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Investigating the combined impact of plasticizer and shear force on the efficiency of low temperature reclaiming of ground tire rubber (GTR)

机译:研究增塑剂和剪切力对轮胎橡胶(GTR)低温回收效率的综合影响

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摘要

In the present work, ground tire rubber (GTR) was mechano-chemically reclaimed at ambient temperature using two-roll mills. Road bitumen and styrene-butadiene-styrene (SBS)-modified bitumen at variable content (in range: 2.5-20 phr) were applied as reactive plasticizers to enhance reclaiming of GTR. For better understanding the plasticizing effect of bitumen on the quality of obtained reclaimed rubber, mechano-chemically reclaimed GTR has been compared with GTR after thermo-mechanical reclaiming via low temperature extrusion (120 °C), which allows generation of high shear forces on GTR. Reclaiming process was evaluated by oscillating disc rheometer measurements, followed by mechanical, physical, thermal, and morphological properties analyses performed on vulcanized reclaimed rubber. The obtained results showed that application of bitumen during mechano-chemical reclaiming of GTR improves processing and prevents oxidation of reclaimed GTR through enhancement of physical and chemical interactions between GTR and bitumen. On the other hand, high shear forces acting on GTR during thermo-mechanical reclaiming caused effective scission of cross-linking bonds, while at the same time an adverse oxidative degradation of GTR occurs. Noticeably, the type of bitumen strongly affected the nature of the interfacial interactions between GTR and bitumen. Plasticization/partial reclaiming of GTR (road bitumen, SBS-modified bitumen) and encapsulation of GTR (SBS modified bitumen) were confirmed by mechanical properties, FTIR, TGA and SEM measurements
机译:在当前的工作中,使用两辊磨机在环境温度下机械化学回收了磨碎的轮胎橡胶(GTR)。可变含量(范围:2.5-20 phr)的道路沥青和苯乙烯-丁二烯-苯乙烯(SBS)改性的沥青用作反应性增塑剂,以增强GTR的回收率。为了更好地了解沥青对所得再生橡胶质量的增塑作用,在通过低温挤出(120°C)进行热机械再生后,将机械化学再生的GTR与GTR进行了比较,从而可以在GTR上产生高剪切力。通过振荡圆盘流变仪测量评估再生过程,然后对硫化再生橡胶进行机械,物理,热和形态学性能分析。所得结果表明,在GTR的机械化学回收中施加沥青改善了GTR与沥青之间的物理和化学相互作用,从而改善了加工过程并防止了回收的GTR的氧化。另一方面,在热机械回收期间作用于GTR的高剪切力导致交联键的有效断裂,同时GTR发生不利的氧化降解。明显地,沥青的类型强烈地影响了GTR和沥青之间的界面相互作用的性质。通过机械性能,FTIR,TGA和SEM测量证实了GTR(道路沥青,SBS改性沥青)的增塑/部分回收和GTR(SBS改性沥青)的封装

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