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Curling of New Concrete Pavement and Long-Term Performance
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作者 Daba S. Gedafa M. Hossain +2 位作者 Z. Q. Siddique K. Fredrichs D. Meggers 《Journal of Civil Engineering and Architecture》 2012年第2期121-130,共10页
Curling results from the temperature differential across the concrete slab thickness and may induce undue stresses in newly placed slab. This study deals with the finite element (FE) analysis of curling, curling str... Curling results from the temperature differential across the concrete slab thickness and may induce undue stresses in newly placed slab. This study deals with the finite element (FE) analysis of curling, curling stresses, field measurement of curling on a newly built jointed plain concrete pavement, and comparison of its long-term performance using both Mechanistic-Empirical Pavement Design Guide (MEPDG) and HIPERPAVII software. The FE analysis was performed with a software program, ANSYS. The test section was modeled as a three-layer system with 300 mm concrete slab, 100 mm treated drainable base, and 150 mm lime-treated subgrade. All layers were assumed to be linear elastic. Temperature data was collected at five different depth locations across the concrete slab with digital data loggers. Curling was measured on five different days with a simple setup. The effect of temperature nonlinearities across the slab thickness was also examined. The results show that both upward and downward curling increase as the temperature differential increases. The maximum stress resulting from the combined effect of curling and traffic loading due to positive temperature differential is higher than that due to the negative temperature differential of the same magnitude. Since temperature differential has a significant influence on curling, both curling and curling stresses can be mitigated at an early age with temperature control, namely via enhanced curing. Both MEPDG and HIPERPAVII showed approximately the same performance for the PCC thickness ranging from 215 mm to 300 mm for this project. Performance prediction from HIPERPAVII is very sensitive to the change in PCC thickness less than 230 mm whereas MEPDG prediction is not as sensitive to the thickness change as with HIPERPAV 1I. 展开更多
关键词 CURLING HIPERPAVII long-term performance MEPDG.
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提高水泥混凝土路面结构承载能力的机理研究
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作者 潘艳珠 《公路交通科技(应用技术版)》 CAS CSCD 2009年第10期32-36,共5页
针对多数水泥混凝土路面无法实现设计使用寿命,易发生早期破坏的现状,文章运用力学原理和有限元方法分析了水泥混凝土路面板弹性模量、路面板厚度以及路面基层顶面当量回弹模量对路面板中应力和应力变化率的影响。分析结果认为,由于路... 针对多数水泥混凝土路面无法实现设计使用寿命,易发生早期破坏的现状,文章运用力学原理和有限元方法分析了水泥混凝土路面板弹性模量、路面板厚度以及路面基层顶面当量回弹模量对路面板中应力和应力变化率的影响。分析结果认为,由于路面板与基层材料间刚度的巨大差异,增加路面基层顶面当量回弹模量并不能有效降低路面板中的应力水平。在此基础上,本研究还进行了增强基础与增加板厚的经济效果比较。研究结果指出,就降低荷载引起的板中应力而言,适当增加板厚比增强基础效果更加显著,经济效果更加明显。这些研究成果对于设计长寿命、高承载能力水泥混凝土路面具有重要指导意义。 展开更多
关键词 水泥混凝土 路面板厚度 基层顶面回弹模量 承载能力
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