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Study of Tensile Properties and Fracture Mechanisms of Fully Lamellar TiAl Based Alloy

机译:全层层基产合金的拉伸性能和断裂机制研究

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The tensile properties and fracture mechanisms of fully lamellar TiAl based alloy was studied by room and high temperature (400°C) tensile test. The results indicated that: the crack initiated between weak lamellar interfaces. With tension increased, the cracks extended along lamellar direction. Crack propagation resistance was enhanced at colony boundary. Ligaments broke while load increased, and then the main crack and microcrack linked. The fracture process was that the main crack occurred firstly, microcrack appeared and then propagated, the main crack and microcrack were linked, and the alloy fractured finally; The ductility of the alloy at 400°C was superior to that at room temperature; The fracture mechanism of the fully lamellar TiAl based alloy is brittle cleavage fracture.
机译:通过室温和高温(400℃)拉伸试验研究了完全层层基团合金的拉伸性能和断裂机制。结果表明:弱层层界面之间引发的裂缝。张紧增加,裂缝沿着层状方向延伸。在殖民地边界处增强了裂纹繁殖抗性。韧带在负荷增加时破裂,然后连接的主要裂缝和微裂纹。断裂过程是首先发生的主要裂纹,微裂纹出现,然后繁殖,主要裂纹和微裂纹链接,并最终裂开的合金裂缝; 400℃下合金的延展性优于室温下;完全层层地基合金的断裂机制是脆性切割骨折。

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