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Tensile behavior of fabric-cement-based composites reinforced with non-continuous load bearing yarns

机译:非连续承重纱增强的织物-水泥基复合材料的拉伸性能

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摘要

The main aim of this work was two-fold, to study the ability of the fabric within a TRC to carry loads when not all the yarns along the loading direction are continuous and to better understand the role of the transverse yarns when subjected to tensile loading. An excellent correlation was found between the behaviors of the composites and fabrics studied. The load values in stages one and two (while the matrix is still participating in load carrying) were much greater than expected, i.e., not proportionally correlated with the number of continuous yams. This suggests that during the first two stages of loading, not only the continuous yarns are active and carry the loads, but also the discontinuous (cut) ones participate in load bearing via stress transfer from the transverse yarns and the matrix. Use of an effective ratio between the cross-sections of the yarns and the matrix enables 'smooth' tensile behavior, essentia in structural elements. A greater matrix cross-section produces a composite with improved tensile stress (at the end of the multiple cracking) which is more ductile and having greater energy absorption but at the expense of a significant drop in load. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项工作的主要目的是双重的,以研究TRC中的织物在并非所有沿加载方向的纱线都是连续的情况下承受载荷的能力,并更好地理解横向纱线在承受拉伸载荷时的作用。 。发现复合材料和织物的性能之间存在极好的相关性。第一和第二阶段的负载值(矩阵仍在参与负载传输时)比预期的要大得多,即与连续纱线的数量不成比例。这表明在加载的前两个阶段中,不仅连续的纱线处于活动状态并承担载荷,而且不连续的(切断)纱线也通过从横向纱线和基体传递的应力来参与承载。在纱线的横截面和基体之间使用有效比率可以实现“平滑”的拉伸性能,即结构元件的本质。较大的基体横截面产生具有改善的拉伸应力的复合材料(在多次裂纹的末端),该复合材料具有更大的延展性和更大的能量吸收能力,但以明显降低负荷为代价。 (C)2019 Elsevier Ltd.保留所有权利。

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