1) fretting fatigue(FF)
微动疲劳(FF)
2) fretting fatigue
微动疲劳
1.
Electrospark surface strengthening by Mo electrode and shot peening on improving fretting fatigue resistance of Ti alloy;
Mo电极电火花强化与喷丸复合提高Ti合金微动疲劳抗力
2.
Synergistic improving fretting fatigue resistance of Ti alloy at elevated temperature by duplex surface modification;
复合表面改性协同增强Ti合金高温微动疲劳抗力
3.
Estimating fretting fatigue life based fracture mechanics method;
基于断裂力学方法的微动疲劳寿命估算
4) fretting fatigue life
微动疲劳寿命
1.
Reliability analysis method of fretting fatigue life
微动疲劳寿命可靠性分析方法
6) vibration fatigue
振动疲劳
1.
Analysis on vibration fatigue and heat transfer enhancement technology of shell and tube heat exchangers;
管壳式换热器振动疲劳与强化传热技术评析
2.
The results show that the fracture mode of blade is vibration fatigue and the main cause of initiation of fatigue crack is the mismatch between rabbet and tongue-and-groove.
结果表明,叶片的断裂模式为振动疲劳,叶片榫头与榫槽配合不当是萌生疲劳裂纹的主要原因。
3.
An advanced global/local finite element modeling (FEM) technique combined with superelement technique was used to study SMT solder joint vibration fatigue on the basis of an example of Flip Chip assembly.
应用超单元技术并结合局部 /整体三维有限元模型 ,以 Flip Chip封装体系为例 ,对 FlipChip焊点的振动疲劳可靠性问题进行研究 。
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