郑宏光, 李元, 刘旭峰. Zr对Fe-36Ni因瓦合金凝固组织和热塑性的影响[J]. 工程科学学报, 2014, 36(S1): 145-150. DOI: 10.13374/j.issn1001-053x.2014.s1.027
引用本文: 郑宏光, 李元, 刘旭峰. Zr对Fe-36Ni因瓦合金凝固组织和热塑性的影响[J]. 工程科学学报, 2014, 36(S1): 145-150. DOI: 10.13374/j.issn1001-053x.2014.s1.027
ZHENG Hong-guang, LI Yuan, LIU Xu-feng. Effects of Zr on the solidification structure and hot ductility of Fe-36Ni invar alloy[J]. Chinese Journal of Engineering, 2014, 36(S1): 145-150. DOI: 10.13374/j.issn1001-053x.2014.s1.027
Citation: ZHENG Hong-guang, LI Yuan, LIU Xu-feng. Effects of Zr on the solidification structure and hot ductility of Fe-36Ni invar alloy[J]. Chinese Journal of Engineering, 2014, 36(S1): 145-150. DOI: 10.13374/j.issn1001-053x.2014.s1.027

Zr对Fe-36Ni因瓦合金凝固组织和热塑性的影响

Effects of Zr on the solidification structure and hot ductility of Fe-36Ni invar alloy

  • 摘要: 研究了Zr对Fe-36Ni因瓦合金组织和热塑性的影响及相关作用机制.结果表明:加入质量分数为0.081%Zr处理后,合金中形成了大量高熔点的ZrO2颗粒;错配度计算表明,ZrO2(001)面与合金基体的(001)面之间的错配度仅为0.77%,因此,ZrO2可以作为有效的非均质形核核心,使柱状晶变短变细,等轴晶比例增加,凝固组织得到显著改善.温度低于1050℃时,Fe-36Ni因瓦合金热塑性较差,晶界强度较低及晶界滑移是其主要断裂机制;Zr通过细化晶粒来强化晶界、限制晶界的滑移和促进晶界的迁移,从而显著提高了合金950~1000℃的热塑性;温度高于1050℃,由于动态再结晶的出现,合金展现出了良好的热塑性.

     

    Abstract: Effects of Zr on the solidification structure and hot ductility of Fe-36Ni invar alloy were investigated,and the corresponding mechanisms were also discussed. Results showed that a great amount of high-melting point compounds(ZrO2) formed in the alloy with the addition of 0.081% Zr(mass fraction). Based on the theory of lattice misfit,the lattice misfit between(001) surfaces of ZrO2 and the Fe-36Ni matrix is 0.77%,which is relatively low. Therefore,ZrO2 could serve as the effective core of heterogeneous nucleation,resulting in remarkably shorter and thinner columnar grains,which increases the proportion of equiaxed grains and refines the solidification structure. The alloy has a bad hot ductility below 1050℃,which is mainly attributed to weaker boundaries and grain boundary sliding. However,the hot ductility of the alloy is highly enhanced at 950~1000℃ because of the addition of 0.081% Zr,which could refine grain sizes to hinder grain boundary sliding,strengthen grain boundaries,and promote grain boundary movement.The alloy has a good hot ductility over 1050℃ for the existing of dynamic recrystallization.

     

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