沥青乳液配方参数对高速铁路轨道水泥沥青砂浆流动性的影响

Rahul Reddy Banapuram, Thavamani Andiyappan, K. Kuna, Muppireddy Amaranatha Reddy, Arghya Deb
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摘要

本研究的目的有二:首先,评估沥青乳液特性对高速铁路(HSR)轨道系统水泥沥青砂浆(CAM)流动性特性的影响;其次,考虑到应用的具体要求,提出一种测试方案,以有效区分适用于 CAM 的沥青乳液的流动性要求。这项研究涉及在各种乳液配方变量(包括 pH 值、残余沥青含量和乳化剂用量)条件下评估 CAM 的流动性。此外,还对三种不同的测试方法进行了评估,以确定它们是否适合作为沥青乳液评估规程,用于高铁应用中的 CAM 生产。结果表明,沥青乳液的 pH 值对 CAM 的流动性有很大影响,阳离子乳液因 CAM 的高碱性条件而表现出较低的稳定性,而阴离子/非离子乳液则表现出稳定的流动性。当沥青乳液具有最佳胶束浓度时,沥青乳液中就会出现流动性,从而有效防止凝结。研究结果强调了在生产 CAM 的乳液规格中考虑残余沥青含量上限和下限的重要性。乳化剂用量也有影响,乳化剂用量大,CAM 的流动性就高。该研究引入了流动性比率测试,作为选择用于高铁轨道系统 CAM 生产的沥青乳液的合适方法。
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Influence of Asphalt Emulsion Formulation Parameters on the Fluidity of Cement Asphalt Mortar for High-Speed Rail Tracks
The objective of the present study is twofold: firstly, to evaluate the influence of asphalt emulsion properties on the fluidity characteristics of cement asphalt mortar (CAM) for high-speed railway (HSR) track systems; and secondly, to propose a testing protocol that effectively differentiates the asphalt emulsions suitable for CAM with respect to fluidity requirement, considering specific requirements for the application. The study involved assessing CAM fluidity under various emulsion formulation variables, including the pH, residual asphalt content, and emulsifier dosage. In addition, three different test methods were evaluated for their suitability as the protocol for asphalt emulsions evaluation for CAM production in HSR applications. The results showed that the pH of the asphalt emulsion significantly affects the fluidity of the CAM, with cationic emulsions demonstrating less stability because of high alkaline conditions of CAM, while anionic/non-ionic emulsions exhibited stable fluidity. Fluidity in CAM is observed when an asphalt emulsion possesses an optimal micelle concentration, which effectively resists coagulation. The findings emphasize the importance of considering both upper and lower limits for residual asphalt content in emulsion specifications for CAM production. Emulsifier dosage also played a role, with high emulsifier dosages leading to high fluidity in CAM. The study introduced a fluidity ratio test as a suitable method for selecting asphalt emulsions for CAM production for HSR track systems.
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