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Aluminum-based amorphous metals are interesting lightweight alloys with superior mechanical and corrosion properties, but have never been achieved in bulk form.
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This is practically impossible to achieve in bulk semiconductors since the required high doping in order to obtain high carrier density also results in high electron momentum scattering rates by the doping impurities, i.e. the e-e and momentum scattering rates are of the same order.
The development and control of the mechanically activated spark plasma sintering (MASPS) process is the main objective to be achieved in producing bulk nano-organized materials with perfectly controlled composition and microstructure.
More interestingly, PC70/PS30/1%CNT nanocomposite foam also exhibits much higher mechanical properties than PC30/PS70/1%CNT nanocomposite foam and a significant increase of 245% in notched Izod impact strength is achieved in relative to its bulk counterpart due to the toughening effect of the foamed PS particles.
Results have shown that among different retention times (5, 10, 15, 25 days), maximum COD removal efficiency (95%) was achieved in 10 days, without bulking and foaming problems.
Bulk density measurements, achieved in the last date (day 114, 2006), were negatively correlated with root growth indicators.
This can be achieved in (semi- thin semi- thinr, for bulk samplesicatior, in the reduced-gravity environment oforrbulkng facilitiesolidification
Although significant progress has been achieved in understanding the mechanical behavior of bulk, polycrystalline Ti3SiC2 in compression and flexure, as far as we are aware there are no reports in the literature dealing with its mechanical response under tension.
Maximum COD removal efficiency was achieved in SRT = 10 days without any bulking and foaming problems.
The bulk of these increments were achieved in the first four of those decades.
Compared to the conventional SUS316L bulk, increased fatigue limit can be achieved in the harmonic structured SUS316L steels.
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