使用便携式落锤式偏转仪快速评估路基性能的方法

IF 1.1 Q3 ENGINEERING, CIVIL Archives of Civil Engineering Pub Date : 2023-12-21 DOI:10.24425/ace.2023.147680
Bo Bu, Huayu Shang, Shaoping Liu, Ke Liu
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引用次数: 0

摘要

:新旧基层的性能评估对于重建和扩建项目的质量和安全至关重要。有必要实现快速、简便的性能测试。本研究选用便携式落重检测仪(PFWD)来快速评估路基性能。首先,选择测试区域--沪陕高速公路合肥至大顾店段改扩建工程。然后,通过 PFWD 试验获得弹性模量𝐸𝑝,并通过切割环法获得旧路基相应的含水量𝑤和压实度"。并建立了 𝐸 𝑝 与 𝑤 和 𝑤 之间的相关关系。通过 PFWD 可以快速获得旧路基的性能。同时,对于新路基,建立了𝐸 𝑝 与弯曲值 𝐿 、𝑤 和 𝑤之间的相关关系,并可通过 PFWD 快速测试其性能。最后,提出了重建和扩展路基性能的快速评价方法,旨在为确保施工质量和安全提供技术支持,并为预测类似路基性能提供技术参考和理论依据。
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Rapid evaluation method of subgrade performance using Portable Falling Weight Deflectometer
: The performance evaluation of new and old subgrades is critical for the quality and safety of reconstruction and extension projects. It is necessary to achieve rapid and easy performance testing. In this study, a Portable Falling Weight Deflectometer (PFWD) is chosen to rapid evaluate the performance of subgrade. First, a testing area, the reconstruction and expansion project of the Hefei to Dagudian section of the Shanghai-Shaanxi Expressway, is selected. Then, the PFWD modulus 𝐸 𝑝 of resilient tested by PFWD and the corresponding water content 𝑤 and compacting degree 𝐾 tested by the cutting ring method for old subgrade are obtained. And the correlation relationship between 𝐸 𝑝 and 𝑤 and 𝐾 is established. The performance of old subgrade can be rapid obtained by PFWD. Meanwhile, for the new subgrade, the correlation relationship between 𝐸 𝑝 and bending value 𝐿 , 𝑤 and 𝐾 is established, and the performance can also be rapid tested by PFWD. Finally, a rapid evaluation method for the reconstruction and expansion of subgrade performance was proposed, which aims to provide technical support for ensuring construction quality and safety and provides a technical reference and a theoretical basis for the prediction of similar subgrade performance
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来源期刊
Archives of Civil Engineering
Archives of Civil Engineering ENGINEERING, CIVIL-
CiteScore
1.50
自引率
28.60%
发文量
0
审稿时长
24 weeks
期刊介绍: ARCHIVES OF CIVIL ENGINEERING publish original papers of the theoretical, experimental, numerical and practical nature in the fields of structural mechanics, soil mechanics and foundations engineering, concrete, metal, timber and composite polymer structures, hydrotechnical structures, roads, railways and bridges, building services, building physics, management in construction, production of construction materials, construction of civil engineering structures, education of civil engineers.
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