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The effect of loading duration on damage initiation in high-strength concrete

机译:加载持续时间对高强度混凝土损伤破坏的影响

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摘要

The rate sensitivity of the failure strength of concrete and other brittle materials is well documented. However, the underlying mechanism(s) that gives rise to this phenomenon remains a topic of debate. Experimental results suggest that the time-dependent failure process plays a significant role in the observed strength increase. This study investigates the failure process in high-strength concrete (HSC) specimens under uniaxial compression loading. This is accomplished through the use of a modified Kolsky compression bar to apply controlled and repeatable mechanical loading in combination with the non-destructive observation capability of high-resolution X-ray computed-microtomography (micro-CT). The evolution of specimen damage morphology is observed as a result of intermittent short-duration uniaxial stress loadings. Experimental results show that HSC specimens are capable of supporting the applied stress above their quasi-static failure strength for short durations. This duration is found to be a function of the overload stress level. Additionally, micro-CT results reveal that specimens undergo a brief period of void compaction followed by the coalescence and propagation of cracks before completely losing load bearing capability.
机译:混凝土和其他脆性材料的破坏强度对速率的敏感性已得到充分证明。但是,引起这种现象的潜在机制仍然是一个争论的话题。实验结果表明,时变破坏过程在观察到的强度增加中起着重要作用。这项研究调查了高强度混凝土(HSC)标本在单轴压缩载荷下的破坏过程。这是通过使用改进的Kolsky压缩杆以施加受控的和可重复的机械载荷以及高分辨率X射线计算机显微断层摄影术(micro-CT)的无损观察能力来实现的。间歇性短时单轴应力载荷的结果是观察到了试样损伤形态的演变。实验结果表明,HSC试样能够在短时间内支撑高于准静态破坏强度的施加应力。发现该持续时间是过载应力水平的函数。此外,微CT结果表明,试样在经历短暂的空隙压实之后,在完全丧失承重能力之前,会发生裂纹的合并和扩展。

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