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交变拉压状态下裂缝宽度对水泥基材料中PVA微纤维裂缝桥接行为及劣化的影响

Influence of Crack Width in Alternating Tension-Compression Regimes on Crack-Bridging Behaviour and Degradation of PVA Microfibres Embedded in Cement-Based Matrix.

作者信息

Ranjbarian Majid, Ma Xiaomeng, Mechtcherine Viktor

机构信息

Institute of Construction Materials, TU Dresden, 01062 Dresden, Germany.

出版信息

Materials (Basel). 2020 Sep 21;13(18):4189. doi: 10.3390/ma13184189.

Abstract

The use of high-performance polymeric microfibres in enhancing the ductility of cementitious composites is widespread. A vivid example is the application of strain-hardening cement-based composites (SHCCs) in the construction industry. However, there are a few challenges which need to be addressed with respect to material design. For instance, the ductility of SHCC diminishes under alternating tension-compression loading, where the fibres lose their crack-bridging capacity due to specific damage mechanisms. The damage development and its influence on crack-bridging capacity have been studied in previous works by the authors. The paper at hand focuses on the influence of crack width on the crack-bridging capacity of polymeric microfibres in conjunction with the number of cycles in an alternating tension-compression regime with different cyclic compressive force levels. It shows that bridging capacity can be markedly influenced by crack width: an increase in crack width leads to more severe damage to the fibres and thus to lower crack-bridging capacity. Then, after analysing the specimens by means of electron microscopy, a hypothesis is presented to address the effect of crack width on damage development. Finally, a simple approach is proposed for estimating the influence of different parameters on fibre degradation.

摘要

高性能聚合物微纤维在增强水泥基复合材料的延展性方面应用广泛。一个生动的例子是应变硬化水泥基复合材料(SHCC)在建筑行业中的应用。然而,在材料设计方面仍有一些挑战需要解决。例如,SHCC在交替拉压荷载作用下的延展性会降低,在这种情况下,由于特定的损伤机制,纤维会失去其裂纹桥接能力。作者在之前的研究中已经对损伤发展及其对裂纹桥接能力的影响进行了研究。本文重点关注在不同循环压应力水平的交替拉压状态下,裂纹宽度对聚合物微纤维裂纹桥接能力的影响以及循环次数的影响。结果表明,裂纹宽度会显著影响桥接能力:裂纹宽度的增加会导致纤维受到更严重的损伤,从而降低裂纹桥接能力。然后,通过电子显微镜对试样进行分析后,提出了一个假设来解释裂纹宽度对损伤发展的影响。最后,提出了一种简单的方法来估算不同参数对纤维降解的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6f9/7560503/e00fc4817ee4/materials-13-04189-g001.jpg

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