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首页> 外文期刊>Bulletin of engineering geology and the environment >Dynamic elastic properties of hardened experimental mortar bars affected by accelerated alkali–silica reactivity test: a laboratory approach
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Dynamic elastic properties of hardened experimental mortar bars affected by accelerated alkali–silica reactivity test: a laboratory approach

机译:加速碱 - 二氧化硅反应性试验影响硬化实验砂浆条的动态弹性性能:实验室方法

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The evaluation of ASR sensitivity of aggregates is of utmost importance due to durability and safety of structures and also due to economic reasons related to repairs or replacements of ASR-affected concrete. Laboratory tests for ASR detection rely mostly on petrographic examination and on laboratory expansion tests. The latter are mostly expressed in terms of length change (expansion) of experimental mortar bars subjected to the effect of alkaline environment. Along with this, recording of the propagating ultrasonic wave signal can increase reliability of test results. In the recent study, dynamic elastic properties of experimental mortar bars were recorded in both normal setting/hardening state (first 28 days) and in the conditions of accelerated ageing conditions in alkaline solution with elevated temperature (another 37 days). Setting/hardening of the studied materials under normal conditions was manifested by quasi-exponential P- and S-wave ultrasonic velocity increase. However, alkaline solution resulted in the rapid development of ASR phenomena in reactive aggregates and significant change of elastic wave velocities and other dynamic elastic parameters. Comparing various ultrasonic characteristics, dynamic ones (amplitudes, frequencies) proved significantly higher sensitivity and tighter correlation to length changes (expansion) cause by ASR than did the kinematic ones (elastic wave velocities, dynamic elastic moduli).
机译:由于结构的耐久性和安全性,对聚集体的ASR敏感性的评价是至关重要的,并且由于结构的经济原因以及与影响混凝土的经济原因或更换的经济原因,也是如此。 ASR检测的实验室测试主要依赖于岩体检查和实验室扩展试验。后者主要表达了实验砂浆条的长度变化(扩展),经过碱性环境的影响。除此之外,传播超声波信号的记录可以提高测试结果的可靠性。在最近的研究中,在正常设置/硬化状态(前28天)和碱性溶液中加速老化条件的情况下,记录了实验研钵的动态弹性性能,升高了温度(另一37天)。在正常条件下,所研究的材料设置/硬化是通过准指数的P-和S波超声速度增加表现出的。然而,碱性溶液导致反应性聚集体中ASR现象的快速发展和弹性波速度的显着变化和其他动态弹性参数。比较各种超声特性,动态(振幅,频率)明显更高的灵敏度和更严格的与长度变化(扩展)引起的敏感性,而不是运动型(弹性波速度,动态弹性Moduli)。

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