基于垂直振动压实法的倒置沥青层沥青路面室内和现场试验研究

IF 12.8 Journal of Road Engineering Pub Date : 2024-12-01 Epub Date: 2024-12-02 DOI:10.1016/j.jreng.2024.01.007
Yong Yi , Yingjun Jiang , Tian Tian , Yu Zhang , Jiangtao Fan , Chenfan Bai , Changqing Deng
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引用次数: 0

摘要

倒置沥青路面是通过反转传统沥青路面的下层和中间层的顺序而形成的。下层由粒径较大、沥青含量较低的材料组成,提高了其承受车辙引起的变形的能力。另一方面,中间表面沥青含量较高,专门设计用于抵抗疲劳开裂。本文研究了两种路面结构的力学响应,并探讨了倒置沥青路面和垂直振动压实法(VVCM)设计沥青混合料两种措施在减少沥青路面应力和应力水平方面的潜力。建立了大厚度车辙疲劳试验方法,研究了路面结构的抗车辙性能和疲劳寿命,建立了车辙变形和疲劳寿命预测模型。最后进行了试验路段的铺设,验证了倒置路面和VVCM材料的可行性。研究结果表明,倒置路面和VVCM材料对路面应力的影响最小,但可以降低路面剪应力和拉应力水平高达18%-25%。此外,倒置路面和VVCM材料对提高沥青路面的抗车辙性和疲劳寿命有积极的作用。
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Investigation of indoor and field tests on asphalt pavement with inverted asphalt layers based on the vertical vibration compaction method
An inverted asphalt pavement is created by reversing the sequence of the lower and middle layers in a conventional asphalt pavement. The lower layer is composed of material with larger particle size and lower asphalt content, which improves its ability to withstand deformation caused by rutting. On the other hand, the middle surface has a higher asphalt content, specifically designed to resist fatigue cracking. This paper examines the mechanical response of two pavement structures and investigates the potential of two measures, inverted asphalt pavement and asphalt mixture design by vertical vibration compaction method (VVCM), in reducing stresses and stress levels in asphalt pavements. Additionally, a large thickness rutting and fatigue test method was developed to study the rutting resistance and fatigue life of the pavement structures, and to construct rutting deformation and fatigue life prediction models. Finally, test sections were paved to verify the feasibility of the inverted pavement and VVCM materials. The findings show that inverted pavement and VVCM materials have a minimal impact on pavement stress, but can reduce pavement shear and tensile stress levels by up to 18%–25%. Furthermore, inverted pavement and VVCM materials have positive effects on improving the rutting resistance and fatigue life of asphalt pavements.
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