Restrained Shrinkage Tests on Fiber Reinforced Cementitious Composites

N. Banthia, M. Azzabi, M. Pigeon
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引用次数: 13

Abstract

The usefulness of fiber reinforcement in improving the cracking resistance of cement-based materials under restrained shrinkage conditions is indisputable. In fact, in many situations, it may be the sole reason for adding fibers to concrete. In spite of this fact, there is no universally accepted technique of demonstrating or quantifying the effectiveness of fibers under the conditions of restrained shrinkage. This paper describes a newly developed technique where prismatic specimens with a linear restraint along the longitudinal axis are subjected to a drying environment such that conditions of uni-axial tension are created. The specimen cracks under these conditions and if fiber reinforcement is present, the influence of fibers on the cracking pattern can be established. Results with seven types of fibers are presented. Based on the observations of the crack patterns, a "fiber efficiency factor" is proposed that appears to be an appropriate basis for characterizing the fibers.
纤维增强胶凝复合材料的约束收缩试验
纤维增强在提高水泥基材料在约束收缩条件下的抗裂性方面的作用是无可争辩的。事实上,在许多情况下,这可能是向混凝土中添加纤维的唯一原因。尽管如此,目前还没有普遍接受的技术来证明或量化纤维在限制收缩条件下的有效性。本文描述了一种新开发的技术,其中棱镜标本与线性约束沿纵轴受到干燥的环境,使条件的单轴张力被创建。试样在这些条件下开裂,如果纤维增强存在,纤维对开裂模式的影响可以建立。给出了7种纤维的实验结果。根据对裂纹模式的观察,提出了“纤维效率因子”,这似乎是表征纤维的适当基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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