XU Suhua, GU Ju, LUO Yuanfang, et al. Influence of nanocrystalline cellulose on SiO2/natural rubber composites[J]. Acta Materiae Compositae Sinica, 2011, 28(6): 39-44. doi: CNKI:11-1801/TB.20110720.1426.039
Citation: XU Suhua, GU Ju, LUO Yuanfang, et al. Influence of nanocrystalline cellulose on SiO2/natural rubber composites[J]. Acta Materiae Compositae Sinica, 2011, 28(6): 39-44. doi: CNKI:11-1801/TB.20110720.1426.039

Influence of nanocrystalline cellulose on SiO2/natural rubber composites

doi: CNKI:11-1801/TB.20110720.1426.039
  • Received Date: 2011-02-22
  • Rev Recd Date: 2011-06-14
  • Publish Date: 2011-12-15
  • Nanocrystalline cellulose (NCC) was prepared from hydrolysis of microcrystalline cellulose (MCC) using sulfuric acid. NCC can be used as filler partialy to replace SiO2 and utilized in the preparation of (NCC-SiO2)/NR(natural rubber) composites. The results show that the composites can not only maintain basic mechanical properties, but also decrease heat build-up from 19.9 ℃to 10.6 ℃ and permanent set from 11.4% to 5.9%. When the mass ratio was added with NCC∶SiO2=10∶20, the grade one and six flex cracking times of (NCC-SiO2)/NR composite material increase from 2.5×104 and 6.0×104 (filled by SiO2) to 7.0×104 and 1.2×105, respectively. Aging performance is also superior to SiO2/NR composite materials. After hot air aging, the tensile strength, tear strength and hardness of the composite materials after aging increase by 40%, 21% and 25%, respectively, and the permanent deformation droppes by 25%, while tensile strength and elongation at break remain basically unchanged. Dynamic mechanical performance test shows that when the mass ratio of NCC to SiO2 is from 0∶30 to 20∶10, the rolling resistance of rubber tanδ at 0 ℃ keep almost constant, but the skid resistance of rubber tanδ at 60 ℃ droppes from 0.060 to 0.049. The results of SEM photographs prove that better dispersion and stronger interfacial interaction were achieved in NR matrix filled by NCC-SiO2 than by SiO2.

     

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