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The investigation suggests that the differences in temperature and cooling rate between the surface and core of specimen are very significant.
The results indicate that, during DCT, the differences in temperature and cooling rate between the surface and core of specimen is very significant.
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However, the acute temperature and cooling rate changes are mainly concentrated on the specimen surface region about 1/3 of the sample thickness, while these changes are performed in a slow and gentle manner at the core region of specimen.
After 25 weeks, the outermost layer of the cement specimens was scraped off and analysed separately along with a piece of the core of the specimen, in thin film XRD (same settings as for the powder XRD).
The effect of temperature variation in the core of the specimen occurring during cyclic excitation and rest periods has a significant influence on HMA recovery properties.
Primary carbides and carbide clusters turned out to be crack origins at/near the surface and in the core of the specimen.
The macroscopic properties of float glass are governed by the opening of surface cracks in mode I. To bypass the influence of crack orientation and defectiveness of the borders (due to the cutting process), in the experimental measurement of the material strength the panacea would be to induce an equibiaxial state of stress in the core of the specimen.
This result was expected because the external layer is damaged more quickly than the core of the specimen (Ferretti et al. 1999).
These analyses showed that the layer consisted of mostly OCP and that no OCP was present in the core of the specimen.
A plastic scoop provided with the stool container was used to sample the edges and core of the specimen, collecting approximately 0.5 gm of feces.
However, as mentioned above, the OCP was only present in the outermost layer of the specimens and not in the core of the specimens.
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CEO of Professional Science Editing for Scientists @ prosciediting.com