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1.
Fracture criterion for mixed mode crack of composites based on the crack tip plastic zone
基于裂尖塑性区的复合材料复合型裂纹断裂准则
2.
SOLUTION TO THE CRACK TIP PLASTIC ZONE FOR COMPOSITES
复合材料裂纹尖端塑性区的一种解法
3.
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
4.
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)
5.
Based upon the near crack-tip elastic analysis, estimates of the size and shape of the plastic zone will be developed.
根据裂纹尖端附近的弹性分析,来研究塑性区的形状和大小的计算。
6.
Numerical Study on Plastic Zone Size Ahead of the Crack Tip and Fatigue Performance of Submarine Model;
裂纹尖端塑性区及潜艇模型疲劳性能数值模拟研究
7.
Solutions to the crack tip plastic zone of orthotropic unidirectional composites
正交各向异性单向复合材料裂纹尖端塑性区求解
8.
Effect of Triaxial Stress on the Plastic Zone Distribution in Front of Crack Tip with Mixed Mode Loading
三轴应力状态下复合型裂纹尖端前缘的塑性区分布
9.
Effects of Several Factors on Plastic Zone at the Cracking Tip of Welded Joint with FEM;
采用有限元分析多因素对焊接接头裂纹尖端塑性区的影响
10.
Analysis of Crack Tip Plastic Zone for Composites under Small Scale Yielding
小范围屈服条件下复合材料裂纹尖端塑性区分析
11.
Evaluation of Plastic Damage at Crack tip of 45 # Steel with Ultrasonic Method
45~#钢裂纹尖端塑性损伤的超声评估
12.
Anisotropic Plastic Stress Fields at a Slowly Propagating Crack Tip
缓慢扩展裂纹尖端的各向异性塑性应力场
13.
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
14.
The Elastic-viscoplastic Field at the Tip of a Dynamic Propagating Crack in Power-hardening Materials
幂硬化材料动态扩展裂纹尖端的弹粘塑性场
15.
The Elastic-viscoplastic Field at the Mixed-mode Steadily Propagating Crack-Tip under Compression and Shear;
压—剪混合型定常扩展裂纹尖端的弹粘塑性场
16.
The Elastic-viscous-ideally Plastic Field at the Tip of Mode Ⅲ Steadily Moving Crack;
Ⅲ型定常扩展裂纹尖端的弹—粘—理想塑性场
17.
THE ASYMPTOTIC ELASTIC-VISCOPLASTIC FIELD AT MODEⅡDYNAMIC PROPAGATING CRACK-TIP
Ⅱ型动态扩展裂纹尖端的弹黏塑性渐近场
18.
A crack surface displacement of four-point-bend specimen under three types of loading is studied in this paper.
研究了四点弯曲型试件在各种类型载荷作用下的裂纹面位移,并考虑了裂纹尖端塑性区对它的影响。