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中国科学院力学研究所机构知识库
Knowledge Management System of Institue of Mechanics, CAS
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Total Views
889
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External: 888
Domestic: 555
Abroad: 334
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293
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External: 293
Domestic: 203
Abroad: 90
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40
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External: 40
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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]
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