讨论了Al-TiO2-C反应系原位反应合成铝基复合材料的常温和高温拉伸性能及其断裂机理.当C/TiO2摩尔比为0时,增强相由α-Al2O3和Al3Ti组成,随C/TiO2摩尔比的增加,Al3Ti逐渐减少,在C/TiO2摩尔比为1时,Al3Ti基本消失.室温抗拉强度和延伸率随C/TiO2摩尔比的增加而同步提高,分别由250.4 MPa和4.0%上升到350.8 MPa和6.0%.SEM观察发现有的Al3Ti自身解理开裂,并在四周形成较大韧窝,拉伸时裂纹核可在Al3Ti棒中和基体中α-Al2O3的聚集处形成,并分别在棒的解理面和基体中扩展引起断裂.高温时,热错配应力促使裂纹核先于基体在Al3Ti棒与基体的界面萌生扩展,Al3Ti从基体中脱离,断口出现洞坑,C/TiO2摩尔比为1的复合材料在727K时,拉伸强度降为93.3MPa,延伸率升为11.0%.
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