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Knowledge Management System of Institue of Mechanics, CAS
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Visits
Visits
1.
超燃冲压发动机燃烧室热-结构试验研究
[2069]
2.
高超声速推进热结构轻量化设计与安全评估
[1850]
3.
Numerical simulation of thermal loading produced by shaped high po..
[1649]
4.
A novel micro-scale plastic deformation feature on a bulk metallic..
[1582]
5.
点阵材料夹层结构主动冷却性能与热结构响应分析
[1515]
6.
A new effective method to estimate the effect of laser shock peeni..
[1499]
7.
Thermal fatigue on pistons induced by shaped high power laser. Par..
[1415]
8.
Thermal fatigue on pistons induced by shaped high power laser. Par..
[1396]
9.
Shock pressure induced by glass-confined laser shock peening: Expe..
[1379]
10.
Shock pressure induced by glass-confined laser shock peening: Expe..
[1310]
11.
Interlaminar damage of carbon fiber reinforced polymer composite l..
[1309]
12.
光纤激光干涉测量激光冲击强化自由表面速度
[1308]
13.
轻质点阵主动冷却壁板热流固耦合响应分析
[1289]
14.
温度场与应力场对主动冷却发动机振动模态的影响
[1271]
15.
Measurement of fast-changing low velocities by photonic Doppler ve..
[1269]
16.
主动冷却通道热流固耦合三维数值计算及构型应力分析
[1231]
17.
Partition Energy Absorption of Axially Crushed Aluminum Foam-Fille..
[1227]
18.
一种用于激光焊接头的保护装置
[1188]
19.
Study on similarity criterion for fluid-thermal coupling responses..
[1157]
20.
高马赫数、长时间运行发动机试车台喷管热载荷分析及冷却优化
[1153]
21.
Measurement of the velocities in the transient acceleration proces..
[1146]
22.
气动加热对主动冷却超声速燃烧室热结构的影响
[1140]
23.
激光冲击强化靶背面自由表面速度的全光纤光子多普勒测速法测量
[1138]
24.
Effect of surface reflectivity on photonic Doppler velocimetry mea..
[1121]
25.
一种模拟水平水下人工通气空化方法
[1119]
26.
轻质金属点阵夹层板热屈曲临界温度分析
[1095]
27.
On similarity criteria of thin-walled cylinder subjected to comple..
[1088]
28.
Parametric study on single shot peening by dimensional analysis me..
[1067]
29.
Fracture Mechanisms And Size Effects Of Brittle Metallic Foams: In..
[1066]
30.
基于分形的泡沫金属细观结构与尺寸效应研究
[1062]
31.
多孔材料填充薄壁结构吸能的相互作用效应
[1060]
32.
激光冲击强化诱导的冲击波压力特征研究
[1060]
33.
一种激光冲击强化过程工艺参数实时监测方法
[1051]
34.
激光冲击强化诱导的残余应力影响因素分析
[1027]
35.
基于原位观测的泡沫金属细观与宏观压缩实验研究
[1016]
36.
An experimental method to measure dynamic stress-strain relationsh..
[1006]
37.
Modeling the Failure Behavior of CFRP Laminates Subjected to Combi..
[1005]
38.
高温MEMS剪应力传感器残余应力分析
[1001]
39.
Coupled thermal-fluid-structure behavior of airflow over target ir..
[1000]
40.
Failure maps and optimal design of metallic sandwich panels with t..
[962]
41.
超声速气流下强激光辐照靶体失效数值模拟
[957]
42.
激光冲击强化过程中蒸气等离子体压力计算的耦合模型
[894]
43.
Numerical Partition of Energy Absorption of Foam-filled Top-Hatand..
[882]
44.
一种激光冲击强化过程中冲击波压力测量系统和方法
[865]
45.
一种用于导管架海洋平台结构的传感器位置与数目优化方法
[865]
46.
激光辐照诱导的热与力学效应
[859]
47.
激光辐照碳纤维复合材料层合板热解效应与破坏行为
[823]
48.
激光冲击强化诱导的冲击波压力特征研究
[816]
49.
轻质点阵增强主动冷却壁板:设计、制备与测试
[811]
50.
热-力载荷下碳纤维复合材料层合板的失效行为分析
[801]
51.
针对具有低速且高加速度特征的质点速度测量方法及装置
[796]
52.
激光诱发活塞的热负荷
[795]
53.
基于数值模拟的激光热负荷光强分布设计
[777]
54.
基于量纲分析的激光直接成形残余应力控制
[772]
55.
Dynamic rupture of metal sheet subjected to laser irradiation and ..
[762]
56.
Laser ablation behavior of C/SiC composites subjected to transvers..
[759]
57.
轻质金属点阵夹层板热屈曲行为研究
[753]
58.
Load-bearing advantage space of pyramid lattice sandwich cylinder ..
[735]
59.
一种水下爆炸实验系统
[728]
60.
Experimental Investigation on Thermal Buckling Behavior of Truss-C..
[714]
61.
一种多光路组合冲击强化方法
[705]
62.
Microstructural evolution of carbon fiber reinforced SiC-based mat..
[690]
63.
基于Profibus的激光加载热疲劳实验控制系统
[686]
64.
Baseline-free damage identification of metallic sandwich panels wi..
[681]
65.
Maximizing mechanical properties and minimizing support material o..
[669]
66.
A Theoretical and Experimental Study of the Thermal Buckling Behav..
[668]
67.
A THEORETICAL ANALYSIS ON THE THERMAL BUCKLING BEHAVIOR OF FULLY C..
[668]
68.
立井冻结法信息化施工系统的研究及应用
[649]
69.
激光参数对活塞热疲劳实验的影响
[646]
70.
Intensity Distribution Design for Laser-Induced Thermal Loading Ba..
[644]
71.
激光辐照下轴压薄壁圆柱壳屈曲行为研究
[643]
72.
Mechanics of metallic foams: A fractal approach
[627]
73.
高功率连续激光辐照CFRP层合板热力破坏效应多尺度分析模型
[619]
74.
Performance improvement of integrated thermal protection system us..
[617]
75.
Experimental investigation of unbound nodes identification for met..
[615]
76.
一种屈曲驱动大角度扭转的点阵结构设计
[609]
77.
Experimental study of the high-power laser resistance of ablative ..
[606]
78.
一种金属点阵夹层板的损伤识别方法
[601]
79.
含相变材料热防护结构一体化设计与试验
[596]
80.
Improving mechanical performance of fused deposition modeling latt..
[591]
81.
Effects of random damages on dynamic behavior of metallic sandwich..
[590]
82.
Residual Strength and Damage Mechanisms of Laminated Carbon Fiber ..
[589]
83.
具有高侵彻能力的复合材料长杆弹及其制备方法
[575]
84.
Interaction between pulsed infrared Laser and carbon fiber reinfor..
[554]
85.
OPTIMAL DESIGN OF ACTIVELY-COOLED PANELS STRENGTHENED WITH VARIOUS..
[552]
86.
Thermal post-buckling behavior of simply supported sandwich panels..
[552]
87.
几种功能材料在强激光诱导冲击作用下的变形机理实验研究
[544]
88.
Deformation behavior of non-rigid airships in wind tunnel tests
[543]
89.
Experimental investigation on laser ablation of C/SiC composites s..
[533]
90.
Damage identification of tube bundles with crack subjected to cros..
[514]
91.
Comparison of Strategies for Coupled Flow-Thermal Analysis of Ther..
[510]
92.
Heat Transfer and Mode Transition for Laser Ablation Subjected to ..
[506]
93.
Full-field deformation and temperature measurement for CW laser ir..
[493]
94.
一种针对强激光驱动的冲击效应试验的多物理场测量系统
[491]
95.
Damage identification of low-density material-filled sandwich pane..
[468]
96.
CW激光辐照薄板热力响应全场测量
[463]
97.
Self-adaptive 3D lattice for curved sandwich structures
[459]
98.
High-power laser resistance of filled sandwich panel with truss co..
[456]
99.
热-力载荷作用下碳纤维复合材料的失效行为研究
[451]
100.
气动载荷对强激光辐照金属薄板破坏行为的影响
[449]
Downloads
1.
Numerical simulation of thermal loading produced by shaped high po..
[793]
2.
On similarity criteria of thin-walled cylinder subjected to comple..
[773]
3.
超燃冲压发动机燃烧室热-结构试验研究
[696]
4.
Thermal fatigue on pistons induced by shaped high power laser. Par..
[662]
5.
Thermal fatigue on pistons induced by shaped high power laser. Par..
[578]
6.
一种金属点阵夹层板的损伤识别方法
[545]
7.
一种用于导管架海洋平台结构的传感器位置与数目优化方法
[516]
8.
一种屈曲驱动大角度扭转的点阵结构设计
[516]
9.
Partition Energy Absorption of Axially Crushed Aluminum Foam-Fille..
[491]
10.
Modeling the Failure Behavior of CFRP Laminates Subjected to Combi..
[486]
11.
光纤激光干涉测量激光冲击强化自由表面速度
[477]
12.
温度场与应力场对主动冷却发动机振动模态的影响
[439]
13.
A new effective method to estimate the effect of laser shock peeni..
[429]
14.
A novel micro-scale plastic deformation feature on a bulk metallic..
[414]
15.
Experimental study of the high-power laser resistance of ablative ..
[404]
16.
Shock pressure induced by glass-confined laser shock peening: Expe..
[391]
17.
Measurement of the velocities in the transient acceleration proces..
[382]
18.
Measurement of fast-changing low velocities by photonic Doppler ve..
[379]
19.
高超声速推进热结构轻量化设计与安全评估
[376]
20.
Parametric study on single shot peening by dimensional analysis me..
[365]
21.
Shock pressure induced by glass-confined laser shock peening: Expe..
[364]
22.
激光辐照碳纤维复合材料层合板热解效应与破坏行为
[359]
23.
Effect of surface reflectivity on photonic Doppler velocimetry mea..
[351]
24.
An experimental method to measure dynamic stress-strain relationsh..
[339]
25.
主动冷却通道热流固耦合三维数值计算及构型应力分析
[335]
26.
轻质点阵主动冷却壁板热流固耦合响应分析
[335]
27.
点阵材料夹层结构主动冷却性能与热结构响应分析
[329]
28.
Coupled thermal-fluid-structure behavior of airflow over target ir..
[318]
29.
激光冲击强化诱导的残余应力影响因素分析
[313]
30.
Maximizing mechanical properties and minimizing support material o..
[307]
31.
一种模拟水平水下人工通气空化方法
[304]
32.
Load-bearing advantage space of pyramid lattice sandwich cylinder ..
[304]
33.
Study on similarity criterion for fluid-thermal coupling responses..
[299]
34.
气动加热对主动冷却超声速燃烧室热结构的影响
[296]
35.
一种用于激光焊接头的保护装置
[296]
36.
Combined laser irradiation damage effects and mechanisms
[291]
37.
Experimental investigation of unbound nodes identification for met..
[290]
38.
激光冲击强化靶背面自由表面速度的全光纤光子多普勒测速法测量
[289]
39.
高马赫数、长时间运行发动机试车台喷管热载荷分析及冷却优化
[283]
40.
A THEORETICAL ANALYSIS ON THE THERMAL BUCKLING BEHAVIOR OF FULLY C..
[281]
41.
Interlaminar damage of carbon fiber reinforced polymer composite l..
[281]
42.
超声速气流下强激光辐照靶体失效数值模拟
[279]
43.
热-力载荷下碳纤维复合材料层合板的失效行为分析
[274]
44.
基于原位观测的泡沫金属细观与宏观压缩实验研究
[271]
45.
Fracture Mechanisms And Size Effects Of Brittle Metallic Foams: In..
[270]
46.
轻质金属点阵夹层板热屈曲临界温度分析
[270]
47.
多级可控渐进吸能点阵结构
[269]
48.
一种激光冲击强化过程工艺参数实时监测方法
[268]
49.
Failure maps and optimal design of metallic sandwich panels with t..
[268]
50.
基于分形的泡沫金属细观结构与尺寸效应研究
[264]
51.
激光冲击强化诱导的冲击波压力特征研究
[263]
52.
Effects of random damages on dynamic behavior of metallic sandwich..
[262]
53.
Microstructural evolution of carbon fiber reinforced SiC-based mat..
[262]
54.
激光辐照诱导的热与力学效应
[260]
55.
一种激光冲击强化过程中冲击波压力测量系统和方法
[258]
56.
激光参数对活塞热疲劳实验的影响
[256]
57.
Experimental Investigation on Thermal Buckling Behavior of Truss-C..
[251]
58.
基于Profibus的激光加载热疲劳实验控制系统
[246]
59.
针对具有低速且高加速度特征的质点速度测量方法及装置
[246]
60.
Numerical Partition of Energy Absorption of Foam-filled Top-Hatand..
[245]
61.
Residual Strength and Damage Mechanisms of Laminated Carbon Fiber ..
[237]
62.
激光冲击强化过程中蒸气等离子体压力计算的耦合模型
[232]
63.
一种水下爆炸实验系统
[231]
64.
Laser ablation behavior of C/SiC composites subjected to transvers..
[229]
65.
Full-field deformation and temperature measurement for CW laser ir..
[223]
66.
一种多光路组合冲击强化方法
[220]
67.
基于数值模拟的激光热负荷光强分布设计
[219]
68.
高温MEMS剪应力传感器残余应力分析
[217]
69.
轻质点阵增强主动冷却壁板:设计、制备与测试
[216]
70.
激光诱发活塞的热负荷
[214]
71.
Interaction between pulsed infrared Laser and carbon fiber reinfor..
[209]
72.
多孔材料填充薄壁结构吸能的相互作用效应
[207]
73.
A Theoretical and Experimental Study of the Thermal Buckling Behav..
[207]
74.
Improving mechanical performance of fused deposition modeling latt..
[206]
75.
立井冻结法信息化施工系统的研究及应用
[195]
76.
Experimental investigation on laser ablation of C/SiC composites s..
[194]
77.
基于量纲分析的激光直接成形残余应力控制
[193]
78.
激光冲击强化诱导的冲击波压力特征研究
[180]
79.
Thermal post-buckling behavior of simply supported sandwich panels..
[180]
80.
Damage identification of low-density material-filled sandwich pane..
[174]
81.
轻质金属点阵夹层板热屈曲行为研究
[172]
82.
Effects of tangential supersonic airflow on the laser ablation of ..
[172]
83.
Decoupling mechanisms of "avalanche" phenomenon for laser ablation..
[172]
84.
OPTIMAL DESIGN OF ACTIVELY-COOLED PANELS STRENGTHENED WITH VARIOUS..
[171]
85.
Dynamic rupture of metal sheet subjected to laser irradiation and ..
[170]
86.
激光辐照下轴压薄壁圆柱壳屈曲行为研究
[169]
87.
Heat Transfer and Mode Transition for Laser Ablation Subjected to ..
[167]
88.
Performance improvement of integrated thermal protection system us..
[166]
89.
CW激光辐照薄板热力响应全场测量
[161]
90.
Three-dimensional flow structures and heat transfer characteristic..
[161]
91.
Baseline-free damage identification of metallic sandwich panels wi..
[160]
92.
高速气流对C/SiC复合材料激光烧蚀行为影响的实验研究
[160]
93.
Effect of local damages on the buckling behaviour of pyramidal tru..
[159]
94.
Comparison of Strategies for Coupled Flow-Thermal Analysis of Ther..
[159]
95.
Internal Damage Identification of Sandwich Panels With Truss Core ..
[159]
96.
Self-adaptive 3D lattice for curved sandwich structures
[159]
97.
几种功能材料在强激光诱导冲击作用下的变形机理实验研究
[157]
98.
一种针对强激光驱动的冲击效应试验的多物理场测量系统
[156]
99.
三维可展曲面自适应点阵结构及其制备方法
[156]
100.
一种高速来流条件下激光毁伤效应的多场耦合分析方法
[155]
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