Ulaşan Hilal, Bajraktari Agron, Döngel Nihat, Imirzi Hasan Özgür, Söğütlü Cevdet
Department of Woodworking Industrial Engineering, Faculty of Technology, Gazi University, 06560 Ankara, Türkiye.
Design and Wood Technology, Faculty of Architecture, University of Applied Sciences, 70000 Ferizaj, Kosovo.
Materials (Basel). 2023 Jun 10;16(12):4307. doi: 10.3390/ma16124307.
In this study, the modulus of elasticity and flexural strength properties of laminated wood elements reinforced with steel mesh with different mesh openings were determined. In accordance with the purpose of the study, three- and five-layer laminated elements were produced from scotch pine ( L.) wood material, which is widely used in the wood construction industry in Türkiye. The 50, 70, and 90 mesh steel used as the support layer was placed between each lamella and pressed with polyvinylacetate (PVAc-D) and polyurethane (PUR-D) adhesives. Afterward, the prepared test samples were kept for 3 weeks at 20 °C temperature and 65 ± 5% relative humidity for 3 weeks. The flexural strength and modulus of elasticity in flexural of the prepared test samples were determined according to the TS EN 408: 2010+A1 standard by the Zwick universal tester. Multiple analysis of variance (MANOVA) was carried out using MSTAT-C 1.2 software to determine the effect of the modulus of elasticity and flexural strength on the obtained flexural properties, the mesh opening of the support layer, and the adhesive type. When the differences within or between groups were significant with a margin of error of 0.05, achievement rankings were made using the Duncan test on the basis of the least significant difference. According to the results of the research, the highest bending strength (120.3 N/mm) was obtained in three-layer samples reinforced with 50 mesh steel wire and bonded with Pol-D4 glue, and the highest modulus of elasticity (8969.3 N/mm) was obtained in three-layer samples reinforced with 50 mesh steel wire and bonded with Pol-D4 glue. As a result, the reinforcement of the laminated wood material with steel wire had an increasing effect on the strength. Accordingly, the use of 50 mesh steel wire can be recommended to increase mechanical properties.
在本研究中,测定了用不同网孔尺寸的钢网增强的层压木构件的弹性模量和抗弯强度特性。根据研究目的,采用土耳其木材建筑行业广泛使用的苏格兰松木(L.)制作了三层和五层的层压构件。用作支撑层的50目、70目和90目的钢网置于各薄片之间,并用聚醋酸乙烯酯(PVAc-D)和聚氨酯(PUR-D)胶粘剂加压。之后,将制备好的测试样品在20℃温度和65±5%相对湿度下保存3周。使用Zwick万能试验机根据TS EN 408:2010+A1标准测定制备好的测试样品的抗弯强度和抗弯弹性模量。使用MSTAT-C 1.2软件进行多变量方差分析(MANOVA),以确定弹性模量和抗弯强度对所得抗弯性能、支撑层的网孔尺寸以及胶粘剂类型的影响。当组内或组间差异在误差范围0.05内显著时,基于最小显著差异使用邓肯检验进行成绩排名。根据研究结果,在使用50目钢丝增强并用Pol-D4胶水粘结的三层样品中获得了最高抗弯强度(120.3 N/mm),在使用50目钢丝增强并用Pol-D4胶水粘结的三层样品中获得了最高弹性模量(8969.3 N/mm)。结果表明,用钢丝增强层压木材材料对强度有增强作用。因此,为提高力学性能,推荐使用50目的钢丝。