The multi-scale Ti 2 AlC/TiAl composites were fabricated. Micro-Ti 2 AlC particles are obtained in-situ at the grain boundaries of the full lamellar TiAl matrix by vacuum arc melting. The targeted precipitation of submicro-Ti 2 AlC at the lamellae TiAl/Ti 3 Al phase boundary and directional precipitation of nano-Ti 2 AlC within TiAl crystals are achieved by heat treatment. And the best high-temperature tensile properties are obtained when the graphite powder is added at 2 at.%, resulting in a tensile strength of 561 MPa and an elongation of 3.6%. These findings underscore the multifaceted role played by the multi-scale Ti 2 AlC: micro-Ti 2 AlC effectively inhibits grain boundary softening and hinders dislocation motion, while submicro-Ti 2 AlC prevents twin propagation and obstructs dislocation motion. Nano-Ti 2 AlC, on the other hand, not only hinders dislocation movement but also fine-tunes the lamellar microstructure.
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Zhe DENG
Henan University of Science and Technology
Pei LIU
Henan University of Science and Technology
Zhi-yong ZHANG
Shenyang University
Transactions of Nonferrous Metals Society of China
Henan University of Science and Technology
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DENG et al. (Wed,) studied this question.
synapsesocial.com/papers/6a095a877880e6d24efe0845 — DOI: https://doi.org/10.1016/s1003-6326(25)67021-x