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Enhanced thermal shock response of Al 2 O 3 –graphite composites through a layered architectural design
Author(s) -
Song Junjie,
Yang Hui,
Bermejo Raúl,
Qu Jianmin,
Hu Litian,
Zhang Yongsheng
Publication year - 2019
Publication title -
journal of the american ceramic society
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.9
H-Index - 196
eISSN - 1551-2916
pISSN - 0002-7820
DOI - 10.1111/jace.16233
Subject(s) - materials science , graphite , thermal shock , composite material , fracture toughness , ceramic , residual strength , sintering , toughness , flexural strength , compressive strength
The use of ceramics such as alumina in moving components often requires the addition of low friction materials such as graphite. A new strategy for improving toughness, strength, and thermal‐shock resistance of Al 2 O 3 –graphite self‐lubricating composites was proposed in this study. Alumina layers embedded between Al 2 O 3 –graphite layers were fabricated and tested after thermal shock conditions ranging between 500 °C and 800 °C maximum temperature. Retained strength and apparent fracture toughness after the tests were compared to room temperature values. Results show that compressive residual stresses generated in the outer Al 2 O 3 –graphite layers during cooling down from sintering improve the failure resistance of the materials. The introduction of heat‐resistant particles (Al 2 O 3 particles) into graphite layers combined with a layered architecture can greatly decrease the oxidation degradation of the materials below 500 °C. In addition, the retained strength and toughness in the layered architectures after thermal shock between 550 °C and 800 °C remains constant, thus indicating that the new‐developed Al 2 O 3 /Al 2 O 3 –graphite laminated composites may be reliable candidates for self–lubricating applications also for elevated temperatures.
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