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Effect of thermal modification on the properties of narrow-leaved ash and chestnut.

机译:热改性对窄叶灰和栗木性能的影响。

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The concept of thermal modification has evolved from a challenging research program to commercial reality in several European countries in recent years. The aim of this study is to determine the change of various physical properties (oven-dry density, air-dry density, weight loss, swelling and anti-swelling efficiency (ASE)), compression strength parallel to grain, colour difference ( Delta E), glossiness and surface roughness of narrow-leaved ash (Fraxinus angustifolia Vahl.) and chestnut (Castanea sativa Mill.) woods after heat treatment under different temperatures and durations. For this study two different temperatures (160 degrees C and 180 degrees C) and two different durations (2 h and 4 h) were considered. A stylus method was employed to evaluate the surface characteristics of the samples. Roughness measurements by the stylus method were made in the direction perpendicular to the fiber. Four main roughness parameters which are 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. The properties studied were significantly different (p=0.05) at two temperatures and two durations of heat treatment. Based on the findings of this study, the results showed that oven-dry density, air-dry density, swelling, compression strength parallel to grain and surface roughness decreases with increasing heat treatment temperature and time.
机译:近年来,热改性的概念已从一项具有挑战性的研究计划演变为欧洲一些国家的商业现实。这项研究的目的是确定各种物理性质(烤箱干燥密度,空气干燥密度,重量损失,溶胀和抗溶胀效率(ASE)),与谷物平行的抗压强度,色差(Delta < i> E ),窄叶灰( Vahl。)和板栗( Mill。)木材经过热处理后的光泽度和表面粗糙度在不同的温度和持续时间下。对于本研究,考虑了两个不同的温度(160摄氏度和180摄氏度)以及两个不同的持续时间(2小时和4小时)。使用触笔方法评估样品的表面特性。通过触针法在与纤维垂直的方向上进行粗糙度测量。四个主要粗糙度参数是轮廓的平均算术偏差( R a ),平均峰谷高度( R z ),均方根粗糙度( R q )和最大粗糙度( R y )从木材表面获得的样品用于评估热处理对样品表面特性的影响。在两个温度和两个热处理时间下,所研究的性能显着不同( p = 0.05)。根据这项研究的结果,结果表明,随热处理温度和时间的增加,烘箱干密度,风干密度,溶胀,与晶粒平行的压缩强度和表面粗糙度降低。

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