Majewski Adam, Krystofiak Tomasz, Smardzewski Jerzy
Department of Furniture Design, Faculty of Forestry and Wood Technology, Poznan University of Life Sciences, 60-637 Poznań, Poland.
Department of Wood Based Materials, Faculty of Forestry and Wood Technology, Poznan University of Life Sciences, 60-637 Poznań, Poland.
Materials (Basel). 2020 Sep 22;13(18):4212. doi: 10.3390/ma13184212.
The development of both light and strong wood-derived materials is an interesting research area, particularly in terms of usability in, e.g., furniture constructions. Honeycomb panels being current industry standard are relatively thick (32 mm and 40 mm), thus their attractiveness in designing furniture is limited. In a few studies, it has been shown that honeycomb panels with paper cores are characterized by unsatisfactory mechanical properties, especially when the composite thickness is less than 20 mm. From the literature, it is also evident that mechanical properties might be improved by introducing auxetic features into the core structure. Even though it is a concept with great potential, there are a few studies dealing with honeycomb panels with auxetic cores made of paper. Furthermore, there is no research on the corner joints made from such material. For this reason, the aim of the study was to test the bending behavior of the corner adhesive joints made of honeycomb panels with double arrow-shaped auxetic cores. Within the research, the core cell was adopted based on literature and preliminary studies, paper auxetic cores were produced by the use of the designed and 3d printed device, and joints stiffness and strength were calculated analytically based on the experiment results. Evaluated corner joints stiffness, both in compression and tension test, is greater for samples made of panels with designed auxetic cores. Surprisingly, in the analyzed range of elasticity, it was statistically proved that the values of joint stiffness coefficient K did not vary significantly between compared joints pairs.
开发轻质且坚固的木质衍生材料是一个有趣的研究领域,特别是在诸如家具结构等方面的适用性方面。作为当前行业标准的蜂窝板相对较厚(32毫米和40毫米),因此它们在家具设计中的吸引力有限。在一些研究中,已经表明纸芯蜂窝板的机械性能不尽人意,特别是当复合材料厚度小于20毫米时。从文献中也可以明显看出,通过在芯结构中引入负泊松比特征可以改善机械性能。尽管这是一个具有巨大潜力的概念,但涉及由纸制成的负泊松比芯蜂窝板的研究却很少。此外,对于由这种材料制成的角接头没有相关研究。因此,本研究的目的是测试由具有双箭头形负泊松比芯的蜂窝板制成的角粘结接头的弯曲行为。在研究过程中,根据文献和初步研究采用了芯单元,通过使用设计和3D打印的设备制作了纸质负泊松比芯,并根据实验结果通过分析计算了接头的刚度和强度。对于由具有设计的负泊松比芯的面板制成的样品,在压缩和拉伸试验中评估的角接头刚度更大。令人惊讶的是,在分析的弹性范围内,经统计证明,相比的接头对之间的接头刚度系数K值没有显著差异。