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Investigating key factors of intelligent compaction for asphalt paving: A comparative case study

机译:沥青路面智能压实的关键因素研究:比较案例研究

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As an innovative technology, intelligent compaction (IC) needs an in-depth investigation to improve its applicability for asphalt compaction. For the same asphalt base layer compaction, the potential for utilizing Compaction Meter Value (CMV) to evaluate the asphalt compaction varies based on different underlying support. In this study, the key factors of IC technology for asphalt compaction including underlying support, asphalt temperature, and roller parameters were investigated based on two asphalt base layer projects conducted in the United States and China. It was found that different underlying supports can affect the sensitivity of CMV with respect to the asphalt modulus. For the project with an untreated aggregate base layer, the lack of relevance between CMV and asphalt temperature (R-2 = 0.0) proves that the CMV in this case mainly reflects the stiffness of the underlying support. However, the relevance between CMV and asphalt temperature is significant (R-2 = 0.35 similar to 0.72) for the project with a cement stabilized aggregate base layer, reflecting that CMV is sensitive to the change of asphalt modulus. Changes of roller parameters can also affect the correlation between CMV and asphalt modulus. Based on the analysis, it is suggested that establishing a series of detailed compaction curves corresponding to temperature could be the key to enhance the IC asphalt compaction. (C) 2019 Elsevier Ltd. All rights reserved.
机译:作为一项创新技术,智能压实(IC)需要深入研究以提高其在沥青压实中的适用性。对于相同的沥青基础层压实,利用压实仪值(CMV)评估沥青压实的潜力因基础支撑物的不同而异。在这项研究中,基于在美国和中国进行的两个沥青基层项目,研究了用于沥青压实的IC技术的关键因素,包括基础支撑,沥青温度和压路机参数。发现不同的底层载体可以影响CMV相对于沥青模量的敏感性。对于未经处理的集料基础层的项目,CMV与沥青温度之间不相关(R-2 = 0.0)证明在这种情况下,CMV主要反映了基础支撑的刚度。但是,对于具有水泥稳定集料基础层的项目,CMV与沥青温度之间的相关性非常显着(R-2 = 0.35,与0.72类似),反映出CMV对沥青模量的变化敏感。压路机参数的变化也会影响CMV和沥青模量之间的相关性。根据分析,建议建立一系列与温度对应的详细压实曲线可能是提高IC沥青压实度的关键。 (C)2019 Elsevier Ltd.保留所有权利。

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