Influence of devulcanization and revulcanization of ground tire rubber in dynamic mechanical properties of blends ground tire rubber/high density polyethylene

F. D. Sousa, G. Hu, S. Hoppe, C. H. Scuracchio
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引用次数: 3

Abstract

Ground tire rubber (GTR) was devulcanized in a system comprised of a conventional microwave oven adapted with a motorized stirring system with speed control by 5.5 minutes. Blends composed of GTR/high density polyethylene (HDPE) were prepared in a twin-screw extruder with two feeders at 180°C. The blends were produced in different concentrations, and both the effect of devulcanization and the dynamic revulcanization of GTR phase in the dynamic mechanical properties of the blends were analyzed. As main results, the devulcanization of GTR phase changed the crystallinity of HDPE phase of some blends, possibly because of changes in sizes of particles of devulcanized GTR and its distribution in the matrix. Concerning the revulcanization of the elastomeric phase, generally, it was observed the shift of the glass transition temperature (Tg) peak of the GTR to higher temperatures, and reduction in the area under the peak of tan δ for the Tg of the same phase, as a result of the restriction on the mobility of the GTR by dynamic revulcanization.Ground tire rubber (GTR) was devulcanized in a system comprised of a conventional microwave oven adapted with a motorized stirring system with speed control by 5.5 minutes. Blends composed of GTR/high density polyethylene (HDPE) were prepared in a twin-screw extruder with two feeders at 180°C. The blends were produced in different concentrations, and both the effect of devulcanization and the dynamic revulcanization of GTR phase in the dynamic mechanical properties of the blends were analyzed. As main results, the devulcanization of GTR phase changed the crystallinity of HDPE phase of some blends, possibly because of changes in sizes of particles of devulcanized GTR and its distribution in the matrix. Concerning the revulcanization of the elastomeric phase, generally, it was observed the shift of the glass transition temperature (Tg) peak of the GTR to higher temperatures, and reduction in the area under the peak of tan δ for the Tg of the same phase, as a result of the restriction on the mobility of the ...
硫化和再硫化对轮胎磨砂橡胶/高密度聚乙烯共混物动态力学性能的影响
对轮胎磨砂橡胶(GTR)进行了脱硫化,该脱硫化系统由传统微波炉和变速5.5分钟的电动搅拌系统组成。采用双螺杆挤出机和双给料机,在180℃下制备了GTR/高密度聚乙烯(HDPE)共混物。制备了不同浓度的共混物,分析了脱硫和GTR相的动态再硫化对共混物动态力学性能的影响。主要结果是,GTR相的脱硫改变了某些共混物的HDPE相的结晶度,这可能是由于改性后GTR的颗粒大小及其在基体中的分布发生了变化。对于弹性体相的再硫化,由于动态再硫化对GTR的迁移率的限制,GTR的玻璃化转变温度(Tg)峰向更高的温度移动,而同一相的Tg在tan δ峰下的面积减小。对轮胎磨砂橡胶(GTR)进行了脱硫化,该脱硫化系统由传统微波炉和变速5.5分钟的电动搅拌系统组成。采用双螺杆挤出机和双给料机,在180℃下制备了GTR/高密度聚乙烯(HDPE)共混物。制备了不同浓度的共混物,分析了脱硫和GTR相的动态再硫化对共混物动态力学性能的影响。主要结果是,GTR相的脱硫改变了某些共混物的HDPE相的结晶度,这可能是由于改性后GTR的颗粒大小及其在基体中的分布发生了变化。对于弹性体相的再硫化,通常观察到GTR的玻璃化转变温度(Tg)峰向更高温度移动,并且由于限制了材料的迁移率,同一相的Tg在tan δ峰下的面积减小。
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