Intermetallic Compound

This Special Issue collects ten articles related to the broadly understood physical properties of intermetallic compounds. Differential thermal analysis was carried out, and the temperatures of thermal effects that arise during the reduction of neodymium from a technological salt mixture of KCl–NaCl...

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Place / Publishing House:Basel, Switzerland : : MDPI - Multidisciplinary Digital Publishing Institute,, 2021.
Year of Publication:2021
Language:English
Physical Description:1 electronic resource (138 pages)
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520 |a This Special Issue collects ten articles related to the broadly understood physical properties of intermetallic compounds. Differential thermal analysis was carried out, and the temperatures of thermal effects that arise during the reduction of neodymium from a technological salt mixture of KCl–NaCl–CaCl2–NdF3 with a magnesium–zinc alloy were established. For sol–gel products of stoichiometric MgTiO3, accurate thermal expansion coefficients were measured. The effect of various nanoparticles, such as GaF3, ZnF2, Zn(BF4)2 and Ga2O3 additions, on the activity of CsF-RbF-AlF3 flux and mechanical behavior of Al/Steel brazed joints is presented. The effect of Bi substitution on the structural and magnetic properties of Nd1-xBixMnO3 is investigated. Characteristics of hard magnetic materials based on Nd2Fe14B and Ce2Fe14B intermetallic compounds are presented. A special algorithm is presented to support vector regression for estimating the maximum magnetic entropy change of doped manganite-based compounds. We have received information about the mechanical properties of the reactively synthesized porous Ti3SiC2 compound with different apertures. Furthermore, we have presented the experimental results of Zn-doped Al-rich for fast on-board hydrogen production. 
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650 0 |a Engineering  |x History. 
650 0 |a Technology  |x History. 
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653 |a intermetallic compound 
653 |a porous material 
653 |a mechanical property 
653 |a pore size 
653 |a elastic modulus 
653 |a Al-rich alloy 
653 |a hydrogen generation 
653 |a Zn addition 
653 |a Ga2O3 
653 |a flux 
653 |a Zn-Al filler metal 
653 |a wettability 
653 |a spreadability 
653 |a magnetocaloric effect 
653 |a support vector regression 
653 |a extreme learning machine 
653 |a maximum magnetic entropy change 
653 |a gravitational search algorithm 
653 |a GaF3 
653 |a CsF-AlF3 flux 
653 |a R-Fe-B intermetallics 
653 |a cerium 
653 |a permanent magnets 
653 |a simulation 
653 |a magnetic anisotropy constant 
653 |a hysteresis loop 
653 |a coercive force 
653 |a residual magnetization 
653 |a X-ray diffraction 
653 |a perovskites manganites 
653 |a AC magnetic susceptibility 
653 |a ZnF2 
653 |a Zn(BF4)2 
653 |a mechanical properties 
653 |a MgTiO3 
653 |a geikielite 
653 |a high-temperature X-ray diffraction 
653 |a sol-gel technique 
653 |a thermal expansion 
653 |a magnesium-zinc-neodymium master alloy 
653 |a Mg-Zn-Nd 
653 |a magnesium master alloy 
653 |a magnesium 
653 |a rare-earth metals 
653 |a master alloy synthesis 
653 |a metallothermic reduction 
776 |z 3-0365-0138-X 
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700 1 |a Ćwik, Jacek.  |e editor. 
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