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垂直荷载作用下橡胶混凝土联锁砌体的有限元分析

Finite Element Analysis of Rubberized Concrete Interlocking Masonry under Vertical Loading.

作者信息

Al-Fakih Amin, Al-Osta Mohammed A

机构信息

Interdisciplinary Research Center for Construction and Building Materials, King Fahd University of Petroleum and Minerals, Dhahran 31261, Saudi Arabia.

Department of Civil and Environmental Engineering, King Fahd University of Petroleum and Minerals, Dhahran 31261, Saudi Arabia.

出版信息

Materials (Basel). 2022 Apr 13;15(8):2858. doi: 10.3390/ma15082858.

Abstract

Fine aggregate and cement have been partially replaced by 10% and 56% crumb rubber and class F-fly ash, respectively, in order to manufacture rubberized concrete interlocking bricks (RCIBs). The newly developed product has been used for masonry construction without the need for mortar (mortarless), and the experimental testing under compression load was investigated by Al-Fakih et al. Therefore, in line with that, this study carried out finite element (FE) analysis for experimental result validation of masonry walls and prisms made of RCIBs. ANSYS software was utilized to implement the FE analysis, and a plasticity detailed micro-modeling approach was adopted. Parametric studies were carried out on masonry prisms to investigate the effect of the slenderness ratio and the elastic modulus of grout on the prism behavior. The results found that the adopted FE model has the ability to predict the structural response, such as compressive strength, stiffness, and failure mechanism, of the interlocking masonry prisms with about a 90% agreement with the experimental results. Based on the parametric studies, the compressive strength for a 6-course prism is approximately 68% less than a 3-course prism and 60% less than a 5-course prism, which means that the slenderness ratio plays a vital role in the behavior of the RCIB masonry prism under the vertical compression load. Moreover, the results showed that the difference between FE and experimental results of the walls was less than 16%, indicating a good match. The findings also reported that masonry walls and prisms experienced higher ductility measured by the post-failure loading under compression. The finite element model can be used for further investigation of masonry systems built with rubberized concrete interlocking bricks.

摘要

为了制造橡胶混凝土联锁砖(RCIBs),细集料和水泥分别被10%的碎橡胶和56%的F类粉煤灰部分替代。新开发的产品已用于无需砂浆(无砂浆)的砌体施工,Al-Fakih等人对其在压缩载荷下的试验测试进行了研究。因此,与此一致,本研究对由RCIBs制成的砌体墙和棱柱进行了有限元(FE)分析,以验证试验结果。利用ANSYS软件进行有限元分析,并采用了塑性详细微观建模方法。对砌体棱柱进行了参数研究,以研究长细比和灌浆弹性模量对棱柱性能的影响。结果发现,所采用的有限元模型能够预测联锁砌体棱柱的结构响应,如抗压强度、刚度和破坏机制,与试验结果的吻合度约为90%。基于参数研究,6层棱柱的抗压强度比3层棱柱约低68%,比5层棱柱约低60%,这意味着长细比在垂直压缩载荷下RCIB砌体棱柱的性能中起着至关重要的作用。此外,结果表明,墙体的有限元结果与试验结果之间的差异小于16%,表明匹配良好。研究结果还报告称,砌体墙和棱柱在压缩破坏后加载时具有更高的延性。该有限元模型可用于进一步研究用橡胶混凝土联锁砖建造的砌体系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ba9/9026464/5adc4ffc629b/materials-15-02858-g001.jpg

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