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1.
PLoS One ; 13(11): e0206981, 2018.
Article in English | MEDLINE | ID: mdl-30403732

ABSTRACT

Pure torsional shear tests of joints glued with two different aerospace grade adhesives were performed using a specifically designed and constructed torsional shear test equipment. The developed test equipment allows for measuring of pure torsional shear strength under cryogenic and at elevated temperature conditions. The adhesives Hysol EA 9321 and 3M Scotch-Weld EC-9323-2 B/A were used to join steel torsional shear test specimens. Torsional shear tests were performed from -180°C to 150°C. In addition torsional shear fatigue tests were also performed at various loads and the effect of cryogenic aging (cyclic cooling and warming) on the torsional strength of the joints was investigated. The results showed that both sets of adhesive joints achieved three times higher torsional shear strength at -180°C compared to room temperature.


Subject(s)
Adhesives/chemistry , Steel/chemistry , Elastic Modulus , Materials Testing , Shear Strength , Temperature
2.
Opt Express ; 17(8): 6899-912, 2009 Apr 13.
Article in English | MEDLINE | ID: mdl-19365516

ABSTRACT

A light scattering model under the Rayleigh-Gans-Debye approximation has been developed for polycristalline alumina. The model states that transmittance of dense alumina ceramics basically depends not only on the maximum grain size but also on the preferential orientation of their c-axis, or texture. The effect of texture in transparency has been experimentally measured on several dense alumina samples with different grain size and compared to that obtained from x-ray Rietveld refinements with a very good agreement. The Rayleigh-Gans-Debye approximation also allows to represent optical data in a very simple way (logarithm of transmittance vs. the inverse of the wavelength square). Using these variables, a straight line is obtained for the Rayleigh-Gans-Debye approximation, its slope being proportional to the maximum grain size and textural parameter. Deviation from this law implies the presence of pores or grain of extremely large size.


Subject(s)
Aluminum Oxide/chemistry , Models, Chemical , Nanospheres/chemistry , Nanospheres/ultrastructure , Nanotechnology/methods , Refractometry/methods , Anisotropy , Computer Simulation , Light , Scattering, Radiation
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