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摘要
通过挤出和注塑制备聚碳酸酯/聚对苯二甲酸乙二醇酯(PC/PET)共混物,探究成核剂对PC/PET共混物的结晶形态、热行为、形貌及力学性能的影响。此外,对相容剂添加量和PC/PET质量配比等变量也做了性能影响分析。最佳条件为:相容剂添加0.5%、PC/PET=3/7、成核剂TiO2添加1%。适量粒径均匀、细小的TiO2作为成核剂能很好地分散在PC/PET基体内,得到的PC/PET共混物形貌平整光滑,拉伸强度、弹性模量及冲击强度分别为40.5MPa、7654.0N/mm2及14.3J/m,在DSC曲线上出现明显的冷、热结晶峰,热结晶的结晶温度均高于冷结晶,且DMA结果显示成核剂的加入使玻璃化转变温度降低,不相容PC相和PET相的Tg不断靠近。
Abstract
In this paper,the blends of polycarbonate/polyethylene terephthalate (PC/PET) were prepared by extrusion and injection process.The effects of nucleators,compatibilizer dosage and PC/PET mass ratio on the crystalline morphology,thermal behavior,morphology and mechanical properties of PC/PET blends were investigated.The optimal condition were:0.5% dosage of compatibilizer,3/7 of PC/PET ratio,and 1% dosage of TiO2 nucleator.The tensile strength,elastic modulus and impact strength were 40.5MPa,7654.0N/mm2 and 14.3J/m,respectively,when the appropriate amounts of TiO2 with uniform small particle sizes as nucleator to disperse well in the PC/PET matrix and depict a flat and smooth morphology simultaneously.Parallel with above,there were conspicuous cold and hot crystallization peaks on the DSC curve,and the crystallization temperature of hot crystallization was higher than that of cold crystallization.DMA results showed that the addition of nucleators lowered the glass transition temperature and brought the Tg of incompatible PC and PET phases closer.
关键词
PC/PET共混物
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成核剂
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结晶形态
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热性能
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力学性能
Key words
PC/PET blends
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nucleator
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crystalline morphology
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thermal behavior
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mechanical property
不同因素对聚碳酸酯/聚对苯二甲酸乙二醇酯共混物的性能影响研究[J].
化工新型材料, 2023, 51(7): 163-169 DOI:10.19817/j.cnki.issn1006-3536.2023.07.030
[1] Gu J H,Hu S W,Ji H J,et al.Multi-layer silver nanowire/polyethylene terephthalate mesh structure for highly efficient transparent electromagnetic interference shielding[J].Nanotechnology,2020,31(18):185303.
[2] Hazer S,Aytac A.Effect of glass fiber reinforcement on the thermal,mechanical,and flame retardancy behavior of poly(lactic acid)/polycarbonate blend[J].Polymer Composites,2019,41(4):1-9.
[3] Khan R U,Wang L,Yu H J,et al.Synthesis of polyorganophosphazenes and fabrication of their blend microspheres and micro/nanofibers as drug delivery systems[J].International Journal of Polymeric Materialsand Biomaterials,2020,69(9):545-566.
[4] Debbah I,Krache R,Aranburu N,et al.Influence of ABS type and compatibilizer on the thermal and mechanical properties of PC/ABS blends[J].International Polymer Processing,2020,35(1):83-94.
[5] Ma P P,Yu Q Q,Shen T F,etal.Strong synergetic effect of fibril-like nucleator and shear flow on the melt crystallization of poly(L-lactide)[J].Journalof European Polymer,2017,87,221-230.
[6] Luo J J,Ma N,Zeng S,et al.Effect of ionization of polyamide-66 on its heterogeneous nucleation of poly(ethylene terephthalate) crystallization:an efficient polyamide-66 ionenenucleator promoted by ion-dipole interactions[J].Polymer Testing,2018,71,301-311.
[7] 邱丽清,刘杭忠,赵升云,等.相容剂增容聚对苯二甲酸乙二醇酯/聚乳酸共混物的制备及结晶性能与热性能[J].高分子材料科学与工程,2018,34(3):74-79.
[8] Zhang X M,Yin Z H,Li L X,et al.Grafting of glycidyl methacrylate onto ethylene-propylene copolymer:preparation and characterization[J].Journal of Applied Polymer Science,1996,61(13):2253-2257.
[9] Fox T G.Influence of diluent and copolymer composition on the glass transition temperature of a polymer system[J].Bulletin of the American Physical Society,1956,1:123-128.
[10] Jiang J,Wang S W,Hou J H,et al.Effect of injection velocity on the structure and mechanical properties ofmicro injection molded polycarbonate/poly(ethylene terephthalate) blends[J].Materials and Design,2018,141,132-141.
[11] Mc Lauchlin A R,Ghita O R.Studies on the thermal and mechanical behavior of PLA-PET blends[J].Journal of Applied Polymer Science,2016,133(43):1-11.
[12] Luo F,Liu X H,Liu C T,et al.Dynamic viscoelasticity and molecular orientation in uniaxially drawn PC/PET blends[J].Journal of Applied Polymer Science,2019,136:47514.