Exact(4)
For all depositions, the coating temperature was below 500 °C.
The coating temperature lies below the final heat treatment temperature of most of the steels.
Therefore, the coating temperature, and the effect of varying the cooling media during plasma spraying, had a significant effect on the residual stress states of the HACs.
By this theory, heat from the hand cannot increase the coating temperature because its heat capacity vanishes by quantum mechanics.
Similar(56)
It is shown that the predicted coating temperature and thickness of the coating layer compare well with the experimentally obtained results, therefore supporting the use of the model as a real-time basis for design and/or adaptation of a thermal control system for the coating process.
This control sample allows us to estimate the effect of random fluctuations in experimental conditions, such as the thickness and surface roughness of the polymer coating, temperature, etc.
The thermal cycling properties of several modified thick thermal barrier coatings (TTBC) were studied in three test series in which the maximum coating temperature was fixed to 1000, 1150 and 1300 °C.
Afterwards, the influence of shapes of portholes on the distribution of coating temperature, displacement along the interface between the bond layer and the top layer, XY-shear stress and von-Mises stress was carried out to verify the above numerical calculations.
The data concerning effects of the major preparation parameters (the pre-oxidation time, temperature, primer calcination temperature and the coating calcination temperature) are presented herein.
An experimental design strategy was used to optimize main factors potentially affecting the microextraction process such as fiber coating, temperature and the addition of a microvolume of organic solvent to the solid sorbent prior to SPME.
Assuming temperature dependent properties of the coating layer, temperature runs are performed from below to above its glass transition region.
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