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Maleic Anhydride-Grafted Isotactic Polybutene-1 and Modified Polyamide 6

机译:马来酸酐接枝的等规聚丁烯-1和改性聚酰胺6

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摘要

Maleic anhydride (MAH)–divinyl benzene (DVB) multi-monomer melt-grafting onto isotactic polybutene-1 (iPB-1) was carried out in a torque rheometer. The effects of dicumyl peroxide (DCP), MAH, and DVB concentrations, and temperature, on the reaction, were investigated. The optimized conditions were 170 °C, DVB/MAH = 4:6 (mass ratio). DVB as a comonomer enhanced the grafting degree (Gd) and grafting efficiency (Ge) of iPB-g-MAH better than styrene. The initiator DCP had little effect on Gd as its concentration over 0.2 phr, but the grafts’ melt flow rate (MFR) increased significantly, and relative molecular weight decreased remarkably with increased DCP concentration. With increasing Gd, the contact angle of grafts with water decreased, and there was a larger crystallization rate. The study of iPB-1 and iPB-g-MAH (Gd = 1.5%)-modified polyamide 6 (PA6) showed that iPB-g-MAH had an obviously toughening effect on PA6. With increasing iPB-g-MAH concentration, the blends of impact strength and elongation at break increased obviously, tensile strength decreased slightly, and MFR decreased prominently, which greatly slowed the processing degradation of PA6. The properties of iPB-1/PA6 blends deteriorated. Both DSC curves and SEM micrographs confirmed that PA6/iPB-g-MAH blends had much better compatibility than PA6/iPB. The reason was that the anhydride group in iPB-g-MAH reacted with amide group in PA6 to improve the compatibility between two phases, and iPB-g-MAH is an excellent modifier for PA6.
机译:在扭矩流变仪上将马来酸酐(MAH)-二乙烯基苯(DVB)多单体熔融接枝到全同立构聚丁烯-1(iPB-1)上。研究了过氧化二枯基(DCP),MAH和DVB的浓度以及温度对反应的影响。优化条件为170°C,DVB / MAH = 4:6(质量比)。 DVB作为共聚单体比苯乙烯能更好地提高iPB-g-MAH的接枝度(Gd)和接枝效率(Ge)。引发剂DCP浓度超过0.2 phr时,对Gd的影响很小,但是接枝物的熔体流动速率(MFR)显着增加,并且相对分子量随DCP浓度的增加而显着降低。随着Gd的增加,接枝与水的接触角减小,结晶速率增大。 iPB-1和iPB-g-MAH(Gd = 1.5%)改性聚酰胺6(PA6)的研究表明,iPB-g-MAH对PA6具有明显的增韧作用。随着iPB-g-MAH浓度的增加,冲击强度和断裂伸长率的混合物明显增加,拉伸强度略有下降,MFR显着下降,这大大减缓了PA6的加工降解。 iPB-1 / PA6共混物的性能下降。 DSC曲线和SEM显微照片均证实,PA6 / iPB-g-MAH共混物比PA6 / iPB具有更好的相容性。原因是iPB-g-MAH中的酸酐基团与PA6中的酰胺基反应以改善两相之间的相容性,而iPB-g-MAH是PA6的优良改性剂。

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