Influence of Titanium Diboride Particle Size on Structure and Mechanical Properties of an Al-Mg Alloy

Author:

Khrustalyov Anton P.ORCID,Kozulin Alexander A.,Zhukov Ilya A.,Khmeleva Marina G.ORCID,Vorozhtsov Alexander B.,Eskin Dmitry,Chankitmunkong Suwaree,Platov Vladimir V.,Vasilyev Sergey V.

Abstract

In the present study, aluminum alloys of the Al-Mg system with titanium diboride particles of different size distribution were obtained. The introduction of particles in the alloy was carried out using master alloys obtained through self-propagating high-temperature synthesis (SHS) process. The master alloys consisted of the intermetallic matrix Al-Ti with distributed TiB2 particles. The master alloys with TiB2 particles of different size distribution were introduced in the melt with simultaneous ultrasonic treatment, which allowed the grain refining of the aluminum alloy during subsequent solidification. It was found that the introduction of micro- and nanoparticles TiB2 increased the yield strength, tensile strength, and plasticity of as-cast aluminum alloys. After pass rolling the castings and subsequent annealing, the effect of the presence of particles on the increase of strength properties is much less felt, as compared with the initial alloy. The recrystallization of the structure after pass rolling and annealing was the major contributor to hardening that minimized the effect of dispersion hardening due to the low content of nanosized titanium diboride.

Funder

Russian Science Foundation

Council on grants of the President of the Russian Federation

Engineering and Physical Sciences Research Council

Publisher

MDPI AG

Subject

General Materials Science,Metals and Alloys

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