Mechanical Alloying: Processing and Materials

Mechanical alloying is a technique of producing alloys and compounds that permits the development of metastable materials (with amorphous or nanocrystalline microstructure) or the fabrication of solid solutions with extended solubility. The elements or compounds to be mixed (usually as powders) are...

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Bibliographic Details
TeilnehmendeR:
Place / Publishing House:Basel, Switzerland : : MDPI - Multidisciplinary Digital Publishing Institute,, 2021.
Year of Publication:2021
Language:English
Physical Description:1 electronic resource (134 pages)
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520 |a Mechanical alloying is a technique of producing alloys and compounds that permits the development of metastable materials (with amorphous or nanocrystalline microstructure) or the fabrication of solid solutions with extended solubility. The elements or compounds to be mixed (usually as powders) are introduced in jars usually under a controlled atmosphere. Regarding the scope of this book, advanced materials have been developed by mechanical alloying: Fe–X–B–Cu (X = Nb, NiZr) nanocrystalline alloys, mixtures of the binary Fe–Mn and Fe–Cr alloys with chromium and manganese nitrides, Mn–Al–Co and Mn–Fe alloys, non-equiatomic refractory high-entropy alloys, nanocrystalline Fe–Cr steels, nanaocrystalline Mn–Co–Fe–Ge–Si alloys, Al–Y2O3 nanocomposite, and hydride-forming alloys. Likewise, production conditions and ulterior treatments can provide readers interesting ideas about the procedure to produce alloys with specific microstructure and functional behavior (mechanical, magnetic, corrosion resistance, hydrogen storage, magnetocaloric effect, wastewater treatment, and so on). As an example, to obtain the improvement in the functional properties of the alloys and compounds, sometimes controlled annealing is needed (annealing provokes the relaxation of the mechanical-induced strain). Furthermore, the powders can be consolidated (press, spark plasma sintering,and microwave sintering) to obtain bulk materials. 
546 |a English 
650 0 |a Technology. 
653 |a aluminum 
653 |a yttrium oxide (yttria) 
653 |a mechanical alloying 
653 |a microwave sintering 
653 |a microstructure and mechanical properties 
653 |a half-Heusler alloys 
653 |a Mössbauer spectroscopy 
653 |a metal hydrides 
653 |a hydrogen storage 
653 |a hydriding kinetics 
653 |a surface modification 
653 |a refractory 
653 |a high entropy alloy 
653 |a phase transformation 
653 |a mechanical properties 
653 |a reactive black 5 
653 |a decolorization 
653 |a UV-visible spectrophotometry 
653 |a LC-MS analysis 
653 |a austenitic alloys 
653 |a high-nitrogen steels 
653 |a atomic redistribution 
653 |a point defects 
653 |a microstructure 
653 |a Fe based alloys 
653 |a nanocrystalline (NC) alloy 
653 |a microcrystalline (MC) alloy 
653 |a ball-milling 
653 |a oxidation resistance 
776 |z 3-0365-2117-8 
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700 1 |a Suñol, Joan-Josep  |e editor. 
906 |a BOOK 
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