磨削速度和木材处理添加剂对经过焯水处理的鹿皮、杨木和榉木表面粗糙度的影响

Hasan Talić, Atif Hodžić
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摘要

加工表面的粗糙度是木工加工过程中的一个关键因素,因为它影响到以后的粘合、打磨、压制、表面处理和保护以及组装等操作的质量。加工表面的质量由许多加工工艺参数和材料特性决定,正确选择和优化这些参数将获得最佳效果。本文旨在说明特定参数和木材种类如何影响表面粗糙度。在实验中,使用了含水率相同的三种木材:榉木(Fagus sylvatica)、杉木(Abies alba)和杨木(Populus alba),并创建了进料速度(5 和 8 米/分钟)和切削深度(2 和 4 毫米)的组合。加工在比利时 RoblandMachines 公司生产的 SD-B-510 系列刨木机(加厚机)上进行。随后,对 Ra、Rz、Rt 和 Rq 进行了粗糙度测量,重点是轮廓的平均偏差 Ra,并对结果进行了分析,结果表明,根据木材种类的不同,相同的加工参数会获得不同的粗糙度值。榉木的最大粗糙度值(5.36 μm)和最小粗糙度值(2.41 μm)(Ra)之差为 2.95 μm,杨木为 1.25 μm,杉木为 1.34 μm。
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Utjecaj posmične brzine i dodatka za obradu drva na hrapavost površine jelovine, topolovine i bukovine obrađenih blanjanjem
The roughness of the machined surface is a crucial factor in the woodworking process because it influences the quality of future operations like gluing, sanding, pressing, surface treatment and protection, and assembly. The quality of the machined surface is determined by a number of machining process parameters as well as material properties, and their proper selection and optimization will yield the best results. The purpose of this article is to demonstrate how specific parameters and wood species affect surface roughness. In the experiment, three species of wood: beech (Fagus sylvatica), fir (Abies alba), and poplar (Populus alba) with the same moisture content were used, and combinations of feed speed (5 and 8 m/min) and cutting depth (2 and 4 mm) were created. The processing was done on a wood planer (thickener) machine of the SD-B-510 series manufactured by RoblandMachines Belgium. Following that, roughness measurements of Ra, Rz, Rt, and Rq were taken with a focus on the mean deviation of the profile Ra, and an analysis of the results was presented, revealing that different roughness values are obtained with the same processing parameters depending on the wood species. The difference between the greatest (5.36 μm) and lowest (2.41μm) roughness values (Ra) for beech is 2.95 μm, 1.25 μm for poplar, and 1.34 μm for fir.
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