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Experimental evaluation and modelling of early-age basic tensile creep in high-performance concrete

机译:高性能混凝土早期碱性拉伸蠕变的实验评价与建模

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Accurate quantification of early-age tensile creep is vital to determine the stress build-up and the related crack sensitivity of concrete structures. Performing tensile creep testing in concrete is a challenging task and therefore reliable test data reported in literature is rather limited. The available test data indicates a large scatter and there is no consensus in the scientific community regarding early-age basic creep in tension. Besides, most of the prediction models in design codes are mainly calibrated using long-term compressive creep test data and their capabilities for predicting early-age tensile creep remain questionable. This paper first presents a comprehensive set of test data on early-age tensile creep of high-performance concrete using two unique methods, namely a Temperature Stress Testing Machine and a direct tensile test setup. The reliability of the collected data is demonstrated through the good agreement between the test data generated by these two test setups. Autogenous shrinkage measurements are performed simultaneously and used for determining basic tensile creep profiles. The governing factors affecting tensile creep including loading age, strength and temperature are experimentally explored in depth. The limitations of the widely utilized basic creep prediction model in the fib Model Code 2010 are identified. Based on the newly measured test data, modifications to the existing model are proposed. The proposed model better reflects not only the data collected in this study, but also that in other published data, thereby highlighting the capabilities of this model for accurate assessment of early-age basic tensile creep of high-performance concrete.
机译:精确定量早期拉伸蠕变对于确定压力积聚和混凝土结构的相关裂纹敏感性至关重要。在混凝土中进行拉伸蠕变测试是一个具有挑战性的任务,因此文学中报告的可靠测试数据相当有限。可用的测试数据表明,科学界有关张力的早期基本蠕变,科学界没有共识。此外,设计代码中的大多数预测模型主要是使用长期压缩蠕变测试数据校准的,并且它们预测早期抗拉蠕变的能力保持可疑。本文首先介绍了一系列关于高性能混凝土早期拉伸蠕变的全面测试数据,使用两种独特的方法,即温度应力试验机和直接拉伸试验设置。通过这两个测试设置生成的测试数据之间的良好一致性来证明所收集数据的可靠性。自动收缩测量是同时进行的,并用于确定基本拉伸蠕变轮廓。影响拉伸蠕变的控制因素,包括装载年龄,强度和温度的深度深度。识别了在FIB模型代码2010中广泛使用的基本蠕变预测模型的局限性。基于新测量的测试数据,提出了对现有模型的修改。拟议的模型不仅可以更好地反映在本研究中收集的数据,也更好地反映在其他公开的数据中,从而突出了该模型的能力,以便准确评估高性能混凝土的早期基本拉伸蠕变。

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