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Use of the Wilshire equation to correlate and extrapolate creep rupture data of Incoloy 800 and 304H stainless steel

机译:使用Wilshire方程与Incoloy 800和304h不锈钢的蠕变破裂数据相关和外推蠕变数据

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摘要

Advanced power plant alloys must endure high temperatures and pressures for durations at which creep data are often not available, necessitating the extrapolation of creep life. A recently developed creep life extrapolation method is the Wilshire equation, with which multiple approaches can be used to increase its goodness of fit to available experimental data and improve the confidence level of calculating long-term creep strength at times well beyond the available experimental data. In this article, the Wilshire and Larson-Miller parameter equations are used to extrapolate the creep life of Incoloy 800 and 304H stainless steel to 100,000 h. The use of (1) different methods to determine creep activation energy, (2) region splitting, and (3) short-duration test data to predict long-term failure were investigated to determine their effects on correlation and extrapolation using the Wilshire equation. The accuracy of the Wilshire and Larson-Miller parameter equations' calculated times to rupture are compared.
机译:先进的发电厂合金必须忍受高温和压力,用于蠕变数据通常不可用,需要蠕变寿命的外推。最近开发的蠕变寿命外推方法是Wilshire方程,可以使用多种方法来提高其适合于可用的实验数据的良好性,并提高超出可用实验数据的时间计算长期蠕变强度的置信水平。在本文中,WILSHIRE和LARSON-MILLER参数方程用于将INDOLOY 800和304H不锈钢的蠕变寿命推断至100,000小时。使用(1)不同方法来确定蠕变激活能量,(2)区域分裂,(3)对预测长期故障的短持续时间测试数据进行了研究,以确定使用WILSHIRE方程对相关性和外推的影响。比较了Wilshire和Larson-Miller参数方程的准确性,计算了破裂的次数。

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