采用熔融共混法制备了聚丙烯/聚乙醇酸共混物(PP/PGA),研究了相容剂聚丙烯接枝马来酸酐(PP-g-MAH)用量对共混物力学性能、熔融结晶行为、流变行为和断面形貌的影响。结果表明:PP-g-MAH的加入能明显改善共混体系的相容性,共混物的力学性能得到提升。PP-g-MAH对PGA结晶具有异相成核作用,且先结晶的PGA又可作为PP结晶的异相成核剂。随相容剂用量增大,PGA结晶温度升高,结晶完善程度降低,甚至不结晶,PP的结晶温度先降低后升高,且复数黏度呈先增大后减小的趋势。
Polypropylene/polyglycolic acid blends (PP/PGA) were prepared by melt blending.The effects of the content of PP-g-MAH compatibilizer on the mechanical properties,melt crystallization behavior,rheological behavior and fracture morphology of blends were investigated in detail.The results showed that the compatibility of the blend system was significantly enhanced with the addition of PP-g-MAH,the mechanical properties were improved.On the other hand,PP-g-MAH had heterogeneous nucleation effect on PGA crystallization,and the previously crystallized PGA can also be used as the heterogeneous nucleating agent for PP crystallization.With the increase of the amount of compatibilizer,the crystallization temperature of PGA was increased,but the degree of crystal perfection was decreased,and even did not crystallize.The crystallization temperature of PP decreased first and then increased,and the complex viscosity was increased first and then decreased.
[1] 张永霞,谢昕,王庆涛,等.聚丙烯共混增韧改性研究进展[J].合成材料老化与应用,2018,47(1):85-90.
[2] 王鉴,王绪文,李安莲,等.聚丙烯化学改性方法[J].现代塑料加工应用,2010,22(6):55-59.
[3] 张英杰,梁基照.聚丙烯的物理改性[J].上海塑料,2007(3):9-12.
[4] Peyda S,Morshedian J,Karbalaei-Bagher M,et al.A novel technique in the foaming process of EPDM/PP via microwave radiation:the effect of blend compatibilization and additive encapsulation[J].RSC Advances,2016,6(84):81400-81407.
[5] 黄安荣,韦良强,孙静,等.多壁碳纳米管含量对聚丙烯/多壁碳纳米管介电复合材料性能的影响研究[J].化工新型材料,2018,46(3):58-61.
[6] Jolfaei A F,Gavgani J N,Jalali A,et al.Effect of organoclay and compatibilizers on microstructure,rheological and mechanical properties of dynamically vulcanized EPDM/PP elastomers[J].Polymer Bulletin,2015,72(5):1127-1144.
[7] Pinheiro L A,Bittencourt C S,Canevarolo S V.Real time assessment of the compatibilization of polypropylene/polyamide 6 blends during extrusion[J].Polymer Engineering and Science,2010,50(4):826-834.
[8] Razak N C A,Inuwa I M,Hassan A,et al.Effects of compatibilizers on mechanical properties of PET/PP blend[J].Composite Interfaces,2013,20(7):507-515.
[9] Velde K Van de,Kiedens P.Biopolymers:overview of several properties and consequences on their applications[J].Polymer Testing,2002,21(4):433-442.
[10] 王朝阳,赵耀明.聚乙醇酸类生物降解高分子[J].广州化学,2004,29(1):50-57.
[11] 陈群,许平,崔爱军.煤基聚乙醇酸技术进展[J].化工进展,2011,30(1):172-180.
[12] 何敏,罗兵,张雅琴,等.聚乙醇酸与聚丙烯共混研究[J].合成树脂及塑料,2007,24(4):83-84.
[13] 陈广新,刘景江.尼龙1010分别与未接枝和接枝马来酸酐的高抗冲聚苯乙烯的共混体系研究[J].高分子学报,1999(5):557-563.
[14] Edward K,Wang W J,Zhu S P,et al.Rheological and thermomechanical properties of long-chain-branched polyethylene prepared by slurry polymerization with metallocene catalysts[J].Journal of Applied Polymer Sciecne,2004,92(1):307-316.
基金资助
江苏省产学研前瞻性联合研究项目(BY2016029-05);国家自然科学基金(21406017);江苏省高等学校自然科学研究面上项目(18KJB150004)