通过田口方法优化人工老化后经碳酸氢钠蚀刻或浸渍的栗木的硬度值

D. K. Bayraktar, Mehmet Güneş
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摘要

在当今的木材工业中,人们正在研究如何提高材料强度,确保长期使用,并增加其硬度以抵御许多有害的外部因素。随着对木材保护的研究不断深入,新的保护材料和方法也应运而生。在这项研究中,用固体碳酸氢钠(NaHCO3)和 1、2、3 巴气压对木材进行腐蚀,然后用 NaHCO3 溶液处理并干燥。研究了经过浸渍和表面处理(油漆、清漆)的栗木在人工老化后硬度值的变化。在人工老化 3、6 和 9 个月后,采用田口试验设计法(DoE)对蚀刻、浸渍和表面处理因素进行了优化。采用 L16 正交阵列确定了确定硬度值及其变化百分比的最佳条件。结果表明,磨料因素的影响大于表面处理的影响。据了解,在人工老化期(3-6-9 个月)内,对硬度值变化影响最大的因素是磨损,而影响最小的因素是表面参数。用于估算磨损因子的模型在所有因变量中的平均 R2 的准确率为 95%。
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Optimization of hardness values via Taguchi method for chestnut wood etched or impregnated with sodium bicarbonate after artificial aging
In today’s wood industry, research is being conducted to increase material strength, ensure long-term use, and increase its hardness against many harmful external factors. With the studies on the protection of wood, new protection materials and methods are introduced. In this study, wood was etched with solid sodium bicarbonate (NaHCO3) and 1, 2, and 3 bars of air pressure after treatment with NaHCO3 solution and drying. The change in hardness values of impregnated and surface-treated (paint, varnish) chestnut wood after artificial aging was examined. Etching, impregnation, and surface treatment factors were optimized using the Taguchi design of experiments (DoE) after artificial aging for 3, 6, and 9 months. L16 orthogonal array was used to determine the optimum conditions for determining hardness values and their percentage changes. The results showed that the abrasive factor prevails over the effect of surface treatments. It has been understood that the most effective factor in the hardness value changes during the artificial aging period (3-6-9 months) is abrasion, and the factor with the least effect is the surface parameter. The percentage accuracy of the model used in estimating the wear factor average R2 across all dependent variables was 95%.
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