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首页> 外文期刊>Journal of Applied Polymer Science >Sorption and Transport of Water Vapor in Nylon 6,6 Film
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Sorption and Transport of Water Vapor in Nylon 6,6 Film

机译:尼龙6,6膜中水蒸气的吸附和迁移

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The sorption and transport of water in nylon 6,6 films as functions of the relative humidity (RH) and temperature were studied.Moisture-sorption isotherms determined gravimetrically at 25,35,and 45degC were described accurately by the GAB equation.Water-vapor transmission rates were enhanced above approx=60-70% RH,pri-marily due to the transition of the polymer from glassy to rubbery states.The glass transition temperatures (T_g's) of nylon 6,6 were measured at various moisture contents using differential scanning calorimetry.The results showed that the sorbed water acted as an effective plasticizer in depressing the T_g of the polyamide.Fourier transform infrared spectroscopy (FTIR) was utilized to characterize the interaction of water and the nylon.Evidence from FTIR suggested that the interaction of water with nylon 6,6 took place at the amide groups.Based on the frequency shift of the peak maxima,moisture sorption appeared to reduce the average hydrogen-bond strength of the N-H groups.However,an increase was seen for the C=O groups.
机译:研究了尼龙6,6膜中水的吸附和迁移随相对湿度(RH)和温度的变化关系。通过GAB方程准确地描述了在25,35和45°C下用重量法测定的水分吸附等温线。主要是由于聚合物从玻璃态转变为橡胶态,使传输速率提高到大约60-70%RH以上。使用差示扫描法在各种水分含量下测量了尼龙6,6的玻璃化转变温度(T_g's)。结果表明,吸附的水在抑制聚酰胺的T_g方面起着有效的增塑剂的作用。傅里叶变换红外光谱(FTIR)用于表征水与尼龙的相互作用.FTIR的证据表明水的相互作用与尼龙6,6发生在酰胺基团上。基于最大峰值的频移,水分吸附似乎会降低NH Gro的平均氢键强度但是,C = O组却有所增加。

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