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Cyclic thermal shock resistance of h-BN composite ceramics with La2O3–Al2O3–SiO2 addition
Authors:Baofu Qiu  Xiaoming Duan  Zhuo Zhang  Delong Cai  Ning Liao  Peigang He  Dechang Jia  Yu Zhou
Abstract:The effects of La2O3–Al2O3–SiO2 addition on the thermal conductivity, coefficient of thermal expansion (CTE), Young's modulus and cyclic thermal shock resistance of hot-pressed h-BN composite ceramics were investigated. The samples were heated to 1000 °C and then quenched to room temperature with 1–50 cycles, and the residual flexural strength was used to evaluate cyclic thermal shock resistance. h-BN composite ceramics containing 10 vol% La2O3–Al2O3 and 20 vol% SiO2 addition exhibited the highest flexural strength, thermal conductivity and relatively low CTE, which were beneficial to the excellent thermal shock resistance. In addition, the viscous amorphous phase of ternary La2O3–Al2O3–SiO2 system could accommodate and relax thermal stress contributing to the high thermal shock resistance. Therefore, the residual flexural strength still maintained the value of 234.3 MPa (86.9% of initial strength) after 50 cycles of thermal shock.
Keywords:h-BN composite Ceramics  Thermophysical properties  Cyclic thermal shock resistance
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