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Determination of Crystallinity of Thermosetting Urea-Formaldehyde Resins Using Deconvolution Method

机译:使用去卷积法测定热固性尿素 - 甲醛树脂的结晶度

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Current low formaldehyde/urea (F/U) molar ratio urea-formaldehyde (UF) resins are quite different from high molar ratio UF resins used 20 years ago in terms of their crystallinity. For the first time, this paper reports a method of determining the crystallinity of thermosetting urea-formaldehyde (UF) resins of different molar ratios with the deconvolution method, using Voigt, Lorentzian, and Gaussian function. The Gaussian deconvolution of X-ray diffraction (XRD) patterns was the most suitable and reliable curve-fitting method, which gave the crystallinity value from 31.8% to 56.1% as the molar ratio decreased from 1.6 to 1.0. These results also indicated that low-molar-ratio (1.2 and 1.0) UF resins were semi-crystalline, whereas high molar-ratio (1.6 and 1.4) resins were amorphous. The Gaussian function was also employed to determine the crystallinity of the low-molar-ratio (1.0) UF resins cured at different curing and hardener conditions. Hardener level had greater influence on the crystallinity than hardener type even though the curing temperature and time affected the crystallinity.
机译:目前低甲醛/尿素/尿素(F / U)摩尔比尿素比与20年前使用的高摩尔比在其结晶度方面是完全不同的。本文首次报道了使用Vogt,Lorentzian和高斯功能的解卷积法测定不同摩尔比的热固性尿素醛(UF)树脂的结晶度。 X射线衍射(XRD)图案的高斯去卷积是最合适且可靠的曲线配合方法,其将结晶度值从1.6〜1.0降低,从31.8%达56.1%。这些结果还表明,低摩尔比(1.2和1.0)UF树脂是半晶的,而高摩尔比(1.6和1.4)树脂是无定形的。还采用高斯功能来确定在不同固化和硬化条件下固化的低摩尔比(1.0)UF树脂的结晶度。即使固化温度和时间影响结晶度,硬化剂水平也比硬化剂型更大的影响。

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