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Ultrahigh-temperature tensile creep of TiC-reinforced Mo-Si-B-based alloy

机译:TiC增强Mo-Si-B基合金的超高温拉伸蠕变

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摘要

In this study, the ultrahigh-temperature tensile creep behaviour of a TiC-reinforced Mo-Si-B-based alloy was investigated in the temperature range of 1400–1600 °C at constant true stress. The tests were performed in a stress range of 100–300 MPa for 400 h under vacuum, and creep rupture data were rationalized with Larson-Miller and Monkman-Grant plots. Interestingly, the MoSiBTiC alloy displayed excellent creep strength with relatively reasonable creep parameters in the ultrahigh-temperature range: a rupture time of ~400 h at 1400 °C under 137 MPa with a stress exponent (n) of 3 and an apparent activation energy of creep (Qapp) of 550 kJ/mol. The increasing rupture strains with decreasing stresses (up to 70%) and moderate strain-rate oscillations in the creep curves suggest that two mechanisms contribute to the creep: phase boundary sliding between the hard T2 and (Ti,Mo)C phases and the Moss phase, and dynamic recovery and recrystallization in Moss, observed with orientation imaging scanning electron microscopy. The results presented here represent the first full analysis of creep for the MoSiBTiC alloy in an ultrahigh-temperature range. They indicate that the high-temperature mechanical properties of this material under vacuum are promising.
机译:在这项研究中,研究了TiC增强的Mo-Si-B基合金的超高温拉伸蠕变行为,该合金在1400–1600 C的温度范围内,恒定的真实应力下进行了研究。在真空条件下,在100–300 MPa的应力范围内进行了400 h的测试,蠕变破裂数据通过Larson-Miller和Monkman-Grant图进行了合理化。有趣的是,MoSiBTiC合金在超高温范围内表现出优异的蠕变强度和相对合理的蠕变参数:在1400°C下137 MPa下在1400°C下的断裂时间为〜400 h,应力指数(n)为3,表观活化能为蠕变(Qapp)为550 kJ / mol。随应力减小(高达70%)而增加的断裂应变以及蠕变曲线中的适度应变率振荡表明,蠕变的两个机理是:硬T2相和(Ti,Mo)C相与Moss之间的相界滑动取向成像扫描电子显微镜观察到的相,以及在苔藓中的动态恢复和重结晶。此处给出的结果代表了MoSiBTiC合金在超高温范围内的首次蠕变分析。他们表明这种材料在真空下的高温机械性能是有前途的。

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