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热性能方面用办公废纸的天然纤维素废料增强的聚氨酯弹性体复合材料。

Polyurethane elastomer composites reinforced with waste natural cellulosic fibers from office paper in thermal properties.

机构信息

School of Mechanical and Precision Instrument Engineering, Xi'an University of Technology, Xi'an 710048, PR China.

School of Mechanical and Precision Instrument Engineering, Xi'an University of Technology, Xi'an 710048, PR China; Faculty of Printing, Packing Engineering and Digital Media Technology, Xi'an University of Technology, Xi'an 710048, PR China.

出版信息

Carbohydr Polym. 2018 Oct 1;197:385-394. doi: 10.1016/j.carbpol.2018.06.036. Epub 2018 Jun 7.

Abstract

Polyurethane elastomer (PUE) composites were synthesized with a low additive content of waste natural cellulosic fibers from office paper. A new technology combining prepolymer method with physical blending and modification was adopted. The results showed that cellulosic fibers were covalently bonded to polyurethane molecular chains and served as a cross-linking agent making the degree of phase separation decrease. Even so, the lowest additive content of cellulosic fibers (1 wt%) in this work could make polyurethane still hold a certain degree of phase separation. Besides, thermal stability of polyurethane was improved from 288 to around 300 °C even at the low cellulosic fibers content. PUE with 3% cellulosic fibers had the better interfacial compatibility between cellulosic fibers and polyurethane causing the greater thermal reinforcement. PUE with 4% and 5% cellulosic fibers had the worse interfacial compatibility generating the better damping capacity indicating that cellulosic fibers could improve damping performance of polyurethane, especially polyurethane with 5 wt% fibers. It meant that cellulosic fibers had a potential application in damping materials.

摘要

聚氨酯弹性体(PUE)复合材料是用办公废纸中的低添加量废弃天然纤维素纤维合成的。采用了一种将预聚物法与物理共混和改性相结合的新技术。结果表明,纤维素纤维与聚氨酯分子链发生了共价键合,并起到了交联剂的作用,从而降低了相分离的程度。即便如此,在这项工作中,纤维素纤维的最低添加量(1wt%)仍能使聚氨酯保持一定程度的相分离。此外,即使在纤维素纤维含量较低的情况下,聚氨酯的热稳定性也从 288 提高到了 300°C 左右。含有 3%纤维素纤维的 PUE 具有更好的纤维素纤维与聚氨酯之间的界面相容性,从而产生更大的热增强效果。含有 4%和 5%纤维素纤维的 PUE 的界面相容性较差,产生了更好的阻尼能力,表明纤维素纤维可以改善聚氨酯的阻尼性能,特别是含有 5wt%纤维的 PUE。这意味着纤维素纤维在阻尼材料中有潜在的应用。

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