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The occurrence of web fracture in shear yielding link specimens led to further study on the cause of these fractures.
Additionally, the high C and Cr content of WB-SKD11 specimens led to clad layers with hard and complicated structure.
The results indicate that the inclusion of steel fibre in silica fume specimens led to the highest long-term compressive strength and the lowest resistivity.
Laser melting of aluminized steel specimens led to the complete transformation of the brittle Fe2Al5 phase to the more ductile FeAl phase.
It was clearly noted that the lamellar structure in β-annealed Ti64 specimens led to easy crack initiation by slip band cracking along α/β interface as compared to quasi-cleavage cracking in α grain or α/particle-like β interface for the mill-annealed counterpart.
The results showed that the increase of graphite content in the specimens led to an enhanced non-linear fracture behavior, a reduced nominal notch tensile strength (σNT), and a higher specific fracture energy (Gf), characteristic length (lch) and thermal shock resistance parameter (Rst).
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Despite pilot testing to reduce tendon-clamp interface failure, loading of 7 out of the 19 specimens lead to pull out from the clamp.
Employing the Taguchi method for designing the geometrical parameters of the specimens leads to a suitable range of groove length-to-wall thickness ratios to be covered.
During the thawing period, the melting of ice on the specimens lead to an unsaturated material, inducing an important bearing capacity loss.
This research confirms that the modelling of the full-scale beams on the basis of results from standard specimens leads to an overestimation of their flexural response.
Varying the material properties with the measured standard deviation between specimens leads to an average change of ±17% in the maximum and minimum principal stresses.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com