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首页> 外文期刊>MATEC Web of Conferences >Investigation on the effect of phase segregation on the mechanical properties of polymer modified bitumen using analytical and morphological tools
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Investigation on the effect of phase segregation on the mechanical properties of polymer modified bitumen using analytical and morphological tools

机译:分析和形态学工具研究相偏析对聚合物改性沥青力学性能的研究

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The mechanical strength of polymer modified bituminous mix which is evaluated in terms of stiffness reflects the deformation behaviour of bituminous mixture. The stiffness of the binder strongly depends on its chemical composition besides aggregate structure of the bituminous mixture. Compatibility of polymer with the base bitumen is considered as major strength enhancing factor in the case of polymer modified bituminous mix. To relate the factors affecting the mechanical strength of the binder a new approach in this research study was adopted in order to relate the compatibility of 80/100 pen bitumen with polymer Polypropylene (PP) using analytical and morphological tools. Morphological tools like Atomic Force Microscopy (AFM) and Transmission Electron Microscope (TEM) were used to study the changes due to the difference in compatibility of polymer with bitumen. It was observed that the presence of phase segregated layer as observed by AFM surface morphology was considered as the main strength enhancing factor of the bituminous mix. While the presence of lamella as observed in TEM scanned images of PP PMB revealed that addition of polymer forms localized network in the phase segregated layer which induces the stiffening effect in PMB. From the chromatographic method (SARA) analytical analysis Saturate, Aromatics, Resin and Asphaltene fractionate were determined in the blend. It was observed that chemical composition of the blend also has a profound effect on the rheological properties and on the morphology of polymer modified bituminous (PMB) blend. It was concluded that PP PMB gets benefited by phase segregated layer in the blend when the polymer concentration was kept below 3% as it sufficiently enhances the mechanical strength of the PMB binder as observed by dynamic creep results.
机译:在刚度方面评价的聚合物改性沥青混合物的机械强度反映了沥青混合物的变形行为。除沥青混合物的聚集体外,粘合剂的刚度强烈取决于其化学组合物。聚合物与基沥青的相容性被认为是聚合物改性沥青混合物的情况下的主要强度增强因子。为了涉及影响粘合剂机械强度的因素,采用了该研究研究中的新方法,以便使用分析和形态学工具将80/100 PEN沥青(PP)与聚合物聚丙烯(PP)的相容性相关。原子力显微镜(AFM)和透射电子显微镜(TEM)等形态学工具用于研究由于聚合物与沥青的相容性差异的变化。观察到,如AFM表面形态所观察到的相隔离层的存在被认为是沥青混合物的主要强度增强因子。虽然在PP PMB的TEM扫描图像中观察到的薄片的存在显示,在相分散的层中添加聚合物在相分散的层中形成局部网络,其在PMB中诱导加强效果。从色谱法(SARA)分析分析饱和,在混合物中测定芳烃,树脂和沥青质分馏。观察到,共混物的化学成分也对流变性质和聚合物改性沥青(PMB)混合物的形态产生了深远的影响。得出结论,当聚合物浓度保持在3%以下时,PP PMB在混合物中被相分离层受益,因为它足以通过动态蠕变效果观察到的PMB粘合剂的机械强度。

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