Xue Meiling, Liu Yingjie, Lv Kanghui, Han Shaowu, Gao Shengqiang, Yu Guangshui
Key Laboratory of Rubber-Plastics, Ministry of Education/Shandong Provincial Key Laboratory of Rubber-plastics, Qingdao University of Science & Technology, Qingdao 266042, China.
Polymers (Basel). 2020 Mar 2;12(3):541. doi: 10.3390/polym12030541.
To regulate the crystallization of poly(trimethylene terephthalate) (PTT) retarded by melt blending with polycarbonate (PC), the crystallization of the PTT/PC blend was investigated employing nano-montmorillonite (MMT) as a crystallization promoter with PTT as the continuous phase. The results showed that MMT exhibits a significant promoting effect on PTT crystallization; the presence of 1 wt. % MMT shifts the initial and peak crystallization temperatures of the 70/30 PTT/PC blend to ~17 °C and ~32 °C, respectively. Additionally, the full width at half maximum (FWHM) narrows by ~45%, and the increases by 3.7 J.g. The accelerating effect of MMT is determined by its distribution and dispersion which depends on the shear intensity, mixing mode, and loading. MMT is easier to exfoliate via the two-step method than by the one-step method. The distribution in the PTT phase is enriched along the phase interface forming an MMT layer. This endows sections of the PTT with abundant nuclei and thus crystallization is promoted markedly compared with the one-step method. Moreover, the finer MMT migrates more readily to the interface to cause a much smoother phase interface. However, a secondary crystallization peak appears when the shear force is not sufficient enough to make MMT finely dispersed, in case of the two-step method and the MMT content is increased to 3 wt. %. The mixing temperature shows little effect on the acceleration of MMT on the crystallization of PTT/PC compared with the shear force. Only when MMT did not exfoliate or uncomplete did the presence of epoxy resin help to promote crystallization because of the improved MMT dispersion.
为调控通过与聚碳酸酯(PC)熔融共混而延迟结晶的聚对苯二甲酸丙二醇酯(PTT)的结晶过程,以PTT为连续相,采用纳米蒙脱土(MMT)作为结晶促进剂,对PTT/PC共混物的结晶过程进行了研究。结果表明,MMT对PTT结晶具有显著的促进作用;1 wt.% MMT的存在分别将70/30 PTT/PC共混物的初始结晶温度和峰值结晶温度提高到约17℃和约32℃。此外,半高宽(FWHM)变窄约45%,结晶焓增加3.7 J/g。MMT的促进效果取决于其分布和分散情况,而这又取决于剪切强度、混合方式和负载量。与一步法相比,MMT通过两步法更容易剥离。其在PTT相中的分布沿相界面富集,形成MMT层。这使得PTT部分具有丰富的晶核,因此与一步法相比,结晶得到显著促进。此外,更细小的MMT更容易迁移到界面,使相界面更加平滑。然而,在两步法且MMT含量增加到3 wt.%的情况下,当剪切力不足以使MMT充分分散时,会出现二次结晶峰。与剪切力相比,混合温度对MMT促进PTT/PC结晶的影响较小。只有当MMT未剥离或未完全剥离时,环氧树脂的存在才有助于促进结晶,因为它改善了MMT的分散性。