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The Optics of the Wool Fiber Diameter Analyzer

机译:羊毛纤维直径分析仪的光学

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The optics underlying the operation of the wool fiber diameter analyzer (FDA) is explained in terms of the formation of a Fresnel diffraction shadow behind a strip mask. Consequently, the measurement technique is sensitive only to fiber diameter and is independent of internal properties such as color or refractive index. Using an approximate technique, the Huygens-Fresnel theory of diffraction is modified to account for a finite sized source with non-uniform illumination. This allows the FDA optics to be modeled using a new technique of modified Fresnel integrals. The method, which applies a one-dimensional approach to a two-dimensional problem, is computationally simple and gives an accurate description of optical phenomena encountered in the FDA. The model provides a powerful design and analysis tool for this class of instrument and has proved useful in elucidating potential sources of error.
机译:羊毛纤维直径分析仪(FDA)运作的光学原理是通过在条形掩模后面形成菲涅耳衍射阴影来解释的。因此,测量技术仅对纤维直径敏感,并且与内部属性(例如颜色或折射率)无关。使用一种近似技术,修改了惠更斯-菲涅耳衍射理论,以解决照明不均匀的有限尺寸光源的问题。这允许使用修改后的菲涅耳积分的新技术对FDA光学器件进行建模。该方法将一维方法应用于二维问题,计算简单,并且可以准确描述FDA中遇到的光学现象。该模型为此类仪器提供了强大的设计和分析工具,并已证明对阐明潜在的误差源很有用。

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