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首页> 外文期刊>Journal of Zhejiang University. Science, A >Static and dynamic behavior of concrete slabs reinforced with chemically reactive enamel-coated steel bars and fibers
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Static and dynamic behavior of concrete slabs reinforced with chemically reactive enamel-coated steel bars and fibers

机译:用化学反应性搪瓷涂层钢筋和纤维加固混凝土板的静态和动态行为

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摘要

In this study, the effect of steel fibers coated with chemically reactive enamel (CRE) on the system response of concrete structures with reinforcing bars has been investigated for the first time. In particular, the ultimate strength, ductility, and failure mechanism of 24 reinforced concrete slabs were experimentally characterized under static and blast loads. CRE coating applied on steel bars reduced the crater area of slabs under blast loads by up to 20%; it slightly increased the strength of slabs and significantly reduced the strength degradation of slabs when increasingly deflected under static loads, making the slabs more ductile. CRE coating applied on steel fibers increased the strength of slabs by up to 16% under static loads. The influence of CRE coating applied on both steel fibers and bars may be taken into account by introducing a coating factor in the range of 0.57<β<1.0 in the American Concrete Institute (ACI) development length equation.
机译:在这项研究中,首次研究了涂有化学反应性搪瓷(CRE)的钢纤维对混凝土结构的系统响应的影响。特别地,在静态和鼓胀的载荷下实验表征了24个钢筋混凝土板的极限强度,延展性和故障机理。施加在钢筋上的CRE涂层减少了Blast载荷下的板坯的火山口区域高达20%;它略微增加平板的强度,并且在静态负载下越来越偏转时显着降低了板坯的强度降解,使得板坯更加延展。施加在钢纤维上的CRE涂层在静态载荷下将板坯的强度提高至16%。通过在美国混凝土研究所(ACI)开发长度方程中0.57 <β<1.0的范围内的涂层因子,可以考虑施加在钢纤维和棒上的CRE涂层的影响。

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