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利用光散射和傅里叶变换红外技术对棉纤维品质进行表征

Cotton fiber quality characterization with light scattering and fourier transform infrared techniques.

作者信息

Thomasson J A, Manickavasagam S, Mengüç M P

机构信息

Department of Biological & Agricultural Engineering, Texas A&M University, 2117 TAMU, College Station, Texas 77843, USA.

出版信息

Appl Spectrosc. 2009 Mar;63(3):321-30. doi: 10.1366/000370209787598870.

Abstract

Fiber quality measurement is critical to assessing the value of a bale of cotton for various textile purposes. An instrument that could measure numerous cotton quality properties by optical means could be made simpler and faster than current fiber quality measurement instruments, and it might be more amenable to on-line measurement at processing facilities. To that end, a laser system was used to investigate cotton fiber samples with respect to electromagnetic scattering at various wavelengths, polarization angles, and scattering angles. A Fourier transform infrared (FT-IR) instrument was also used to investigate the transmission of electromagnetic energy at various mid-infrared wavelengths. Cotton samples were selected to represent a wide range of micronaire values. Varying the wavelength of the laser at a fixed polarization resulted in little variation in scattered light among the cotton samples. However, varying the polarization at a fixed wavelength produced notable variation, indicating that polarization might be used to differentiate among cotton samples with respect to certain fiber properties. The FT-IR data in the 12 to 22 microm range produced relatively large differences in the amount of scattered light among all samples, and FT-IR data at certain combinations of fixed wavelengths were highly linearly related to certain measures of cotton quality including micronaire.

摘要

纤维质量测量对于评估用于各种纺织用途的一包棉花的价值至关重要。一种能够通过光学手段测量多种棉花质量特性的仪器可以比当前的纤维质量测量仪器制造得更简单、更快,并且可能更适合在加工设施中进行在线测量。为此,使用激光系统研究了棉花纤维样品在不同波长、偏振角和散射角下的电磁散射情况。还使用傅里叶变换红外(FT-IR)仪器研究了在各种中红外波长下电磁能量的传输情况。选择棉花样品以代表广泛的马克隆值范围。在固定偏振下改变激光波长,棉花样品之间的散射光变化很小。然而,在固定波长下改变偏振会产生显著变化,这表明偏振可用于根据某些纤维特性区分棉花样品。在12至22微米范围内的FT-IR数据在所有样品之间产生了相对较大的散射光量差异,并且在某些固定波长组合下的FT-IR数据与包括马克隆值在内的某些棉花质量指标高度线性相关。

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