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Study on Characteristics of Tensile Strength of Concrete Considering Temperature Dependence in Mass Concrete Structures

机译:考虑温度依赖性的大体积混凝土结构混凝土抗拉强度特性研究

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It is important to grasp mechanical and thermal properties in order to verify the possibility of thermal cracking. In this study, for the purpose of improving the accuracy of analysis in prediction of cracking caused by thermal stress, it was investigated that the direct tensile strength and thermal properties considering temperature history inside concrete member may be applied as a design values for the analysis of prediction of cracking caused by thermal stress. From results of these experiments, in early age, the direct tensile strength under mass curing which is considered temperature history inside concrete member is higher than the splitting tensile strength under standard curing. Which is cured under water of 20°C. However, the direct tensile strength under mass curing is lower than the splitting tensile strength under standard curing after 7 days. At 28 days, the strength of former was about 20% lower than that of latter. In this study, the estimated formula on the strength development of the direct tensile strength was proposed. And the thermal expansion coefficient was estimated using measured values of strain and temperature. In this paper, it was reported that the test method of direct tensile strength considering temperature history inside concrete member was proposed and that the accuracy of analysis for the prediction of thermal cracking by using this method would be improved.
机译:重要的是掌握机械和热性能,以验证热裂纹的可能性。在这项研究中,为了提高在预测由热应力引起的开裂中分析的准确性,研究了考虑混凝土构件内部温度历史的直接抗拉强度和热性能可以作为设计值用于分析混凝土。预测由热应力引起的开裂。从这些实验的结果来看,在早期,在整体固化下被认为是混凝土构件内部温度历史的直接拉伸强度高于标准固化下的劈裂拉伸强度。将其在20℃的水中固化。但是,在7天后,大量固化下的直接拉伸强度低于标准固化下的劈裂拉伸强度。在第28天时,前者的强度比后者低约20%。在这项研究中,提出了直接抗拉强度强度发展的估算公式。然后使用应变和温度的测量值估算热膨胀系数。据报道,提出了一种考虑混凝土构件内部温度历史的直接抗拉强度的测试方法,并提高了使用该方法预测热裂纹的分析精度。

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