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After the first processing step, however, a two-phase ultrafine-grained material is formed.
After the first processing step, an ultrafine-grained two-phase composite material is formed.
This was observed after the first processing step, after cleaning in increasing strengths of ethanol.
Compared to the obtained microstructures after the first processing step, the grain size is significantly reduced in all four samples.
After the first processing step, nearly constant hardness values were measured across the radii of the disk.
Decreasing the Cu content increases the hardness after the first processing step up to a value of 341 HV for the Fe85Cu15 composite.
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After the second processing step, microhardness values increased nearly twice in all samples.
After the second processing step, a much smaller grain size is reached.
In Fig. 3, the final microstructures of the Fe85Cu15, Fe70Cu30, Fe50Cu50 and Fe15Cu85 samples after the second processing step are shown.
After the second processing step, a continuous increase of the hardness with increasing radii (i.e. increasing strain) is again observed.
In contrast, mean values of 16 indents starting from a radius of 2 mm to the outer edge of the sample are reported after the second processing step in this study, which corresponds to the saturation region.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com