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Open image in new window Fig. 8 Correlation between ratio of decrease of the residual material properties and ratio of increase of the nonlinearity parameters.
The ratio of decrease of compressive strength reduces to approximately 30% at 200 °C, which exhibits a noticeable variation from that of splitting tensile strength, except for the C4 mix proportion; however, the ratio of decrease of both the strength measurements are similar at 400 °C (approximately 60% of undamaged strength).
On the other hand, the ratio of decrease of the splitting tensile strength reduces to approximately 20% of the undamaged strength, at 600 °C; the degree of decrease is substantial when compared to the decrease in compressive strength (approximately 50%).
Figure 8 presents the correlation between the ratio of decrease of the residual material properties, specifically compressive strength, splitting tensile strength, and static elastic modulus, and the ratio of increase of the nonlinearity parameters as measured by each of the nonlinear ultrasonic methods.
Therefore, the number of OLGs decreased gradually and the ratio of decrease was more severe in the AM+/− group compared with the WT group.
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We added the physical pattern roundness due to lithographical resolution varied with the ratio of decreased area by over etching.
The prevalence ratio of decreased nasal irritant sensitivity associated with exposure at the WTC site was 3.28 (95% CI, 2.7 3.9).
The ratio of decreasing to increasing trends (intially taken as 35%30%0 % based on our cell culture data) was set to 60%5%5 % as well as 5%60%0 %.
The ratio of PS increased in both groups (BI) relative to PS increased in old (OI) and the ratio of decreasing PS (BD/OD) remained at about 60%and70%0%, respectively.
Open image in new window Fig. 7 Comparison of ratios of decrease of strength with temperature.
The trends of the ratios of decrease of the compressive strength and splitting tensile strength according to temperature appear to be highly similar regardless of mix proportions.
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