首页> 外文期刊>Construction and Building Materials >Laboratory investigation of stone matrix asphalt modified with SBS polymer and C25 fiber in using the semi-circular bend geometry (SCB) and moisture susceptibility
【24h】

Laboratory investigation of stone matrix asphalt modified with SBS polymer and C25 fiber in using the semi-circular bend geometry (SCB) and moisture susceptibility

机译:用SBS聚合物和C25纤维改性石质基质沥青的实验室调查,使用半圆形弯曲几何(SCB)和水分敏感性

获取原文
获取原文并翻译 | 示例
           

摘要

Asphalt mixtures are the ultimate layer of flexible pavements and are directly affected by the damaging effects of weather conditions and stresses caused by traffic loads. Therefore, using a reinforcing agent to improve mechanical and functional properties of asphalt mixtures seems reasonable. The purpose of this study is to investigate the effect of this type of composite fibers on some properties related to fracture mechanics such as plasticity, fracture energy, and the impact of loading rate in this field, and compare it with SBS polymer asphalt and its effect on moisture susceptibility test on Stone Matrix Asphalt (SMA), and compare it with SBS polymer asphalt and non-fibrous and non-polymeric SMA, and examine the extent of the impact of this type of fibers and polymers in composite form together on asphalt properties. In this research, C25 composite fibers were added to SMA mixture, in specific but different ratios, to improve asphalt mixture performance. C25 fibers are a pellet blend consisting of 75 wt% Arbocel cellulose fiber and 25 wt% Fischer Trapsch wax (Sasobit). Moisture susceptibility tests were conducted on original, SBS polymer and C25 fiber mix samples, and their results were compared. The semi-circular bending test was also used for the first and second fracture modes at 25 degrees C for SBS polymer and C25 fiber samples. The results show that, in terms of indirect tensile strength, the highest strength was found for the mix with 0.4% of C25, which improved the parameter by 38% in comparison with dry unmodified sample, and by 116% in comparison with saturated unmodified samples. In drain down test, with increased amount of fiber, the drain down of bitumen decreased, and in semicircular bending test, at both 90 degrees and 45 degrees cracks, the fracture energy of the samples containing 0.4% fibers improved compared to the samples containing SBS polymer. Besides, the plasticity of the samples was relatively weaker in C25-fiber samples in 90 degrees and 45 degrees cracks than that of SBS polymer samples. At 45 degrees crack, with increased loading speed, the plasticity of the fibrous samples decreased but in SBS-polymer samples, the parameter increased. (C) 2020 Elsevier Ltd. All rights reserved.
机译:沥青混合物是柔性路面的最终层,受到交通负荷引起的天气条件和应力的破坏性影响。因此,使用增强剂以改善沥青混合物的机械和功能性似乎合理。本研究的目的是探讨这种类型的复合纤维对与骨折力学等性质有关的一些性质的影响,例如可塑性,裂缝能量,以及加载速度在该领域的影响,并将其与SBS聚合物沥青进行比较及其效果关于石材基质沥青(SMA)的水分敏感性试验,并将其与SBS聚合物沥青和非纤维和非聚合物SMA进行比较,并在复合形式中进行这种类型的纤维和聚合物在沥青性能下的影响程度。在本研究中,将C25复合纤维加入到特定但不同比例的SMA混合物中,以改善沥青混合料的性能。 C25纤维是由75wt%的Arbocel纤维素纤维和25wt%费斯·衣物蜡(Sasobit)组成的颗粒共混物。在原始的,SBS聚合物和C25纤维混合物样品上进行湿度敏感性试验,并比较它们的结果。半圆形弯曲试验也用于25℃的第一和第二裂缝模式对于SBS聚合物和C25纤维样品。结果表明,就间接拉伸强度而言,含有0.4%C25的混合物的最高强度,与干燥未修饰的样品相比,将参数改善38%,与饱和未修饰的样品相比,116% 。在沥青试验中,随着纤维量的增加,沥青的沥青降低,并且在半周弯曲试验中,在90度和45度裂缝中,与含有SBS的样品相比,含有0.4%纤维的样品的裂缝能量改善聚合物。此外,在90度的C25-纤维样品中,样品的可塑性比在90度和45度裂缝中比SBS聚合物样品的裂缝相对较弱。在45度裂缝中,随着负载速度增加,纤维样品的可塑性降低但在SBS聚合物样品中,参数增加。 (c)2020 elestvier有限公司保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号