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Natural Rubber Latex Foam Reinforced with Micro- and Nanofibrillated Cellulose via Dunlop Method

机译:天然橡胶胶乳泡沫通过DUNLOP方法用微型和纳米纤细纤维素加固

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摘要

Natural rubber latex foam (NRLF) was reinforced with micro- and nanofibrillated cellulose at a loading content of 5–20 parts per hundred of rubber (phr) via the Dunlop process. Cellulose powder from eucalyptus pulp and bacterial cellulose (BC) was used as a microcellulose (MC) and nanocellulose (NC) reinforcing agent, respectively. NRLF, NRLF-MC, and NRLF-NC exhibited interconnected macroporous structures with a high porosity and a low-density. The composite foams contained pores with sizes in a range of 10–500 µm. As compared to MC, NC had a better dispersion inside the NRLF matrix and showed a higher adhesion to the NRLF matrix, resulting in a greater reinforcement. The most increased tensile strengths for MC and NC incorporated NRLF were found to be 0.43 MPa (1.4-fold increase) and 0.73 MPa (2.4-fold increase), respectively, by reinforcing NRLF with 5 phr MC and 15 phr NC, whereas the elongation at break was slightly reduced. Compression testing showed that the recovery percentage was improved to 34.9% (1.3-fold increase) by reinforcement with 15 phr NC, whereas no significant improvement in the recovery percentage was observed with MC. Both NRLF-MC and NRLF-NC presented hydrophobic surfaces and good thermal stability up to 300 °C. Due to their highly porous structure, after a prolong immersion in water, NRLF composites had high water uptake abilities. According to their properties, the composite foams could be further modified for use as green absorption or supporting materials.
机译:通过DUNLOP工艺将天然橡胶胶乳泡沫(NRLF)用微型和纳米纤细的纤维素加强,以5-20份橡胶(PHAR)的5-20份橡胶(PHR)加固。来自桉树浆和细菌纤维素(BC)的纤维素粉末分别用作微纤维素(MC)和纳米纤维素(NC)增强剂。 NRLF,NRLF-MC和NRLF-NC具有高孔隙率和低密度的互连大孔结构。复合泡沫含有尺寸的孔径为10-500μm。与MC相比,NC在NRLF基质内具有更好的分散,并且对NRLF基质显示出更高的粘附性,从而产生更大的增强。通过加强NRLF和15phr Nc,分别发现MC和NC掺入NRLF的最大拉伸强度为0.43MPa(1.4倍增加)和0.73MPa(2.4倍)(2.4倍)),而伸长率休息略微减少。压缩测试表明,通过15phr NC加固,恢复百分比提高至34.9%(增加)(1.3倍),而用MC,观察到恢复百分比没有显着改善。 NRLF-MC和NRLF-NC均呈现疏水表面,良好的热稳定性可达300°C。由于它们的高度多孔结构,在延长水中延长后,NRLF复合材料具有高的水吸收能力。根据它们的性质,可以进一步修饰复合泡沫以用作绿色吸收或支撑材料。

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