頁籤選單縮合
題 名 | EndoFEM Crack Closure Analysis of AL2024-T3 CCT Specimen under all Tension Fatigue Loading |
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作 者 | Lee,C. F.; Hsiao,L. T.; | 書刊名 | The Chinese Journal of Mechanics |
卷 期 | 16:4 2000.12[民89.12] |
頁 次 | 頁203-215 |
分類號 | 440.13 |
關鍵詞 | r迩dominated-node-released strategy; EndoFEM; Plasticity-induced crack closure; Al 2024-T3 CCT specimens; da/dN of FCP; |
語 文 | 英文(English) |
英文摘要 | The endochronic cyclic plasticity with finite element analysis (EndoFEM) is employed to simulate plasticity-induced crack closure phenomenon of Al 2024-T3 CCT specimens under maximum cyclic stress of 80MPa and 0.1 stress ratio (R). Various fatigue crack lengths are generated by a r□ dominated-node-released strategy. The suitability of element-mesh planning around crack tip is supported by the real simulations in the decreasing tendencies of crack opening load (P□) with increased distance behind the crack tip, and the enough elements to reflect the reversed plastic responses at minimum load. EndoFEM results of vertical stress ahead of the crack tip show a typical distribution of small scale yield (SSY) in the realm of fracture mechanics; and P□/P□ ratio determined at 1mm behind crack tip is kept constant i.e. K□-independent. In these cases, fatigue parameters based on either the far field loading parameter ΔK, the effective ΔK (ΔK□) with crack closure effect, or the mechanical responses ahead of crack tip (e.g. stress parameter, reversed (plastic) strain at 1mm) are all equivalent and are linearly correlated with the stage II fatigue crack growth (FCP) rate. However, for longer crack length with the ligament bending effect or shorter crack length with the starter notch effect, the P□/P □ ratio decreases and changes the SSY stress distribution. This result reduces the usefulness of the above fatigue parameters. As a consequence, a nonlinear correlation of FCP rates with ΔK or ΔK□ are purely empirical. The K□-dependent ΔK□ must be considered in the correlation as suggested by the present study of EndoFEM. |
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