METROLOGICAL ASSESSMENT OF UNCERTAINTY IN COTTON FIBER MEASUREMENT: COMPARATIVE ANALYSIS AND PRACTICAL ISSUES
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Abstract
Cotton is one of the oldest and most widely used fiber materials of mankind, and is used as a basic raw material in many industries, especially in fabric production and textiles. The quality, length and other physical properties of cotton fibers have a significant impact on the success of the production process. The length of cotton fiber is one of its important physical properties, which affects the quality of the final product from the initial stages of production. Accurate and reliable measurement of the length of cotton fiber is important for ensuring product quality, reducing uncertainties in production processes and increasing economic efficiency [1-3].
Measurement processes, especially when analyzed metrologically, can introduce a number of uncertainties. These uncertainties vary depending on the measuring instruments, methods and external environmental factors. Identifying and reducing the uncertainties that arise in measuring the length of cotton fibers helps to optimize the production process and improve the quality of the final product. Therefore, it is very important to metrologically assess the uncertainty in measuring the length of cotton fiber and understand how to reduce it.
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References
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