说明:双击或选中下面任意单词,将显示该词的音标、读音、翻译等;选中中文或多个词,将显示翻译。
您的位置:首页 -> 句库 -> 超低周疲劳
1.
Investigation on Extra-Low Cycle Fatigue Fracture Design for Middle Carbon Steel under Axial Loading;
轴向加载条件下中碳钢的超低周疲劳断裂设计研究
2.
BP neutral network-based study of fracturc of 40Cr steel with extra-low cycle fatigue torsional loading
基于BP神经网络扭转条件下40Cr的超低周疲劳断裂研究
3.
Multiaxial Low Cycle Fatigue Life Prediction under Irregular Loadings;
多轴非规则载荷下低周疲劳寿命预测
4.
An Experimental Study on Low-cycle-fatigue Behaviors of 30Cr2MoV Steel;
30Cr2MoV转子钢的低周疲劳特性实验研究
5.
Analysis of Low Cyclic Fatigue Life of the Valves on the Secondary Unit of Steam Turbine;
汽轮机中压主汽阀低周疲劳寿命分析
6.
The Study on High Temperature Low Cycle Fatigue Properties and High Temperature Creep Properties of GH4169 Alloy;
GH4169合金高温低周疲劳及蠕变性能研究
7.
Research on Low-Cycle Fatigue Behavior of Hot-Extruded AZ31 Magnesium Alloy
热挤压AZ31镁合金低周疲劳行为研究
8.
Testing study on low cycle fatigue of 1Cr11Ni2W2MoV steel welding joint at middle temperature
1Cr11Ni2W2MoV焊接接头中温低周疲劳实验研究
9.
Study on Low Cycle Fatigue Deformed Structure for Titanium Alloy BT9
钛合金BT9低周疲劳变形结构的研究
10.
Research of multiaxial fatigue-creep life prediction for turbine blade
涡轮叶片多轴低周疲劳/蠕变寿命研究
11.
New Method of Forecasting the Life of Low-cycle Fatigue
预测材料低周疲劳寿命的一种新方法
12.
Fatigue Behavior of GCr15 Steel in Gigacycle Regime;
GCr15钢超高周疲劳行为的研究
13.
Study on the Very-high-cycle Fatigue Behavior of 40CrNiMoA Steel;
40CrNiMoA钢超高周疲劳行为研究
14.
Investigation on Fatigue Behavior of Materials in Very High Cycle Regime under Vibratory Loading;
超声振动载荷下材料的超高周疲劳性能研究
15.
Fatigue Behavior of Welded Joints After Ultrasonic Impact Treatment Under Combined Cycle Fatigue Loading
双周疲劳载荷作用下超声冲击处理态焊接接头疲劳行为
16.
Fatigue behavior of welded joints under combined cycle fatigue with ultrasonic component
超声频分量双周疲劳载荷作用下焊接接头疲劳行为
17.
For the same material, the low cycle fatigue life in high temperature air is longer than that in simulated BWR and PWR primary environments.
对于同种材料,高温空气中的低周疲劳性能优于高温水中的低周疲劳性能;
18.
The Disturbed State Concept( DSC) is applied in low-cycle fatigue process of rocks.
把扰动状态概念应用于岩石低周疲劳过程。