在Gleeble-1500热模拟实验机上对原位生成TiC颗粒增强钛基复合材料进行热压缩实验,研究变形温度为700~950 ℃、温度间隔为50 ℃,应变速率为10-3~1 s-1条件下的热变形行为,采用XRD、DSC、SEM、OM等实验手段对复合材料的相变点及变形后的显微组织等进行分析和测定.结果表明:流变应力随变形温度的升高和应变速率的降低而减小;在高应变速率条件下,绝热温升对流变应力的影响较为明显;动态再结晶是TiC钛基复合材料热变形的重要机制,变形温度越高,再结晶越易进行,变形速率越高,应变量越大,再结晶晶粒越细小.
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