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EFFECTS OF THE BUILT-IN CONSTRUCTION GRADIENT AND ENVIRONMENTAL CONDITIONS ON JOINTED PLAIN CONCRETE PAVEMENTS

机译:内置施工梯度和环境条件对节理平整混凝土路面的影响

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摘要

Slab curvature, which represents the response of concrete pavement to environmental loads, influences the location and magnitude of critical slab stresses and affects long-term pavement performance. The purpose of this study was to measure the changes in temperature and moisture profiles in a newly constructed concrete pavement, to determine the deformed shape of the slabs and the resulting stress and identify the relative contributions of built-in and transient environmental effects over time. To do this, an instrumented jointed plain concrete pavement (JPCP) was monitored over a two-year period.The built-in construction gradient is a major factor contributing to slab curvature and stress. Therefore, first, static strain and pressure gage data used to establish the built-in gradient and zero stress temperature.Slab curvature was predicted using measurements of temperature and moisture conditions in the slab and computed using static strain and pavement surface profile measurements. It was found that the additional restraint provided by the dowel and tie bars does not appear to significantly reduce slab curvature resulting from daily temperature fluctuations or from reversible drying shrinkage. It does have a substantial effect on reducing slab curvature due to long-term drying shrinkage. It was also found that the slab curvature is predominantly curled upward (99 percent of the time), resulting in top-down fatigue cracking, while it is traditionally assumed that fatigue cracking in concrete pavements initiates at the bottom.Finite element models were developed to study the effect of various environmental conditions and slab restraints on the development of stress in the slabs. The models were validated based on measured strain data. It was found that the effect of moisture has the most significant effect on stress in the slabs. The measured curvature in the restrained slab (tie and dowel bars) is over 50 percent lower when compared to the unrestrained (no tie or dowel bars) slab. This reduction in deformation resulted in a critical stress that was 20 to 22 percent larger for the restrained slab compared to the unrestrained slab.
机译:板曲率代表混凝土路面对环境载荷的响应,影响板坯临界应力的位置和大小,并影响长期路面性能。这项研究的目的是测量新建混凝土路面中温度和湿度曲线的变化,确定板的变形形状和所产生的应力,并确定随时间推移的内建和瞬态环境影响的相对贡献。为此,在两年的时间内对插接式普通混凝土路面(JPCP)进行了监测。内置的施工坡度是导致平板曲率和应力的主要因素。因此,首先,使用静态应变和压力计数据来建立内置的梯度和零应力温度。使用板中温度和湿度条件的测量来预测板曲率,并使用静态应变和路面表面轮廓测量来计算板曲率。已经发现,销钉和拉杆所提供的附加约束似乎并未显着降低由于每日温度波动或可逆的干燥收缩而导致的板曲率。由于长期的干燥收缩,它确实对减小板的曲率有很大的作用。还发现板曲率主要是向上弯曲(99%的时间),从而导致自上而下的疲劳裂纹,而传统上认为混凝土路面的疲劳裂纹是在底部开始的。研究各种环境条件和平板约束对平板应力发展的影响。基于测得的应变数据对模型进行了验证。发现水分的影响对板中的应力具有最显着的影响。与无约束的(无连接杆或销钉)平板相比,约束的平板(连接杆和销钉)中测得的曲率低50%以上。变形的减少导致与无约束板相比,约束板的临界应力大20%至22%。

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  • 作者

    Asbahan Rania Elias;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 en
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