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Instrumentation for time-resolved dynamic and static dichroic measurements of polymers with a near-IR acoustooptic tunable filter.

机译:使用近红外声光可调滤波器对聚合物进行时间分辨的动态和静态二向色性测量的仪器。

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The optical measurement of the orientational response of chemical functional groups of a polymer as it is subjected to conventional dynamic mechanical analysis can give insight into the rheological behavior of the polymer while under repetitive strain based on the chemical structure. Instrumentation used in the mid infrared has included the use of grating monochromators and interferometers. The use of a multiply modulated optical signal has decreased the level of noise to observe the small amplitude changes (typically >10-3 absorbance units) associated with the repetitive oscillatory strain. The use of digital signal processing to replace phase sensitive detection for demodulation of the optical signal has greatly reduced the spectral collection time. In addition, multiplexing gained with the use of step-scan interferometry in making time resolved measurements has aided in making the procedure more practical. However, instrumental complexity and expense are drawbacks. By incorporating the high throughput, polarized tuned beam, and rapid wavelength switching capability of an acousto-optic tunable filter (AOTF), a dynamic instrument with integrated centralized control by a single microprocessor has been built. it operates in the near infrared with a rapid dynamic data collection time and requires the use of only a single modulation in the form of the sample oscillatory strain. The near infrared permits thicker samples to reduce sample preparation tune or allows polymers to be tested without pretreatment. The use of Fourier based digital filtering improves the signal to noise ratio of the dynamic differential spectra. The instrument is cost effective and rugged in comparison to step-scan interferometers yet has a rapid data collection rate allowing use in a routine industrial setting. Information from these measurements can aid in determining the rheological properties necessary for the end use functionality of a polymer. Additionally, AOTF instrumentation can be used for static dichroic measurements of polymers for routine testing. An example of this is the routine measurement of the dichroic ratio of a natural protein biopolymer, wheat gluten (film), as an indication of the gluten strength. This type of measurement has the potential to be useful in the improvement of wheat varieties and in the indication of wheat quality for end use.
机译:进行常规动态力学分析时,对聚合物化学官能团的取向响应进行光学测量,可以洞察聚合物在基于化学结构的重复应变下的流变行为。中红外中使用的仪器包括光栅单色仪和干涉仪的使用。倍频调制光信号的使用降低了噪声水平,可观察到与重复振荡应变相关的小幅度变化(通常为> 10 -3 吸光度单位)。使用数字信号处理来代替相位敏感检测来解调光信号,大大减少了光谱收集时间。此外,在进行时间分辨的测量时,使用步进扫描干涉术获得的多路复用有助于使该过程更加实用。但是,仪器的复杂性和费用是缺点。通过结合声光可调滤光片(AOTF)的高通量,偏振调谐光束和快速的波长切换功能,已构建了由单个微处理器集成集中控制的动态仪器。它在近红外下工作,具有快速的动态数据收集时间,并且只需要使用样本振荡应变形式的单个调制即可。近红外技术可以使较厚的样品减少样品制备过程,或者无需预处理即可测试聚合物。基于傅立叶的数字滤波的使用改善了动态差分频谱的信噪比。与步进扫描干涉仪相比,该仪器经济高效且坚固耐用,但具有快速的数据采集速率,可在常规工业环境中使用。来自这些测量的信息可以帮助确定聚合物的最终用途功能所必需的流变性质。另外,AOTF仪器可用于聚合物的静态二向色性测量,用于常规测试。这方面的一个例子是常规测量天然蛋白质生物聚合物小麦面筋(薄膜)的二向色比,作为面筋强度的指标。这种类型的测量方法可能对改善小麦品种和指示最终用途的小麦质量有用。

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