|Table of Contents|

Influence factors of bond performance between asphalt surface layer and semi-rigid base(PDF)

《交通运输工程学报》[ISSN:1671-1637/CN:61-1369/U]

Issue:
2010年02期
Page:
12-19
Research Field:
道路与铁道工程
Publishing date:
2010-04-20

Info

Title:
Influence factors of bond performance between asphalt surface layer and semi-rigid base
Author(s):
WANG Shui-yin
Research Institute of Highway of Ministry of Transport, Beijing 100088, China
Keywords:
pavement engineering asphalt pavement semi-rigid base interlayer bond performance shear strength influence factors
PACS:
U416.217
DOI:
-
Abstract:
Referring to foreign LPDS shear test method, the influence of asphalt mixture, sticky layer material, semi-rigid base material, the interface of asphalt mixture and sticky layer material, the interface of viscous layer material and semi-rigid base on the shear strength between asphalt surface layer and semi-rigid base was studied with self-designed interior direct shear test and oblique shear test. The shear strength and the unit shear strength were the test evaluation indexes. It is shown that increasing the maximum nominal size and the compactness of asphalt mixture can improve interlayer bond strength. High strength, coarse and dense semi-rigid material can improve interlayer bond strength. Viscosity isn't main influence factor to select viscous layer materials, but the species and doses of viscous layer materials should be selected according to engineering practice test. Cleaning the surface of semi-rigid base is an important measure to improve bond interlayer's level. Prime coat should be sprinkled with 0.3~0.6 L·m-2 after the surface of semi-rigid base is cleaned. Casting single particle size, coarse specification and alkaline crushed stone above interlayer hot asphalt is easy to construct, and can improve interlayer bond strength. 15 tabs, 6 figs, 10 refs.

References:

[1] CANESTRARI F, FERROTTI G, PARTL M N, et al. Repeatability of interlayer shear resistance determined with two test procedures[R]. Ancona: Istitutodi Idraulicae Infra-strutture Viarie-Università Politecnica Delle Marche, 2005.
[2] SANTAGATA F A, FERROTTI G, PARTL M N, et al. Statistical investigation of two different interlayer shear test methods[J]. Materials and Structures, 2009, 42(6): 705-714.
[3] VACIN O, PONNIAH J, TIGHE S. Quantifying the shear strength at the asphalt interface[R]. Ontario: University of Waterloo, 2006.
[4] ELSEIFI M A. Performance quantification of interlayer systems in flexible pavements using finite element analysis, instrument response, and non destructive testing[D]. Blacksburg: Virginia Polytechnic Institute and State University, 2003.
[5] 关昌余,王哲人,郭大智.路面结构层间结合状态的研究[J].中国公路学报,1989,2(1):70-80. GUAN Chang-yu, WANG Zhe-ren, GUO Da-zhi. A study of contact conditions of interfaces in pavement layers[J]. China Journal of Highway and Transport, 1989, 2(1): 70-80.(in Chinese)
[6] 薛 亮,张维刚,梁鸿颉.考虑层间不同状态的沥青路面力学响应分析[J].沈阳建筑大学学报:自然科学版,2006,22(4):575-578. XUE Liang, ZHANG Wei-gang, LIANG Hong-jie. The mechanical response analysis of asphalt pavement in different interface condition between layers[J]. Journal of Shenyang Jianzhu University: Natural Science, 2006, 22(4): 575-578.(in Chinese)
[7] 艾长发,邱延峻,毛 成,等.考虑层间状态的沥青路面温度与荷载耦合行为分析[J].土木工程学报,2007,40(12):99-104. AI Chang-fa, QIU Yan-jun, MAO Cheng, et al. Simulation of the temperature and load coupling effect on asphalt pavement considering inter-layer conditions[J]. China Civil Engineering Journal, 2007, 40(12): 99-104.(in Chinese)
[8] 杨育生,李振霞,王选仓,等.桥面铺装同步碎石防水粘结层的路用性能[J].长安大学学报:自然科学版,2009,29(6):19-23,58. YANG Yu-sheng, LI Zhen-xia, WANG Xuan-cang, et al. Road performance of synchronous crushed stone waterproof binding course of bridge pavement[J]. Journal of Chang'an University: Natural Science Edition, 2009, 29(6): 19-23, 58.(in Chinese)
[9] 顾兴宇,马 翔,倪富健.CRCP板与沥青混凝土面层间粘结层材料试验研究[J].公路交通科技,2005,22(6):14-17. GU Xing-yu, MA Xiang, NI Fu-jian. Study on tack coat interface layer test for CRCP slab and AC surface[J]. Journal of Highway and Transportation Research and Development, 2005, 22(6): 14-17.(in Chinese)
[10] 高金岐,罗晓辉,徐世法,等.沥青粘结层抗剪强度试验分析[J].北京建筑工程学院学报,2003,19(1):66-71. GAO Jin-qi, LUO Xiao-hui, XU Shi-fa, et al.Test and analysis of shearing strength of bituminous membrane[J]. Journal of Beijing Institute of Civil Engineering and Architecture, 2003, 19(1): 66-71.(in Chinese)

Memo

Memo:
-
Last Update: 2010-04-20