Burawska-Kupniewska Izabela, Beer Piotr
Institute of Wood Sciences and Furniture, Warsaw University of Life Sciences-SGGW, Nowoursynowska 159, 02-776 Warsaw, Poland.
Materials (Basel). 2021 May 24;14(11):2780. doi: 10.3390/ma14112780.
The demand for timber has increased significantly in recent years. Therefore, reliable tools are needed to predict the mechanical properties of sawn timber, especially for structural applications. Very complex models require a lot of input data for analysis, which cannot always be guaranteed, especially in industrial practice. Thus, a simplified model for material description was developed and assessed with experiments (static bending tests carried out in accordance with the guidelines suggested in the European standard EN 408) and an analytical approach (gamma method according to the guidelines given in the European standard EN 1995). The effective stiffness was calculated as a major parameter, which has an influence on the elements' behavior. The model included a near-surface mounted (NSM) local reinforcement technique, with CFRP strips of Scots pine timber beams being subjected to bending stresses. It is anticipated that the developed model can be a starting point for the repair engineering field, contributing to decision-making regarding conservation technique selection and range. Next, improvements of the model will provide more and more realistic results for numerical analysis in terms of the obtained failure mechanisms for sawn timber elements.
近年来,对木材的需求显著增加。因此,需要可靠的工具来预测锯材的力学性能,特别是用于结构应用时。非常复杂的模型需要大量输入数据进行分析,而这在实际中往往难以保证,尤其是在工业实践中。因此,开发了一种简化的材料描述模型,并通过实验(按照欧洲标准EN 408建议的指南进行的静态弯曲试验)和分析方法(根据欧洲标准EN 1995给出的指南采用的伽马方法)进行评估。有效刚度作为一个主要参数进行计算,它会影响构件的性能。该模型包括一种近表面粘贴(NSM)局部加固技术,其中苏格兰松木梁的CFRP条带承受弯曲应力。预计所开发的模型可成为修复工程领域的一个起点,有助于在保护技术选择和范围方面做出决策。接下来,模型的改进将为锯材构件的数值分析提供越来越符合实际的失效机制结果。