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首页> 外文期刊>ACI Structural Journal >Impact Resistance of Reinforced Ultra-High-Performance Concrete Beams with Different Steel Fibers
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Impact Resistance of Reinforced Ultra-High-Performance Concrete Beams with Different Steel Fibers

机译:不同钢纤维的超高性能钢筋混凝土梁的抗冲击性

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摘要

Ten large reinforced ultra-high-performance concrete (UHPC) beams were fabricated and tested under drop-weight impacts. The test parameters included the potential energy, fiber volume content, and steel fiber type and length. The important parameters obtained from an experimental program were summarized to provide a fundamental data set belonging to a research area that is limited within the literature. The test results showed that the addition of 2% (by volume) steel fibers was effective in decreasing the maximum and residual deflections by impact, improving residual capacities after impact damage, redistributing the tensile stress associated with microcracking, and preventing local failure at the contact surface. The use of long smooth steel fibers also resulted in the improvement of both the impact and residual capacities-that is, a decrease in the maximum and residual deflections by impact and an increase in the residual moment capacity and deflection capacity at the ultimate state. In contrast, the fiber content and type had negligible influences on the ratios of the moment capacities under impact and quasi-static loadings. Finally, a step-by-step procedure to assess the residual capacities after impact damage was proposed based on the quasi-static flexural response and the maximum deflection by impact.
机译:制造了十根大型增强超高性能混凝土(UHPC)梁,并在落锤冲击下进行了测试。测试参数包括势能,纤维体积含量以及钢纤维的类型和长度。总结了从实验程序中获得的重要参数,以提供一个属于研究领域的基础数据集,而该领域仅限于文献中。测试结果表明,添加2%(按体积计)的钢纤维可有效降低冲击引起的最大挠度和残余挠度,改善冲击损伤后的残余容量,重新分配与微裂纹有关的拉伸应力,并防止接触时局部失效表面。长而光滑的钢纤维的使用还导致了冲击力和残余力的提高,即,由于冲击而引起的最大挠度和残余挠度的减小,以及极限状态下残余力矩能力和挠度的增大。相反,纤维含量和类型对冲击和准静态载荷下的弯矩能力之比的影响可忽略不计。最后,基于准静态挠曲响应和冲击最大挠度,提出了评估冲击损伤后剩余容量的分步方法。

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