Statistical Normalization of Mechanical Properties of Natural Date Palm Biofibers Using the Box-Cox Transformation

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صورة مصغرة

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عنوان الدورية

ردمد الدورية

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Taylor & Francis

خلاصة

Characterizing the mechanical behavior of natural fibers presents unique statistical challenges. In our study, 82% of the initial datasets (n?=?35) exhibited non-normality (Shapiro-Wilk p?<?.05). Tensile tests using an Instron 5969 machine provided stress (120-450 MPa), strain (5-25%), and modulus (3-28 GPa) data requiring careful transformation. We evaluated four methods - logarithmic, square root, Box-Cox (optimal ??=?0.32), and Johnson - with Box-Cox showing the best performance for modulus (89% normality). Overall, 68% of datasets achieved acceptable normality (p?>?.05), though extreme ? values (?1 or 2) reduced physical interpretability. Skewness also had to remain below 0.5 to ensure valid microstructure correlations. The novelty of this work lies in the creation of a tailored statistical protocol that balances transformation efficiency with material relevance. By integrating multiple validation tests (Q-Q plots, Shapiro-Wilk, Kolmogorov-Smirnov) and ensuring a coefficient of variation below 15%, we provide a robust, reproducible method for natural fiber analysis. This approach enhances both the statistical reliability and practical usability of mechanical data in sustainable materials research.

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اقتباس

Benarioua, M., Amroune, S., Alshahrani, H., Belaadi, A., Hachaichi, A., Alshaikh, I. M. H., Mohamad, B., & Saada, K. (2025). Statistical normalization of mechanical properties of natural date palm biofibers using the Box-Cox transformation. Journal of Natural Fibers, 22(1), 2544176. https://doi.org/10.1080/15440478.2025.2544176

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