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Analysis and evaluation of the pull-out behavior of hooked steel fibers embedded in high and ultra-high performance concrete for calibration of numerical models

机译:高性能和超高性能混凝土中钩形钢纤维拔出性能的分析与评估,用于数值模型的标定

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This paper aims at extending the existing knowledge regarding the pull-out behavior of single steel fibers embedded in high- and ultra-high-strength concretes with compressive strengths exceeding 100MPa. Apart from the compressive strength, straight fibers, and fibers with hooked-ends as well as different embedded lengths are considered. The experiments have shown that the bond strength for straight fibers increases with an increasing compressive strength, mechanical anchorage in terms of hooks multiply the load-bearing capacity. For hooked end fibers in ultra-high performance concrete (UHPC) fiber rupture occurred. Special attention was paid to characterize scatter adequately. Especially for hooked-end fibers in UHPC conventional slip-wise averaging does not represent the maximum load well. Therefore, a more precise approach basing on characteristic points is introduced. The experimental results are presented to be used for calibration and validation of numerical models. As an example, an elasto-plastic phase-field model using a Drucker-Prager yield condition is developed, which represents the pull-out behavior of straight fibers satisfyingly.
机译:本文旨在扩展有关嵌入抗压强度超过100MPa的高强度和超高强度混凝土中的单根钢纤维拉拔性能的现有知识。除了抗压强度外,还考虑了直纤维和带钩端的纤维以及不同的包埋长度。实验表明,直纤维的粘结强度随抗压强度的增加而增加,机械强度在钩子方面成倍增加。对于超高性能混凝土(UHPC)中的钩形端部纤维,发生了纤维断裂。特别注意以充分表征散射。特别是对于UHPC中的钩端光纤,传统的滑动平均法不能很好地代表最大负载。因此,引入了一种基于特征点的更精确的方法。实验结果被提出用于数值模型的校准和验证。例如,建立了使用Drucker-Prager屈服条件的弹塑性相场模型,该模型令人满意地表示了直纤维的拔出行为。

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