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Short-term flexural creep deformation in synroc-C

机译:synroc-C中的短期挠曲蠕变变形

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摘要

The flexural creep behaviour of synroc-C in an inert atmosphere was studied at temperatures of 860°C, 900°C and 940°C under constant-load conditions in four-point bending. Applied stresses ranged from 100 to 160 MPa. Individual creep curves show primary and secondary creep but little or no tertiary creep stage. The log of the creep rate was found to increase linearly with log of the applied stress at each temperature over the entire stress range. Analysis of the creep data using the Norton power-law function revealed that the stress exponent decreased from 3.3 ± 0.6 for the 860°C and 900°C data to 2.0 ± 0.2 for the 940°C data, and an activation energy of 440 ± 40 kJ/mol was obtained over the entire temperature and stress range. Comparative analysis with the theta-projection equation was found to adequately represent the data yielding an activation energy of 464 kJ/mol while also showing a trend for the stress exponent to decrease with increasing temperature. Microstructural examination revealed extensive cavitation on the tensile surface of the creep specimens subjected to higher stresses at 900°C and 940°C. Dynamic high temperature X-ray diffraction analysis indicated little change in the phase assemblage apart from a slight reduction in the amount of the hollandite phase at higher temperatures which was attributed to a minor amount of oxidation. The possible creep damage mechanism was explored with reference to creep test results and microstructural modifications and the implications of the observations are discussed.
机译:研究了Synroc-C在惰性气氛中在860°C,900°C和940°C的温度下于恒定载荷条件下四点弯曲的弯曲蠕变行为。施加的应力范围为100至160 MPa。单独的蠕变曲线显示主要和次要蠕变,但很少或没有三次蠕变阶段。发现在整个应力范围内,每个温度下蠕变速率的对数随所施加应力的对数线性增加。使用诺顿幂律函数对蠕变数据进行分析后发现,应力指数从860°C和900°C数据的3.3±0.6降至940°C数据的2.0±0.2,活化能为440±在整个温度和应力范围内获得40 kJ / mol。发现与θ-投影方程的比较分析可以充分代表产生464 kJ / mol活化能的数据,同时还显示出应力指数随温度升高而降低的趋势。显微组织检查表明,在900°C和940°C下承受较高应力的蠕变试样的拉伸表面上发生了广泛的气蚀。动态高温X射线衍射分析表明,相变几乎没有变化,除了由于较高的氧化程度而使堇青石相的含量在较高温度下略有减少之外。参考蠕变测试结果和微观结构修改,探讨了可能的蠕变损伤机理,并讨论了观察结果的含义。

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  • 来源
    《Journal of Materials Science》 |2003年第15期|3223-3231|共9页
  • 作者单位

    Materials and Engineering Science Australian Nuclear Science and Technology Organisation;

    Materials and Engineering Science Australian Nuclear Science and Technology Organisation;

    Materials and Engineering Science Australian Nuclear Science and Technology Organisation;

    Materials and Engineering Science Australian Nuclear Science and Technology Organisation;

    Materials and Engineering Science Australian Nuclear Science and Technology Organisation;

    Department of Applied and Plasma Physics School of Physics The University of Sydney;

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