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Direct electrochemical synthesis of high-entropy alloys from metal oxides AITranslate

University of Cambridge; University of Cambridge; University of Cambridge
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Publisher: Elsevier
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Abstract AITranslate

It has been demonstrated for the first time that high-entropy alloys can be synthesised by electrochemical reduction in a molten salt. This was accomplished by means of an electrolytic cell in which pre-mixed solid metal oxides were subjected to cathodic polarisation in an electrolyte of molten CaCl2 salt at 1173 K, such that the equiatomic refractory alloys TiNbTaZr and TiNbTaZrHf were produced in a single-step alloying process. Structural investigations revealed that the TiNbTaZr alloy comprises two body-centred cubic phases while the TiNbTaZrHf alloy has one disordered body-centred cubic phase. Further examinations were carried out to assess the alloys’ morphological and mechanical properties. These novel findings promise a straightforward, low-energy and cost-affordable electrometallurgical process for the production of high-entropy alloys for advanced structural applications. Graphical abstract Schematic representation of synthesis of high-entropy alloy by electrochemical deoxidation of metal oxide mixture in a molten salt. Download : Download high-res image (104KB) Download : Download full-size image

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DOI:https://doi.org/10.1016/j.apmt.2017.05.009

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Citation Information:

It has been demonstrated for the first time that high-entropy alloys can be synthesised by electrochemical reduction in a molten salt. This was accomplished by means of an electrolytic cell in which pre-mixed solid metal oxides were subjected to cathodic polarisation in an electrolyte of molten CaCl2 salt at 1173 K, such that the equiatomic refractory alloys TiNbTaZr and TiNbTaZrHf were produced in a single-step alloying process. Structural investigations revealed that the TiNbTaZr alloy comprises two body-centred cubic phases while the TiNbTaZrHf alloy has one disordered body-centred cubic phase. Further examinations were carried out to assess the alloys’ morphological and mechanical properties. These novel findings promise a straightforward, low-energy and cost-affordable electrometallurgical process for the production of high-entropy alloys for advanced structural applications. Graphical abstract Schematic representation of synthesis of high-entropy alloy by electrochemical deoxidation of metal oxide mixture in a molten salt. Download : Download high-res image (104KB) Download : Download full-size image

quote

GB/T 7714-2015 [1] Jagadeesh Sure, D. Sri Maha Vishnu, Carsten Schwandt. Applied Materials Today, 2017(9). DOI:10.1016/j.apmt.2017.05.009.
MLA [1] Jagadeesh Sure, et al., Applied Materials Today, no. 9, 2017, https://doi.org/10.1016/j.apmt.2017.05.009.
APA [1] Jagadeesh Sure, D. Sri Maha Vishnu, & Carsten Schwandt. (2017). Applied Materials Today(9). https://doi.org/10.1016/j.apmt.2017.05.009
IEEE [1] Jagadeesh Sure, D. Sri Maha Vishnu, and Carsten Schwandt, Applied Materials Today, no. 9, 2017, doi: 10.1016/j.apmt.2017.05.009.