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Secondly, a parametric study was carried out to assess the behavior of such joints with different additional variables.
This paper deals with fatigue behavior of such joints through fatigue tests and proposed fatigue design curves (Sr,hs N curves).
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Finally, the theoretical fatigue life of such joints is estimated.
As this reinforcement detailing is not covered by standards, this paper presents an original experimental research program evaluating the structural behavior of such construction joints under shear stresses.
Although many researches on composite bolted joints have been carried out, the theory and experiment on mechanical behavior of such a joint structure under dynamic loading were rarely reported.
This study analyses both the dynamic strain rate sensitivity of materials constituting an armoured steel fillet welded joint: Base Metal (BM), Heat-Affected Zone (HAZ) and Welded Metal (WM), and their influence on the mechanical behavior of such welded joint submitted to impact loadings.
How do we model the behavior of such creatures?
Mechanical joints in assembled structures cause energy dissipation due to micro-slip in contact and softening effects that play an important role in the dynamic behavior of such structures.
This implies to characterize the behavior of elastic joints submitted to real situations such as multi-axial loadings and large deformations.
As the applications of advanced composite structural materials continue to increase, so does the need to understand the mechanical behavior of mechanically fastened joints in such structures.
Mechanical behavior of these joints will significantly be different from traditional solder joints due to the effects such as geometrical and microstructural constraints, anisotropy caused by the reduction in a number of grains, and the presence of brittle intermetallics (IMCs).
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