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Preparation and Microstructural Characterization of a High-Cr White Cast Iron Reinforced with WC Particles

机译:WC颗粒增强高铬白口铸铁的制备及组织结构表征

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摘要

High-chromium white cast iron (WCI) specimens locally reinforced with WC–metal matrix composites were produced via an ex situ technique: powder mixtures of WC and Fe cold-pressed in a pre-form were inserted in the mold cavity before pouring the base metal. The microstructure of the resulting reinforcement is a matrix of martensite (α’) and austenite (γ) with WC particles evenly distributed and (Fe,W,Cr) C carbides that are formed from the reaction between the molten metal and the inserted pre-form. The (Fe,W,Cr) C precipitation leads to the hypoeutectic solidification of the matrix and the final microstructure consists of martensite, formed from primary austenite during cooling and eutectic constituent with (Fe,Cr) C and (Fe,W,Cr) C carbides. The presence of a reaction zone with 200 µm of thickness, between the base metal and the composite should guarantee a strong bonding between these two zones.
机译:通过非原位技术生产了用WC-金属基复合材料局部增强的高铬白口铸铁(WCI)标本:将预成型件中冷压的WC和Fe的粉末混合物插入模腔中,然后浇铸基体金属。所得增强材料的微观结构是马氏体(α')和奥氏体(γ)的基体,WC颗粒均匀分布,而(Fe,W,Cr)C碳化物是由熔融金属与插入的预成型坯之间的反应形成的形成。 (Fe,W,Cr)C的析出导致基体的共晶凝固,最终的微观结构由马氏体组成,马氏体由冷却时的原始奥氏体形成,并与(Fe,Cr)C和(Fe,W,Cr)共晶。碳碳化物。在贱金属和复合材料之间存在厚度为200 µm的反应区时,应确保这两个区之间的牢固结合。

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