a clear trendgold
A clear trend is observed: as the TiO 2 mass fraction increases, transmittance decreases while haze increases.
A clear trend is observed: as the TiO 2 mass fraction increases, transmittance decreases while haze increases.
A clear trend is observed where the corrosion resistance of the HECFs improves progressively with increasing F c .
A decreasing trend in both 3-day and 28-day compressive strengths was observed in the MgO system ( Figure 5 b) as the content was increased from 3% to 7%, although the values remained higher than those of the reference group with only minor reductions.
However, in the composite MgO-CaO system ( Figure 6 d), as the MgO content increased from 2% to 6% and the CaO content decreased from 6% to 2%, both the initial and final setting times exhibited an increasing trend, but they were all shorter than those of the reference group.
Figure 22 illustrates that with an increase in E base from 10,000 MPa to 30,000 MPa, both the maximum shear stress at the tire centerline and at the tire edge exhibit a decreasing trend.
Even so, the Hg 0 removal efficiency of CNT substantially exhibits a decreasing trend, owing to the limited surface adsorption sites.
The adsorption capacity of N 2 shows an increasing trend with the increase in relative pressure (P/P 0 ).
Consequently, both macropores and mesopores exhibit a decreasing trend, whereas micropores show an overall increase.
The ash content in the samples, expressed as a percentage of dry biomass, showed a decreasing trend after V and XV cycles of HWE.
The p -value of 0.02139 confirms that the differences between the groups were highly significant.
However, silane-treated cotton yarn/PLA biocomposites showed a trend toward closer correlation between theoretical and experimental values as silane concentration increased because of the strong interaction between silane-treated cotton yarn and PLA resin.
After burnishing, the S z model is highly significant.
As shown in Figure 4 d, the effect of Cu shows a decreasing trend in the hardness with increasing Cu composition.
A clear trend shows that the initial static yield stress decreases substantially as the HEMC content increases across all tested temperatures.
The results reveal a clear trend: Δ T ad increases as the Ti content decreases when the powder particle size and SPS time remain constant.
With the development of new energy vehicles, replacing part of the copper wiring with aluminum alloys has become an important trend.
The predicted mechanical properties reveal an unexpected trend: chamfering results in a simultaneous reduction in both strength (from 367 MPa to 312 MPa) and elongation (from 4.1% to 2.0%).
At present, research in this field—both domestically and internationally—remains in the foundational laboratory stage, yet it shows a clear trend of rapid development through mutual reference and knowledge sharing across studies.
As the feed speed increases, the current density on the anode surface gradually exhibits an increasing trend.
The results indicate that when the feed speed is 30 mm/min, the current density on the anode surface shows a decreasing trend, with the current density at the end of the in-processing stage being lower than that at the beginning by 105 A/cm 2 .
Such a result is highly significant for improving and strengthening the overall stability of the matrix material, as well as for increasing the reliability and dependability of interface engineering applications [ 23 ]. 3.2.
According to the table, it can be seen that the compressive strength of the LWC-CB cube shows a decreasing trend with the rise in temperature.
At the same stress level, the stress concentration area is larger at higher temperatures, with a clear trend of expansion as temperature increases.
In addition, the impermeability pressure of the PBG grouting material exhibits an increasing trend as the curing period extends.
The experimental results, summarized in Table 5 along with their corresponding statistical values in Table 6 , reveal a clear trend: fatigue life exhibits a significant decrease with increasing load enhancement factor (LEF).