Laves phases: a review of their functional and structural applications and an improved fundamental understanding of stability and properties

Author:

Stein FrankORCID,Leineweber AndreasORCID

Abstract

AbstractLaves phases with their comparably simple crystal structure are very common intermetallic phases and can be formed from element combinations all over the periodic table resulting in a huge number of known examples. Even though this type of phases is known for almost 100 years, and although a lot of information on stability, structure, and properties has accumulated especially during the last about 20 years, systematic evaluation and rationalization of this information in particular as a function of the involved elements is often lacking. It is one of the two main goals of this review to summarize the knowledge for some selected respective topics with a certain focus on non-stoichiometric, i.e., non-ideal Laves phases. The second, central goal of the review is to give a systematic overview about the role of Laves phases in all kinds of materials for functional and structural applications. There is a surprisingly broad range of successful utilization of Laves phases in functional applications comprising Laves phases as hydrogen storage material (Hydraloy), as magneto-mechanical sensors and actuators (Terfenol), or for wear- and corrosion-resistant coatings in corrosive atmospheres and at high temperatures (Tribaloy), to name but a few. Regarding structural applications, there is a renewed interest in using Laves phases for creep-strengthening of high-temperature steels and new respective alloy design concepts were developed and successfully tested. Apart from steels, Laves phases also occur in various other kinds of structural materials sometimes effectively improving properties, but often also acting in a detrimental way.

Funder

Max-Planck-Institut für Eisenforschung GmbH

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference1102 articles.

1. Laves F, Löhberg K (1934) Die Kristallstruktur von intermetallischen Verbindungen der Formel AB2 (The crystal structure of intermetallic compounds with formula AB2; in German). Nachr Ges Wiss Göttingen, Math-Phys Kl IV, Neue Folge 1(6):59–66

2. Laves F, Witte H (1935) Die Kristallstruktur des MgNi2 und seine Beziehungen zu den Typen des MgCu2 und MgZn2 (The crystal structure of MgNi2 and its relations to the MgCu2 and MgZn2 types; in German). Metallwirtsch Metallwiss Metalltech 14:645–649

3. Schulze GER (1939) Zur Kristallchemie der intermetallischen AB2-Verbindungen (Laves-Phasen) (About the crystal chemistry of the intermetallic AB2 compounds (Laves phases); in German). Z Elektrochem 45:849–865. https://doi.org/10.1002/bbpc.19390451202

4. Paufler P, Gustav ER (2006) Schulze’s pioneering work on Laves phases. Z Kristallogr 221:311–318. https://doi.org/10.1524/zkri.2006.221.5-7.311

5. Paufler P (2011) Early work on Laves phases in East Germany. Intermetallics 19:599–612. https://doi.org/10.1016/j.intermet.2010.11.032

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