稀土变质铸造对机加工刀具用W6Mo5Cr4V2钢微观组织的影响

    Effect of Rare Earth Modification Casting on Microstructure of W6Mo5Cr4V2 Steel for Machining Tools

    • 摘要: 采用OM、SEM等研究了0.02wt%~0.06wt%添加量的Ce/La复合稀土(Ce含量70wt%,La含量30wt%)变质处理对W6Mo5Cr4V2高速钢铸态组织的影响。结果表明:未变质的W6Mo5Cr4V2钢枝晶较为发达,晶界处有大量网状碳化物分布。经Ce/La复合稀土变质后,钢的铸态组织中二次枝晶间距有所减小,网状碳化物被打断,碳化物得到细化。与未变质钢相比,添加0.04% Ce/La稀土的高速钢二次枝晶间距减小了14.5%,碳化物网状结构基本断开,面积百分比减少了33.7%,变质效果最佳。

       

      Abstract: The effect of 0.02wt%-0.06wt% added Ce/La composite rare earth(Ce 70wt%, La 30wt%) modification on the as-cast microstructure of W6Mo5Cr4V2 high speed steel was studied by OM and SEM. The results show that the dendrites of unmodified W6Mo5Cr4V2 steel are well grown, and there are a lot of carbides distributed along grain boundaries. After Ce/La composite rare earth modification, the secondary dendrite spacing in the as-cast microstructure of the steel decreases, the network carbide is interrupted, and the carbide is refined. Compared with those of unmodified the steel, the secondary dendrite spacing of the high speed steel with 0.04% Ce/La rare earth is reduced by 14.5%, the carbide network structure is basically broken, the area percentage is reduced by 33.7%, and the modification effect is the best.

       

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