Preliminary Design Proposals for Dovetail Wood Board Elements in Multi-Story Building Construction

Emre Ilgin, M. Karjalainen
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引用次数: 14

Abstract

Adhesives and metal fasteners play important roles in the composition and connections of engineered wood products (EWPs) such as cross-laminated timber and glue-laminated timber in the building construction industry. However, due to their petroleum-based nature, adhesives can cause toxic gas emissions, while metal fasteners compromise the end-of-life disposal and reusability of EWPs. These issues adversely affect the sustainable material properties of EWPs. Numerous studies have been conducted in the literature on the technological, ecological, social, and economic aspects of EWPs in construction with different construction solutions, but no studies have been conducted to evaluate the technical performance of dovetail wood board elements (DWBE) in multi-story or tall building construction. This study focuses on adhesive- and metal fastener-free DWBE as sustainable material alternatives for ecologically sensitive engineering solutions. Various preliminary design proposals are presented for DWBE using architectural modeling programs as an environmentally friendly approach intended for use in the timber construction industry. The research findings are based on a theoretical approach that has not yet been practically tested but is proposed considering existing construction practices that need further investigation, including technical performance tests. It is believed that this paper will contribute to the promotion and diffusion of DWBE for more diverse and innovative architectural and structural applications, particularly in multi-story timber building construction, as one of the key tools in tackling climate change challenges.
多层建筑中燕尾板构件的初步设计方案
在建筑行业中,粘合剂和金属紧固件在工程木制品(ewp)的组成和连接中起着重要作用,例如交叉层压木材和胶合层压木材。然而,由于其石油基性质,粘合剂会导致有毒气体排放,而金属紧固件则会影响ewp的报废处理和可重复使用性。这些问题对ewp的可持续材料性能产生了不利影响。文献中对不同施工方案的EWPs在施工中的技术、生态、社会和经济方面进行了大量研究,但没有研究对多层或高层建筑中燕尾木板元件(DWBE)的技术性能进行评估。这项研究的重点是无粘合剂和金属紧固件的DWBE作为生态敏感工程解决方案的可持续材料替代品。为DWBE提出了各种初步设计建议,使用建筑建模程序作为一种环保方法,用于木结构建筑行业。研究结果基于一种尚未经过实际检验的理论方法,但建议考虑需要进一步调查的现有建筑实践,包括技术性能测试。相信本文将有助于推广和推广DWBE,使其应用于更多样化和创新的建筑和结构,特别是在多层木结构建筑中,作为应对气候变化挑战的关键工具之一。
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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