摘要
通过在石墨铸型内表面涂敷Y_2O_3、Al_2O_3、CaZr O_3耐火氧化物涂料,研究涂层成分对纯钛铸件界面反应和表面组织性能的影响规律。结果表明:涂敷涂料能有效克服石墨铸型对铸件的激冷作用。Y_2O_3涂料与钛液无化学反应发生,稳定性最佳,仅物理粘附于铸件表面。Al_2O_3和Ca Zr O_3涂料均与钛液发生了界面反应,分别生成Ti-Al-O和Ca-Ti-O的化合物,Al_2O_3反应程度尤为剧烈。涂刷涂料后钛铸件表面晶粒尺寸、粗晶层厚度和显微硬度明显增大,变化趋势均为未涂刷<Y_2O_3<CaZrO_3<Al_2O_3。
The refractory oxide coating including Y_2O_3,Al_2O_3,and Ca Zr O_(3 )were coated on the inner surface of graphite mold,to study the effect of coating composition on the interface reaction of pure titanium and its microstructure and properties.The results show that the coating can effectively overcome the chilling effect of graphite casting mould.No chemical reactions occur between Y_2O_(3 )and molten titanium liquid,and Y_2O_3 coating only physically adheres to the surface,so the stability of Y_2O_3 coating and titanium liquid is best.Al_2O_(3 )and Ca Zr O_(3 )coating have an interface reaction with molten titanium liquid,and Ti-Al-O and Ca-Ti-O phase form during the interface reaction,respectively.The interface reaction between Al_2O_3 coating and molten titanium liquid is most severe.After the coating,the gain size of the surface layer,the thickness of coarse grain layer and the microhardness all increase.And these changes degree with the coating type from the small to large is Al_2O_3,Ca Zr O_3,Al_2O_3.
出处
《稀有金属材料与工程》
SCIE
EI
CAS
CSCD
北大核心
2017年第S1期190-194,共5页
Rare Metal Materials and Engineering
基金
国家自然科学基金资助项目(51375318)
沈阳市科技计划项目(F14-178-1-00)
关键词
纯钛
机加工石墨型
耐火氧化物涂料
界面反应
显微组织
pure titanium
machined graphite mould
refractory oxides
interfacial reaction
microstructure