Guan Xiaoxiao, Cao Bo, Cai Jianan, Ye Zhenxing, Lu Xiang, Huang Haohao, Liu Shumei, Zhao Jianqing
School of Materials Science and Engineering, South China University of Technology, Guangzhou 510640, China.
Key Laboratory of Polymer Processing Engineering, Ministry of Education, Guangzhou, 510640, China.
Polymers (Basel). 2020 Apr 14;12(4):911. doi: 10.3390/polym12040911.
In this study, a polysiloxane grafted by thermotropic liquid crystal polymer (PSCTLCP) is designed and synthesized to effectively improve the processability and toughness of magnesium hydroxide (MH)/linear low-density polyethylene (LLDPE) composites. The obtained PSCTLCP is a nematic liquid crystal polymer; the liquid crystal phase exists in a temperature range of 170 to 275 °C, and its initial thermal decomposition temperature is as high as 279.6 °C, which matches the processing temperature of MH/LLDPE composites. With the increase of PSCTLCP loading, the balance melt torque of MH/LLDPE/PSCTLCP composites is gradually decreased by 42% at 5 wt % PSCTLCP loading. Moreover, the power law index of MH/LLDPE/PSCTLCP composite melt is smaller than 1, but gradually increased with PSCTLCP, the flowing activation energy of PSCTLCP-1.0 is lower than that of MH/LLDPE at the same shear rate, indicating that the sensitivity of apparent melt viscosity of the composites to shear rate and to temperature is decreased with the increase of PSCTLCP, and the processing window is broadened by the addition of PSCTLCP. Besides, the elongation at break of MH/LLDPE/PSCTLCP composites increases from 6.85% of the baseline MH/LLDPE to 17.66% at 3 wt % PSCTLCP loading. All the results indicate that PSCTLCP can significantly improve the processability and toughness of MH/LLDPE composites.
在本研究中,设计并合成了一种由热致液晶聚合物接枝的聚硅氧烷(PSCTLCP),以有效提高氢氧化镁(MH)/线性低密度聚乙烯(LLDPE)复合材料的加工性能和韧性。所制备的PSCTLCP为向列型液晶聚合物;液晶相存在于170至275℃的温度范围内,其初始热分解温度高达279.6℃,与MH/LLDPE复合材料的加工温度相匹配。随着PSCTLCP含量的增加,在PSCTLCP含量为5 wt%时,MH/LLDPE/PSCTLCP复合材料的平衡熔体扭矩逐渐降低了42%。此外,MH/LLDPE/PSCTLCP复合熔体的幂律指数小于1,但随PSCTLCP含量增加而逐渐增大,在相同剪切速率下,PSCTLCP-1.0的流动活化能低于MH/LLDPE,表明复合材料的表观熔体粘度对剪切速率和温度的敏感性随PSCTLCP含量增加而降低,添加PSCTLCP拓宽了加工窗口。此外,在PSCTLCP含量为3 wt%时,MH/LLDPE/PSCTLCP复合材料的断裂伸长率从基准MH/LLDPE的6.85%增加到17.66%。所有结果表明,PSCTLCP能显著提高MH/LLDPE复合材料的加工性能和韧性。