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view more202178 · Background: Nanoparticles such as multi-walled carbon nanotubes present resistance, resilience and biocompatibility with human tissues and could be incorporated into glass ionomer cement materials ...
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view more199951 · Results and discussions Particle size distributions of the cements corresponding to different energy levels are presented in Table 3. In this table, the values for the interground cements were directly found by using the samples taken from the mill at each energy-consumption level.
view moreAbstract Background: Nanoparticles such as multi-walled carbon nanotubes present resistance, resilience and biocompatibility with human tissues and could be incorporated into glass ionomer cement materials to improve their characteristics. Therefore, the aim of the present study was to evaluate the effect of multi-walled carbon nanotube (MWCNT) …
view more202178 · For conventional and high-viscosity glass ionomer cements, the compressive strength values were higher than the tensile strength data. Regardless of the cement viscosity, the multi-walled carbon nanotube incorporation reduced the compressive strength and increased the tensile strength data values.
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