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1.
Investigation into the Mechanism for the Effect of Nb and Ti on Ductility Dip Cracking Susceptibility;
Nb和Ti对高温失塑裂纹敏感性影响机理研究
2.
Study on Ductility Dip Cracking Sensitivity for Incone1690 Electrode Filler Metal;
Incone1690焊条熔敷金属高温低塑性裂纹敏感性研究
3.
Elastic-Plasticity Analysis of Ⅰ/Ⅱ Mixed Mode Crack and Probability Caculation of Fracture Failure
Ⅰ-Ⅱ型裂纹的弹塑性分析及断裂失效概率计算
4.
High- temperature Alloys High-temperature-sensitive Mechanism of Crack
高温合金高温裂纹敏感性机理的研究
5.
RESEARCH ON THEORY AND EXPERIMENT OF THE TEMPERATURE FIELD AT CRACK TIP
裂纹扩展过程中裂尖塑性流变区温度场的理论和实验研究(英文)
6.
Higher-Order Asymptotic Solution of Growing Cracks in Elastic Perfectly Plastic Media
理想弹塑性材料扩展裂纹尖端场高次渐近解
7.
Asymptotic Analysis of Temperature Field at Mode Ⅲ Crack Tip in A Elasticperfectly Plastic Material
理想弹塑性材料Ⅲ型裂纹尖端温度场的渐近分析
8.
INFLUENCE OF Hf ON WELD CRACKING FOR CAST NICKEL BASE SUPERALLOYS
铪对铸造镍基高温合金焊接裂纹的影响
9.
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
10.
Study on Crack Growth Life of Powder Metallurgy Superalloy Turbine Disk Containing Inclusions;
含夹杂粉末高温合金涡轮盘裂纹扩展寿命研究
11.
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
12.
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
13.
Study on the High-temperature Creep Behavior and the Estimation of Creep Crack Parameter C~* of Cracks in Bi-material CT Specimen;
双材料CT试样裂纹高温蠕变行为的研究与蠕变断裂参量C~*的估算
14.
Influence of fatigue crack tip plastic zone on crack propagation behavior in TC4ELI alloy
TC4ELI合金疲劳裂纹尖端塑性区对裂纹扩展的影响
15.
The skin product of the plastics, because of the output glow-in-the-dark of the heat high pressure, the well ventilated steel can solve to alleviate thesolution.
塑料的皮纹产品,由于高温高压产生的亮光,透气钢能解决和缓解。
16.
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
17.
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
18.
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