Combining multiple strategies for fast densification and superior mechanical properties in 8YSZ with cold sintering pre-treatment

  • Kim, Sung-Hyun
  • Momjian, Sevag
  • Hong, Sang-Min
  • Kim, Jong-Won
  • Gu, Ha-Jin
  • ... Moon, Kyung-Seok
  • 외 9명
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초록

The cold sintering process (CSP), which has recently attracted significant research attention, is an emerging technique that enables the densification of high-melting-point ceramics at temperatures far lower than those required for conventional sintering (CS) by utilizing solvent-assisted mechanisms. In this study, CSP is employed as a pretreatment strategy for 8 mol% yttria-stabilized zirconia (8YSZ) to modify the initial microstructural and interfacial state prior to high-temperature sintering. In parallel, Fe2O3 was introduced as a sintering aid to enhance grain-boundary diffusion during the high-temperature stage. Rather than acting as an independent densification step, CSP establishes a path-dependent initial condition that governs the subsequent densification trajectory during conventional sintering. CSP at 180 degrees C for 1 h under a uniaxial pressure of 200 MPa, followed by postannealing at 1200 degrees C for 30 min, resulted in a high relative density of 98.11% theoretical density (TD). Depending on the type of solvent, the treated samples exhibited either a high Vickers hardness (H-v = 14.99 GPa) or a high fracture toughness (K-IC = 5.56 MPa & centerdot;m(1/2)), reflecting differences in grain growth mode and crack-path geometry. Stage-resolved densification kinetics were directly monitored using laser dilatometry, enabling the identification of pressure-driven rearrangement, solvent-mediated consolidation, and thermally activated diffusion contributions. The results demonstrate that CSP pretreatment governs the particle packing topology and interfacial chemistry, while Fe2O3 addition primarily amplifies high-temperature grain-boundary diffusion. This sequential coupling establishes a mechanistic framework for path-dependent densification in CSP-assisted ceramic processing.

키워드

cold sintering8 mol% yttria-stabilized zirconia (8YSZ)densificationmechanical propertyYTTRIA-STABILIZED ZIRCONIAOXIDE FUEL-CELLSGRAIN-GROWTHIONIC-CONDUCTIVITYKINETICSBEHAVIORDENSITYMICROSTRUCTURECERAMICSZNO
제목
Combining multiple strategies for fast densification and superior mechanical properties in 8YSZ with cold sintering pre-treatment
저자
Kim, Sung-HyunMomjian, SevagHong, Sang-MinKim, Jong-WonGu, Ha-JinKim, Young-JaePark, Ah-HyeonUzair, MuhammadSharief, PathanPark, Jeong-MinKim, Chung-SooMoon, Kyung-SeokGuo, JingRandall, Clive A.Jeon, Sang-Chae
DOI
10.26599/JAC.2026.9221278
발행일
2026-05
유형
Article
저널명
Journal of Advanced Ceramics
15
5