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Processing, rheology, and storage stability of recycled EVA/LDPE modified bitumen

机译:再生EVA / LDPE改性沥青的加工,流变学和储存稳定性

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The optimum processing conditions for the manufacture of polymer-modified bitumens (PMBs), as well as the rheological properties of the final polymer-bitumen blends, strongly depend on the characteristics of the mixing device used. The present work is focused on the comparison among the kinetics of the mixing process and the rheological properties and microstructural characteristics of PMBs manufactured in two different mixers. Thus, blends of 60/70 penetration grade bitumen and recycled EVA/LDPE were processed in both high and low-shear devices. Knowledge on the evolution of shear viscosity and microstructure with time, as well as on the mechanical properties of the final polymer-bitumen blends, was gained from rheological and modulated DSC tests, and optical microscopy. The results obtained demonstrate that processing in the high-shear device yields a significant decrease in the time needed for the polymer-bitumen blend to reach the final stage of the manufacturing process, as well as an important reduction in bitumen oxidation and enhanced properties in a wide range of in-service temperatures. However, polymer-bitumen blends manufactured in the high-shear device are not stable during its storage at high temperature.
机译:制造聚合物改性的沥青(PMB)的最佳工艺条件以及最终的聚合物-沥青混合物的流变性,在很大程度上取决于所用混合装置的特性。目前的工作集中在混合过程的动力学以及在两种不同的混合器中制造的PMB的流变特性和微观结构特征之间的比较上。因此,在高剪切设备和低剪切设备中均加工了60/70渗透级沥青和再生EVA / LDPE的混合物。通过流变和调制DSC测试以及光学显微镜,可以获得有关剪切粘度和微观结构随时间的演变以及最终聚合物-沥青混合物的机械性能的知识。获得的结果表明,在高剪切装置中进行加工可显着减少聚合物-沥青共混物达到制造过程的最终阶段所需的时间,并显着减少沥青的氧化和增强沥青的性能。广泛的使用温度范围。然而,在高剪切装置中制造的聚合物-沥青共混物在其高温储存期间不稳定。

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