Investigation of Longitudinal Cracking in Widened Concrete Pavements

IF 0.6 4区 工程技术 Q4 ENGINEERING, CIVIL
Shuo Yang, Yang Zhang, O. Kaya, H. Ceylan, Sunghwan Kim
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引用次数: 8

Abstract

Widened slabs, widely employed in many US states in concrete pavements, have suffered from unexpected longitudinal cracks. These cracks suddenly appeared within 0.60 m to 1.20 m from widened slab edges and could be detrimental to the long-term pavement performance. The primary objective of this study was to identify possible causes for such longitudinal cracking observed on widened concrete pavements. Both field investigation and Finite Element Analysis were performed. Degrees of curling and warping were measured using a Terrestrial Laser Scanner. Concrete cores were also extracted to achieve a better understanding of how the cracking had developed. Field survey and numerical simulation results indicate that such longitudinal cracks could be primarily caused by a combination of excessive traffic loads, a high degree of curling and warping, inadequate support from underlying layers, pavement ageing, and skewed joints. It was also found that 4.30 m widened slabs coupled with tied Portland Cement Concrete shoulders outperformed others in terms of producing less cracking, even when they had experienced higher levels of truck traffic. The sites constructed in late afternoons also showed significantly less longitudinal cracks.
加宽混凝土路面纵向裂缝的研究
美国许多州广泛用于混凝土路面的加宽板出现了意想不到的纵向裂缝。这些裂缝突然出现在距离加宽板边缘0.60米至1.20米的范围内,可能对长期路面性能不利。本研究的主要目的是确定在加宽混凝土路面上观察到的这种纵向裂缝的可能原因。进行了现场调查和有限元分析。使用地面激光扫描仪测量卷曲和翘曲的程度。还提取了混凝土芯,以更好地了解裂缝是如何发展的。现场调查和数值模拟结果表明,此类纵向裂缝可能主要由过度的交通荷载、高度的卷曲和翘曲、下层支撑不足、路面老化和斜接缝共同造成。研究还发现,4.30米宽的板加上捆绑的波特兰水泥混凝土路肩,即使在卡车交通量较高的情况下,在产生较少裂缝方面也优于其他板。下午晚些时候建造的场地也显示出明显较少的纵向裂缝。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Baltic Journal of Road and Bridge Engineering
Baltic Journal of Road and Bridge Engineering 工程技术-工程:土木
CiteScore
2.10
自引率
9.10%
发文量
25
审稿时长
>12 weeks
期刊介绍: THE JOURNAL IS DESIGNED FOR PUBLISHING PAPERS CONCERNING THE FOLLOWING AREAS OF RESEARCH: road and bridge research and design, road construction materials and technologies, bridge construction materials and technologies, road and bridge repair, road and bridge maintenance, traffic safety, road and bridge information technologies, environmental issues, road climatology, low-volume roads, normative documentation, quality management and assurance, road infrastructure and its assessment, asset management, road and bridge construction financing, specialist pre-service and in-service training;
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