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Research of Built-in Temperature and Zero Stress Temperature of Cement Concrete Pavement at Early Ages

机译:早期水泥混凝土路面内置温度和零应力温度研究

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Based on field tests and numerical simulation methods, distribution characteristics of early-age built-in temperature of cement concrete pavement constructed in different seasons and pouring time were analyzed firstly. Then considering effect of creep, characteristics of early-age zero stress temperature in cement concrete that built-in temperature of cement concrete pavement constructed in different seasons and pouring time has a great difference. The distributions of built-in temperature along the thickness present nonlinear obviously, and they have four typical types: concave and positive gradient type, concave negative gradient type, convex positive gradient type and convex negative gradient type. Zero stress temperature gradient shows prominently developing process compared with built-in temperature of slab at different ages by the effect of creep. Zero stress temperature of slab poured on am7:00 in summer firstly increase and then decline. Besides, the positive gradient change to negative gradient gradually, and the gradient of zero stress temperature trend to decrease. At last, it is recommended to calculate zero stress temperature of slab consideration of base temperature and the nonlinear distributions characteristics, and the combined effect of creep and age.
机译:基于现场试验和数值模拟方法,首先分析了不同季节和浇注时间的水泥混凝土路面的早期内置温度的分布特性。然后考虑蠕变,早期零应力温度的特点在水泥混凝土中,在不同季节构建的水泥混凝土路面的内置温度具有很大的差异。沿着厚度的内置温度的分布显然是非线性的,它们具有四种典型类型:凹和正梯度型,凹阴性型型,凸正梯度型和凸负梯度类型。零应力温度梯度显示出突出的开发过程,与蠕变不同年龄的平板的内置温度相比。夏季零浓度的平板零压力温度倒入AM7:00,然后跌幅下降。此外,正梯度逐渐变为负梯度,零应力温度趋势的梯度降低。最后,建议计算基极温度和非线性分布特征的平板考虑的零应力温度,以及蠕变和年龄的综合影响。

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