交叉层压木材对大气作用的阻力

P. N. Smirnov, K. A. Ustimenko, A. Lomakin, K. Aksenov
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摘要

介绍。交叉层压木材(CLT)已经开始在俄罗斯赢得市场。湿度对木结构建筑的运行可靠性起着重要的作用。对包括大气在内的不同温度和湿度作用的影响缺乏全面的研究,阻碍了clt的发展。为了修订SP 64.13330.2017对CLT结构设计和防护的要求,本工作确定了大气作用对各类CLT建筑结构的影响。材料和方法。按照现行法规文件生产的CLT墙板和楼板样品被用作研究对象。为了确定大气作用对CLT板的强度和弹性特性的影响,开展了现场试验。大气作用对CLT板的强度和弹性特性有不利影响。楼板和墙板样品的强度和弹性特性的下降是不同的。根据CLT抗大气作用的实验结果提出的一些建议应纳入SP 64.13330.2017中,用于使用CLT结构的建筑物的设计、制造和施工。
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RESISTANCE OF CROSS-LAMINATED TIMBER TO ATMOSPHERIC ACTIONS
Introduction. Cross-laminated timber (CLT) has started to win a market in Russia. Humidity plays an important role in ensuring the operational reliability of buildings based on timber structures. The lack of comprehensive studies on the influence of varying temperature and humidity actions, including atmospheric ones, hinders the development of CLT.Aim. In this work, the influence of atmospheric actions on various types of CLT building structures was determined in order to amend the requirements in SP 64.13330.2017 for the design and protection of CLT structures.Materials and methods. Samples of CLT wall panels and floor slabs manufactured as per the current regulatory documents were used as an object of research. Field tests were developed in order to determine the influence of atmospheric actions on the strength and elastic characteristics of CLT panels.Results. Atmospheric actions have an adverse effect on the strength and elastic characteristics of CLT panels. The decrease in the strength and elastic characteristics varies for the samples of floor slabs and wall panels.Conclusion. It is proposed that several recommendations given based on the experimental results on the resistance CLT to atmospheric actions are to be included in SP 64.13330.2017 for the design, manufacture, and construction of buildings using CLT structures.
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