Ceramic particles reinforced copper matrix composites manufactured by advanced powder metallurgy: Preparation, performance, and mechanisms

YF Yan, SQ Kou, HY Yang, SL Shu, F Qiu… - … Journal of Extreme …, 2023 - iopscience.iop.org
Copper matrix composites doped with ceramic particles are known to effectively enhance
the mechanical properties, thermal expansion behavior and high-temperature stability of …

The synthesis, structure, morphology characterizations and evolution mechanisms of nanosized titanium carbides and their further applications

BX Dong, F Qiu, Q Li, SL Shu, HY Yang, QC Jiang - Nanomaterials, 2019 - mdpi.com
It is widely known that the special performances and extensive applications of the nanoscale
materials are determined by their as-synthesized structures, especially their growth sizes …

[HTML][HTML] Enhancing strength-ductility synergy and mechanisms of Al-based composites by size-tunable in-situ TiB2 particles with specific spatial distribution

BX Dong, Q Li, ZF Wang, TS Liu, HY Yang… - Composites Part B …, 2021 - Elsevier
The increase in strength usually accompanies by the sacrifice of ductility in the composites.
This work proposed a strategy of design and synthesis of in-situ TiB 2 particles to effectively …

[HTML][HTML] Contribution made by double-sized TiC particles addition to the ductility–strength synergy in wire and arc additively manufactured Al–Cu alloys

P Jin, J Zhou, J Zhou, Y Liu, Q Sun - Composites Part B: Engineering, 2024 - Elsevier
Abstract An Al–Cu matrix composite reinforced with uniformly-distributed micron-and nano-
double-sized TiC particles (MNDS-TiC ps) was successfully fabricated using a wire and arc …

Investigation on the elevated-temperature tribological behaviors and mechanism of Al-Cu-Mg composites reinforced by in-situ size-tunable TiB2-TiC particles

BX Dong, QY Li, SL Shu, XZ Duan, Q Zou, X Han… - Tribology …, 2023 - Elsevier
Lightweight materials design of friction parts promises aluminum matrix composites to
achieve comparable anti-wear properties as steel. However, it is still challenging due to the …

A new approach for improving the elevated-temperature strength and ductility of Al–Cu–Mg–Si alloys with minor amounts of dual-phased submicron/nanosized TiB2 …

YY Gao, F Qiu, QL Zhao, QC Jiang - Materials Science and Engineering: A, 2019 - Elsevier
At high temperatures, the weakened strength and decreased ductility of Al alloys limit their
industrial applications.(TiB 2–TiC)/Al–Cu–Mg–Si composites were synthesized by adding in …

Ambient-temperature time-dependent deformation of cast and additive manufactured Al-Cu-Mg-Ag-TiB2 (A205)

SI Shakil, AS Zoeram, M Avateffazeli, M Roscher… - Micron, 2022 - Elsevier
A dual-stage indentation test at ambient temperature including a constant indentation load
rate followed by a constant indentation load-hold segment was employed to assess the time …

Effects of nanosized TiCp on the microstructure evolution and tensile properties of an Al-Mg-Si alloy during cold rolling

R Geng, F Qiu, QL Zhao, YY Gao, QC Jiang - Materials Science and …, 2019 - Elsevier
The effects of a small addition of nanosized TiC particles (TiC p) on the microstructure
evolution of the Al-Mg-Si (6061) alloy throughout the entire fabrication process including …

Achieving enhanced mechanical properties of SiC/Al–Cu nanocomposites via simultaneous solid-state alloying of Cu and dispersing of SiC nanoparticles

XM Mei, QS Mei, YQ Peng, ZH Chen, T Xu… - Materials Science and …, 2022 - Elsevier
Abstract In this study, SiC/Al–Cu nanocomposites were fabricated via simultaneous solid-
state alloying of Cu and dispersing of SiC nanoparticles in Al matrix, for the first time. We …

Investigation on high-temperature creep property and mechanism of AA6111 matrix composites reinforced by in-situ ZrB2 nanoparticles

W Qian, X Kai, R Tao, R Cao, C Guan, Y Zhao - Materials Characterization, 2023 - Elsevier
In this paper, the AA6111 matrix composites reinforced by in-situ ZrB 2 nanoparticles were
fabricated via an Al-Zr-B reaction system and their creep behavior at high temperature was …