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Performance of solvent-borne coating on red oak wood prepared by two alternative surfacing processes

机译:用两种替代浮出工艺制备的红橡木木材溶剂涂层的性能

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摘要

The performance of varnishes applied to wood will depend on the way in which its surfaces have been prepared. Sanding has traditionally been used to prepare surfaces prior to coating. This process is one of the most expensive operations in woodworking, which produces a high level of wood dust. As a result, other surfacing processes are actually studied as alternatives to sanding for wood finishing. The effects of two alternative processes, oblique cutting and helical planing, on surface properties and coating performance of red oak wood were thus studied. Surfaces were prepared using three oblique angles (oblique cutting) and three wavelengths (helical planing) before application of an interior solvent-borne coating. Surface properties were examined by roughness parameters, scanning electron microscopy micrographs, wetting behavior, and surface energy. Coating performance was assessed by pull-off tests on aged and un-aged specimens. Oblique and helical planed surfaces at the highest oblique angle and wavelength, respectively, presented micro-torn grain, a certain level of micro-fuzziness, and higher roughness. Oblique-cut surfaces were more wettable than helical-planed surfaces. The wettability of machined surfaces decreased with increasing surface roughness within each process. Despite oblique samples had shown lower values of pull-off strength prior to aging treatment, these surfaces had statistically similar pull-off strength to those of helical-planed specimens after aging. As a result, the latter surfaces had higher loss in adhesion after accelerated aging. Results suggest that the use of oblique angles of 15 degrees and 35 degrees should provide a better coating performance in oblique-cut surfaces. On the other hand, no significant differences were detected between wavelengths during helical planing with respect to coating performance. Thus, a low (1 mm) or high wavelength (2.1 mm) could be used, depending on whether smoothness or productivity are required, in order to reduce sanding dependence for finishing red oak wood.
机译:应用于木材的清漆的性能取决于其表面已经准备的方式。传统上被用来在涂层之前用于制备表面。这个过程是木工中最昂贵的操作之一,它产生了高水平的木粉尘。结果,实际研究了其他浮出过程作为砂磨木材整理的替代方案。因此研究了两种替代工艺,倾斜切割和螺旋刨的效果,对红色橡木木材的表面性能和涂层性能进行了研究。在施加内部溶剂传播涂层之前,使用三个倾斜角(斜切割)和三个波长(螺旋刨)制备表面。通过粗糙度参数,扫描电子显微镜显微镜,润湿行为和表面能检查表面性质。通过对老年和未老化标本的拉出试验评估涂层性能。倾斜和螺旋平面曲面分别以最高的斜角和波长,呈现微撕裂的谷物,一定程度的微模糊,粗糙度较高。倾斜切割表面比螺旋形表面更令人润湿。随着每个过程内的表面粗糙度的增加,加工表面的润湿性降低。尽管倾斜样品在老化后显示出较低的拉出强度值,但在老化后,这些表面对螺旋液标本的样品具有统计学相似的拔出强度。结果,后一种表面在加速老化后的粘合性损失较高。结果表明,使用15度和35度的倾斜角度应该在倾斜表面提供更好的涂层性能。另一方面,在相对于涂覆性能的螺旋刨纱期间没有在波长之间检测显着差异。因此,可以使用低(1mm)或高波长(2.1mm),这取决于是否需要平滑度或生产率,以减少砂光依赖性对精加工红橡木木材。

著录项

  • 来源
    《European journal of wood and wood products》 |2020年第4期|733-744|共12页
  • 作者单位

    Univ Laval 2425 Rue Terrasse Quebec City PQ G1V 0A6 Canada;

    Univ Laval 2425 Rue Terrasse Quebec City PQ G1V 0A6 Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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