初凝固组织对高铬白口铁组织和力学性能的影响

Hyun-Wook Jo, J. Do, W. Jo, H. Chung, Je-hyun Lee, C. Jo
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摘要

高铬白口铁具有优异的耐磨性,在矿山和矿产工业中得到了广泛的应用。28%铬白口铁中碳含量的微小变化导致初生凝固组织的差异。亚共晶(亚共晶)成分导致了初级凝固枝晶的形成。碳和铬过饱和的初生凝固枝晶的形成也导致细小的次生碳化物的析出,这些次生碳化物不同于共晶结构中较大的板型碳化物。一小部分初固化枝晶对提高白口铁的耐磨性有重要作用,因为这些枝晶为碳化物提供了机械支撑。随着共晶组分中碳含量的降低,初生枝晶的相对含量增加。初生枝晶含量的增加使白口铁的硬度值增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Primarily Solidified Structure on the Microstructure and the Mechanical Properties of High Cr White Iron
Due to excellent abrasion resistance the high-chrome white irons are widely used in mining and mineral industries. Minor variation of carbon content in 28% chrome white iron resulted in difference in primarily solidified microstructure. Sub-eutectic (hypoeutectic) composition led to formation of primarily solidified dendrites. Formation of primarily solidified dendrites which were supersaturated with carbon and chrome also caused precipitation of fine secondary carbides that are different from relatively large plate type carbides in the eutectic structure. Small portion of primarily solidified dendrite expected to contribute significantly to the improvement of abrasion resistance of the white iron because the dendrites provided mechanical support to carbides. The relative fraction of primary dendrite increased with reduction of carbon content from the eutectic composition. The increased fraction of primary dendrite increased hardness value of the white irons.
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