Jiangsu Key Laboratory of Environmentally Friendly Polymeric Materials, School of Materials Science and Engineering, Changzhou University, Changzhou 213164, China.
Changzhou University Huaide College, Jiangsu, Jingjiang 214500, China.
Int J Biol Macromol. 2024 Feb;258(Pt 2):129110. doi: 10.1016/j.ijbiomac.2023.129110. Epub 2023 Dec 29.
Polymer modification using silicone rubber represents a promising avenue for enhancing physico-mechanical properties. However, achieving optimal performance through direct blending is hindered by the poor interface compatibility between silicone rubber and the matrix. In this study, we prepared super-tough thermoplastic vulcanizates (TPVs) of polylactic acid/silicone rubber through dynamic vulcanization with PLA, methyl vinyl silicone rubber (MVQ), glycidyl methacrylate grafted MVQ (MVQ-g-GMA), and fumed silica nanoparticles (SiO). The impact of the SiO addition in MVQ on the morphology, mechanical properties, crystallization, and thermal properties of the TPVs was investigated. The results showed that MVQ-g-GMA and SiO exhibited a synergistic compatibilization effect significantly improving the interfacial adhesion between PLA and MVQ. Therefore, the impact and tensile strength of the TPVs increased from 8.0 kJ/m and 22.2 MPa to 62.6 kJ/m and 36.7 MPa, respectively. Moreover, the TPVs also presented good low-temperature toughness with a maximum impact strength of 40.4 kJ/m at -20 °C. Additionally, improvements in thermal stability and crystallization rate were also observed. Overall, combining organic and inorganic synergistic compatibilization is a feasible and effective method to fabricate outstanding low-temperature toughness to PLA.
使用硅橡胶进行聚合物改性是提高物理力学性能的一种有前途的方法。然而,由于硅橡胶与基体之间的界面相容性差,通过直接共混来实现最佳性能受到阻碍。在本研究中,我们通过动态硫化法制备了聚乳酸/硅橡胶超韧热塑性硫化胶(TPV),使用的原料有聚乳酸(PLA)、甲基乙烯基硅橡胶(MVQ)、甲基丙烯酰氧基丙基封端硅橡胶(MVQ-g-GMA)和气相法白炭黑纳米粒子(SiO)。研究了 SiO 在 MVQ 中的添加对 TPV 形态、力学性能、结晶和热性能的影响。结果表明,MVQ-g-GMA 和 SiO 表现出协同增容作用,显著改善了 PLA 和 MVQ 之间的界面粘结。因此,TPV 的冲击强度和拉伸强度分别从 8.0 kJ/m 和 22.2 MPa 提高到 62.6 kJ/m 和 36.7 MPa。此外,TPV 还具有良好的低温韧性,在-20°C 时最大冲击强度达到 40.4 kJ/m。此外,还观察到热稳定性和结晶速率的提高。总的来说,有机和无机协同增容相结合是制备具有优异低温韧性的 PLA 的一种可行且有效的方法。