Fatigue Crack Bending and Propagation from a Precrack under Mixed-Mode Conditions : Based on Discontinuous Displacement along Cracks with a Center-Hole Notch
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概要
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Fatigue crack bending and propagation behaviors were studied under mixed-mode conditions, using annealed and fatigue slant precracks with a center-hole notch. The fatigue crack propagation directions were estimated from the maximum tangential stress criterion using the stress intensity factors{(K_I)_<est>(K_<II>)_<est>}evaluated from the discontinuous displacements(opening for Mode I, sliding for Mode II)along the precrack, and they were in good agreement with the measured ones. The fatigue crack propagation rates during bending were evaluated from the effective stress intensity factor K_<eff> using{(K_I)_<est>(K_<II>)_<est>}, in which a total critical displacement ahead of the crack tip under mixed-mode conditions was adopted as the fracture criterion based on the BCS crack theory. After the crack was bent, the subsequent fatigue crack propagated under the mode I behavior at the crack tip; therefore the(K_I)_<est> evaluated from the discontinuous displacements measured along a bent crack could be regarded as the K_<eff> controlling the fatigue crack propagation rate of the crack bent from a slant precrack.
- 一般社団法人日本機械学会の論文
- 1997-07-15
著者
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TOI Norihiko
Tsuyama National College of Technology
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Torii Tashiyuki
Faculty Of Engineering Okayama University
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TAMURA Takeshi
SANDVIK Corp.
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- Study on Fatigue Fracture of Laminated Inhomogeneous Metals : In Quenched Clad Plates of Low Carbon Steel and Middle Carbon Steel
- The Relationship Between the Bending Fatigue Strength of Laminated Inhomogeneous Plates and the Fatigue Crack Growth Law
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