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Ground tire rubber thermo-mechanically devulcanized in the presence of waste engine oil as asphalt modifier

机译:在废机油作为沥青改性剂的情况下热机械脱硫的地面轮胎橡胶

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Cross-linked elastomers network is main limitation for industrial usage of ground tire rubber (GTR) as asphalts' and road pavements modifier. GTR was thermo-mechanically devulcanized via extrusion in the presence of waste engine oil (WEO) at temperature ranges from 150 to 280 degrees C. Combined impact of WE content and extruder barrel temperature on the change of cross-linked structure of degraded GTR (DTGR) was investigated through sol fraction measurements and thermogravimetric analysis. Fourier-transform infrared spectroscopic analysis, storage stability, viscosity, temperature susceptibility and rheological properties of asphalt modified with DGTR were studied via infrared spectrometer, conventional tests, viscosity, dynamic shear rheology, dynamic mechanical analysis. Fluorescence microscopy was also applied to observe microstructure and the interfacial interaction between DGTR and asphalt. The results shown that the sol fraction of DGTR increases with the increase of WE content, which results in low dynamic viscosity and storage modulus of the modified asphalts. Barrel temperature strongly affects the form of DGTR and final properties of modified asphalt. Modified asphalts with DGTR at barrel temperature in 180 degrees C and 210 degrees C show better rheological properties and broader operating temperature than that of at 280 degrees C, which is related to degradation of polymer main chain. In addition, 30 % wt. of DGTR content resulted in significant improvement rheological properties and storage stability of modified asphalt. Moreover, it was observed that higher content (above 40 %wt.) of DGTR causes the deterioration of performance properties of modified asphalts, due to the excessive quantities of undissolved rubber particles in asphalt. (C) 2019 Elsevier Ltd. All rights reserved.
机译:交联的弹性体网络是磨碎的轮胎橡胶(GTR)作为沥青和路面改性剂的工业用途的主要限制。 GTR在150至280摄氏度的温度范围内,在存在废机油(WEO)的情况下通过挤出进行热机械脱硫。WE含量和挤出机机筒温度对降解的GTR(DTGR)交联结构变化的综合影响通过溶胶分数测量和热重分析研究)。通过红外光谱仪,常规测试,粘度,动态剪切流变学,动态力学分析,研究了用DGTR改性的沥青的傅里叶变换红外光谱分析,储藏稳定性,粘度,温度敏感性和流变性。荧光显微镜还用于观察DGTR和沥青之间的微观结构和界面相互作用。结果表明,DGTR的溶胶分数随WE含量的增加而增加,导致改性沥青的动态粘度和储能模量降低。机筒温度强烈影响DGTR的形式和改性沥青的最终性能。与280°C时相比,在180°C和210°C的桶温下具有DGTR的改性沥青显示出更好的流变性和更宽的工作温度,这与聚合物主链的降解有关。另外,30重量%。 DGTR含量的变化显着改善了改性沥青的流变性和储存稳定性。此外,已观察到,由于沥青中过量的未溶解橡胶颗粒,较高的DGTR含量(高于40重量%)导致改性沥青的性能下降。 (C)2019 Elsevier Ltd.保留所有权利。

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