Jin Yunxue1, Guo Yu-hang1. Study on fabrication and microstrucutre of in-situ TiC/Fe composites[J]. Special Casting & Nonferrous Alloys, 2008,(S1):317-321.
Jin Yunxue1, Guo Yu-hang1. Study on fabrication and microstrucutre of in-situ TiC/Fe composites[J]. Special Casting & Nonferrous Alloys, 2008,(S1):317-321.DOI:
原位自生TiC/Fe复合材料的制备及组织形态研究
摘要
采用在普通45号钢的熔炼过程中加入Ti的方法
制备了不同成分的原位TiC/Fe复合材料
并观察分析显微组织
测定了性能。结果表明
简单的熔铸法可以制备不同体积分数的TiCp/Fe复合材料
复合材料中多数TiC以细小的规则三角形或四边形形状存在
且随Ti加入量的增加而增多
TiC含量达到一定含量时
还会形成棱面枝晶状TiC。材料硬度则随TiC含量增加而增加。当材料制备时只添加Ti
则TiC的形成
使得基体中碳含量的减少
从而使基体中的Fe3C减少或消失
其硬度随Ti含量的增加而先增后降
同时过量的Ti不仅形成缺碳的非计量比TiCx
还有形成条状的Fe2Ti金属间化合物。
Abstract
In-situ TiC particle reinforced ferrous matrix composites with different contents were fabricated by added Ti metal during melting process of the No. 45 plain carbon steels. The microstructure of composites was analyzed and performance was measured. The results showed that different volume fraction of TiC particle reinforced ferrous matrix composites can be fabricated by using simple melting casting method. The shape of the most TiC in composites was fine and regular triangular or quadrilateral. The TiC quantity increased with the increasing of the Ti addition. As the content of TiC increased to the certain amount
facet dendrite TiC formed. The hardness of composite increased with the increasing of the TiC content. The formation of TiC reduced carbon content in matrix when Ti was only added during material fabrication. It led to Fe3C in the matrix decreasing or disappearing. The macro hardness shows pre-increasing and post-decreasing with the increasing of Ti content. The non-stoichiometric TiCx with carbon lack and the strip Fe2Ti intermetallic compounds formed by the excessive titanium.