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Supplementary techniques, such as scanning electron microscopy (SEM) with backscattered electron (BSE) and continuous stiffness measurement (CSM) are also adopted to analyze the effects of load magnitude, microstructure, and age on the mechanical and creep properties.
We conclude that both microstructure and age hardening behavior during spinodal decomposition of c-Ti1−xAlxN correlate to the relative amount of metal Ti/Al ratio and consequently to the elastic anisotropy of the as-grown coating material.
Possible relationships between DTI-derived indices of microstructure and age will be explored in a separate paper, currently in preparation.
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Reaction products could change the matrix composition and alter the matrix in a physical metallurgical manner, such as the microstructure and ageing behavior.
The microstructures and the age hardening behavior were characterized and the results for these alloys were compared with the available data in the literature on the similarly treated pure Al and ternary AlCuMg alloy.
It was determined in this work that the candidate alloys on the Sn rich side were relatively more stable, i.e. only the aging temperature had a substantial impact on the microstructure and not the aging duration.
EFS powder tends to coarsen the pore structure of the hardened paste and decreases the compressive strength of concrete at any age; on the other hand, concrete containing the BFS powder exhibits a late-age microstructure and strength close to or even superior to that of plain cement concrete.
The precipitation hardening behavior of CNT/Al Cu composites was investigated by characterization of microstructure and mechanical properties after aging heat treatment.
In summary, these data show that changes in BAP correlate with the anabolic bone changes in RA joints and that disease duration and age also impact the bone microstructure.
The influence of experimental variables including HIPing temperatures, solution and aging temperatures on microstructure and properties of PM Ti2AlNb alloys was studied.
The effects of the cooling rate on the microstructure and the mechanical properties of aged CuCrZr alloys were examined.
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