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Moreover, the modified pineapple leaf fiber-reinforced composites exhibited better thermal properties than did other reinforced samples.
Furthermore, the degradation rate of the reinforced samples was just about one-third of those pure MCSCs.
But, it has been seen that the best compression and flexural strength was given by the carbon fiber reinforced samples.
A difference in the spatial variation of the carbonation depth was observed between plain and reinforced samples.
The experimental results demonstrated that the tensile strength and flexural strengths of modified carbon fiber reinforced composites were 13.8% and 164% higher than original carbon fiber reinforced samples.
The compressive strength of the reinforced samples with about 50% porosity reached 112.47 MPa, which was similar to those of the cortical bones.
Similar(45)
The method is validated with computer simulated samples and measured unidirectionally carbon fibre reinforced carbon samples.
Constant compressive load creep tests were performed at 950 °C on the un-reinforced nickel aluminide and the reinforced composite samples.
An experimental study is presented, comparing flax fibre reinforced epoxy samples to composites formed from glass fibre reinforcements of similar architecture, reinforcing the same resin system.
Three steel reinforced rebar samples were prepared with different corrosion rates.
The reinforced soil samples were subjected to compaction and triaxial compression tests.
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