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3D Molding of Veneers by Mechanical and Pneumatic Methods

机译:机械和气动方法单板3D成型

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摘要

This paper deals with the influence of selected methods (mechanical and pneumatic) as well as various factors (wood species, moisture content, veneer shape, punch diameter, laminating foil thickness, holding method, plasticizing) on 3D molding of veneers. 3D molding was evaluated on the basis of maximum deflection of birch and beech veneers. Cracks and warping edges were also evaluated in selected groups of mechanical molding. Mechanical methods tested veneers with various treatments (steaming, water and ammonia plasticizing and lamination). The pneumatic method was based on veneer shaping using air pressure. The results indicate that birch veneers are more suitable for 3D molding. The differences between the mechanical and pneumatic methods were not considerable. The most suitable method for mechanical 3D molding was the veneer lamination by polyethylene foils with thicknesses of 80 and 125 μm, inasmuch as these achieved better results than veneer plasticized by steam. The occurrence of cracks was more frequent in beech veneers, whereas, edge warping occurred at similar rates for both wood species and depends rather on holding method during 3D molding. Use of the ammonia solution is more suitable and there occurs no marked increase in moisture as happens when soaking in water.
机译:本文探讨了选择的方法(机械和气动)以及各种因素(木材种类,含水量,单板形状,冲头直径,层压箔厚度,保持方法,塑化)对单板3D成型的影响。基于桦木和榉木贴面的最大挠度评估3D成型。在选定的机械成型组中还评估了裂纹和翘曲边缘。机械方法对饰面进行了各种处理(汽蒸,水和氨增塑和层压)。气动方法基于使用气压的单板成型。结果表明,桦木贴面更适合3D成型。机械和气动方法之间的差异不大。最适合机械3D成型的方法是用厚度分别为80和125μm的聚乙烯薄膜进行单板层压,因为这些薄膜比用蒸汽塑化的单板效果更好。榉木贴面中裂纹的发生更为频繁,而两种木材的边缘翘曲发生率相似,并且更依赖于3D成型期间的固定方法。氨溶液的使用更合适,并且不会像浸入水中时那样出现明显的水分增加。

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