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- W2182135938 abstract "Abstract Owing to its excellent mechanical and thermal properties, silicon nitride is an increasingly used tool material in the metallurgical industry. Some of its applications involve high thermal cycling loads, which may lead to tool failure. The failure of ceramic materials initiates from defects in the volume or on the surface of components and samples. Surface defects, often introduced during finishing, are considerably more harmful than defects in the volume. It was possible to heal surface defects by applying a specifically developed heat treatment – provided the defects are not too large. In water quenching experiments on samples and components, it could be proven that the strength increase induced by the heat treatment also results in an improved thermal shock resistance. Due to high processing costs and in some cases due to the components' geometry, enhancing the surface quality of components is not possible. The proposed heat treatment is an alternative to increase strength, thermal shock resistance (and thus the reliability and service life of silicon nitride components) which requires little effort." @default.
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- W2182135938 date "2015-03-28" @default.
- W2182135938 modified "2023-10-16" @default.
- W2182135938 title "Heat Treatment-Induced Improvement of the Thermal Shock Resistance of Si3N4 Tools for Metallurgical Applications" @default.
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- W2182135938 doi "https://doi.org/10.3139/147.110333" @default.
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