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Relationship between Computed Rate Constants and the Variability in Maturity-Based Strength Predictions

机译:基于成熟度的强度预测中计算的速率常数与变异性之间的关系

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ASTM C1074-11, Standard Practice for Estimating Concrete Strength by the Maturity Method, provides instructions for applying the Nurse-Saul and Freiesleben-Hansen Pedersen maturity methods, including ways to obtain the key parameters of datum temperature (T-0) or the Arrhenius activation energy (E-a). Default values are provided along with three alternative computational methods for determining a mixture-specific value of T(0)( )or E-a from experimental data, as detailed in C1074-11 Annex Al. This paper demonstrates via examples that the accuracy of the resulting strength estimates can vary considerably depending on which of the three alternatives is selected, potentially masking the more intrinsic variability of these parameters as influenced by composition or temperature. One source of this observed variability is the statistical bias known to characterize the "double reciprocal linearization" regression technique, which is utilized in two of the three ASTM methods. While recommending the deletion of these statistically biased estimators, the authors support the more rigorous nonlinear regression method (A1.1.8.1) as well as simpler functional forms; they affirm the reasonableness of the ASTM default values for T-0 and E-a.
机译:ASTM C1074-11,通过成熟度方法估算混凝土强度的标准规范,提供了应用Nurse-Saul和Freiesleben-Hansen Pedersen成熟度方法的说明,包括获取基准温度(T-0)或阿雷尼乌斯关键参数的方法活化能(Ea)。提供了默认值以及三种可选的计算方法,用于根据实验数据确定T(0)()或E-a的混合比特定值,如C1074-11附录A1中所述。本文通过示例说明,强度强度估算的准确性可能会因选择了三个替代方案中的哪个而有很大差异,从而可能掩盖了这些参数受成分或温度影响的更多固有变化。这种观察到的变异性的一个来源是已知的表征“双重倒数线性化”回归技术的统计偏差,该技术在三种ASTM方法中的两种中得到了利用。在建议删除这些有统计偏差的估计量的同时,作者支持更严格的非线性回归方法(A1.1.8.1)以及更简单的函数形式。他们确认了T-0和E-a的ASTM默认值的合理性。

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