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首页> 外文期刊>The European physical journal. Applied physics >Analyzing the influence of manufacturing conditions of reclaimed asphalt concrete on the characteristics of the asphalt binder: Development of a gradual binder extraction method
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Analyzing the influence of manufacturing conditions of reclaimed asphalt concrete on the characteristics of the asphalt binder: Development of a gradual binder extraction method

机译:分析再生沥青混凝土的生产条件对沥青粘合剂特性的影响:逐步提取粘合剂的方法的发展

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摘要

When asphalt concrete is manufactured incorporating a high percentage (almost 70%) of reclaimed materials from the deconstruction of road surfaces under renovation, and when the corresponding production device is designed specifically to reduce the energy input need (lowering the production temperature), the resulting manufacturing process contributes to the protection of the environment and reduces production costs. However, to meet the quality requirements of the finished product, virgin materials of appropriate quality and quantity must also be added (mineral aggregates and new asphalt binder) and control systems set up to quantify and optimize the parameters involved (thus avoiding the guess work which still often prevails today). It was for this reason that a new experimental technique described here was devised, which will ultimately be used in asphalt concrete production plants. The technique involves lixiviating reclaimed asphalt concrete using a chlorinated solvent; the resulting solute is collected gradually, then the mixture of binders (virgin and reclaimed asphalt concrete) can be characterized and their mass fractions quantified using a combination of UV and IR spectrometry. With this experimental technique we were able to assess the extent to which the reclaimed asphalt pavement binder participates in the agglomeration and cohesion of the reclaimed asphalt concrete. This assessment was made in terms of the main parameters in the production process, temperature of the materials and mixing time.
机译:当生产沥青混凝土时,由于翻修过程中解构的道路表面含有大量(近70%)的再生材料,并且专门设计了相应的生产设备以减少能量输入需求(降低生产温度)时,制造过程有助于保护环境并降低生产成本。但是,为了满足最终产品的质量要求,还必须添加质量和数量适当的原始材料(矿物骨料和新型沥青粘合剂),并建立控制系统以量化和优化所涉及的参数(从而避免进行猜测工作)。今天仍然经常盛行)。出于这个原因,这里设计了一种新的实验技术,最终将其用于沥青混凝土生产厂。该技术涉及使用氯化溶剂对再生的沥青混凝土进行浸渗。逐渐收集所产生的溶质,然后可以对粘合剂(原始沥青和再生沥青混凝土)的混合物进行表征,并结合使用紫外和红外光谱对它们的质量分数进行定量。通过这种实验技术,我们能够评估再生沥青路面粘结剂在何种程度上参与了再生沥青混凝土的团聚和内聚。评估是根据生产过程中的主要参数,物料温度和混合时间进行的。

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