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Microstructural analysis of the specimens indicates that two failure conditions can potentially arise, dependent on the thermomechanical condition of the material.
(3) A comparison of the B-2 and B-2-H specimens indicates that the connection reinforcement used in standard hook construction details can lead to a slightly high strain distribution.
Transmission electron microscopy of the fatigued specimens indicates that generation of dislocations during cyclic loading and creation of twins due to strain incompatibility between the matrix and the TiB phase are possible reasons for the observed softening.
The analysis of the arsenic content of specimens indicates that the growth mechanisms of incipient and major pores involve mainly field-assisted dissolution and field-assisted flow of the alumina, respectively.
The fractographic analysis of the specimens indicates that the final fatigue fracture could be due either to the joint action of a large number of cracks, which propagate from the substrate coating interface, or to a single dominant fatigue crack, depending on the maximum alternating stress applied to the coated system.
A crude estimate of the strength of the deposits, assuming the validity of a simple law of mixtures for the description of the yield strength of the coated specimens, indicates that the strength of films varies between approximately 22.5 and 34.6 GPa, with the apparent trend to achieve higher values as the nitrogen content of the compound increases.
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Observations of the failed specimens indicated that failure occurred at the composite/bone interface, whereas the composite remained well bonded to the screws.
Comparisons with other birdlike dinosaur specimens indicated that the bone structure of this Archaeopteryx was not abnormal.
However, the readings for the T-SS specimens indicated that corrosion was not occurring.
Histological examination of the implant specimens indicated that stromal cells and chondrocytes were evenly distributed throughout the scaffold.
Previous studies using surgical resected specimens indicated that Napsin A has a better sensitivity and specificity than TTF-1 in well to moderately differentiated lung ADCs [22,23,43].
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com