High-Entropy A.. [233]
74. The influence of combined gradient structure with residual stress .. [232]
75. Stable high areal capacity lithium-ion battery anodes based on thr.. [226]
76. On the influence of junction structures on the mechanical and ther.. [225]
77. Geometric design of micron-sized crystalline silicon anodes throug.. [225]
78. An analytical solution to the stress fields of kinked cracks [225]
79. Evolution induced catastrophe in a nonlinear dynamical model of ma.. [224]
80. 金属非晶的强度和变形特性 [220]
81. 纳米金属材料的界面力学行为研究 [217]
82. A Dugdale model based geometrical amplifier enables the measuremen.. [212]
83. Super-stretchable borophene [210]
84. A segmented load spectrum model for high-speed trains and its infl.. [209]
85. The Gaussian distribution of lattice size and atomic level heterog.. [208]
86. A stochastic description on the traction-separation law of an inte.. [207]
87. Reformation Capability of Short-Range Order and Their Medium-Range.. [206]
88. On the influence of interfacial properties to the bending rigidity.. [204]
89. 高锰钢应变硬化和织构变化的实验和数值模拟 [203]
90. Dislocation Strengthening without Ductility Trade-off in Metastabl.. [203]
91. Physics-driven machine learning model on temperature and time-depe.. [201]
92. Notch strengthening or weakening governed by transition of shear f.. [195]
93. The stress-velocity relationship of twinning partial dislocations .. [191]
94. Effects of intermittent loading on fatigue life of a high strength.. [190]
95. 中国高铁经得起检验 [189]
96. 一种提高金属材料强度的方法 [187]
97. The effective fracture strength and fracture toughness of solids w.. [187]
98. The intrinsic and extrinsic factors for brittle-to-ductile transit.. [186]
99. Grain boundary and curvature enhanced lithium adsorption on carbon [186]
100. Metal ductility evaluation by flattening test: The geometry depend.. [183]