Zheng Xin, Lin Qingqing, Jiang Pan, Li Yongjin, Li Jingye
CAS Center for Excellence on TMSR Energy System, Shanghai Institute of Applied Physics, Chinese Academy of Sciences, No. 2019, Jialuo Road, Jiading District, Shanghai 201800, China.
College of Material, Chemistry and Chemical Engineering, Hangzhou Normal University, No. 16 Xuelin Rd., Hangzhou 310036, China.
Polymers (Basel). 2018 May 22;10(5):562. doi: 10.3390/polym10050562.
The effects of 1-vinyl-3-butyl imidazole chloride (VBIM) on the structure and properties of Polyamide 6 (PA6) were investigated systematically. It was found that PA6/VBIM blends were homogeneous without phase separation. The glass transition temperature () of PA6 increased with small VBIM loadings followed by the decreasing in with further increasing the amount of VBIM. The crystallization temperature decreased with the addition of VBIM because of the strong interactions between VBIM and the PA6 matrix, as well as the dilution effect when large amounts of VBIM was introduced to the matrix. According to rheological testing, small amounts of VBIM enhanced the storage modulus and melt viscosity of PA6. Tensile tests also show an increase in strength and modulus at relatively low loadings of VBIM. The strength of PA6 with only 1 wt % VBIM improved by 108% compared to that of neat PA6. Fourier transform infrared (FTIR) investigations revealed that the ions of VBIM preferred to form hydrogen bonds with amide groups in PA6. Therefore, VBIM acts as physical connection point for the neighboring PA6 molecular chains. The specific interactions between VBIM and PA6 account not only for the enhanced melt viscosity of PA6, but also for the improved mechanical properties. Moreover, outstanding antistatic property was also observed. The surface resistivity of the sample with 1 wt % VBIM was 1.50 × 10 Ω/sq, which means good electric dissipation property.
系统研究了1-乙烯基-3-丁基咪唑氯盐(VBIM)对聚酰胺6(PA6)结构和性能的影响。发现PA6/VBIM共混物是均匀的,没有相分离。PA6的玻璃化转变温度()在VBIM负载量较小时升高,随后随着VBIM量的进一步增加而降低。由于VBIM与PA6基体之间的强相互作用以及向基体中引入大量VBIM时的稀释效应,结晶温度随着VBIM的加入而降低。根据流变学测试,少量的VBIM提高了PA6的储能模量和熔体粘度。拉伸试验还表明,在相对较低的VBIM负载量下,强度和模量有所增加。与纯PA6相比,仅含1 wt% VBIM的PA6的强度提高了108%。傅里叶变换红外光谱(FTIR)研究表明,VBIM的离子优先与PA6中的酰胺基团形成氢键。因此,VBIM充当相邻PA6分子链的物理连接点。VBIM与PA6之间的特定相互作用不仅解释了PA6熔体粘度的提高,还解释了机械性能的改善。此外,还观察到了出色的抗静电性能。含1 wt% VBIM的样品的表面电阻率为1.50×10Ω/sq,这意味着具有良好的电耗散性能。