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High Pressure Research
An International Journal
Volume 40, 2020 - Issue 2
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Articles

TiB2-reinforced B4C composites produced by reaction sintering at high-pressure and high temperature

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Pages 245-256 | Received 03 Nov 2019, Accepted 17 Mar 2020, Published online: 08 Apr 2020
 

ABSTRACT

Obtaining both high hardness and toughness is a challenge in B4C-nano-adhesive composites. Solving the inhomogeneous distribution of nano-adhesives in B4C and forming the chemical bonding at grain boundary is an effective method. Here, we reported that the uniform distribution of titanium diboride (TiB2)-reinforced B4C composites synthesized by high-pressure and high temperature (HPHT). It is found that HPHT sintering can effectively inhibit the grain growth and increase the relative density. Moreover, HPHT sintering can cross high reaction energy barrier and effectively promote the formation of chemical bonding at grain boundary between B4C and TiB2. The optimal hardness and toughness value reach 30.0 ± 0.9 GPa and 7.87 MPa·m1/2, respectively. The improvement of hardness and toughness in the final products are ascribed to the strengthening of nanoTiB2 connection of B4C boundary and intergranular fracture mechanism. This work suggests a new way to achieve the uniform distribution of nanoTiB2 in B4C and form the chemical bonding at grain boundary, which is of great significance to the further development of TiB2-reinforced B4C composites with excellent mechanical properties.

Additional information

Funding

This work was supported by the China Postdoctoral Science Foundation [grant number 2016M601374]; National Natural Science Foundation of China [grant numbers 11974131, 11904119]; Jilin Province Science And Technology Development Program Project [grant number 20180201079GX]; and ‘13th Five-Year’ Science and Technology Project of Jilin Provincial Education Department [grant number JJKH20191003KJ].

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