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Investigating the Impact of Curing System on Structure-Property Relationship of Natural Rubber Modified with Brewery By-Product and Ground Tire Rubber

机译:研究硫化体系对啤酒副产物和地面轮胎橡胶改性天然橡胶结构性能关系的影响

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摘要

The application of wastes as a filler/reinforcement phase in polymers is a new strategy to modify the performance properties and reduce the price of biocomposites. The use of these fillers, coming from agricultural waste (cellulose/lignocellulose-based fillers) and waste rubbers, constitutes a method for the management of post-consumer waste. In this paper, highly-filled biocomposites based on natural rubber (NR) and ground tire rubber (GTR)/brewers’ spent grain (BSG) hybrid reinforcements, were prepared using two different curing systems: (i) sulfur-based and (ii) dicumyl peroxide (DCP). The influence of the amount of fillers (in 100/0, 50/50, and 0/100 ratios in parts per hundred of rubber) and type of curing system on the final properties of biocomposites was evaluated by the oscillating disc rheometer, Fourier-transform infrared spectroscopy, thermogravimetric analysis, scanning electron microscopy, swelling behavior, tensile testing, and impedance tube measurements. The results show, that the scorch time and the optimum curing time values of sulfur cured biocomposites are affected by the change of the hybrid filler ratio while using the DCP curing system, and the obtained values do not show significant variations. The results conclude that the biocomposites cured with sulfur have better physico-mechanical and acoustic absorption, and that the type of curing system does not influence their thermal stability. The overall analysis indicates that the difference in final properties of highly filled biocomposites cured with two different systems is mainly affected by the: (i) cross-linking efficiency, (ii) partial absorption and reactions between fillers and used additives, and (iii) affinity of additives to applied fillers.
机译:将废物用作聚合物中的填充/增强相是一种新的策略,可以改变其性能特性并降低生物复合材料的价格。这些来自农业废料(纤维素/木质纤维素的填料)和废橡胶的填料的使用构成了消费后废物的管理方法。在本文中,使用两种不同的固化体系制备了基于天然橡胶(NR)和地面轮胎橡胶(GTR)/啤酒废颗粒(BSG)杂化增强材料的高填充生物复合材料:(i)硫基和(ii) )过氧化二枯基(DCP)。填料量(以百分之一的橡胶为100 / 0、50 / 50和0/100的比例,以百分率计)和固化体系类型对生物复合材料最终性能的影响通过振动圆盘流变仪Fourier-变换红外光谱,热重分析,扫描电子显微镜,溶胀行为,拉伸测试和阻抗管测量。结果表明,使用DCP固化体系时,杂化填料比的变化会影响硫磺固化生物复合材料的焦烧时间和最佳固化时间,并且所得值没有显着变化。结果表明,用硫固化的生物复合材料具有更好的物理机械和吸声性能,并且固化体系的类型不影响其热稳定性。总体分析表明,用两种不同系统固化的高填充生物复合材料最终性能的差异主要受以下因素影响:(i)交联效率,(ii)填料与用过的添加剂之间的部分吸收和反应,以及(iii)添加剂对应用填料的亲和力。

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