Hlásková Luďka, Procházka Jiří, Novák Vít, Čermák Petr, Kopecký Zdeněk
Department of Wood Science and Technology, Faculty of Forestry and Wood Technology, Mendel University in Brno, 61300 Brno, Czech Republic.
Materials (Basel). 2021 Oct 19;14(20):6218. doi: 10.3390/ma14206218.
This work examines the effect of thermal modification temperatures in the production of thermally modified wood on the cutting and fracture parameters when cutting heat-treated spruce wood by a circular sawblade machine. The samples were thermally modified at 160, 180, 200, and 220 °C. One sample was unmodified and was used as a reference sample. On the basis of the performed experiments, the fracture parameters (fracture toughness and shear yield strength) were calculated for the axial-perpendicular direction of cutting. In comparison with the theoretical assumptions, the influence of temperature on the cutting and fracture parameters was confirmed. Thermally treated wood is characterized by increased fragility and susceptibility to crack formation, as well as reduced density, bending strength, and shear strength. These properties significantly affect the size of the cutting force and feed force, as well as the fracture parameters. As the temperature increases, the values of these parameters decrease. The mentioned material characteristics could be useful for the optimization of the cutting process, as well as for the issue of energy consumption during the machining of heat-treated wood.
本研究探讨了热改性木材生产过程中热改性温度对使用圆锯机切割热处理云杉木时的切割和断裂参数的影响。样品在160、180、200和220°C下进行热改性。一个样品未改性,用作参考样品。基于所进行的实验,计算了切割轴向垂直方向的断裂参数(断裂韧性和剪切屈服强度)。与理论假设相比,证实了温度对切割和断裂参数的影响。热处理木材的特点是脆性增加、易形成裂纹,以及密度、抗弯强度和抗剪强度降低。这些特性显著影响切削力和进给力的大小以及断裂参数。随着温度升高,这些参数的值会降低。上述材料特性对于优化切割工艺以及热处理木材加工过程中的能耗问题可能是有用的。