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The AE results showed that AE is a robust technique to classify damage mechanisms in buckling of laminated composites and could identify delamination propagation earlier and with a lower standard deviation, compared with the conventional methods.
On the other hand, it was reported that relatively short natural fibers could modify the dielectric response of the polymeric matrix, but chemical treatment had negative effects on such composites and could decrease the dielectric loss factor.
This work could provide a new way to control interfacial crystallization, thus the interfacial adhesion of polymer/filler composites, and could also find a new application for GO as well.
These results demonstrated that morphology of interfaces between coatings and matrix C/C composite was one major factor for the usage of coated C/C composites and could affect the service time of structures with impact damages in high temperature environments.
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Adding too much polymer dispersant will keep excessive polymer dispersant in composites, and it could result in composites with a poor mechanical property.
A more obvious collaboration would have been with the UCSD engineers who develop highly flexible metal composites, and who could well be testing them in the spines of the astonishing dancers of Wayne McGregor | Random Dance.
The findings indicated that almond shell as agro-waste material is a valuable renewable natural resource for composite production and could be utilized as a substitute for wood in composite industries.
The SEM EDS analysis of the electrodes after the "service life" test showed that the Ni MoO2 is much more stable than the Ni MoOx composite coating and could be promising replacement for the commercial cathode.
This feature may exhibit intrinsic benefits particularly in further processing of GO such as functionalization and composite material fabrication and could also potentially act as colloidal stabilizer [17,19,101].
Improved adhesion of composites and glass fibers could be due to the sílica contents of the fiber and consequent stronger bonds which in turn lead to an increased flexural strength [23].
Low velocity impact also reduced the fatigue lives of the composites and this reduction could be related to the degradation in tensile strength.
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