A review of mechanical properties and carbonation behavior evolution of lime mortar for architectural heritages restoration

Zhenmeng Chen, Hui Liu, Lingjie Xu, Wei Ge
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Abstract

Using lime mortar to connect, protect and decorate buildings was a very common technique in ancient times. Understanding the mechanical properties and carbonation mechanism of lime mortar is the basis for successful restoration and protection of architectural heritage. The compatibility and durability of lime mortar and architectural heritage promote the study of related mechanisms, so that it can adapt to the current reality. In this paper, the factors affecting the mechanical properties of lime mortar are summarized, and the carbonization principle of lime mortar is analyzed. The effects of water-binder ratio, aggregate mineralogy and particle size, inorganic additives and organic additives on the mechanical properties of lime mortar were elaborated in detail, especially the action behavior of organic additives in the carbonation process of lime mortar. Suggestions for enhancing the mechanical properties of lime mortar are put forward, which provides a theoretical basis for improving the compatibility and durability of materials in the restoration of ancient buildings.
建筑遗产修复用石灰砂浆的机械性能和碳化行为演变综述
使用石灰砂浆连接、保护和装饰建筑物在古代是一种非常普遍的技术。了解石灰砂浆的机械性能和碳化机理是成功修复和保护建筑遗产的基础。石灰砂浆与建筑遗产的兼容性和耐久性促进了相关机理的研究,使其能够适应当前的现实情况。本文总结了影响石灰砂浆力学性能的因素,分析了石灰砂浆的碳化原理。详细阐述了水胶比、骨料矿物组成和粒径、无机添加剂和有机添加剂对石灰砂浆力学性能的影响,尤其是有机添加剂在石灰砂浆碳化过程中的作用行为。提出了提高石灰砂浆力学性能的建议,为提高古建筑修复中材料的相容性和耐久性提供了理论依据。
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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