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Temperature-stress testing machine - A state-of-the-art design and its unique applications in concrete research

机译:温度胁迫试验机 - 一种最先进的设计及其在具体研究中的独特应用

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摘要

The Temperature-Stress Testing Machine (TSTM) is a powerful test setup that allows to holistically study several key performance characteristics of concrete from very early ages. In this paper, key features of existing TSTMs are first reviewed, together with their remaining drawbacks. On that basis, the paper provides insights into the detailed design of the new TSTM at The University of Queensland (UQ), including: efficient heat transfer and thermal regulating system, advanced deformation control and capturing devices and automatic control algorithm. Such detailed information on the design and performance of TSTM is aimed to address the current lack of such critical information, facilitating further improvements of TSTMs. Evidence demonstrating the reliability and repeatability of the new TSTM is also presented. Finally, to further demonstrate its capability, the paper presents several aspects of an on-going study at UQ utilising the new TSTM to study autogenous shrinkage under realistic temperature histories, thermal coefficients of expansion and contraction, tensile creep and zero-stress temperature, as well as their combined effects on early-age cracking risk of concrete structures. The resulting improved knowledge is expected to lead to better guidelines for effective crack control that will enable significant cost savings and more sustainable construction industry.
机译:温度胁迫试验机(TSTM)是一个强大的测试设置,可以从很早的年龄来全面研究混凝土的几个关键性能特征。在本文中,首先将现有TSTM的关键特征与其剩余的缺点一起进行审查。在此基础上,本文提供了昆士兰大学(UQ)新TSTM详细设计的见解,包括:高效的传热和热调节系统,先进的变形控制和捕获装置和自动控制算法。关于TSTM的设计和性能的这种详细信息旨在解决目前缺乏这种关键信息,促进了TSTM的进一步改进。还提出了表现出新TSTM的可靠性和可重复性的证据。最后,为了进一步展示其能力,本文利用新的TSTM在现实温度历史中研究自生收缩,膨胀和收缩,拉伸蠕变和零应力温度的热量系数,提出了几个方面的几个方面。以及它们对混凝土结构的早期开裂风险的综合影响。由此产生的改进知识预计将导致有效裂缝控制更好的准则,以实现重大成本储蓄和更可持续的建筑业。

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