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Formation and growth mechanism of TiC crystal in TiC_p/Ti composites

Formation and growth mechanism of TiC crystal in TiC_p/Ti composites
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摘要 Ti C and Ti Al C alloys were prepared using gravity and directional solidification processes. Morphologies of TiC crystal were investigated by using SEM, XRD and EDX. Also, the formation and growth mechanism of TiC crystal have been analyzed on the basis of coordination polyhedron growth unit theory. During solidification of titanium alloys, the coordination polyhedron growth unit is TiC 6. TiC 6 growth units stack in a linking mode of edge to edge and form octahedral TiC crystal with {111} planes as present faces. Although the growing geometry of TiC crystal is decided by its lattice structure, the final morphology of TiC crystal depends on the effects of its growth environment. In solute concentration distribution, the super saturation of C or TiC 6 at the corners of octahedral TiC crystal is much higher than that of edges and faces of octahedral TiC crystal. At these corners the driving force for crystal growth is greater and the interface is instable which contribute to quick stacking rate of growth units at these corners and result in secondary dendrite arms along TiC crystallographic <100> directions. TiC crystal finally grows to be dendrites. Ti C and Ti Al C alloys were prepared using gravity and directional solidification processes. Morphologies of TiC crystal were investigated by using SEM, XRD and EDX. Also, the formation and growth mechanism of TiC crystal have been analyzed on the basis of coordination polyhedron growth unit theory. During solidification of titanium alloys, the coordination polyhedron growth unit is TiC 6. TiC 6 growth units stack in a linking mode of edge to edge and form octahedral TiC crystal with {111} planes as present faces. Although the growing geometry of TiC crystal is decided by its lattice structure, the final morphology of TiC crystal depends on the effects of its growth environment. In solute concentration distribution, the super saturation of C or TiC 6 at the corners of octahedral TiC crystal is much higher than that of edges and faces of octahedral TiC crystal. At these corners the driving force for crystal growth is greater and the interface is instable which contribute to quick stacking rate of growth units at these corners and result in secondary dendrite arms along TiC crystallographic <100> directions. TiC crystal finally grows to be dendrites.
出处 《中国有色金属学会会刊:英文版》 CSCD 2002年第6期1158-1163,共6页 Transactions of Nonferrous Metals Society of China
基金 Project(99JS61.5 .1.ZS610 2 .)supportedbytheFoundationofNationalKeyLaboratoryofPrecisionHotProcessingofMetal
关键词 TIC 钛合金 合成物 碳化钛 形态学 生长机制 titanium alloys composites TiC morphology growth mechanism
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  • 1刘林,1988年
  • 2傅恒志,西北工业大学学报,1987年,5卷,279页
  • 3刘林,航空学报,1986年,7卷,181页
  • 4傅恒志,特种铸造及有色金属,1983年,3期,16页
  • 5刘林,材料研究学报
  • 6Tsang H T,Scripta Mater,1997年,37卷,9期,359页
  • 7白芳,稀有金属,1997年,21卷,增刊,481页
  • 8王戎,稀有金属,1997年,21卷,增刊,460页
  • 9杨锐,稀有金属,1997年,21卷,增刊,30页
  • 10钦征骑,新型陶瓷材料手册,1996年

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