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SIMULATION ON PROPAGATION AND COALESCENCE OF FATIGUE CRACK BY AUTOMATIC THREE-DIMENSIONAL FINITE ELEMENT CRACK PROPAGATION SYSTEM

机译:三维有限元裂纹自动扩展系统对疲劳裂纹扩展和扩散的模拟

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Verification analyses of the CRACK-FEM developed to predict the propagation of age-related cracks detected in complicated-shaped components of nuclear power plants are presented. Four fatigue crack propagation tests for plate specimens with one and two initial surface cracks subjected to cyclic tensile and bending load respectively are simulated using the CRACK-FEM, and the analysis results are compared with the experimental data of the tests in literature. For the specimens with one crack, the relation between the number of load cycles and the crack size obtained by the analyses agrees with the experimental data. For the specimens with two cracks, the analysis results until the crack coalescence and the timing of the crack coalescence obtained by the analyses agree with the experimental data. In tensile fatigue test for specimen with two cracks, the relation between the number of load cycles and the crack size after the crack coalescence obtained by the analysis almost agrees with the experimental data, although a little difference of analysis from the experimental data is seen. However, in bending fatigue test for specimen with two cracks, the analysis results for all the number of load cycles show good agreement with the experimental data.
机译:提出了对CRACK-FEM的验证分析,该预测分析旨在预测在核电站的复杂形状部件中检测到的与年龄有关的裂纹的传播。利用CRACK-FEM模拟了分别具有一个和两个初始表面裂纹的板试样的四个疲劳裂纹扩展试验,该试样分别经受了周期性的拉伸和弯曲载荷,并将分析结果与文献中的试验数据进行了比较。对于有一个裂纹的试样,分析得出的载荷循环次数与裂纹尺寸之间的关系与实验数据吻合。对于具有两个裂纹的试样,分析结果直到裂纹合并以及通过分析获得的裂纹合并的时间与实验数据一致。在具有两个裂纹的试样的拉伸疲劳试验中,尽管与实验数据的分析差异很小,但通过分析获得的裂纹合并后的载荷循环数与裂纹尺寸之间的关系几乎与实验数据一致。然而,在具有两个裂纹的试样的弯曲疲劳试验中,所有载荷循环次数的分析结果均与实验数据吻合良好。

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