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Degradation of Dynamic Elastic Modulus of Concrete under Periodic Temperature-Humidity Action

机译:周期性温湿作用下混凝土动弹性模量的衰减

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摘要

Cracks caused by environmental temperature and humidity variation are generally considered one of the most important factors causing durability deterioration of concrete structures. The seasonal or daily variation of ambient temperature and humidity can be considered periodic. The dynamic modulus of elasticity is an important parameter used to evaluate the performance of structural concrete under periodic loads. Hence, in this paper, the dynamic elastic modulus test of concrete under simulating periodic temperature-humidity variation is carried out according to monthly meteorological data of representative areas (Nanjing, China). The dynamic elastic modulus attenuation pattern and a dynamic elastic modulus degradation model of concrete under periodic temperature-humidity are investigated. The test results show that the dynamic elastic modulus of concrete decreases and tends to be stable under the action of periodic temperature-humidity. Comparative analysis shows that the two-parameter dynamic elastic modulus degradation model is more suitable for describing the dynamic elastic modulus attenuation pattern of concrete under periodic temperature-humidity action than the single-parameter one.
机译:通常认为由环境温度和湿度变化引起的裂缝是引起混凝土结构耐久性恶化的最重要因素之一。可以认为环境温度和湿度的季节性或每日变化是周期性的。动态弹性模量是用于评估周期性荷载下结构混凝土性能的重要参数。因此,本文根据代表性地区(南京,中国)的月度气象数据,对混凝土进行了周期性温度-湿度变化模拟的动态弹性模量试验。研究了周期性温湿度条件下混凝土的动态弹性模量衰减规律和动态弹性模量衰减模型。试验结果表明,在周期性温湿作用下,混凝土的动弹性模量降低,趋于稳定。对比分析表明,与单参数模型相比,两参数动弹性模量退化模型更适合描述周期性温度-湿度作用下混凝土的动弹性模量衰减模式。

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