赵艳文,李云飞,陈 静,叶宏军,蒋 蔚,顾轶卓. 纳米纤维素增强仿贝壳结构黏土复合材料性能研究[J]. 航空制造技术, 2016, 59(23/24): 42-47. ZHAO Yanwen1, LI Yunfei2, CHEN Jing1, YE Hongjun1, JIANG Wei1, GU Yizhuo3. Study on Nacre-Like Structure Clay Nanocomposite Enhanced by Nano Cellulose. Aeronautical Manufacturing Technology, 2016, 59(23/24): 42-47.
ZHAO Yanwen, LI Yunfei, CHEN Jing, et al. Study on Nacre-Like Structure Clay Nanocomposite Enhanced by Nano Cellulose[J]. Aeronautical Manufacturing Technology, 2016, 59(23/24).
赵艳文,李云飞,陈 静,叶宏军,蒋 蔚,顾轶卓. 纳米纤维素增强仿贝壳结构黏土复合材料性能研究[J]. 航空制造技术, 2016, 59(23/24): 42-47. ZHAO Yanwen1, LI Yunfei2, CHEN Jing1, YE Hongjun1, JIANG Wei1, GU Yizhuo3. Study on Nacre-Like Structure Clay Nanocomposite Enhanced by Nano Cellulose. Aeronautical Manufacturing Technology, 2016, 59(23/24): 42-47. DOI: 10.16080/j.issn1671-833x.2016.23/24.042.
ZHAO Yanwen, LI Yunfei, CHEN Jing, et al. Study on Nacre-Like Structure Clay Nanocomposite Enhanced by Nano Cellulose[J]. Aeronautical Manufacturing Technology, 2016, 59(23/24). DOI: 10.16080/j.issn1671-833x.2016.23/24.042.
Mechanical enhanced nacre-like clay nanocomposite was fabricated by the incorporation of nano cellulose (CMF) into polymer (PVA
starch and casein)/clay system via solvent evaporation. SEM was used to analyze the cross section of corresponding nanocomposites
and XRD was employed to study the interspace of clay nanosheet. Tensile test was used to analysis the influence of CMF content on mechanical behavior. The results indicate that after the incorporation of polymer
the interspace of nanosheet was increased while change seldom occurs after the introduction of nano cellulose. Because of the bridging effect induced by nano cellulose
the as-prepared nanocomposites show largely enhanced mechanical property
and the extent of enhancement is depend on the polymer type and concentration.