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For the temperature range from 20 to 200 °C, thermal shock and thermal ageing effects on Young's modulus are not very pronounced.
These results also indicate that H/E and H3/E2 (H = hardness and E = elastic modulus) are not good proxies for coating toughness.
The local Kramers Kronig (K K) relations, which link the damping properties of solid materials at one frequency to the rate of frequency variation of dynamic modulus, are not exact.
Moreover, it was found that the excellent characteristics of nanoparticles such as high modulus are not sufficient to achieve the optimal properties in polymer nanocomposites.
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Also, the Young modulus was not negatively affected by elevated silver content.
Because the polymer is not fully extended, this elastic modulus is not very high.
The strength was increased about 20% but the elastic modulus was not improved.
Young's modulus was not remarkably affected by GO-PDA addition.
The mechanical properties such as tensile strength and modulus were not affected by the reaction.
The flexural modulus is not particularly sensitive to the presence of damage.
The hardness increases with an increase in the CS, whereas Young's modulus is not obviously influenced by CS.
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