动态冲击后的砌体修复。计算和设计方法

Q4 Engineering
Oleg Kabantsev, Oleg Simakov
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引用次数: 0

摘要

我们鼓励土木工程师在现代生活中应用新技术,改进和调整众所周知的方法。针对几个世纪以来众所周知的非加固砌体(URM)材料开发了大量修复和加固技术。由于建筑物和结构在设计、施工或长期运行过程中出现错误,砌体可能需要修复和加固。此外,在地震多发地区,砌体结构也需要加固。砌体结构在军事行动中会受到动态冲击,对其进行加固的工作始于第二次世界大战之后。在过去的七十年里,建筑技术取得了长足的进步,如今,喷射混凝土作为一种广为人知的加固技术,其应用也有了充分的理由。本文探讨了喷射混凝土作为一种修复因爆炸冲击而受损的砌体的方法。文章提供了材料和部分结构的实验室测试结果以及改进的分析方法。文章还介绍了对建筑物进行计算机辅助分析的方法,其中考虑到了分阶段施工的性质以及外部喷射混凝土承受荷载的能力。结论部分讨论了建筑物的实际修复问题,并得出结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ВОССТАНОВЛЕНИЕ КАМЕННОЙ КЛАДКИ ПОСЛЕ ДИНАМИЧЕСКИХ ВОЗДЕЙСТВИЙ. МЕТОДЫ РАСЧЕТА И ПРОЕКТИРОВАНИЯ
Civil engineers are encouraged to apply novel techniques, to improve and to adapt well-known methods amid the reality of modern life. An impressive number of restoration and strengthening techniques are developed for unreinforced masonry (URM) material well-known for centuries. Masonry may need restoration and strengthening due to errors made in the course of design, construction or long-term operation of buildings and structures. Besides, masonry needs strengthening in seismic areas. Strengthening of masonry structures, subjected to dynamic impacts during military operations, was initiated after the Second World War. Construction technologies advanced considerably over the last seventy years, and today shotcrete, a widely known strengthening technique, can be applied for a good reason. This article addresses shotcrete as a method for restoring masonry damaged by explosion impacts. Results of the laboratory testing of materials and parts of structures are provided together with improved methods of analysis. The methodology for computer-aided analysis of buildings is also presented, taking into account the staged nature of work and the ability of external shotcrete to support loads. Practical restoration of buildings is addressed in the conclusions section, and conclusions are drawn there.
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来源期刊
CiteScore
0.80
自引率
0.00%
发文量
43
审稿时长
4 weeks
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