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Prediction of the optimum veneer drying temperature for good bonding in plywood manufacturing by means of artificial neural network

机译:利用人工神经网络预测胶合板制造中最佳胶合板的最佳干燥温度

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摘要

Veneer drying is one of the most important stages in the manufacturing of veneer-based composites such as plywood and laminated veneer lumber. Due to the high drying costs, increased temperatures are being used commonly in plywood industry to reduce the overall drying time and increase capacity. However, high drying temperatures can alter some physical, mechanical and chemical characteristics of wood and cause some drying-related defects. In this study, it was attempted to predict the optimum drying temperature for beech and spruce veneers via artificial neural network modeling for optimum bonding. Therefore, bonding shear strength values of plywood panels manufactured from beech and spruce veneers dried at temperatures of 20, 110, 150 and 180 ℃ were obtained experimentally. Then, the intermediate bond strength values based on veneer drying temperatures were predicted by artificial neural network modeling, and the values not measured experimentally were evaluated. The optimum drying temperature values that yielded the highest bonding strength were obtained as 169 ℃ for urea formaldehyde and 125 ℃ for phenol formaldehyde adhesive in beech plywood panels, while 162 ℃ for urea formaldehyde and 151 ℃ for phenol formaldehyde in spruce plywood panels.
机译:单板干燥是单板和层压单板木材等单板复合材料生产中最重要的阶段之一。由于高昂的干燥成本,胶合板工业通常使用升高的温度来减少总体干燥时间并提高产能。但是,高干燥温度会改变木材的某些物理,机械和化学特性,并导致一些与干燥相关的缺陷。在这项研究中,尝试通过人工神经网络模型预测山毛榉和云杉饰面的最佳干燥温度,以实现最佳粘合。因此,通过实验获得了在20、110、150和180℃下干燥的山毛榉和云杉饰面板制成的胶合板的粘结剪切强度值。然后,通过人造神经网络模型预测基于单板干燥温度的中间粘结强度值,并评估未通过实验测量的值。在山毛榉胶合板中,尿素甲醛的最佳干燥温度为169℃,酚醛胶为125℃,云杉胶合板中尿素甲醛为162℃,苯酚甲醛为151℃。

著录项

  • 来源
    《Wood Science and Technology》 |2014年第1期|59-70|共12页
  • 作者

    Sukru Ozsahin; Ismail Aydin;

  • 作者单位

    Department of Woodworking Industrial Engineering, OF Technology Faculty,Karadeniz Technical University, Trabzon, Turkey;

    Forest Industry Engineering Department, Faculty of Forestry,Karadeniz Technical University, 61080 Trabzon, Turkey;

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  • 正文语种 eng
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