Cementitious versus alkali-activated textile reinforced mortars for combined energy and seismic upgrade of masonry panels

IF 3.4 3区 工程技术 Q2 CONSTRUCTION & BUILDING TECHNOLOGY
Panagiotis Kapsalis, Paraskevi D. Askouni, Catherine G. Papanicolaou, Thanasis C. Triantafillou
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Abstract

Masonry retrofitting systems combining seismic with energy upgrading features are increasingly gaining popularity in the scientific community during the past years since they simultaneously address two of the most pressing needs related to the existing building stock. This is commonly realized by applying textile reinforced mortar (TRM) overlays combined with thermal insulation boards on building envelopes. At the same time, the urge for eco-friendly and environmentally sustainable interventions calls for low-cement or even cement-free solutions. This study aims to combine these requirements by experimentally investigating an integrated seismic/energy retrofitting system that incorporates alkali-activated materials (AAM) based on industrial waste. The system is compared to a counterpart one comprising conventional cementitious materials. The relative position of the strengthening and the thermal insulation layers is yet another parameter of this study. The latter includes tests performed on retrofitted masonry specimens aiming to assess their mechanical performance in terms of masonry-to-overlay bond and flexural capacity. This is achieved by shear bond tests, and in-plane and out-of-plane bending tests, respectively. The results show that the replacement of cementitious binders by alkali-activated ones in TRM jackets is a promising alternative, eliminating cement consumption while ensuring comparable load bearing capacities with ‘conventional’ TRM systems. It is also indicated that the effectiveness of the AAM-based system is improved when the strengthening layer is applied externally, i.e., on top of the insulating boards. However, further research is needed for the optimization of the system’s mechanical and long-term performance.

Abstract Image

水泥与碱活化纤维增强砂浆用于砌体面板的联合节能和抗震升级
在过去的几年里,结合抗震和能源升级功能的砌体改造系统在科学界越来越受欢迎,因为它们同时解决了与现有建筑存量相关的两个最紧迫的需求。这通常是通过在建筑围护结构上应用纺织增强砂浆(TRM)覆盖层和保温板来实现的。与此同时,对生态友好和环境可持续干预措施的迫切需求要求采用低水泥甚至无水泥的解决方案。本研究旨在通过实验研究一种集成了基于工业废料的碱活性材料(AAM)的综合地震/能源改造系统,将这些需求结合起来。将该系统与包含常规胶凝材料的对应系统进行比较。加固层与保温层的相对位置是本研究的另一个参数。后者包括对改造后的砌体试件进行的测试,旨在评估其砌体-覆盖层粘结和抗弯能力方面的机械性能。这是通过剪切粘结试验、面内和面外弯曲试验分别实现的。结果表明,在TRM夹套中,用碱活化胶凝剂替代胶凝剂是一种很有前途的选择,既可以减少水泥消耗,又能确保与“传统”TRM系统相当的承载能力。研究还表明,将强化层施加于外部,即在绝缘板的顶部,可以提高基于aam的系统的有效性。然而,系统的力学性能和长期性能的优化还需要进一步的研究。
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来源期刊
Materials and Structures
Materials and Structures 工程技术-材料科学:综合
CiteScore
6.40
自引率
7.90%
发文量
222
审稿时长
5.9 months
期刊介绍: Materials and Structures, the flagship publication of the International Union of Laboratories and Experts in Construction Materials, Systems and Structures (RILEM), provides a unique international and interdisciplinary forum for new research findings on the performance of construction materials. A leader in cutting-edge research, the journal is dedicated to the publication of high quality papers examining the fundamental properties of building materials, their characterization and processing techniques, modeling, standardization of test methods, and the application of research results in building and civil engineering. Materials and Structures also publishes comprehensive reports prepared by the RILEM’s technical committees.
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