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Exploring the feasibility of using reclaimed paper-based asphalt felt waste as a modifier in asphalt-binders

机译:探索将再生纸基沥青毡毛毡废料用作沥青粘合剂的改性剂的可行性

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Paper-based asphalt felt, which is typically used as a waterproofing material, is one of the most problematic solid wastes in terms of disposal and environmental contamination. The laboratory work presented in this paper aims to propose a strategy for utilizing the reclaimed paper-based asphalt felt (RPAF) waste in hot-mix asphalt (HMA) pavements as a means to mitigate the RPAF disposal problem. A series of laboratory tests, including viscosity, modulus, rutting, and cracking, were conducted to investigate the effects of RPAF additives on the engineering performance of asphalt-binder and HMA mixes. The corresponding test results showed that the addition of RPAF improves the viscosity and high-temperature performance of asphalt-binders. However, RPAF modified asphalt-binder exhibited inferior storage stability than the virgin asphalt-binder due to the difference in density between the asphalt-binder and RPAF components. Additionally, the effect of RPAF on the rheological characteristics of the asphalt-binder exhibited high sensitivity to temperature. The differences in complex modulus and phase angle of the asphalt-binder with RPAF additives were generally more significant at elevated temperatures. Similarly, RPAF modified HMA mixes outperformed the control HMA mix in terms of resistance to moisture damage, rutting, and cracking, respectively. Overall, the laboratory test results indicated that it is feasible to utilize RPAF waste as an asphalt-binder modifier to enhance the engineering properties/performance of the asphalt-binder and HMA mix whilst simultaneously addressing the environmental issues of RPAF waste disposal. (C) 2019 Elsevier Ltd. All rights reserved.
机译:就处置和环境污染而言,通常用作防水材料的纸基沥青毡是最成问题的固体废物之一。本文介绍的实验室工作旨在提出一种在热混合沥青(HMA)路面中利用再生纸基沥青毡(RPAF)废物的策略,以缓解RPAF处置问题。进行了一系列的实验室测试,包括粘度,模量,车辙和开裂,以研究RPAF添加剂对沥青粘合剂和HMA混合物的工程性能的影响。相应的测试结果表明,添加RPAF可以改善沥青粘合剂的粘度和高温性能。然而,由于沥青粘合剂和RPAF组分之间的密度差异,RPAF改性的沥青粘合剂的储藏稳定性比原始沥青粘合剂差。另外,RPAF对沥青粘合剂的流变特性的影响表现出对温度的高敏感性。在高温下,含RPAF添加剂的沥青结合料的复数模量和相角的差异通常更为显着。同样,RPAF改性的HMA混合物在耐湿气破坏,车辙和开裂方面分别优于对照HMA混合物。总体而言,实验室测试结果表明,将RPAF废料用作沥青结合料改性剂以提高沥青结合料和HMA混合物的工程性能/性能,同时解决RPAF废物处理的环境问题是可行的。 (C)2019 Elsevier Ltd.保留所有权利。

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