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Solidification of high-Cr white cast iron-WC particle reinforced composites

机译:高铬白口铸铁-WC颗粒增强复合材料的凝固

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A double casting technique using sand casting that has been developed to produce a high-Cr white cast iron (WCI) based material having an in situ and ex situ carbide particle reinforced wear resistant composite region that extends to a depth of 5-8 mm below the working surface is described. The WC particles were directed to a specific location in the ingot and were distributed uniformly in the working region of the material. The casting technique ensured chemical bonding between the high-Cr WCI and the particle reinforced composite (working region) at a well defined interface parallel to the working surface. The solidification of the melt started around the WC particles after they had settled in the near surface region of the casting. Around the WC particles three reaction zones were formed. Owing to partial dissolution of the WC particles and the resulting interdiffusion of elements such as W, Co, Fe, C and Cr, carbides containing Fe, Cr, W and Co were formed in the reaction zones. The wear behaviour of the WCI based composite material was significantly better compared with that of the standard material used in an industrial application.
机译:已开发出一种使用砂型铸造的双铸造技术,以生产基于高铬白口铸铁(WCI)的材料,该材料具有原位和非原位碳化物颗粒增强的耐磨复合材料区域,延伸至低于5-8 mm的深度描述了工作表面。 WC颗粒被定向到铸锭中的特定位置,并均匀分布在材料的工作区域中。铸造技术确保了高Cr WCI和颗粒增强复合材料(工作区域)之间在平行于工作表面的边界清晰的界面上化学键合。在WC颗粒沉降到铸件的近表面区域后,熔体的凝固开始于WC颗粒周围。在WC颗粒周围形成三个反应区。由于WC颗粒的部分溶解和所导致的元素例如W,Co,Fe,C和Cr的相互扩散,在反应区中形成了含有Fe,Cr,W和Co的碳化物。与工业应用中使用的标准材料相比,基于WCI的复合材料的磨损性能明显更好。

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