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首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Influence of erroneous data on the results of calculations from acid-base surface free energy theories. II. Why are negative values of square roots obtained?
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Influence of erroneous data on the results of calculations from acid-base surface free energy theories. II. Why are negative values of square roots obtained?

机译:错误数据对酸碱表面自由能理论计算结果的影响。二。为什么获得平方根的负值?

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摘要

The occurrence of negative square roots of the Lifshitz-van der Waals (LW) component and acid and base (A and B) parameters calculated from the van Oss-Chaudhury-Good theory was checked for a small artificial set of the work of adhesion input data calculated for 9 solids and 7 liquids. Taking from the literature the data for the LW component and A and B parameters for 7 liquids and the values of such component and parameters for 9 solids (close to those in the literature), the work of adhesion was calculated and its value was assumed to be error-free (un-biased). Next, new values of the work of adhesion were obtained by adding a random error having normal distribution belonging to 8 distributions of a mean value equal to the error-free work of adhesion value and standard deviations of 1, 5, 7, 10, 20, 25, 30 and 40% of the mean value. The LW components and A and B parameters for the nine solids were back-calculated for each solid and the- error (bias) level by solving the overdetermined system of equations (of matrix 7x3) for 7 liquids. These 9 solids were grouped in 3 sets of 3 solids in each. It was found that an experimental error caused the work of adhesion data for real systems to be biased. This bias caused the solution of the equation system also to be biased and both biases were linearly dependent: This paper confirms that the appearance of negative roots of A and B parameters is caused by a specific bias in the components of the work of adhesion matrix. If the work of adhesion matrix is negatively biased there is a greater possibility of obtaining a negative value of the square root of γ~+, and the smaller the value of this parameter the greater is the possibility of obtaining a negative square root for it. Both the negative and positive biases in the work of adhesion matrix almost equally influence the bias in γ~-. The smaller this parameter the greater is its bias and greater the possibility of obtaining its negative square root.
机译:对于一小部分人工输入的粘附输入,检查了Lifshitz-van der Waals(LW)分量的负平方根以及根据van Oss-Chaudhury-Good理论计算的酸和碱(A和B)参数的出现为9种固体和7种液体计算的数据。从文献中获取有关7种液体的LW成分数据以及A和B参数以及9种固体的此类成分和参数值(与文献中相近),计算出附着力,并假设其值为没有错误(无偏见)。接下来,通过添加具有正态分布的随机误差来获得新的附着功值,该正态分布属于平均值分布的8个分布,该平均值等于附着力值的无误差功,并且标准偏差为1、5、7、10、20 ,平均值的25%,30%和40%。通过求解7种液体的超定方程组(矩阵7x3),对9种固体的LW分量以及A和B参数进行了每种固体的反计算(误差)。将这9种固体分为3组,每组3种固体。结果发现,实验错误导致真实系统的粘合数据工作出现偏差。该偏差导致方程组的解也被偏差,并且这两个偏差都是线性相关的:本文证实A和B参数的负根的出现是由粘附矩阵工作成分中的特定偏差引起的。如果粘附矩阵的功被负偏置,则获得γ〜+的平方根为负值的可能性更大,并且该参数的值越小,获得其负平方根的可能性就越大。粘附矩阵工作中的负偏差和正偏差几乎均等地影响γ〜-中的偏差。该参数越小,其偏差越大,获得其负平方根的可能性也越大。

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