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Overall, these results show that CB/cement composites can act as stress-sensitive materials for traffic monitoring.
In one word, the stable, compact, and continuous char layers of TNTs/GO-PVC composites can act as good physical barriers to reduce the pHRR, THR, SPR, and TSR and resist thermal shock as well.
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Core/shell composite nanofibers can act as the model materials to match the advantages of different components for the optimal ER performances, but the wreck of coating layer under high shearing force is still a problem to limit their practical applications.
This indicates that the char on the surface of the TNTs/GO-filled PVC composites is very stable and can act as a physical barrier to hinder the transmission of heat, thereby leading to greatly lowered THR, TSR, and AMLR.
Biodegradable/bioresorbable polymers, ceramics and composites have been developed which can act as substrates for the adhesion of cells and for the deposition of the calcium phosphate mineral phase of the bony tissues.
This indicates that the char on the surface of the TNTs/GO-filled PVC composites is very stable and can act as a physical barrier to hinder the transmission of heat Table 3 Cone calorimetric data of pure PVC and its composites Sample pHRR (kW m−2) THR (MJ m−2) TSR (m2 m−2) AMLR (g s−1) Pure PVC 355.4 65.3 3936.8 20.4 TNTs-PVC 233.7 51.9 3670.9 14.6 TNTs/GO-PVC 282.4 46.3 3322.7 146.3
These results indicate that metakaolin-based geopolymer composites, if designed with the correct compatibility between matrix and filler characteristics, can act as an inexpensive castable composite refractory.
Cycling tests (more than 900 cycles) proved that the unplasticized electrolyte can act as binder in composite cathodes of lithium secondary batteries [2].
In PH-modified BM/SBR composites, a covalently bonding interface is obtained because PH can act as molecular bridge that can form covalent linkage with both BM and SBR chains.
The results revealed that ternary composite has way more efficiency than the component materials and can act as a promising catalyst for various environmental and engineering applications.
The silicone rubber can act as a stabilizer in the solid-state NaBH4 composite because of its surface hydrophobicity leading to reduced diffusion rate of water into the composite.
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