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Preparation and Performance Evaluation of Warm-Mixed Epoxy Asphalt Ultrathin Overlay by Post-Doping Method

机译:后掺杂法制备温拌环氧沥青超薄堆焊层并性能评价

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Post-doping construction technology overcomes the difficulties of demanding construction requirements of warm-mix epoxy asphalt mixture (EAM) that limit its application, and it provides a new idea for the scaled application of EAM. To provide reliable support for the application of an epoxy asphalt ultrathin overlay (EAUTO), warm-mix EAM was prepared by simulating the post-doping method in the lab, and the Marshall molding method with reduced specimen thickness was considered. EAUTO moisture susceptibility, raveling resistance, and cracking resistance were evaluated to verify the feasibility of EAUTO molding. Furthermore, EAUTO long-term skid resistance and stripping resistance were analyzed in detail. The results showed that thin-layer molding solves the problem of the inappropriateness of conventional Marshall stability equipment for EAM and has cost-saving and efficiency advantages. The recommended molding parameters for the warm-mix EAUTO were 25 blows/face and a thickness of 30.0 ± 0.6 mm. Despite the reduction in specimen thickness, moisture damage resistance and raveling resistance of the thin-layer EAM specimens were slightly attenuated compared with the original specimens but were acceptable, and the mechanical properties were still better than those of SBS-modified asphalt. Regarding cracking resistance, the evaluation results for the thin-layer specimens demonstrate consistency with those of the original specimens. Additionally, the cracking resistance of gap-graded mixes was better than that of dense-graded ones. The EAUTO showed excellent long-term stripping resistance and skid resistance durability compared with asphalt modified with styrene-butadiene-styrene (SBS). However, it is worth noting that the traditional texture depth was not suitable as a separate indicator for evaluating long-term skid resistance.
机译:后掺杂施工技术克服了温拌环氧沥青混合料 (EAM) 苛刻施工要求限制其应用的困难,为温拌环氧沥青混合料的规模化应用提供了新思路。为了给环氧沥青超薄堆焊层 (EAUTO) 的应用提供可靠的支持,通过在实验室中模拟后掺杂方法制备了温拌 EAM,并考虑了减少试样厚度的 Marshall 成型方法。评价 EAUTO 湿气敏感性、抗撕裂性和抗开裂性,以验证 EAUTO 成型的可行性。此外,还详细分析了 EAUTO 长期防滑性和抗剥离性。结果表明,薄层成型解决了常规 Marshall 稳定设备不适合用于 EAM 的问题,具有节省成本和效率的优势。温拌 EAUTO 的推荐成型参数为 25 次吹塑/面,厚度为 30.0 ± 0.6 毫米。尽管试样厚度减小,但薄层 EAM 试样的抗湿损伤性和抗撕裂性与原始试样相比略有衰减,但可以接受,力学性能仍优于 SBS 改性沥青。在抗裂性方面,薄层试样的评估结果表明与原始试样的评估结果一致。此外,间隙级配混合物的抗裂性优于密级配混合物。与用苯乙烯-丁二烯-苯乙烯 (SBS) 改性的沥青相比,EAUTO 表现出优异的长期抗剥离性和防滑耐久性。然而,值得注意的是,传统的纹理深度并不适合作为评估长期防滑性的单独指标。

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