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Figure 1 XRD patterns of MgCu sample after ball milling for different times.
Figure 1 shows the XRD patterns of MgCu samples after ball milling for different times.
The aluminum powder was activated by ball milling for different durations, which modified size and microstructure of the particles.
Injectable bone graft material based on biomimetically synthesized nanohydroxyapatite was developed and subjected to ball milling for different times; three materials thus produced were evaluated for their biological properties.
The alloy was synthesized using high-energy ball milling for different periods of time, and the porous Ti 16Sn 4Nb alloy was fabricated by using a space holder sintering process.
We in this study employed ball milling to reduce the length of multi-walled carbon nanotubes (MWNTs) from a few microns to hundreds of nm through milling for different time slots.
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The Si-C blend was milled for different times from 1 to 3 h.
Each batch of composite mixture was milled for different milling durations to produce different degrees of grain refinement.
The microstructural evolution of the alloy was followed by analysing powder specimens milled for different times by X-ray diffraction, Mössbauer spectroscopy and magnetisation measurements.
Further analysis was performed to assess the efficiency of particle discharge from the mill for different size classes, using an empirical equation, which is based on mass-size balance of material inside the mill and that discharged.
In order to evaluate the optimum manufacturing condition, specimens with different volume fraction of the starting materials ball-milled for different times were subjected to DTA and TGA analysis.
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processing for different
version for different
machine for different
ore for different
concentration for different
iteration for different
treatment for different
milling for several
plant for different
clustering for different
milling for nanostructure
milling for carbon-based
milling for specific
milling for high-purity
milling for cancellous
milling for subsequent
milling for one-process
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