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We observe the onset of decomposition of the multilayer structure at 700 °C via the mechanism of interface-directed spinodal decomposition of TiAlN layers, where Al atoms preferentially move toward the nearest interface and segregate there.
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Arbitrarily oriented crack near interface in piezoelectric bimaterials is considered.
Furthermore, eutectic growth exists in the near interface as hardfacing composition falls in the hypereutectic region.
Otherwise, it will form a second crack in the soft material near interface.
Great tensile stress distributes in the region near interface, however, its affected depth is limited.
Disappearance conditions of stress singularity near interface corners and edges are determined based on analyses of eigenvalue equations.
In Sharp-ISFEM, a line normal approach is used for unstructured meshes to reconstruct the solutions near interface.
It was found that the intermetallic layer formed near interface between two metals significantly degraded the joining strength.
Thus, an attempt has been made to focus on the "near interface effects" of the precipitating microphase.
Many articles reported that columnar structures and defects existed at the near interface region [8, 16].
Moreover, most positions showing a bimodal or skewed distribution specific for a trpA variant were located near interface regions.
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