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Effect of casting flow defects on the crack propagation in UHPFRC thin slabs by means of stereovision Digital Image Correlation

机译:立体视觉数字图像相关技术研究铸坯缺陷对UHPFRC薄板裂纹扩展的影响

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摘要

Owing to their outstanding compressive strength and considerable cracking resistance, Ultra High Performance Fibre Reinforced Concrete (UHPFRC) have been recently successfully applied to thin bidimensional elements, e.g., plate and shells. As a critical aspect of UHPFRC technology,is work aims at experimentally investigating the effect of fibre orientation on the damage behaviour of UHPFRC 2-way thin slabs by means of stereovision digital image analysis. To this aim, the fibre orientation was perturbed by introducing a simple divider line as a temporary barrier to the casting flow of fresh concrete. The casting flow defect affected the fibre distribution by creating a weakened plane with a strong discontinuity. By varying the line direction and the position of the concentrated load position, six different slab configurations were fabricated and tested under punching load with hyperstatic boundary conditions. Then, the 3-D deformation field was measured by means of stereovision-based Digital Image Correlation (DIC). The results showed the critical importance of the fibre distribution on the microcracking growth and the structural ductility. The casting flow defect had a major impact on the observed microcrack pattern and growth especially before the peak load. When the defect crossed the loading point, the microcracks did not fully develop with an important reduction of the load-carrying capacity and the structural ductility. Finally, a simplified application of yield line theory allowed estimating the effect on the fibre distribution of the casting flow defects. 2016 Elsevier Ltd. All rights reserved.
机译:由于其出色的抗压强度和相当大的抗裂性,超高性能纤维混凝土(UHPFRC)最近已成功地应用于薄的二维元件,例如板和壳。作为UHPFRC技术的一个关键方面,工作旨在通过立体视觉数字图像分析,通过实验研究纤维取向对UHPFRC 2向薄板损伤行为的影响。为此,通过引入一条简单的分隔线作为对新鲜混凝土浇筑流动的临时障碍,使纤维取向受到干扰。铸件流动缺陷会通过创建具有强烈不连续性的弱化平面来影响纤维分布。通过改变线的方向和集中载荷位置的位置,制造了六种不同的平板结构,并在具有超静力边界条件的冲压载荷下进行了测试。然后,借助基于立体视觉的数字图像关联(DIC)测量3-D变形场。结果表明,纤维分布对微裂纹生长和结构延展性至关重要。铸件流动缺陷对观察到的微裂纹模式和生长有重大影响,尤其是在峰值载荷之前。当缺陷超过加载点时,微裂纹并未完全发展,从而显着降低了承载能力和结构延展性。最后,屈服线理论的简化应用可以估算对铸件流动缺陷的纤维分布的影响。 2016 Elsevier Ltd.保留所有权利。

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