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Creep Life Prediction Method by Using High-Temperature Indentation Creep Test

机译:高温压痕蠕变试验的蠕变寿命预测方法

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Creep life prediction is very important to maintain safe operation of thermal power plants for a long-term period. In this study, an alternative creep life prediction method was proposed based on a relationship between creep exponent n and creep coefficient k. A high temperature indentation creep test was conducted to identify the creep exponent and creep coefficient for each specimen with different creep damage ratio. Subsequently, the relationship between the creep coefficient and creep exponent for each creep damage ratio was focused on. As a result, it was confirmed that a new parameter B introduced based on both creep coefficient and creep exponent linearly increase as the creep damage ratio increases. Furthermore, the B is uniquely determined by the creep damage ratio regardless of the temperature and stress conditions. These results indicate that the creep life can be predicted with a high accuracy using the B.
机译:对蠕变寿命的预测对于长期保持火力发电厂的安全运行非常重要。在这项研究中,基于蠕变指数n和蠕变系数k之间的关系,提出了一种替代的蠕变寿命预测方法。进行了高温压痕蠕变试验,以鉴定具有不同蠕变损伤率的每个样品的蠕变指数和蠕变系数。随后,关注每个蠕变损伤率的蠕变系数与蠕变指数之间的关系。结果,证实了基于蠕变系数和蠕变指数两者引入的新参数B随着蠕变损伤率的增加而线性增加。此外,B是由蠕变破坏率唯一确定的,与温度和应力条件无关。这些结果表明,使用B可以高精度地预测蠕变寿命。

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