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首页> 外文期刊>Journal of Minerals and Materials Characterization and Engineering >Effect of Cu-Ni and Cu-Ni-Mn on the Microstructural and Mechanical Behaviour of As-Cast Non-Inoculated Hypereutectic Grey Iron
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Effect of Cu-Ni and Cu-Ni-Mn on the Microstructural and Mechanical Behaviour of As-Cast Non-Inoculated Hypereutectic Grey Iron

机译:Cu-Ni和Cu-Ni-Mn对铸造非接种过度晶灰铁显微结构和力学行为的影响

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摘要

The hypereutectic region of grey cast iron has received very little attention especially for designing cast products by researchers. Due to its high carbon equivalence, hypereutectic grey iron poses some challenges especially its tendency for grey to white transition (GWT) at this level of carbon content. However, hypereutectic grey iron possesses inherent properties that could be easily utilized for improved performance in automobile engines and brake pad system. Significantly, they could be modified for superior hardness, strength and toughness. This study presents the effect of microalloying on the mechanical behaviour of hypereutectic grey cast iron with carbon equivalence above 4.5. The first part of this work presented in this paper considers the addition of Cu-Ni and Cu-Ni-Mn to series of as-cast hypereutectic grey cast iron and their hardness and tensile strength were studied and compared. A total of 33 cast samples were obtained with the control sample. The examination of the micrographs revealed that graphite eutectics cells of Type A and A + D were obtained in the resulting microstructure. Results analyses showed that the ferrite forming tendency of silicon was suppressed due to the high carbon content of the as-cast hypereutectic grey iron coupled with the absence of inoculation which plays a great role in the graphite flake type, network, size and distribution. Cu-Ni microalloying was also confirmed to promote hardness with the hardening effect limit of nickel observed at 1.3% composition. For Cu-Mi-Mn addition, excess and free sulphur in the hyper- eutectic grey iron results in reverse effect of manganese on strength, hardness, reduced graphite flake size and shape.
机译:灰色铸铁的过度凝聚地区受到研究人员设计铸造产品的影响非常少。由于其高碳当量,过度化灰铁在这种碳含量下呈现出一些挑战,特别是其灰色到白色过渡(GWT)的趋势。然而,过度化灰铁具有可容易地用于汽车发动机和制动垫系统中的性能的固有特性。值得注意的是,它们可以改变优异的硬度,强度和韧性。本研究提出了微合金化对4.5以上碳当量的过度晶灰铸铁力学行为的影响。本文提出的这项工作的第一部分考虑了Cu-Ni和Cu-Ni-Mn串联的铸造灰铸铁,并研究了它们的硬度和拉伸强度。用对照样品获得总共33个铸造样品。显微照片的检查显示,在所得的微观结构中获得A型和A + D的石墨共肠细胞。结果分析表明,由于铸造过度晶灰铁的高碳含量,抑制了硅的铁素体形成趋势,其由于缺乏接种而在石墨薄片类型,网络,尺寸和分布中起着很大的作用。 Cu-Ni微合金化也证实促进了在1.3%组合物中观察到的镍的硬化效果极限的硬度。对于Cu-Mi-Mn添加,超共晶灰铁中的过量和游离硫导致锰对强度,硬度,石墨薄片尺寸和形状的逆向效果。

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