Yin Peng, Dong Xin, Zhou Wen, Zha Dongdong, Xu Jie, Guo Bin, Li Panxin
College of Science, Nanjing Forestry University Nanjing 210037 China
State Key Laboratory for Hubei New Textile Materials and Advanced Processing Technology, College of Materials Science and Engineering, Wuhan Textile University Wuhan 430200 China.
RSC Adv. 2020 Jun 22;10(40):23632-23643. doi: 10.1039/d0ra04523c. eCollection 2020 Jun 19.
Adding reinforced fiber or cross-linking agent into thermoplastic starch (TPS) is an effective method to improve its performance. Herein, biodegradable polyvinyl alcohol fiber (PVAF) and sodium hexametaphosphate (SHMP) were not added into TPS directly; the PVAFs were preliminary treated (pre-soaking) by an SHMP solution, and then mixed with starch and glycerol to prepare 2 wt% PVAF/TPS composites through extrusion and injection molding. This process promoted crosslinking action between PVAFs and starch, and as a consequence enhanced the mechanic and dynamic mechanic behavior. The PVAFs with different immersion times were characterized by SEM, FTIR, and WAXD. The results confirmed that the SHMP coating was formed by a chemical bond connection on the surface of the PVAFs, particularly for the PVAFs soaked for 1.5 h, which produced a corresponding PVAF/TPS composite with a maximum tensile strength of 9.18 MPa and an impact strength of 21.29 kJ m. The corresponding tensile fractured cross-section images were shown by SEM. The DMA curves indicated that the pre-soaked PVAFs effectively improved the energy storage modulus and transition temperature of composites, and the activation energy of the starch macromolecules reached a maximum of 349.9 kJ mol during the dynamic mechanic process. The contact angle attained a maximum of 66.25°. Compared with TPS, the pre-soaked PVAF-reinforced PVAF/TPS composites had better mechanical properties, good processability through traditional extrusion and injection molding, reduced water wettability, and potential applications for packaging and catering.
在热塑性淀粉(TPS)中添加增强纤维或交联剂是改善其性能的有效方法。在此,可生物降解的聚乙烯醇纤维(PVAF)和六偏磷酸钠(SHMP)并非直接添加到TPS中;PVAF先经SHMP溶液预处理(预浸泡),然后与淀粉和甘油混合,通过挤出和注塑制备2 wt%的PVAF/TPS复合材料。此过程促进了PVAF与淀粉之间的交联作用,从而增强了力学和动态力学性能。对不同浸泡时间的PVAF进行了扫描电子显微镜(SEM)、傅里叶变换红外光谱(FTIR)和广角X射线衍射(WAXD)表征。结果证实,SHMP涂层通过化学键连接形成于PVAF表面,特别是浸泡1.5小时的PVAF,由此制备的相应PVAF/TPS复合材料具有最高9.18 MPa的拉伸强度和21.29 kJ/m的冲击强度。SEM展示了相应的拉伸断裂横截面图像。动态热机械分析(DMA)曲线表明,预浸泡的PVAF有效提高了复合材料的储能模量和转变温度,在动态力学过程中淀粉大分子的活化能最高达到349.9 kJ/mol。接触角最大达到66.25°。与TPS相比,预浸泡PVAF增强的PVAF/TPS复合材料具有更好的力学性能、通过传统挤出和注塑具有良好的加工性能、降低了水润湿性,以及在包装和餐饮方面的潜在应用。