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Performance of Noise Reduction and Skid Resistance of Durable Granular Ultra-Thin Layer Asphalt Pavement

机译:耐用颗粒超薄层沥青路面降噪和防滑性能的性能

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摘要

In this paper, the ultra-thin layer (UTL) is defined as the dense framework structure mixture made of asphalt binder, fine aggregate with nominal maximum aggregate size (NMAS) not greater than 13.2 mm and possible additives (mineral or organic), thickness of 2–4 cm. The study aims to investigate comprehensive performance of UTL asphalt mixture. The method of impact freeze thaw split test and the index of impact freeze–thawing damage degree (IFTDD) are proposed to reflect the durability. The indoor tire-rolling-down test system and accelerated abrasion machine are used to simulate the tire-pavement interaction and test road noise and skid resistance, respectively. Though evaluating the influencing factors (pavement thickness, gradation, asphalt binder type, and the content of KS additive) on durability, the optimum parameters with excellent durability are recommended. Combined with the test of noise and skid resistance, the factors affecting the surface function are analyzed. Moreover, the prediction mathematical model of skid resistance and the long-term safety benefit value Eeff are put forward. Results indicate that pavement thickness is the most significant factor effecting on durability, and gradation is the most significant factor affecting noise. Compared with KS additive, gradation has a greater influence on skid resistance index of Texture Depth (TD), whereas, KS additive is the most significant factor affecting British Pendulum Number (BPN). Furthermore, with the addition of asphalt rubber (AR), IFTDD and noise are reduced by 29.17% and 1.6 dB, and BPN and TD increase by 0.7 and 0.03 mm, remarkably. Compared with different asphalt types, the noise of UTL asphalt rubber mixture with 13.2 mm NMAS (UTL13 AR) is the lowest. Additionally, when KS content increases by 0.6%, the noise increases by 3 dB. Furthermore, on the basis of the calculation results of Eeff, UTL13 AR mixture with 0.5% KS has the best long-term benefit of pavement safety and is recommended for field project.
机译:在本文中,超薄层(UTL)定义为由沥青粘合剂制成的致密框架结构混合物,具有标称最大骨料尺寸(NMA)的细骨料不大于13.2mm,添加剂(矿物或有机),厚度2-4厘米。该研究旨在调查UTL沥青混合料的综合性能。建议采用抗冲击解冻分裂试验方法和抗冲冻式损伤损伤程度(IFTDD)的指标以反映耐久性。室内轮胎滚动试验系统和加速磨损机器分别用于模拟轮胎路面相互作用和测试道路噪声和滑动阻力。虽然评估了影响因素(路面厚度,灰度,沥青粘合剂型和KS添加剂的含量),但建议使用具有优异耐用性的最佳参数。结合噪音和滑动阻力的测试,分析了影响表面功能的因素。此外,提出了平滑抵抗的预测数学模型和长期安全益处优势Eff。结果表明,路面厚度是对耐久性影响的最显着因素,并且渐变是影响噪声的最重要因素。与KS添加剂相比,灰度对纹理深度(TD)的抗滑指数产生了更大的影响,而KS添加剂是影响英国摆锤(BPN)的最重要因素。此外,随着沥青橡胶(Ar),IFTDD和噪声减少了29.17%和1.6dB,BPN和TD增加了0.7和0.03mm。与不同的沥青类型相比,UTL沥青橡胶混合物与13.2毫米NMA(UTL13 AR)的噪声是最低的。另外,当KS内容增加0.6%时,噪声增加3 dB。此外,在EFF的计算结果的基础上,utl13 Ar混合物与0.5%Ks具有最佳的路面安全长期优势,并建议用于现场项目。

著录项

  • 作者

    Wei Li; Sen Han; Qibo Huang;

  • 作者单位
  • 年度 2020
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  • 原文格式 PDF
  • 正文语种 eng
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