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Bitumen modification with reactive and non-reactive (virgin and recycled) polymers: A comparative analysis

机译:使用反应性和非反应性(原始和循环利用)聚合物进行的沥青改性:对比分析

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The main goal of this research was to compare the modification capability of two different types of bitumen modifiers: non-reactive plastomers and elastomers, and reactive polymers. The group of non-reactive polymers included a block copolymer (SBS), recycled thermoplastic polymers (EVA/LDPE blends), and crumb tire rubber, which were mixed at a processing temperature of 180 °C. In the second group, a reactive MDI-PEG prepolymer, a low processing temperature modifier (90 °C), was considered. The study was mainly focused on the characterization of the thermorheological behaviour of selected modified bitumen samples. In addition, the thermal behaviour (by modulated DSC), and morphology (by optical microscopy) of these modified bitumen samples were also evaluated. All of these bitumen modifiers significantly improve the thermomechanical properties of the resulting binder, especially at high in-service temperatures. However, whereas bitumen modified by non-reactive polymers undergo marked oxidation events due to the high processing temperature used (180 °C), MDI-PEG modified bitumen does not experience this phenomenon because of the lower processing temperature involved (90 °C). In general, non-reactive polymers should be added in much larger concentrations than the reactive polymer to obtain similar results, although the latter requires a further period of curing, at room temperature, to induce suitable modification. Finally, only MDI-PEG modified bitumen is stable when stored at high temperature (163 °C), whereas all the non-reactive polymer-modified bitumen studied undergo either phase separation or particle precipitation.
机译:这项研究的主要目的是比较两种不同类型的沥青改性剂的改性能力:非反应性塑性体和弹性体,以及反应性聚合物。一组非反应性聚合物包括嵌段共聚物(SBS),回收的热塑性聚合物(EVA / LDPE共混物)和碎胎橡胶,它们在180°C的加工温度下混合。在第二组中,考虑了反应性MDI-PEG预聚物,即低加工温度改性剂(90°C)。该研究主要集中在所选改性沥青样品的热流变行为的表征上。另外,还评估了这些改性沥青样品的热行为(通过调制DSC)和形态(通过光学显微镜)。所有这些沥青改性剂均显着改善了所得粘合剂的热机械性能,尤其是在使用温度较高的情况下。但是,由于所用的加工温度高(180°C),由非反应性聚合物改性的沥青会发生明显的氧化事件,而MDI-PEG改性的沥青却由于较低的加工温度(90°C)而没有遇到这种现象。通常,非反应性聚合物应以比反应性聚合物高得多的浓度添加以获得类似的结果,尽管后者需要在室温下进一步固化一段时间才能引发适当的改性。最后,只有MDI-PEG改性的沥青在高温(163°C)下储存时才稳定,而所有非反应性聚合物改性的沥青均经历了相分离或颗粒沉淀。

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