Keywords Cloud

Research Outputs

Co-authors[TOP 5]

Usage Statistics


  Total Views
 889

  Access Source
    internal: 1
    External: 888
    Domestic: 555
    Abroad: 334

  Annual Views
 293

  Access Source
    internal: 0
    External: 293
    Domestic: 203
    Abroad: 90

  Monthly Views
 40

  Access Source
    internal: 0
    External: 40
    Domestic: 30
    Abroad: 10

Visits

Visits

1. Extraordinary strain hardening by gradient structure [3114]
2. Heterogeneous lamella structure unites ultrafine-grain strength wi.. [1808]
3. Back stress strengthening and strain hardening in gradient structu.. [1599]
4. Annealing effect on the evolution of adiabatic shear band under dy.. [1543]
5. Twin boundary spacing effects on shock response and spall behavior.. [1322]
6. 金属材料的强韧化 [1235]
7. 异构金属材料的冲击动力学行为研究进展 [1116]
8. Shock response of nanotwinned copper from large-scale molecular dy.. [1100]
9. Tensile deformation mechanisms of the hierarchical structure consi.. [1093]
10. Size effects of primary/secondary twins on the atomistic deformati.. [1091]
11. Analysis of spherical indentation of materials with plastically gr.. [1074]
12. Simultaneous improvement of tensile strength and ductility in micr.. [1071]
13. Origin of pulverized rocks during earthquake fault rupture [1068]
14. Formation sequences and roles of multiple deformation twins during.. [1064]
15. Grain size effect on the hardness of nanocrystal measured by the n.. [1057]
16. Mechanical properties and nanostructures in a duplex stainless ste.. [1020]
17. Plate impact experiments to investigate shock-induced inelasticity.. [1010]
18. Laboratory observations of transient frictional slip in rock-analo.. [1002]
19. Layer thickness dependent tensile deformation mechanisms in sub-10.. [976]
20. Evolution of Adiabatic Shear Band in Ultra-Fine-Grained Iron under.. [949]
21. Atomistic simulation study of tensile deformation in bulk nanocrys.. [884]
22. A Review on Heterogeneous Nanostructures: A Strategy for Superior .. [882]
23. Dynamic shear deformation of a CrCoNi medium-entropy alloy with he.. [879]
24. Scaling laws and deformation mechanisms of nanoporous copper under.. [875]
25. Chemical short-range order in Fe50Mn30Co10Cr10 high-entropy alloy [870]
26. 一种低温下高强度高塑性VCoNi中熵合金的制备方法 [851]
27. Atomistic scale fracture behaviours in hierarchically nanotwinned .. [841]
28. Structure motif of chemical short-range order in a medium-entropy .. [839]
29. Superior dynamic shear properties and deformation mechanisms in a .. [778]
30. 梯度纳米结构铁高应变率变形的力学性能和微观机理研究 [776]
31. Hydrostatic pressure effects on deformation mechanisms of nanocrys.. [763]
32. Excellent tensile properties induced by heterogeneous grain struct.. [698]
33. Enhanced quasi-static and dynamic shear properties by heterogeneou.. [690]
34. Mechanical properties and deformation mechanism of Mg-Al-Zn alloy .. [679]
35. Mechanisms of the improved stiffness of flexible polymers under im.. [675]
36. Extraordinary Bauschinger effect in gradient structured copper [674]
37. Direct observation of chemical short-range order in a medium-entro.. [667]
38. Chemical medium-range order in a medium-entropy alloy [663]
39. The Evolution of Strain Gradient and Anisotropy in Gradient-Struct.. [660]
40. Superior dynamic shear properties by structures with dual gradient.. [635]
41. Shock and spall behaviors of a high specific strength steel: Effec.. [629]
42. Ductility by shear band delocalization in the nano-layer of gradie.. [626]
43. Strain hardening in Fe-16Mn-10Al-0.86C-5Ni high specific strength .. [620]
44. Superior mechanical properties and deformation mechanisms of heter.. [607]
45. Improving ductility by increasing fraction of interfacial zone in .. [600]
46. Atomistic simulation study on the tensile deformation behaviour of.. [598]
47. Superior fracture toughness with high yield strength in a high-Mn .. [595]
48. Combining gradient structure and TRIP effect to produce austenite .. [591]
49. An engineering model and its numerical validation for a malevolent.. [586]
50. Deformation mechanisms for superplastic behaviors in a dual-phase .. [583]
51. Strain hardening behaviors and strain rate sensitivity of gradient.. [574]
52. Size effect and boundary type on the strengthening of nanoscale do.. [569]
53. Multiple mechanism based constitutive modeling of gradient nanogra.. [568]
54. Enhanced co-deformation of a heterogeneous nanolayered Cu/Ni compo.. [567]
55. Dual heterogeneous structured medium-entropy alloys showing a supe.. [567]
56. Mechanical property comparisons between CrCoNi medium-entropy allo.. [567]
57. Dynamically reinforced heterogeneous grain structure prolongs duct.. [566]
58. High impact toughness of CrCoNi medium-entropy alloy at liquid-hel.. [565]
59. Dynamic shear response and evolution mechanisms of adiabatic shear.. [557]
60. Plastic deformation mechanisms in a severely deformed Fe-Ni-Al-C a.. [557]
61. Deformation induced hcp nano-lamella and its size effect on the st.. [555]
62. Enhanced tensile properties by heterogeneous grain structures and .. [548]
63. 双相高强钢FeNiAlC的动态剪切行为及微结构机理 [547]
64. Deformation nanotwins suppress shear banding during impact test of.. [544]
65. Designing structures with combined gradients of grain size and pre.. [538]
66. Strain Rate Effect on Tensile Behavior for a High Specific Strengt.. [532]
67. The Evolution of Strain Gradient and Anisotropy in Gradient-Struct.. [531]
68. Ultra-high tensile strength via precipitates and enhanced martensi.. [528]
69. Tensile Behaviors and Strain Hardening Mechanisms in a High-Mn Ste.. [527]
70. Residual stress provides significant strengthening and ductility i.. [512]
71. Correlation between strain rate sensitivity and characteristics of.. [506]
72. Smaller critical size and enhanced strength by nano-laminated stru.. [505]
73. Annealing and strain rate effects on the mechanical behavior of ul.. [503]
74. A coupled ductile damage model for metal matrix composites: Develo.. [502]
75. Gradient structure produces superior dynamic shear properties [501]
76. Investigation on the plastic work-heat conversion coefficient of 7.. [494]
77. Excellent tensile properties and deformation mechanisms in a FeCoN.. [494]
78. Multiple potential phase-separation paths in multi-principal eleme.. [494]
79. Enhanced strength-ductility synergy in a gradient hetero-structure.. [494]
80. Nanodomained Nickel Unite Nanocrystal Strength with Coarse- Grain .. [493]
81. Twin density gradient induces enhanced yield strength-and-ductilit.. [488]
82. Strain rate dependent shear localization and deformation mechanism.. [482]
83. Plastic accommodation during tensile deformation of gradient struc.. [474]
84. Atomistic tensile deformation mechanisms of Fe with gradient nano-.. [472]
85. Atomic-scale evidence of chemical short-range order in CrCoNi medi.. [471]
86. Hetero-deformation-induced (HDI) plasticity induces simultaneous i.. [466]
87. Simultaneous improvement of strength and ductility in a P-doped Cr.. [465]
88. 纳米梯度结构301奥氏体不锈钢力学性能研究 [463]
89. Atomistic simulations of tensile deformation in a CrCoNi medium-en.. [456]
90. Synergetic Strengthening by Gradient Structure [455]
91. Exceptional tensile properties under cryogenic temperature in hete.. [455]
92. Effect of plasticity on nanoscale wear of third-body particles [454]
93. Size effects of nano-spaced basal stacking faults on the strength .. [451]
94. Size effect and atomistic deformation mechanisms of hierarchically.. [449]
95. Strengthening effects of various grain boundaries with nano-spacin.. [445]
96. Simultaneous Improvement of Yield Strength and Ductility at Cryoge.. [437]
97. Extraordinary fracture toughness in nickel induced by heterogeneou.. [433]
98. Coupled Strengthening Effects by Lattice Distortion, Local Chemica.. [418]
99. Size effects of lamellar twins on the strength and deformation mec.. [417]
100. 中锰TRIP钢的动态力学响应及绝热剪切带形成和演化机理 [414]

Downloads

1. 异构金属材料的冲击动力学行为研究进展 [636]
2. 金属材料的强韧化 [577]
3. 一种低温下高强度高塑性VCoNi中熵合金的制备方法 [576]
4. A Review on Heterogeneous Nanostructures: A Strategy for Superior .. [566]
5. Extraordinary strain hardening by gradient structure [556]
6. Annealing effect on the evolution of adiabatic shear band under dy.. [532]
7. Structure motif of chemical short-range order in a medium-entropy .. [494]
8. Chemical short-range order in Fe50Mn30Co10Cr10 high-entropy alloy [483]
9. Analysis of spherical indentation of materials with plastically gr.. [431]
10. Chemical medium-range order in a medium-entropy alloy [430]
11. Excellent tensile properties induced by heterogeneous grain struct.. [428]
12. Twin boundary spacing effects on shock response and spall behavior.. [414]
13. Enhanced strength-ductility synergy in a gradient hetero-structure.. [411]
14. Multiple potential phase-separation paths in multi-principal eleme.. [409]
15. Shock response of nanotwinned copper from large-scale molecular dy.. [404]
16. Mechanisms of the improved stiffness of flexible polymers under im.. [404]
17. Laboratory observations of transient frictional slip in rock-analo.. [388]
18. Mechanical properties and nanostructures in a duplex stainless ste.. [381]
19. Mechanical property comparisons between CrCoNi medium-entropy allo.. [375]
20. Origin of pulverized rocks during earthquake fault rupture [368]
21. Superior dynamic shear properties and deformation mechanisms in a .. [367]
22. Simultaneous improvement of tensile strength and ductility in micr.. [364]
23. Heterogeneous lamella structure unites ultrafine-grain strength wi.. [364]
24. Superior dynamic shear properties by structures with dual gradient.. [363]
25. Tensile deformation mechanisms of the hierarchical structure consi.. [356]
26. Dynamic shear deformation of a CrCoNi medium-entropy alloy with he.. [352]
27. Formation sequences and roles of multiple deformation twins during.. [348]
28. Mechanical properties and deformation mechanism of Mg-Al-Zn alloy .. [346]
29. Atomistic simulation study of tensile deformation in bulk nanocrys.. [342]
30. Size effects of primary/secondary twins on the atomistic deformati.. [337]
31. Plate impact experiments to investigate shock-induced inelasticity.. [333]
32. Grain size effect on the hardness of nanocrystal measured by the n.. [332]
33. Direct observation of chemical short-range order in a medium-entro.. [324]
34. Layer thickness dependent tensile deformation mechanisms in sub-10.. [323]
35. Dual heterogeneous structured medium-entropy alloys showing a supe.. [323]
36. Atomistic scale fracture behaviours in hierarchically nanotwinned .. [319]
37. Simultaneous improvement of strength and ductility in a P-doped Cr.. [317]
38. Enhanced quasi-static and dynamic shear properties by heterogeneou.. [315]
39. 梯度纳米结构铁高应变率变形的力学性能和微观机理研究 [308]
40. The Evolution of Strain Gradient and Anisotropy in Gradient-Struct.. [308]
41. Heterogeneous grain structure delivers work hardening and high duc.. [302]
42. Strain hardening behaviors and strain rate sensitivity of gradient.. [299]
43. Deformation mechanisms for superplastic behaviors in a dual-phase .. [295]
44. A coupled ductile damage model for metal matrix composites: Develo.. [291]
45. An engineering model and its numerical validation for a malevolent.. [287]
46. Strain hardening in Fe-16Mn-10Al-0.86C-5Ni high specific strength .. [281]
47. Shock and spall behaviors of a high specific strength steel: Effec.. [280]
48. Back stress strengthening and strain hardening in gradient structu.. [279]
49. Multiple mechanism based constitutive modeling of gradient nanogra.. [275]
50. Plastic deformation mechanisms in a severely deformed Fe-Ni-Al-C a.. [272]
51. Ductility by shear band delocalization in the nano-layer of gradie.. [272]
52. Deformation nanotwins suppress shear banding during impact test of.. [252]
53. Dynamic shear response and evolution mechanisms of adiabatic shear.. [248]
54. Improving ductility by increasing fraction of interfacial zone in .. [241]
55. Hydrostatic pressure effects on deformation mechanisms of nanocrys.. [240]
56. Combining gradient structure and TRIP effect to produce austenite .. [233]
57. High impact toughness of CrCoNi medium-entropy alloy at liquid-hel.. [228]
58. Synergetic Strengthening by Gradient Structure [225]
59. Extraordinary Bauschinger effect in gradient structured copper [225]
60. Strain Rate Effect on Tensile Behavior for a High Specific Strengt.. [223]
61. Atomistic simulation study on the tensile deformation behaviour of.. [220]
62. Gradient structure produces superior dynamic shear properties [215]
63. Size effect and boundary type on the strengthening of nanoscale do.. [211]
64. Strengthening effects of various grain boundaries with nano-spacin.. [210]
65. Exceptional tensile properties under cryogenic temperature in hete.. [210]
66. Size effects of nano-spaced basal stacking faults on the strength .. [207]
67. Enhanced co-deformation of a heterogeneous nanolayered Cu/Ni compo.. [207]
68. Evolution of Adiabatic Shear Band in Ultra-Fine-Grained Iron under.. [206]
69. Smaller critical size and enhanced strength by nano-laminated stru.. [203]
70. Correlation between strain rate sensitivity and characteristics of.. [201]
71. Atomic-scale evidence of chemical short-range order in CrCoNi medi.. [199]
72. Deformation induced hcp nano-lamella and its size effect on the st.. [198]
73. Designing structures with combined gradients of grain size and pre.. [197]
74. Dynamically reinforced heterogeneous grain structure prolongs duct.. [194]
75. Twin density gradient induces enhanced yield strength-and-ductilit.. [194]
76. Superior mechanical properties and deformation mechanisms of heter.. [191]
77. Size effects of lamellar twins on the strength and deformation mec.. [187]
78. Investigation on the plastic work-heat conversion coefficient of 7.. [184]
79. Enhanced tensile properties by heterogeneous grain structures and .. [180]
80. 纳米梯度结构301奥氏体不锈钢力学性能研究 [179]
81. Tensile Behaviors and Strain Hardening Mechanisms in a High-Mn Ste.. [179]
82. Strain rate dependent shear localization and deformation mechanism.. [177]
83. Atomistic simulations of tensile deformation in a CrCoNi medium-en.. [176]
84. Effect of plasticity on nanoscale wear of third-body particles [174]
85. Size effect and atomistic deformation mechanisms of hierarchically.. [173]
86. Excellent tensile properties and deformation mechanisms in a FeCoN.. [173]
87. 中锰TRIP钢的动态力学响应及绝热剪切带形成和演化机理 [172]
88. Ultra-high tensile strength via precipitates and enhanced martensi.. [170]
89. Nanodomained Nickel Unite Nanocrystal Strength with Coarse- Grain .. [167]
90. Annealing and strain rate effects on the mechanical behavior of ul.. [164]
91. Scaling laws and deformation mechanisms of nanoporous copper under.. [159]
92. The Evolution of Strain Gradient and Anisotropy in Gradient-Struct.. [159]
93. Atomistic Simulation Study on the Tensile Deformation Behaviour of.. [156]
94. Superior fracture toughness with high yield strength in a high-Mn .. [150]
95. Hetero-deformation-induced (HDI) plasticity induces simultaneous i.. [147]
96. Atomistic tensile deformation mechanisms of Fe with gradient nano-.. [136]
97. 多尺度晶粒结构中熵合金CrCoNi的加工硬化和动态变形机理 [136]
98. Coupled Strengthening Effects by Lattice Distortion, Local Chemica.. [133]
99. Nanodomained Nickel Unite Nanocrystal Strength with Coarse-Grain D.. [128]
100. CoCrFeMnNi高熵合金冲击波响应与层裂强度的分子动力学研究 [124]