Faculty of Forestry, Department of Forest Products Engineering, Duzce University, 81620, Duzce, Turkey.
Faculty of Technical Education, Department of Furniture and Design, Duzce University, 81620, Duzce, Turkey.
Int J Mol Sci. 2008 Sep;9(9):1772-1783. doi: 10.3390/ijms9091772. Epub 2008 Sep 16.
Heat treatment is often used to improve the dimensional stability of wood. In this study, the effects of heat treatment on the physical properties and surface roughness of Turkish Hazel (Corylus colurna L.) wood were examined. Samples obtained from Kastamonu Forest Enterprises, Turkey, were subjected to heat treatment at varying temperatures and for different durations. The physical properties of heat-treated and control samples were tested, and oven-dry density, air-dry density, and swelling properties were determined. A stylus method was employed to evaluate the surface characteristics of the samples. Roughness measurements, using the stylus method, were made in the direction perpendicular to the fiber. Four main roughness parameters, mean arithmetic deviation of profile (Ra), mean peak-to-valley height (Rz), root mean square roughness (Rq), and maximum roughness (Ry) obtained from the surface of wood were used to evaluate the effect of heat treatment on the surface characteristics of the specimens. Significant difference was determined (p = 0.05) between physical properties and surface roughness parameters (Ra,Rz, Ry, Rq) for three temperatures and three durations of heat treatment. The results showed that the values of density, swelling and surface roughness decreased with increasing temperature treatment and treatment times. Turkish Hazel wood could be utilized successfully by applying proper heat treatment techniques without any losses in investigated parameters. This is vital in areas, such as window frames, where working stability and surface smoothness are important factors.
热处理通常用于提高木材的尺寸稳定性。本研究考察了热处理对土耳其榛木(Corylus colurna L.)物理性能和表面粗糙度的影响。样品取自土耳其的 Kastamonu 森林企业,经过不同温度和时间的热处理。测试了热处理和对照样品的物理性能,测定了气干密度、绝干密度和膨胀性能。采用触针法评估了样品的表面特性。使用触针法在垂直于纤维的方向上进行粗糙度测量。使用表面的四个主要粗糙度参数(均方根粗糙度(Rq)、最大粗糙度(Ry)、轮廓算术平均偏差(Ra)和峰谷高度平均(Rz))来评估热处理对试件表面特性的影响。在三种温度和三种热处理时间下,物理性能和表面粗糙度参数(Ra、Rz、Ry、Rq)之间存在显著差异(p = 0.05)。结果表明,随着温度处理和处理时间的增加,密度、膨胀和表面粗糙度的值降低。通过应用适当的热处理技术,土耳其榛木可以成功地利用,而不会在研究参数方面造成任何损失。这在窗框等领域非常重要,因为工作稳定性和表面光滑度是重要因素。