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      Spinodal Decomposition and Mechanical Response of a TiZrNbTa High-Entropy Alloy

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          Abstract

          In this study, the effects of spinodal decomposition on the microstructures and mechanical properties of a TiZrNbTa alloy are investigated. The as-cast TiZrNbTa alloy possesses dual phases of TiZr-rich inter-dendrite (ID) and NbTa-rich dendrite (DR) domains, both of which have a body-centered cubic (BCC) structure. In the DRs of the as-cast alloy, the α and ω precipitates are found to be uniformly distributed. After homogenization at 1100 °C for 24 h followed by water quenching, spinodal decomposition occurs and an interconnected structure with a wavelength of 20 nm is formed. The α and ω precipitates remained in the structure. Such a fine spinodal structure strengthens the alloy effectively. Detailed strengthening calculations were conducted in order to estimate the strengthening contributions from the α and ω precipitates, as well as the spinodal decomposition microstructure.

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          Most cited references36

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          A critical review of high entropy alloys and related concepts

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            Refractory high-entropy alloys

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              Classification of Bulk Metallic Glasses by Atomic Size Difference, Heat of Mixing and Period of Constituent Elements and Its Application to Characterization of the Main Alloying Element

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                Author and article information

                Journal
                Materials (Basel)
                Materials (Basel)
                materials
                Materials
                MDPI
                1996-1944
                25 October 2019
                November 2019
                : 12
                : 21
                : 3508
                Affiliations
                [1 ]Department of Materials and Optoelectronic Science, National Sun Yat-Sen University, Kaohsiung 804, Taiwan; j199412383@ 123456gmail.com (T.-Y.L.); egg037105218@ 123456yahoo.com.tw (W.-S.C.); sapphirerei@ 123456gmail.com (H.-S.C.); yo8135@ 123456gmail.com (J.-Y.W.)
                [2 ]Institute for Advanced Study, Department of Materials Science & Engineering, City University of Hong Kong, Kowloon, Hong Kong, China
                [3 ]Department of Mechanical Engineering, National Pingtung University of Science and Technology, Pingtung 912, Taiwan; cychao@ 123456mail.npust.edu.tw
                [4 ]Department of Mechanical Engineering, National Central University, Taoyuan 320, Taiwan; llllurker@ 123456gmail.com (Y.-C.L.);
                [5 ]Institute of Materials Science and Engineering, National Central University, Taoyuan 320, Taiwan
                Author notes
                [* ]Correspondence: chihuang@ 123456cityu.edu.hk ; Tel.: +886-7-525-2000 (ext. 4063); Fax: +886-7-525-4099
                Article
                materials-12-03508
                10.3390/ma12213508
                6862521
                31731562
                ee85daa9-74d7-43b0-b993-f7e468804b75
                © 2019 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 06 October 2019
                : 24 October 2019
                Categories
                Article

                high entropy alloy,spinodal decomposition,strengthening,precipitate

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