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Influence of Rare Earth Elements on Microstructure and Mechanical Properties of Cast High-Speed Steel Rolls
作者姓名:王明家  穆松梅  孙菲菲  王艳
作者单位:[1]Stcae Key Laborcaory of Metastable Mcaerials Science and Technology, Yanshan University, Qinhuangdao 066004, China [2]Experiment Center, Northeastern University in Qinhuangdao, Qinhuangdao 066004, China [3]Yanming Alloy Roll Co. Ltd., Qinhuangdao 066004, China
基金项目:Project supported by "863" Project (2006AA03Z532) and the National Natural Science Foundation of China (NSFC 50341050)
摘    要:The influence of rare earth (RE) elements on the solidification process and eutectic transformation and mechanical properties of the high-V type cast, high-speed steel roll was studied. Test materials with different RE additions were prepared on a horizontal centrifugal casting machine. The solidification process, eutectic structure transformation, carbide morphology, and the elements present, were all investigated by means of differential scanning calorimetry (DSC) and scanning electron microscopy energy dispersive spectrometry (SEM-EDS). The energy produced by crack initiation and crack extension was analyzed using a digital impact test machine. It was found that rare earth elements increased the tensile strength of the steel by inducing crystallization of earlier eutectic γ-Fe during the solidification process, which in turn increased the solidification temperature and thinned the dendritic grains. Rare earth elements with large atomic radius changed the lattice parameters of the MC carbide by forming rare earth carbides. This had the effect of dispersing longpole M C carbides to provide carbide grains, thereby, reducing the formation of the gross carbide and making more V available, to increase the secondary hardening process and improve the hardness level. The presence of rare earth elements in the steel raised the impact toughness by changing the mechanism of MC carbide formation, thereby increasing the crack initiation energy.

关 键 词:钢材  冲击韧性  化学性质  热量测定法
文章编号:1002-0721(2007)04-0490-05
收稿时间:29 November 2006
修稿时间:2006-11-29

Influence of Rare Earth Elements on Microstructure and Mechanical Properties of Cast High-Speed Steel Rolls
Wang Mingjia,Mu Songmei,Sun Feifei,Wang Yan.Influence of Rare Earth Elements on Microstructure and Mechanical Properties of Cast High-Speed Steel Rolls[J].Journal of Rare Earths,2007,25(4):490-494.
Authors:Wang Mingjia  Mu Songmei  Sun Feifei  Wang Yan
Affiliation:1. Stcae Key Laborcaory of Metastable Mcaerids Science and Technology, Yanshan University, Qinhuangdao 066004, China; 2. Experiment Center, Northeastern University in Qinhuangdao, Qinhuangdao 066004, China; 3. Yanming Alloy Roll Co. Ltd., Qinhuangdao 066004, China
Abstract:The influence of rare earth (RE) elements on the solidification process and eutectic transformation and mechanical properties of the high-V type cast, high-speed steel roll was studied. Test materials with different RE additions were prepared on a horizontal centrifugal casting machine. The solidification process, eutectic structure transformation, carbide morphology, and the elements present, were all investigated by means of differential scanning calorimetry (DSC) and scanning electron microscopy energy dispersive spectrometry (SEM-EDS). The energy produced by crack initiation and crack extension was analyzed using a digital impact test machine. It was found that rare earth elements increased the tensile strength of the steel by inducing crystallization of earlier eutectic γ-Fe during the solidification process, which in turn increased the solidification temperature and thinned the dendritic grains. Rare earth elements with large atomic radius changed the lattice parameters of the MC carbide by forming rare earth carbides. This had the effect of dispersing long-pole MC carbides to provide carbide grains, thereby, reducing the formation of the gross carbide and making more V available, to increase the secondary hardening process and improve the hardness level. The presence of rare earth elements in the steel raised the impact toughness by changing the mechanism of MC carbide formation, thereby increasing the crack initiation energy.
Keywords:eutectic carbide  impact toughness  differential scanning calorimetry  high-speed steel roll  rare earths
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