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