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The obvious enhancement in hardness for multilayers is observed, whose maximum value approaches 39.2 GPa when lCNx = 0.4 nm, 78% larger than that obtained by the rule of mixture value.
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Nevertheless, we notice that lower rich mixture values result in small NOx emission rates.
The normalized performance index is forced to be zero for the mixture values and 1 for the sources.
By employing regular solution theory for every studied binary surfactant mixture, values of interaction coefficient (β1,2) are determined.
These lower end mixture values are representative of the allowable amounts of biochar that can be added without causing damage to plants.
In general, for the tested RDX.HTPB mixture, values smaller than the corresponding AP.HTPB parameters are found, while the burning rate pressure exponent is larger.
Graphs of predicted mixture dose response curves were obtained by calculating numerous EDx mixture values, with x varying from 10to90%0% for the normalized AGD index and from 1 to 11 for nipples.
This is also visualized in the graphs that display the results of the mixture ratio study for all five LH regions, where the dotted lines represent the theoretical mixture values and the straight lines correspond to the regression curves of the measured mixture ratios.
Even at Fe fraction of 0.9, the hardness value was 16.3 GPa, enhanced by about 80% over the rule-of-mixture value of 9 GPa.
Coatings synthesized with stationary substrates have high compressive stress (4 7 GPa), and their hardness is slightly enhanced (∼25%) over the rule-of-mixture value.
Compressive stress in these coatings is less than 2 GPa, with hardness up to 60 GPa, which corresponds to 100% hardness enhancement over the rule-of-mixture value.
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