SBR改性沥青乳液的温度性能研究

Qinqin Zhang, W. Fan, Tiezhu Wang, G. Nan
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引用次数: 11

摘要

丁苯橡胶(SBR)改性沥青乳液是将SBR胶乳加入到水溶液中制备而成的,它在使用过程中不需要任何加热过程产生气体排放和火灾危险,是一种节能、环保的材料。本文的目的是分析SBR改性沥青乳剂的温度性能,以提高路面性能。通过对乳化液残留物的渗透指数(PI)分析,发现SBR改性后沥青的温度敏感性降低,更有利于实际应用。随着SBR含量的增加,PI先升高后降低,这与SBR含量的增加以及SBR在乳化液中能否均匀分散有关。此外,SBR改性沥青的等效软化点(T800)的增加表明沥青的热稳定性和耐热性显著提高。第三,用5℃的延性和等效脆点(T1.2)表征改性沥青的低温性能。与未改性的沥青乳液相比,改性后的沥青乳液低温延性提高,T1.2降低,抗裂性能明显提高。低温延性的变化与乳液渣内部的黏聚力及SBR能否均匀分布有关。结果表明,SBR乳液的最佳掺量为4.0% ~ 5.0%。在此浓度下,SBR改性沥青乳液的温度性能优良,有利于应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Studies on the temperature performance of SBR modified asphalt emulsion
Styrene butadiene rubber (SBR) modified asphalt emulsions were prepared by means of SBR latex adding to aqueous solution, and it is an energy-saving, ecologically safe material because it does not need any heating processes creating gas emission and fire hazard during its use. The objective of this work was to analyze the temperature performance of SBR modified asphalt emulsions for enhancing the pavements properties. According to penetration index (PI) of emulsion residues, it was found that the temperature susceptivity of asphalt became lower by SBR modification, which was more favorable for practical application. And PI firstly increased and then decreased with the SBR content increasing, which was attributed to SBR content and whether it could disperse uniformly in emulsion residue. Furthermore, the increase of equivalent softening point (T800) of asphalt by SBR modification indicated that the thermal stability and the heat resistance of asphalt were significantly enhanced. Third, 5 °C ductility and equivalent brittle point (T1.2) was used for characterizing low-temperature property of modified asphalt. Compared to unmodified asphalt emulsion, the increase of low temperature ductility and decrease of T1.2 of modified asphalt emulsion demonstrated that anti-cracking performance was improved considerably. And the change of low-temperature ductility was related to the cohesion inside the emulsion residue and whether SBR could distribute uniformly in it. As a consequence, the optimum SBR latex content was determined as 4.0% to 5.0% to emulsion. In this concentration, the temperature performance of SBR modified asphalt emulsions was excellent and this favorable for application.
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