1.
Research on Fatigue Crack Growth of Typical Steels at High Temperature;
典型钢种高温疲劳裂纹扩展的规律研究
2.
Research on Representative Steel Fatigue Crack Growth at High Temperature and Computer Simulation;
典型钢种高温疲劳裂纹扩展规律的试验研究与计算机模拟
3.
Experimental Investigation on Fatigue Crack Growth in GH4169 Superalloy at High Temperature
GH4169合金焊接接头高温疲劳裂纹扩展性能试验研究
4.
Fatigue Cracking Mechanism and Fatigue Mechanism Map of Two HSLA Steels at Low Temperature
两种低合金高强度钢的低温疲劳裂纹扩展机制及疲劳机制图
5.
Summarization on Fatigue Grack Growth of Graphites in HTGR
高温气冷堆石墨材料的疲劳裂纹扩展综述
6.
Thermal Fatigue Behavior of Single-Crystal Superalloy
单晶高温合金的冷热疲劳裂纹生长行为研究
7.
Collective Damage Evolution of Short Fatigue Cracks Under Elevated Temperature and its Simulation;
高温疲劳表面短裂纹群体演化行为研究及数值模拟
8.
Studies on Crack Propagation under Fatigue-creep Combined Action of 316L Steel at High Temperature;
316L钢高温疲劳蠕变共同作用下裂纹扩展速率研究
9.
Study on Initiation and Propagation of Short Crack for Low Cycle Fatigue at High Temperature and Complex Stress States;
复杂应力状态下高温低周疲劳短裂纹萌生及扩展规律研究
10.
Study on the Fatigue Crack Propagation Behavior and Elevated Temperature Tensile Properties of Magnesium Alloys AM50 & AZ91;
镁合金AM50、AZ91的疲劳裂纹扩展行为和高温力学性能的研究
11.
Analysis of the Coalition and Interference of High Temperature Low-cycle Short Fatigue Crack under Complex Stress Condition;
复杂应力状态下高温低周疲劳短裂纹合体与干涉行为研究
12.
Analysis of the Collective Evolution of High Temperature Low-cycle Short Fatigue Crack under Complex Stress Condition;
复杂应力状态下高温低周疲劳短裂纹群体演化行为研究
13.
Room Temperature Creep and Its Effect on Fatigue Crack Growth of Structural Steels;
结构钢的室温蠕变及其对疲劳裂纹扩展的影响
14.
Low Cycle Fatigue Fracture Mechanism at Elevated Temperature for FGH96 Nickel-base Superalloy
FGH96镍基高温合金的高温低周疲劳断裂机理研究
15.
Study on the Life of Fatigue Crack Growth of New-high Strength Steel Submarine;
新高强钢潜艇结构疲劳裂纹扩展寿命研究
16.
Study on Fatigue Crack Middle and High Growth Rate of A7N01P-T4 Aluminium Alloy
A7N01P-T4铝合金疲劳裂纹中高速扩展特性研究
17.
Initiation Mechanics of Fatigue Crack at Weld Joint of High Strength Bridge Steel
高强度桥梁钢焊缝疲劳裂纹萌生机理的研究
18.
Fatigue Fracture Property of Welding Joints of High Temperature Titanium Alloy with Rare Earth Phase
含稀土相高温钛合金焊接接头的疲劳断裂特性