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Experimental analysis of the thermal behaviour of concrete under low-intensity short duration cyclic compressive loads

机译:低强度短持续时间循环压缩荷载混凝土热行为的实验分析

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Experimental researches conducted in recent years at the Non Destructive Testing Laboratory of Politecnico di Torino have revealed an unexpected thermal response of concrete subject to short duration cyclic compressive tests: a cooling phenomenon has been observed on medium-quality concrete cores and this contradicts Kelvin's thermodynamic laws. Such a decrease in temperature is not to be ascribed to the evaporation of absorbed water, while it depends on the applied load intensity, the application frequency and the total number of cycles performed. Moreover, the cooling phenomenon is accompanied by such mechanical effects as performance enhancement and increasing brittleness, observed through static tests performed at the end of cyclic compression: an increasein the failure strength and the elastic modulus of the material as well as a reduction in max. displacement at failure are seen to occur. The present research takes its starting point in the above observations and aims to investigate the relations between thermal and mechanical effects in concrete, in order to check the possibility to use the variation of temperature at the end of a short duration cyclic compressive test as an indicator for the evaluation of damage, the final aim being to develop in the future a methodology for diagnosis of existing structures.
机译:近年来在PoliteCnico di Toino的非破坏性测试实验室进行了实验研究,揭示了混凝土的意外热响应,对持续时间短的循环压缩试验进行了影响:在中质混凝土核心上观察到冷却现象,这相矛盾的热力学法。这种温度降低不应归因于吸收水的蒸发,而这取决于所施加的负载强度,施用频率和所执行的循环总数。此外,冷却现象伴随着这种机械效应作为性能增强和增加的脆性,通过循环压缩结束时进行的静态试验观察:增加了材料的故障强度和材料的弹性模量以及最大值的减少。看到失败的位移发生。目前的研究在上述观察中占据了其起点,并旨在研究混凝土中热和机械效果之间的关系,以检查在短时间内循环压缩试验结束时使用温度变化的可能性作为指示器为了评估损害,最终目标是在未来发展的一种方法论是诊断现有结构的方法。

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