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首页> 外文期刊>Journal of Elastomers & Plastics >Chemical modification of nitrile rubber in the latex stage by functionalizing phosphorylated cardanol prepolymer: A bio-based plasticizer and a renewable resource
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Chemical modification of nitrile rubber in the latex stage by functionalizing phosphorylated cardanol prepolymer: A bio-based plasticizer and a renewable resource

机译:磷酸化磷酸铝醇预聚物的乳胶阶段中丁腈橡胶的化学改性:一种生物基增塑剂和可再生资源

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摘要

The present investigation deals with the functionalization of acrylonitrile butadiene rubber (NBR) by chemically grafting phosphorylated cardanol prepolymer (PCP) onto its backbone chain. The grafting of PCP onto NBR was accomplished in the latex stage successfully using benzoyl peroxide as the free radical initiator. The functionalized NBR (PCP-g-NBR) is characterized by ultraviolet-visible spectroscopy, Fourier transform infrared spectroscopy, nuclear magnetic resonance spectroscopy, and gel permeation chromatography. PCP-g-NBR exhibited an increase in molecular weight (4.4%) with an increase in the polydispersity. The grafting parameters have been optimized using "Taguchi L-9 table" and the optimum conditions were found to be "3 phr of initiator concentration, 15 phr of the PCP concentration, reaction temperature of 70 degrees C and reaction time of 6 h." The percentage grafting and grafting efficiency were calculated to be 7.28 and 80.37%, respectively, under optimum processing conditions. The PCP-g-NBR exhibited a reduction in Wallace plasticity number as well as the Mooney viscosity and an enhanced plasticity retention index (PRI) as compared to neat NBR. The rheological measurements exhibited a higher flow behavior index for PCP-g-NBR than the NBR itself. Differential scanning calorimetry and dynamic mechanical analysis results exhibited a decrease in glass transition temperature on functionalization of NBR confirming enhanced plasticization. Thermogravimetric analysis results displayed an increase in thermal stability of the functionalized NBR than that of virgin NBR. The physico-mechanical properties of the PCP-g-NBR vulcanizates were at par with or even better than the neat NBR vulcanizates. 3-(4,5-Dimethylthiazol-2yl)-2,5-diphenyltetrazolium bromide assay and hemolysis studies indicated NBR and PCP-g-NBR are nontoxic and biocompatible.
机译:本发明的研究通过将磷酸化的碳粉醇预聚物(PCP)涂覆到其骨架链上,涉及丙烯腈丁二烯橡胶(NBR)的官能化。使用苯甲酰基的过氧化苯甲酰作为自由基引发剂,在乳胶阶段完成PCP在NBR上的接枝。官能化NBR(PCP-G-NBR)的特征在于紫外线可见光谱,傅里叶变换红外光谱,核磁共振光谱和凝胶渗透色谱。 PCP-G-NBR随着多分散性的增加,分子量增加(4.4%)。使用“Taguchi L-9表”优化了接枝参数,并且发现最佳条件是“3phr引发剂浓度,15phr的PCP浓度,反应温度为70℃,反应时间为6小时”。在最佳加工条件下,分别计算嫁接率和移植效率为7.28%和80.37%。与整齐的NBR相比,PCP-G-NBR表现出华莱士塑性数量以及Mooney粘度和增强的可塑性保留指数(PRI)。流变测量结果表现出比NBR本身的PCP-G-NBR更高的流动行为指数。差分扫描量热法和动态力学分析结果表现出NBR官能化的玻璃化转变温度降低,确认增强塑化。热重分析结果显示出官能化NBR的热稳定性的增加而不是维尔京NBR的热稳定性。 PCP-G-NBR硫化酸盐的物理机械性能与整齐的NBR硫化胶相媲美。 3-(4,5-二甲基噻唑-200L)-2,5-二苯基四唑溴铵测定和溶血性研究表明NBR和PCP-G-NBR存在无毒和生物相容性。

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