首页> 外文期刊>Journal Of The South African Institute Of Mining & Metallurgy >Effect of niobium on the solidification structure and properties of hypoeutectic high-chromium white cast ironsB^M.E. MajaAdvanced Materials Division, Mintek Randburg, Johannesburg, South Africa.
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Effect of niobium on the solidification structure and properties of hypoeutectic high-chromium white cast ironsB^M.E. MajaAdvanced Materials Division, Mintek Randburg, Johannesburg, South Africa.

机译:铌对次共晶高铬白口铸铁凝固组织和性能的影响南非约翰内斯堡Mintek Randburg的Maja 高级材料部门。

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摘要

The most commonly used high-chromium white cast iron (HCWCl) is the hypoeutectic white cast iron that contains 2-3.5 wt.% C and 10-30% Cr. This type of material relies on hard, brittle M_7C_3 carbides to impart good wear resistance. Due to its good wear resistance, this material has found application in the mining industry and cement industry. However, it has low fracture strength and this challenge led to research aimed at refining the microstructure. This was done by the addition of niobium in the range between 0.1 and 0.6 wt.%. In the as-cast condition, the addition of niobium was found to increase the fracture strength due to the finer eutectic microstructure. The hardness was also found to have increased slightly compared to the reference alloy with no niobium additions. Low fracture strength after heat treatment was observed in the Nb-added HCWCI, which is believed to have been caused by the precipitation of secondary carbides and the transformation of the matrix from austenite to martensitic.
机译:最常用的高铬白口铸铁(HCWCl)是亚共晶白口铸铁,它含有2-3.5 wt。%的C和10-30%的Cr。这种类型的材料依赖于硬而脆的M_7C_3碳化物来赋予良好的耐磨性。由于其良好的耐磨性,这种材料已在采矿业和水泥业中得到应用。然而,它具有低的断裂强度,并且这一挑战导致了旨在改善微结构的研究。这通过添加0.1至0.6重量%的铌来完成。在铸态条件下,发现铌由于较细的共晶组织而增加了断裂强度。与不添加铌的参比合金相比,还发现硬度略有增加。在添加Nb的HCWCI中观察到热处理后的低断裂强度,这被认为是由于二次碳化物的析出以及基体从奥氏体向马氏体的转变所致。

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