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原位混雜增強鈦基復合材料的制備與組織分析

Microstructure and fabrication of hybrid in situ titanium matrix composites

  • 摘要: 理論上分析了由Ti-B4C-C系原位自生制備TiB晶須(TiBw)和TiC顆粒(TiCp)混雜增強鈦基復合材料的可行性.運用熱分析方法(DSC)研究了一定量的鈦粉、碳化硼粉與碳粉的混合粉末在加熱過程中的反應情況.結果顯示復合材料原始粉末加熱過程中在940~1150℃這一溫度范圍內發生劇烈的放熱現象,有可能生成了新相.XRD檢測分析結果顯示在燒結態材料中形成了TiB與TiC,而且TiC的含量隨所添加的C含量增加而增加.OM與SEM分析表明復合材料中存在棒狀TiB晶須和近似等軸狀TiC顆粒兩種不同形態的增強體,并且兩種增強種體均勻的分布在基體中.實驗結果表明,可以采用反應熱壓法由Ti-B4C-C系制備原位自生TiB晶須和TiC顆粒混雜增強的鈦基復合材料.

     

    Abstract: The feasibility of fabrication in situ TiB and TiC hybrid titanium matrix composites based on a Ti-B4C-C system was analyzed in theory and chemical reactions among the blended powders of Ti, B4C and C powders during the heating process was studied by differential scanning calorimetry (DSC). The results of DSC show that drastic exothermal reactions take place during the course of heating, which indicates that some new phases are formed. X-ray diffraction (XRD) patterns of the as-sintered composites reveal that TiB and TiC would be formed in the as-sintered composites and the peak intensity of TiC increases with increasing amount of graphite powder, showing that both the reactions of Ti-B4C and Ti-C systems have taken place completely within the range of 940~1150℃. OM and SEM results show that rodlike TiB whiskers and equiaxed TiC particulates distribute uniformly in titanium matrix. It is suggested that in situ TiB whisker and TiC particulate hybrid reinforced titanium matrix composites can be prepared by hot pressing of a Ti-B4C-C system.

     

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