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The elastic modulus shows a decreasing tendency with increasing fiber volume fraction.
The tensile modulus shows a rise of almost 50% at 15 wt% CNF content.
For the range of densities examined, the shear modulus shows a linear dependence on relative density, while the ultimate strength follows a non-linear power law.
The Bulk modulus shows a sudden decrease at 40° and then indicates an increasing trend for I/S in older Cambay Shale.
We found that the storage modulus shows a gradual increase while the internal friction shows a gradual decrease with increasing aging time.
The Young's modulus shows a simple linear variation with composition within experimental error while the hardness and fracture properties show a clear maximum for the ternary alloy containing 23% VN.
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Storage modulus shows an increase of 124%, stress at break 157% and Young's modulus 321% for 5% MG.
Dynamic elastic modulus showed a mutual correlation with compressive strength and static elastic modulus (R2 = 0.982).
According to the dynamic mechanical analysis (DMA), both storage and loss modulus show a gradual increase with (Ti- Boehmite concenTi- Boehmite
Above 50 wt% PTFE, however, the modulus showed a near exponential increase with respect to increasing PTFE content.
The tensile strength of the adhesive reduced by 13.9% while modulus showed a significant increase by 105% after 744 h of exposure.
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