首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Correlation of Microstructure with the Wear Resistance and Fracture Toughness of Duocast Materials Composed of High-Chromium White Cast Iron and Low-Chromium Steel
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Correlation of Microstructure with the Wear Resistance and Fracture Toughness of Duocast Materials Composed of High-Chromium White Cast Iron and Low-Chromium Steel

机译:高铬白口铸铁和低铬钢复合铸件的显微组织与耐磨性和断裂韧性的关系

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摘要

The objective of this study is to investigate the correlation of microstructure with wear resistance and fracture toughness in duocast materials that consisted of a high-chromium white cast iron and a low-chromium steel as the wear-resistant and ductile parts, respectively. Different shapes, sizes, volume fractions, and distributions of M_7C_3 carbides were employed in the wear-resistant part by changing the amount of chromium and molybdenum. In the alloys containing a large amount of chromium, a number of large hexagonal-shaped primary carbides and fine eutectic carbides were formed. These large primary carbides were so hard and brittle that they easily fractured or fell off from the matrix, thereby deteriorating the wear resistance and fracture toughness. In the alloys containing a smaller amount of chromium, however, a network structure of eutectic carbides having a lower hardness than the primary carbides was developed well along solidification cell boundaries and led to the improvement of both wear resistance and toughness. The addition of molybdenum also helped enhance the wear resistance by forming additional M_2C carbides without losing the fracture toughness. Under the duocasting conditions used in the present study, the appropriate compositions for wear resistance and fracture toughness were 17 to 18 pct chromium and 2 to 3 pct molybdenum.
机译:这项研究的目的是研究由高铬白口铸铁和低铬钢分别作为耐磨零件和延展性零件组成的双铸材料的显微组织与耐磨性和断裂韧性的相关性。通过改变铬和钼的含量,在耐磨部件中采用了不同的形状,尺寸,体积分数和M_7C_3碳化物分布。在含有大量铬的合金中,形成了许多大的六边形初级碳化物和精细的低共熔碳化物。这些大的初级碳化物坚硬易碎,以至于它们容易从基体上破裂或掉落,从而使耐磨性和断裂韧性恶化。然而,在含有较少量铬的合金中,沿着凝固单元边界很好地发展了具有比初级碳化物低的硬度的低共熔碳化物的网络结构,并且导致了耐磨性和韧性的改善。钼的添加还通过形成额外的M_2C碳化物而不降低断裂韧性,帮助增强了耐磨性。在本研究使用的双铸条件下,用于耐磨性和断裂韧性的合适成分为17至18 pct铬和2至3 pct钼。

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