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A Study on the Zener-Holloman Parameter and Fracture Toughness of an Nb-Particles-Toughened TiAl-Nb Alloy

机译:基于Nb粒子 - 增韧TiAl-Nb合金的Zener-Holloman参数和断裂韧性的研究

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摘要

Hot compressive deformation behaviors of a powder metallurgy Ti-45Al-5Nb-0.4W/2Nb (at. %) were investigated at strain rates from 0.001 s−1 to 1 s−1 and temperatures from 1050 °C to 1200 °C. The Zener-Hollomon (Z) parameter can affect the hot deformation mechanism significantly. At a high Z condition, Nb particles played an important role in coordinating the deformation. At a low Z condition, deformation of Nb particles accompanied by dynamic recrystallization (DRX) can act as a dominant softening mechanism. The as-forged pancake exhibits a short rod-like particle-toughened equiaxed matrix. For notched three-point bending (3PB) tests, the fracture toughness of an Nb-particles-toughened high-Nb-containing duplex phase γ-TiAl alloy was hardly affected by the loading rate, presenting a peak fracture toughness of about 12.9 MPa·m1/2. The toughness of the present alloy can be improved by ductile Nb particles. A model based on the Griffith-Orowan-Irwin relation was constructed, which is quite accurate to predict the facture toughness of the present specimen using tensile properties.
机译:粉末冶金铸锭Ti-45Al-5NB-0.4W / 2Nb合金(原子%)的热压缩变形行为在应变速率进行了调查从0.001 S-1至1个S-1和温度为1050℃〜1200℃。齐纳-形变Z(Z)参数可以显著影响热变形机制。在一个高Z状态,铌颗粒在协调变形起到了重要作用。在低Z条件,伴随着动态再结晶(DRX)的Nb颗粒的变形可以充当主导软化机制。的作为锻造煎饼表现出短棒状粒子增韧等轴矩阵。对于缺口三点弯曲(3PB)的测试中,一个的断裂韧性的Nb-颗粒增韧高铌含双相γ-TiAl基合金几乎不受负荷率的影响,呈现关于12.9兆帕的峰值断裂韧性· M1 / 2。本合金的韧性可以通过延性铌颗粒来提高。构建基于所述格里菲斯-奥罗万-欧文关系的模型,这是相当准确的预测使用的拉伸性能,本试样的断裂韧度。

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