Skip to main navigation Skip to search Skip to main content

IMPROVING HIGH TEMPERATURE PERFORMANCE OF TITANIUM MATRIX COMPOSITES WITH TAILORED MULTISCALE ARCHITECTURE

  • Harbin Institute of Technology

Research output: Contribution to conferencePaperpeer-review

Abstract

Discontinuously reinforced titanium matrix composites (DRTMCs), as one of the most important metal matrix composites (MMCs), are expected to exhibit high strength, elastic modulus, high-temperature endurability, wear resistance, isotropic property, and formability.. Recent innovative research shows that tailoring the reinforcement network distribution totally differently from the conventional homogeneous distribution can not only improve the strengthening effect but also resolve the dilemma of DRTMCs with poor tensile ductility. Based on the network architecture, multiscale architecture, for example, two-scale network and laminate-network microstructure can further inspire superior strength, creep, and oxidation resistance at elevated temperatures. Herein, the most recent developments, which include the design, fabrication, microstructure, high-temperature performance, strengthening mechanisms, and future research opportunities for DRTMCs with multiscale architecture, are captured. In this regard, the service temperature can be increased by 200ºC, and the creep rupture time by 59-fold compared with those of conventional titanium alloys, which can meet the urgent demands of lightweight nickel-based structural materials and potentially replace nickel base superalloys at 600-800 ºC to reduce weight by 45%. In fact, multiscale architecture design strategy will also favorably open a new era in the research of extensive metallic materials for improved performance.

Original languageEnglish
StatePublished - 2023
Externally publishedYes
Event23rd International Conference on Composite Materials, ICCM 2023 - Belfast, United Kingdom
Duration: 30 Jul 20234 Aug 2023

Conference

Conference23rd International Conference on Composite Materials, ICCM 2023
Country/TerritoryUnited Kingdom
CityBelfast
Period30/07/234/08/23

Fingerprint

Dive into the research topics of 'IMPROVING HIGH TEMPERATURE PERFORMANCE OF TITANIUM MATRIX COMPOSITES WITH TAILORED MULTISCALE ARCHITECTURE'. Together they form a unique fingerprint.

Cite this