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胶合木系统中阻燃化学品及方法的概述与评估

Overview and Evaluation of Chemicals and Methods for Flame Retardancy in Glued Laminated Wood Systems.

作者信息

Depczynska Ewelina, Burawska Izabela

机构信息

Paged LabTech, Kwiatowa 1, 12-200 Pisz, Poland.

Department of Technology and Entrepreneurship in Wood Industry, Institute of Wood Sciences and Furniture, Warsaw University of Life Sciences-SGGW, 159 Nowoursynowska St., 02-776 Warsaw, Poland.

出版信息

Polymers (Basel). 2025 May 24;17(11):1459. doi: 10.3390/polym17111459.

Abstract

Due to the development of wooden construction as an ecological alternative to brick construction with a high carbon footprint, there is increasing interest in materials such as plywood and LVL (Laminated Veneer Lumber). These engineered wood products have many advantages compared to wood, such as a more uniform distribution of bending, shear, tensile, and compressive strength. However, they require improvements in fire and biological resistance. The flammability of wood and wood composites is a challenge that will allow these materials to stand out as structural or finishing materials. During combustion, toxic gases may be released, which can be harmful to people and the environment. Therefore, it is crucial to clarify whether fire-resistant wood materials are truly resistant to fire and non-toxic in fire conditions. On the other hand, flame retardants should not reduce the mechanical parameters of panels. This work analyses the current requirements (standards) regarding plywood intended for construction and the existing flame retardants for plywood and LVL based on the latest reports in the literature. We then propose an original method for evaluating future chemicals. Additionally, methods for assessing the flame retardancy of plywood and LVL based on the latest reports in the literature are described, and an original method for assessing flame retardancy methods is proposed.

摘要

由于木质建筑作为碳足迹高的砖石建筑的生态替代品得到了发展,人们对胶合板和单板层积材(LVL)等材料的兴趣日益浓厚。与木材相比,这些工程木制品具有许多优点,例如弯曲、剪切、拉伸和抗压强度分布更均匀。然而,它们需要在防火和抗生物性能方面加以改进。木材和木材复合材料的易燃性是一个挑战,这将决定这些材料能否作为结构材料或饰面材料脱颖而出。在燃烧过程中,可能会释放有毒气体,这对人和环境都可能有害。因此,弄清楚防火木材材料在火灾条件下是否真的耐火且无毒至关重要。另一方面,阻燃剂不应降低板材的机械性能参数。这项工作根据文献中的最新报告,分析了建筑用胶合板的现行要求(标准)以及胶合板和LVL现有的阻燃剂。然后,我们提出了一种评估未来化学品的原创方法。此外,还描述了基于文献最新报告评估胶合板和LVL阻燃性的方法,并提出了一种评估阻燃性方法的原创方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14de/12158134/ac96595d5703/polymers-17-01459-g001.jpg

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