Durability assessment of brick and stone structures in engineering surveys

D. Zheldakov, O. Ponomarev, A. Minasyan, S. Tursukov
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Abstract

Introduction. According to the main legal acts of the Russian Federation that regulate the procedure of inspection and monitoring of buildings and structures, the technical statement should include the results obtained during the studies and calculations of possible temporal variations. However, these results are virtually absent in the monitoring technical documentation presented today. In the case of brickwork, this is primarily due to the lack of reliable methods for durability surveys. For example, the formation of salts in the brick material can affect its durability. Such reactions are considered as the side reactions of the second type, i.e., reactions caused by external effects.Aim. To develop an engineering technique for assessing the durability of a brick material on the basis of a mathematical model.Materials and methods. The article presents the results obtained in a survey of a free-standing brick building, as part of the “GES-2” Moscow multifunctional complex built in 1906, using the developed techniques. The process of brick material destruction is considered according to the laws of physical chemistry and described by a multi-stage process.Results. The developed technique for assessing the durability of building ceramics can be additionally used to assess the residual durability of a historical building brick material.Conclusion. During the durability assessment of building walls made of ceramic masonry materials, it is necessary to take into account not only the frost resistance, but also the chemical destruction of materials. It is proposed to supplement the masonry inspection technique outlined in GOST 31937-2011 with the following items: sampling rules for the subsequent determination of the moisture content in structural materials with a statement of the requirements for equipment; sampling rules for the subsequent determination of the material residual durability, including the technique for calculating residual durability.
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工程勘察中砖石结构物耐久性评价
介绍。根据俄罗斯联邦规定建筑物和结构的检查和监测程序的主要法律,技术说明应包括在研究和计算可能的时间变化期间获得的结果。然而,这些结果在今天提供的监测技术文档中实际上是不存在的。就砖墙而言,这主要是由于缺乏可靠的耐久性调查方法。例如,砖材料中盐的形成会影响其耐久性。这类反应被认为是第二类副反应,即由外界作用引起的反应。开发一种基于数学模型评估砖材料耐久性的工程技术。材料和方法。本文介绍了对一座独立砖建筑的调查结果,该建筑是1906年建造的莫斯科“GES-2”多功能综合体的一部分,使用了先进的技术。根据物理化学规律考虑砖材料的破坏过程,并将其描述为一个多阶段的过程。所开发的建筑陶瓷耐久性评估技术还可用于评估历史建筑砖材料的剩余耐久性。在对陶瓷砌体材料制成的建筑墙体进行耐久性评估时,不仅要考虑其抗冻性,还要考虑材料的化学破坏。建议用以下项目补充GOST 31937-2011中概述的砌体检测技术:随后测定结构材料中水分含量的抽样规则和设备要求声明;材料剩余耐久性后续测定的抽样规则,包括剩余耐久性的计算技术。
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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