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首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Influence of the Degree of Condensation on the Radial Penetration of Urea-Formaldehyde Adhesives into Silver Fir (Abies alba, Mill.) Wood Tissue
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Influence of the Degree of Condensation on the Radial Penetration of Urea-Formaldehyde Adhesives into Silver Fir (Abies alba, Mill.) Wood Tissue

机译:缩合度对尿素-甲醛胶粘剂径向渗透到杉木(Abies alba,Mill。)木组织中的影响

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Penetration is the ability of an adhesive to move into the voids on the surface of a substrate or into the substrate itself. The cellular nature of wood can cause significant penetration of an adhesive into the substrate. The objective of this work was to evaluate the influence of the degree of condensation of urea-formaldehyde (UF) resins on the radial penetration into silver fir (Abies alba, Mill.) and hence on the distribution of resin in the wood tissue by means of microscopic determination. Three UF resins with different degrees of condensation together with extender and hardener were used as adhesive mixes and were applied onto one of the surfaces to be bonded by hot pressing parallel to the grain direction, with Safranin added as a coloring agent. Microtome slides (20 urn thick) were cut from each joint sample, showing the bondline and the two adherends with the resin penetrated in radial direction. The depth of adhesive penetration was determined by epi-fluorescence microscopy. The results show a significant correlation between the penetration behavior and the degree of condensation (molecular size, viscosity) of the resins. The higher the degree of condensation, the lower is the penetration possibility, expressed as 'Average penetration' depth (AP). The portion of filled tracheids in the radial direction on both sides of the bondline ('Filled interphase region', FIR) however, did not depend statistically on the viscosity of the resin mix.
机译:渗透是粘合剂移动到基底表面上的空隙或基底本身中的能力。木材的多孔性质会导致粘合剂大量渗透到基材中。这项工作的目的是通过以下方法评估脲醛(UF)树脂的缩合度对径向渗透到冷杉木(Abies alba,Mill。)中的渗透率的影响,从而对树脂在木材组织中的分布的影响。显微测定。将三种具有不同缩合度的UF树脂与增量剂和硬化剂一起用作粘合剂混合物,并通过平行于晶粒方向的热压法将其涂在要粘结的表面之一上,并加入番红素作为着色剂。从每个关节样品上切下切片机载玻片(20微米厚),显示出粘合线和两个被粘物,其中树脂沿径向方向渗透。通过落射荧光显微镜确定粘合剂渗透的深度。结果表明,渗透行为与树脂的缩合度(分子大小,粘度)之间存在显着的相关性。凝结度越高,渗透的可能性就越低,以“平均渗透”深度(AP)表示。然而,在粘合线两侧的径向上填充的气管的部分(“填充的相间区域”,FIR)在统计学上不取决于树脂混合物的粘度。

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