首页> 外文期刊>Journal of Materials Science >The importance of creep strain in linking together the Wilshire equations for minimum creep rates and times to various strains (including the rupture strain): an illustration using 1CrMoV rotor steel
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The importance of creep strain in linking together the Wilshire equations for minimum creep rates and times to various strains (including the rupture strain): an illustration using 1CrMoV rotor steel

机译:在将最小蠕变速率和最小时间的威尔希尔方程式链接到各种应变(包括破裂应变)的过程中,蠕变应变的重要性:使用1CrMoV转子钢的图示

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This paper highlights the observation that the Wilshire equations for failure times and times to various strains, as reported in the original literature, may not be the most appropriate ones for all materials-including the one selected in this study. Further, such appropriateness can be determined by looking at the consistencies between the parameter estimates obtained using minimum creep rates in comparison to using failure times. It is shown, using 1CrMoV steel as an illustration, that the parameter consistency can be achieved by generalising the Monkman– Grant relation so that it contains a temperature correction. Indeed, the ability of the Wilshire equations to produce meaningful physical parameters, such as the activation energy, is shown to be highly dependent upon a valid specification for the Monkman–Grant relation. It is shown that variations in the measured values for some of the Wilshire parameters (w and k_3) with strain indicate that the causes of deformation are different at different strains and different stresses. Finally, the measured variations in the parameters of the Monkman–Grant relation with strain enable accurate interpolated and extrapolated creep curves to be calculated for any test condition
机译:本文强调了这样的观察:原始文献中报道的关于失效时间和各种应变时间的Wilshire方程可能不是对所有材料(包括本研究中选择的一种材料)最合适的方程。此外,可以通过查看使用最小蠕变速率与使用故障时间相比获得的参数估计值之间的一致性来确定这种适当性。以1CrMoV钢为例显示,可以通过推广Monkman–Grant关系来实现参数一致性,以便包含温度校正。的确,威尔希尔方程产生有意义的物理参数(例如活化能)的能力高度依赖于蒙克曼-格兰特关系的有效规范。结果表明,某些威尔希尔参数(w和k_3)的测量值随应变的变化表明,在不同应变和不同应力下,变形的原因是不同的。最后,所测得的Monkman-Grant关系参数随应变的变化使得可以在任何测试条件下计算出精确的内插和外推蠕变曲线

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