Jorda Johannes, Kain Günther, Barbu Marius-Catalin, Haupt Matthias, Krišťák Ľuboš
Forest Products Technology and Timber Construction Department, Salzburg University of Applied Sciences, Markt 136a, 5431 Kuchl, Austria.
Department of Wood Science and Technology, Mendel University, Zemědělská 3, 61300 Brno, Czech Republic.
Polymers (Basel). 2020 Nov 29;12(12):2852. doi: 10.3390/polym12122852.
The current work deals with three dimensionally molded plywood formed parts. These are prepared in two different geometries using cut-outs and relief cuts in the areas of the highest deformation. Moreover, the effect of flax fiber reinforcement on the occurrence and position of cracks, delamination, maximum load capacity, and on the modulus of elasticity is studied. The results show that designs with cut-outs are to be preferred when molding complex geometries and that flax fiber reinforcement is a promising way of increasing load capacity and stiffness of plywood formed parts by respectively 76 and 38% on average.
当前的工作涉及三维模压胶合板成型部件。这些部件采用两种不同的几何形状制备,在变形最大的区域使用切口和减压切口。此外,还研究了亚麻纤维增强对裂纹的出现和位置、分层、最大承载能力以及弹性模量的影响。结果表明,在模压复杂几何形状时,带有切口的设计更可取,并且亚麻纤维增强是一种很有前景的方法,可使胶合板成型部件的承载能力和刚度平均分别提高76%和38%。