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논문 기본 정보

자료유형
학술저널
저자정보
S. D. Oguntuyi (Tshwane University of Technology) O. T. Johnson (University of Namibia) M. B. Shongwe (Tshwane University of Technology)
저널정보
대한금속·재료학회 Metals and Materials International Metals and Materials International Vol.27 No.7
발행연도
2021.1
수록면
2,146 - 2,159 (14page)

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초록· 키워드

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The relentless efort for the innovation of improved materials for application in high-temperature environment, structuraland functional application has paved the way for the synthesis of ceramics based materials—with current research activities being channeled towards the application of metallic and non-metallic based nano-powders as a sintering additive or asa reinforcement for ceramic-based materials. Metallic and non-metallic based nanopowders additive possesses excellentthermal, physical, and mechanical properties and hence, serves as a good additive for ceramic-based materials in achievinggood sinterability, full densifcation, and excellent mechanical properties. One of the critical factors that have afected thedensifcation and properties of the ceramic-based material is the type of consolidation applied. Powder metallurgy (PM) isthe most prominent technique to date for the syntheses of ceramic-based materials. Although previous reviews have stateddiverse PM techniques viz., hot press, hot-isostatic press, pressureless sintering, spark plasma sintering (SPS). More also,various reinforcement such as Metallic and non-metallic based nano-powders additive has been used in achieving the desiredproperties. SPS amidst diverse PM techniques has been given high attention to the routes of manufacturing ceramic materialsbecause good microstructures and excellent mechanical properties can be achieved. This review focuses on past, present,and future works of ZrB2, and TiB2, reinforced with sintering additive with more attention on silicides, carbides, or nitridesbased material as sintering additive.

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