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The tensile strength increases and elongation at break decreases as the content of either filler increases according to expected trends.
It was observed that the tensile strength of the nanocomposites increases with the increase of the nanoclay content, while the value for elongation at break decreases.
Once the value of the specimen elongation at break decreases to 50% of the initial value, the cable at this condition is no longer suitable to be tested.
The tensile strength and elongation at break increase with the addition of the diblock copolymer for PPO-rich blends, whereas the tensile strength increases but the elongation at break decreases for EAA-rich blends.
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The tensile strength and tensile strain at break decreased.
Meanwhile, elongation at break decreased to 3.2% upon the addition of 25% CNWs.
Elongation at break decreased drastically from 1000% to 20% while strength at break remained approximately constant.
The room temperature tensile strength and elongation to break decreased moderately with increasing clay loading.
The results show that the tensile strength and elongation at break decrease to different degrees.
In the case of processes A and B, elongation at break decreased with increasing crystallinity.
Tensile modulus and yield strength were found to increase with increasing concentration of clay, while elongation at break decreased.
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