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Additionally, the influence of press fitting on the crack propagation behaviour in a fillet is discussed.
The propagation behaviour of Love waves in a functionally graded piezoelectric material (FGPM) is investigated in this article.
The wave propagation behaviour at such joints is poorly understood at present.
This is especially true in acoustic emission (AE) where propagation behaviour significantly affects the signal data.
Predictions of fatigue crack propagation behaviour under tension compression loading agreed well with experimental observations.
Certain differences in wave propagation behaviour are observed for the analysed models.
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The initiation and propagation behaviours of the non-propagating crack were explained with the stress concentration factor of the artificial corrosion pits and the stress intensity factor range of the non-propagating crack tip.
The crack initiation and propagation behaviours are correlated to morphology and dynamic mechanical properties as obtained from TEM, SAXS and DMA measurements.
FE computations are carried out to calculate stress intensity factor range ΔK at the crack tip for the complex loading configuration, revealing short and long crack propagation behaviours.
This work addresses the mode I fatigue crack propagation behaviours of pure Ti foils using freestanding notched rectangular specimens under tension-tension cyclic loading.
The effect of overload on the fatigue crack propagation behaviours of the homogenous base metal and welded panels (200 mm wide, centre cracked) was compared using experimental and FE analysis methods.
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