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Soaking temperature, soaking time and milling time were significant factors.
solid solution with milling time shows two characteristics.
A nanocrystalline solid solution evolved by mechanical alloying (MA) was sustained for prolonged milling time.
The most significant reduction of the crystallite size was observed by increasing the milling time.
These would lead to the reduction of milling time, contamination, as well as milling temperature.
A prolonged milling time has increased the density and microhardness of the sintered Mg-Zn alloy.
The evolution of constituent phases, microstructural features, and size distribution with milling time was investigated.
The increased d-spacing with milling time was attributed to the tensile strain in TiO2 NCs.
Interaction between homogenization pressure, temperature and milling time also significantly affected the nanosuspension particle size.
The yield stress of cryomilled nanocrystalline Zn measured by MDBT shows periodic hardening and softening with milling time, consistent with the variation of microhardness with milling time.
Best milling time for production of pure NMCP of minimum particle aggregation was 60 min.
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