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In Table 5, it is clear that the number of primary cracks decreases when ultrasonic loading is applied, and the surface of the samples is more crack free when ultrasonic loading is applied. However, a decrease in the percentage of primary cracks was not observed. When the ultrasonic loading was applied, the surface of the sample was not cracked at a low fluoride concentration (5 and 10 ppm). When the ultrasonic loading was applied, the number of cracks in the sample decreased. In the studies by Nakamura et al. [7] in which the ultrasonic loading was not applied, the primary cracks were created. When they applied the ultrasonic loading, the number of cracks decreased.
The results obtained are linked to the mechanism of the ultrasonic loading. When the cracks are created on the surface of the sample and then the ultrasonic loading is applied, the cracks do not close, whereas when the ultrasonic loading is applied first, the cracks close due to the ultrasonic loading, and then the cracks are not created on the surface.
In Table 6, it is found that the percentage of the primary cracks decreases when the ultrasonic loading is applied. It is clear that for a low fluoride concentration (5 and 10 ppm) the surface is completely cracked, and for a higher fluoride concentration (25, 50 and 75 ppm) the surface of the sample is not cracked. In a similar way to the previous experiments, the sample with the highest fluoride concentration shows the lowest percentage of primary cracks. The sample with the lowest fluoride concentrations shows the highest percentage of primary cracks.
In the following experiments, the samples are subjected to ultrasonic loading, applied in the horizontal direction, and different concentrations of NaF are added to the electrolyte. The previous experiments have not been performed in this group of experiments as well. According to the results obtained, it is clear that the primary cracks are reduced. It can be seen that for a very low concentration of fluoride (5 and 10ppm) the surface is completely cracked, and that for higher concentrations (25, 50 and 75 ppm) the surface of the sample is not cracked. In a similar way to the previous experiments, the sample with the highest sodium fluoride concentration shows the lowest percentage of primary cracks. The sample with the lowest fluoride concentrations shows the highest percentage of primary cracks.
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