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TPU nanocomposites with exfoliated structure showed better properties compared with TPU and its nanocomposites with intercalated structure.
However, in the third run, incorporation of the surfactant invariably results in the decrease of mass retention; nevertheless, PPyA still shows better properties compared to PPyB and PPyC.
Carbon materials at the nanoscale level, named nanocarbon materials, not only exhibit better properties compared to those of conventional or microscale materials, but also possess new characteristics that conventional materials lack [2, 3].
It has already been proved that the multilayered coatings have better properties compared with the monolayers [10 12] because the combination of two kinds of coatings can provide superior performance for the cutting tools and the thickness of the sublayer inlayed in the multilayered structure plays a significant role for vigorous properties of nano-composite coatings [13, 14].
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Due to the suppressed cracking, refined grains, and homogenized material dispersion, the parts fabricated with ultrasonic vibration demonstrated better mechanical properties (including higher microhardness, higher wear resistance, and better compressive properties), compared with the parts fabricated without ultrasonic vibration.
Moreover, rectangular cross-sectional shape provides better stability properties compared to square or circular shape.
Also, PPC and PCC provided better durability properties compared to PC and PLC properties.
When PSC were used, the composites exhibited significantly better mechanical properties compared to composites with 45S5 Bioglass®.
Coated bearing surfaces exhibit relatively better tribological properties compared with non-coated surfaces irrespective of the coating technology used.
The 30 W and 60 W treatments maintained better textural properties compared with 90 W and CNT groups.
Also, welded joints using the multiple pass technique gave better nitriding properties compared with that of the single pass technique.
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