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Drying of the Natural Fibers as A Solvent-Free Way to Improve the Cellulose-Filled Polymer Composite Performance

机译:天然纤维的干燥是一种无溶剂的方法可以改善纤维素填充的聚合物复合材料的性能

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摘要

When considering cellulose (UFC100) modification, most of the processes employ various solvents in the role of the reaction environment. The following article addresses a solvent-free method, thermal drying, which causes a moisture content decrease in cellulose fibers. Herein, the moisture content in UFC100 was analyzed with spectroscopic methods, thermogravimetric analysis, and differential scanning calorimetry. During water desorption, a moisture content drop from approximately 6% to 1% was evidenced. Moreover, drying may bring about a specific variation in cellulose’s chemical structure. These changes affected the cellulose-filled polymer composite’s properties, e.g., an increase in tensile strength from 17 MPa for the not-dried UFC100 to approximately 30 MPa (dried cellulose; 24 h, 100 °C) was observed. Furthermore, the obtained tensile test results were in good correspondence with Payne effect values, which changed from 0.82 MPa (not-dried UFC100) to 1.21 MPa (dried fibers). This raise proves the reinforcing nature of dried UFC100, as the Payne effect is dependent on the filler structure’s development within a polymer matrix. This finding paves new opportunities for natural fiber applications in polymer composites by enabling a solvent-free and efficient cellulose modification approach that fulfils the sustainable development rules.
机译:当考虑纤维素(UFC100)改性时,大多数过程在反应环境的作用下会使用各种溶剂。下一篇文章介绍了无溶剂方法,即热干燥,这种方法会导致纤维素纤维中的水分含量降低。在此,UFC100中的水分含量通过光谱法,热重分析和差示扫描量热法进行分析。在水解吸过程中,水分含量从大约6%下降到1%。此外,干燥可能会引起纤维素化学结构的特定变化。这些变化影响了纤维素填充的聚合物复合材料的性能,例如,拉伸强度从未干燥的UFC100的17 MPa增加到大约30 MPa(干燥的纤维素; 24 h,100°C)。此外,所获得的拉伸试验结果与Payne效应值非常吻合,Payne效应值从0.82MPa(未干燥的UFC100)变为1.21MPa(干燥的纤维)。这种增加证明了干燥的UFC100的增强特性,因为Payne效应取决于聚合物基质中填料结构的发展。这一发现为实现天然纤维在聚合物复合材料中的应用提供了新的机遇,因为它实现了无溶剂且高效的纤维素改性方法,能够满足可持续发展的要求。

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