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Performance of deformed steel fibers embedded in ultra-high performance concrete subjected to various pullout rates

机译:嵌入超高性能混凝土中变形钢纤维的性能经受各种拉出速率

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Fiber-matrix bond properties are typically evaluated using a single-fiber pullout test. Such tests for ultra-high performance concrete (UHPC) are few in the literature and, in particular, those that focus on high pullout rates are exceedingly rare. In this research program, different types of high-strength steel fibers (twisted, straight and hooked) are embedded in two UHPC matrices with varying amounts of glass powder, which is a key ingredient of UPHC. The specimens are subjected to loading rates ranging from 0.018 mm/s (representing quasi-static loading) to 1800 mm/s (representing impact loading). Experimental results show that the pullout response of all of the fiber types exhibit progressively increasing rate sensitivity as the pullout speed increases and becomes significant during impact loading. It is most prominent in the smooth and twisted fibers and least in the hooked fibers. Additionally, scanning electron microscope studies are presented and used to explain the mechanism of rate enhancement from a microscopic perspective. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通常使用单纤维拉出测试评估纤维 - 基质键合性。这种超高性能混凝土(UHPC)的这种测试在文献中很少,特别是那些专注于高拔出率的人非常罕见。在本研究方案中,不同类型的高强度钢纤维(扭曲,直接和钩)嵌入两个具有不同量的玻璃粉末的UHPC矩阵中,这是uPHC的关键成分。对试样的负载率,范围为0.018mm / s(代表准静态负载)至1800mm / s(代表冲击载荷)。实验结果表明,随着拉出速度的增加,所有纤维类型的拉出响应表现出逐渐增加的速率敏感性,并且在冲击载荷期间变得显着。它在光滑和扭曲的纤维中最突出,至少在钩状纤维中。另外,介绍扫描电子显微镜研究并用于解释从微观视角的速率增强机制。 (c)2016 Elsevier Ltd.保留所有权利。

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